EP3070196A1 - Apparatus and method for the finishing of yarns - Google Patents
Apparatus and method for the finishing of yarns Download PDFInfo
- Publication number
- EP3070196A1 EP3070196A1 EP15425020.3A EP15425020A EP3070196A1 EP 3070196 A1 EP3070196 A1 EP 3070196A1 EP 15425020 A EP15425020 A EP 15425020A EP 3070196 A1 EP3070196 A1 EP 3070196A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- yarn
- advance
- additive
- line
- finishing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000000034 method Methods 0.000 title claims abstract description 24
- 239000000654 additive Substances 0.000 claims abstract description 39
- 230000000996 additive effect Effects 0.000 claims abstract description 35
- 238000009826 distribution Methods 0.000 claims abstract description 13
- 230000000452 restraining effect Effects 0.000 claims description 8
- 238000004040 coloring Methods 0.000 claims description 5
- 238000005507 spraying Methods 0.000 claims description 3
- 238000011144 upstream manufacturing Methods 0.000 claims description 3
- 230000002093 peripheral effect Effects 0.000 claims description 2
- 238000009834 vaporization Methods 0.000 claims description 2
- 238000004804 winding Methods 0.000 claims description 2
- 239000013043 chemical agent Substances 0.000 claims 1
- 238000004043 dyeing Methods 0.000 description 17
- 238000007598 dipping method Methods 0.000 description 6
- 239000000126 substance Substances 0.000 description 6
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 5
- 239000007921 spray Substances 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 239000002994 raw material Substances 0.000 description 3
- 239000003086 colorant Substances 0.000 description 2
- 239000000975 dye Substances 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 230000007613 environmental effect Effects 0.000 description 2
- 238000009975 hank dyeing Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000004078 waterproofing Methods 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000003795 chemical substances by application Substances 0.000 description 1
- 238000005265 energy consumption Methods 0.000 description 1
- 238000007730 finishing process Methods 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
- 230000037431 insertion Effects 0.000 description 1
- 238000005086 pumping Methods 0.000 description 1
- 239000000985 reactive dye Substances 0.000 description 1
- 238000004064 recycling Methods 0.000 description 1
- 238000010025 steaming Methods 0.000 description 1
- 230000008016 vaporization Effects 0.000 description 1
Images
Classifications
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B11/00—Treatment of selected parts of textile materials, e.g. partial dyeing
- D06B11/002—Treatment of selected parts of textile materials, e.g. partial dyeing of moving yarns
- D06B11/0023—Treatment of selected parts of textile materials, e.g. partial dyeing of moving yarns by spraying or pouring
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B1/00—Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating
- D06B1/02—Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating by spraying or projecting
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06B—TREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
- D06B3/00—Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating
- D06B3/34—Driving arrangements of machines or apparatus
- D06B3/345—Means for controlling the tension in the textile material
Definitions
- the present invention relates to an apparatus and method for the finishing of yarns.
- the present invention relates to an apparatus and method for performing operations of finishing such as, in particular, the dyeing of yarns.
- the present invention is particularly useful when adding to the yarns various types of chemical substances suitable to give multifunctional properties such as waterproofing, mechanical strength, and flame resistance.
- the processes for dyeing yarns include bobbin dyeing or hank dyeing.
- a dipping technique is used that involves the use of reactive dye and the insertion of the bobbins inside special tanks containing water under pressure and at a predetermined temperature.
- the bobbin dyeing can define an uneven colouring depending on the various portions of yarn wound on the bobbin.
- dipping technique needs to use a substantial amount of water at high temperature and under pressure. Consequently, dipping dyeing is particularly costly both in terms of energy and of water consumption.
- hank dyeing systems are provided both for the dipping systems similar to those mentioned above, and for spray dyeing systems in which the colour is sprayed onto the hanks suitably supported on special frames.
- the dyeing of the hank may cause an uneven colouring derived from the positioning of the threads with respect to the colourant delivery nozzles.
- a further drawback related to both technologies (either dipping or spraying dyeing) described above is the impossibility to use the dyeing systems in order to add various types of chemical substances to the yarn. Such operations are mostly made with specific equipment and on dedicated finishing lines.
- the technical task underlying the present invention is to devise an apparatus and method for the finishing of yarns, which are able to solve the above drawbacks.
- the object of the present invention is to provide an apparatus and method for the finishing of yarns which is able to achieve homogeneous dyeing of the yarns.
- a further object of the present invention is to provide an apparatus and method to perform on yarns both dyeing and additivation operations with chemical substances suitable to give the yarn specific multifunctional features.
- Yet another object of the present invention is to provide an apparatus and method for the finishing of yarns which is structurally simple, effective in terms of production speed, and cost-efficient, while also being able to reduce as much as possible the possible environmental impact both in terms of energy consumption and consumption of the raw materials used (i.e. water).
- the numeral 1 generally refers to an apparatus for the finishing of yarns.
- the present invention is particularly useful in finishing operations of yarns, such as the dyeing and the additivation of chemical substances suitable to give the yarns specific multifunctional features.
- the multifunctional features include waterproofing, flame resistance, and mechanical strength.
- the apparatus 1 comprises a feed station 2 for at least one yarn "Y" to be treated.
- the feeding station 2 comprises at least a support frame 3 for a plurality of spools 4 on which the respective yarns "Y" are wound.
- the bobbins 4 are advantageously supported on the frame 3 rotatably, to facilitate the unwinding of each individual yarn "Y" from the spool 4.
- the unwinding action of each yarn "Y” implies the rotation of the spool 4 around a respective longitudinal axis.
- the frame 3 is preferably like a picture frame, and can support any number of spools 4.
- a frame 3 suitable to support four spools 4 (and consequently four yarns) is illustrated purely by way of example and without limitation. It should, however, be specified that the shape of the frame and the number of support frames for the spools can be different according to the number of yarns "Y" to be treated.
- the yarns "Y” are then placed in traction and unwound along a line of advance 5 and in a direction indicated by "D".
- the yarns "Y" in the line of advance 5 are fed parallel to each other and along a respective substantially horizontal axis.
- a collecting station 6 of the yarn "Y” Downstream of said line of advance 5, a collecting station 6 of the yarn "Y" is located.
- a collecting station 6 includes a winding roller 7 rotatable about a horizontal axis and perpendicular to the direction of advance "D" of the yarns.
- the yarns "Y” treated along the line 5 into individual hanks "M” are collected.
- the rotation of the roller 7 that winds the yarns "Y” therefore determines the traction action of the same yarns "Y" that are unwound by the respective spools 4.
- the feeding station 2 also comprises at least one tensioning device 8 associated to the yarn "Y” to tighten the thread along the line of advance 5 to a predetermined tensioning value as a function of the features and dimensions of the yarn "Y".
- the feeding station 2 comprises a plurality of tensioning devices mounted on the frame 3 and each of which is aligned with a pool 4 of a respective yarn "Y".
- each tensioning device 8 comprises at least one restraining roller 9 around which the thread dipping is partially wound upstream of the line of advance 5.
- the restraining roller 9 is rotatably engaged on a supporting element 10, which is engaged on the frame 3 and has a further diverter roller 11 disposed upstream of the restraining roller 9 with respect to the direction of advance of the yarn "Y".
- the restraining roller 9 has a brake system (not shown or described in detail because it is of a known type) in order to implement resistance to the advance of the thread "Y" towards the collecting station 6. This resistance is determined according to the predetermined tensioning value to be obtained.
- the tensioning device 8 further comprises detecting means 10a and adjustment means (also not described and illustrated in detail since of known type) adapted to control the resistance action of the roller 9.
- detecting means 10a and adjustment means also not described and illustrated in detail since of known type
- These means are constituted by a sensor for detecting the thread tension and by appropriate interface members that allow manually setting and displaying a predetermined tensioning value.
- the tensioning device 8 provides the automatic adjustment of the tension of the yarn "Y” by the restraining action of the roller 9 in an automatic and controlled way. This adjustment action of the tensioning value (set manually) is carried out taking advantage of the features of the yarn "Y" during the continuous feeding along the line 5.
- Each single yarn is controlled during the step of advance and maintained at the optimum tensioning in order to perform the finishing operations and, at the same time, to avoid any damage to the thread itself.
- this specific control on each thread allows the use of yarns "Y" of any type (material) and count, also those having a very high fineness.
- the apparatus 1 further comprises distribution means 12, for distributing a finishing additive that is arranged along the line of advance 5.
- the distribution means 12 deliver on each yarn "Y” fed along the line of advance 5 a respective additive that can be a dye to impart a specific colour to the yarn treated "Y".
- the distribution means 12 may be adapted to distributing on the yarns "Y” an additive capable of imparting final specific features of the yarn.
- the distribution means 12 comprise at least one delivery device 13, for delivering the finishing additive, equipped with a chamber 14 (only visible in the partial cutaway view of Figure 3 ) for the passing of the yarn "Y".
- the chamber 14 of the dispensing device 13 defines an inlet opening 15 and an outlet opening 16 of the thread Y" for passing through the chamber 14 itself.
- the distribution means 12 comprise a plurality of dispensing devices 13, arranged in series along the line of advance 5 of the yarn. In this circumstance, note that each yarn "Y" is fed in sequence inside the chamber 14 of each dispensing device 13.
- dispensing devices 13 are illustrated that are arranged one after another along the line of advance 5.
- the dispensing devices 13 may be arranged to feed the same additive or substances different between each other.
- the number of dispensing devices 13 and the type of additive fed by each device 13 may be different according to the various production requirements of the yarn "Y".
- the first dispensing device 13 is shown in a partial cutaway view to better show the chamber 14 disposed within each device 13.
- each chamber 14 there is a spray nozzle 17 adapted to distribute a jet of additive on the yarn "Y" while it is being continuously fed.
- the dispensing device 13 comprises a plurality of spray nozzles 17 mounted on a support member 18 that is movable inside the chamber 14 to direct the jet of additive towards the yarn "Y” intermittently.
- the support member 18 comprises a rotary drum that is rotatable about a rotation axis "X" transverse to the direction of advance "D" of the yarn "Y”.
- the nozzles 17 are arranged on a peripheral area of the drum 18 to be facing the yarn "Y” and for direct the spray of additive to the yarn "Y" itself periodically.
- the distribution means 12 further comprise a comb 19 disposed between the feeding station 2 and the first dispensing device 13.
- the comb 19 is mounted facing the inlet opening 15 of the first dispensing device 13 to guide the yarns "Y” maintaining them horizontal and close to each another along the feed line 5.
- the comb 19 maintains the yarns "Y” suitably spaced apart along the line of advance 5, to allow the correct distribution of the additive on the yarns themselves within the individual chambers 14.
- the presence of the comb 19 is also required to ensure the smooth passage of the yarns "Y" through the openings 15, 16 and each single device 13.
- An object of the present invention is also a method for the finishing of yarns "Y" usable with the apparatus 1 described hereinabove.
- the method comprises the steps of: feeding at least a yarn "Y" to be treated along the line of advance 5 and distribute one or more finishing additives on the yarn along said line of advance 5.
- the step of feeding the yarn comprises the substep of stretching the yarn along the line of advance 5 to a predetermined tensioning value depending on the features and dimensions of the yarn itself.
- the step of stretching the yarn is implemented by the resistance imparted by the restraining roller 9 around which the thread is partially wound. Therefore, the roller 9 brakes the advance of the thread towards the collecting station 6 depending on the predetermined tensioning value that is set and adjusted according to the structure, the features and dimensions of the thread.
- the step of distributing the finishing additive on the yarn "Y" is implemented by passing the yarn in a sequential manner in a plurality of dispensing devices 13 for the additive.
- the additive is sprayed on the yarn "Y" intermittently.
- the yarn "Y” exiting the last dispensing device 13 is collected by a roller 7 to form respective hanks "M".
- the formation of each hank "M” is preferably implemented by further guide elements (not illustrated since of known type) provided on the roller 7 to allow the correct positioning of the respective yarns "Y" on the roller 7.
- the step is implemented to fix the additive previously distributed on the yarn "Y” collected in hanks "M” by means of a vaporization step at a predetermined pressure and temperature.
- This step is implemented by transferring the hanks "M” inside a respective steaming to allow for the fixing step.
- the apparatus 1 and method thereof that is able to achieve a homogeneous dyeing on the years "Y".
- the present invention allows for treating any type of yarn regardless of its structure and size. This advantage is thanks to the presence of each tensioning device 8 active on a respective thread. This device 8, in addition to maintaining each yarn in the optimum tensioning condition for feeding and finishing, also preserves the yarn from any tearing and damage.
- the apparatus 1 is very versatile and usable not only in dyeing operations but also in any finishing operation which includes the distribution of chemical additives on the yarn.
- the present invention is particularly advantageous when the aim is to obtain multicoloured dyeing on the yarn "Y” with a "random” and repeatable effect on the individual yarns.
- the apparatus 1 can advantageously be used to give the yarn "Y" specific multifunctional features.
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Materials Engineering (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
Description
- The present invention relates to an apparatus and method for the finishing of yarns.
- In particular, the present invention relates to an apparatus and method for performing operations of finishing such as, in particular, the dyeing of yarns. The present invention is particularly useful when adding to the yarns various types of chemical substances suitable to give multifunctional properties such as waterproofing, mechanical strength, and flame resistance.
- As known, the processes for dyeing yarns include bobbin dyeing or hank dyeing. Generally, in the case of a bobbin yarn, a dipping technique is used that involves the use of reactive dye and the insertion of the bobbins inside special tanks containing water under pressure and at a predetermined temperature.
- This technology has major limitations arising from the inability to achieving different colours on the single yarn. Furthermore, the bobbin dyeing can define an uneven colouring depending on the various portions of yarn wound on the bobbin.
- It should also be considered that the dipping technique needs to use a substantial amount of water at high temperature and under pressure. Consequently, dipping dyeing is particularly costly both in terms of energy and of water consumption.
- In the case of the hank dyeing, systems are provided both for the dipping systems similar to those mentioned above, and for spray dyeing systems in which the colour is sprayed onto the hanks suitably supported on special frames.
- Also in this case, however, the dyeing of the hank may cause an uneven colouring derived from the positioning of the threads with respect to the colourant delivery nozzles.
- Furthermore, again, it is impossible to achieve particular effects such as different and repeatable colours on the individual threads that make up the yarn.
- A further drawback related to both technologies (either dipping or spraying dyeing) described above is the impossibility to use the dyeing systems in order to add various types of chemical substances to the yarn. Such operations are mostly made with specific equipment and on dedicated finishing lines.
- In this context, the technical task underlying the present invention is to devise an apparatus and method for the finishing of yarns, which are able to solve the above drawbacks.
- In particular, the object of the present invention is to provide an apparatus and method for the finishing of yarns which is able to achieve homogeneous dyeing of the yarns.
- In greater detail, it is an object of the present invention to provide an apparatus and method that is able to dye any type of yarn by any type of colouring agent and aesthetic effect.
- Even more specifically, it is an object of the present invention to provide an apparatus and method for implementing a random and repeatable colouring on the individual yarns.
- A further object of the present invention is to provide an apparatus and method to perform on yarns both dyeing and additivation operations with chemical substances suitable to give the yarn specific multifunctional features.
- Yet another object of the present invention is to provide an apparatus and method for the finishing of yarns which is structurally simple, effective in terms of production speed, and cost-efficient, while also being able to reduce as much as possible the possible environmental impact both in terms of energy consumption and consumption of the raw materials used (i.e. water).
- The technical task and the object specified are substantially achieved by an apparatus and method for the finishing of yarns characterised in that it comprises one or more of the technical solutions that are claimed hereinafter.
- The description of a preferred but not exclusive embodiment of an apparatus and method for the finishing of yarns is shown by way of example and not of limitation, in accordance with the accompanying figures in which:
-
Figure 1 shows a perspective and schematic view of the apparatus for the finishing of yarns in accordance with the present invention; -
Figure 2 shows a further perspective and schematic view of the apparatus ofFigure 1 ; -
Figure 2a shows an enlargement of a constructive detail of the apparatus ofFigure 2 ; and -
Figure 3 shows a side elevational view with some parts cut away to better illustrate other parts of the apparatus according to the present invention. - With reference to
Figure 1 , thenumeral 1 generally refers to an apparatus for the finishing of yarns. - In particular, the present invention is particularly useful in finishing operations of yarns, such as the dyeing and the additivation of chemical substances suitable to give the yarns specific multifunctional features. By way of example, the multifunctional features include waterproofing, flame resistance, and mechanical strength.
- In greater detail, with particular reference to
Figure 1 , theapparatus 1 comprises a feed station 2 for at least one yarn "Y" to be treated. Preferably, the feeding station 2 comprises at least asupport frame 3 for a plurality ofspools 4 on which the respective yarns "Y" are wound. - The
bobbins 4 are advantageously supported on theframe 3 rotatably, to facilitate the unwinding of each individual yarn "Y" from thespool 4. In other words, the unwinding action of each yarn "Y" implies the rotation of thespool 4 around a respective longitudinal axis. - The
frame 3 is preferably like a picture frame, and can support any number ofspools 4. In the accompanying drawings, aframe 3 suitable to support four spools 4 (and consequently four yarns) is illustrated purely by way of example and without limitation. It should, however, be specified that the shape of the frame and the number of support frames for the spools can be different according to the number of yarns "Y" to be treated. - The yarns "Y" are then placed in traction and unwound along a line of
advance 5 and in a direction indicated by "D". - Preferably, it should be noted that the yarns "Y" in the line of
advance 5 are fed parallel to each other and along a respective substantially horizontal axis. - Downstream of said line of
advance 5, a collecting station 6 of the yarn "Y" is located. Such a collecting station 6 includes awinding roller 7 rotatable about a horizontal axis and perpendicular to the direction of advance "D" of the yarns. On theroller 7, which is not described and illustrated in detail, the yarns "Y" treated along theline 5 into individual hanks "M" are collected. - The rotation of the
roller 7 that winds the yarns "Y" therefore determines the traction action of the same yarns "Y" that are unwound by therespective spools 4. - The feeding station 2 also comprises at least one
tensioning device 8 associated to the yarn "Y" to tighten the thread along the line ofadvance 5 to a predetermined tensioning value as a function of the features and dimensions of the yarn "Y". - Preferably, as illustrated in the accompanying figures, the feeding station 2 comprises a plurality of tensioning devices mounted on the
frame 3 and each of which is aligned with apool 4 of a respective yarn "Y". - With particular reference to
Figure 2a , it is noted that eachtensioning device 8 comprises at least one restraining roller 9 around which the thread dipping is partially wound upstream of the line ofadvance 5. - The restraining roller 9 is rotatably engaged on a supporting
element 10, which is engaged on theframe 3 and has afurther diverter roller 11 disposed upstream of the restraining roller 9 with respect to the direction of advance of the yarn "Y". - The restraining roller 9 has a brake system (not shown or described in detail because it is of a known type) in order to implement resistance to the advance of the thread "Y" towards the collecting station 6. This resistance is determined according to the predetermined tensioning value to be obtained.
- Advantageously, the
tensioning device 8 further comprises detecting means 10a and adjustment means (also not described and illustrated in detail since of known type) adapted to control the resistance action of the roller 9. These means are constituted by a sensor for detecting the thread tension and by appropriate interface members that allow manually setting and displaying a predetermined tensioning value. - In this way, according to the structure and count of each individual yarn "Y", is possible to set a respective tensioning value of the yarn "Y" itself during the feeding step along the line of
advance 5. Furthermore, thetensioning device 8 provides the automatic adjustment of the tension of the yarn "Y" by the restraining action of the roller 9 in an automatic and controlled way. This adjustment action of the tensioning value (set manually) is carried out taking advantage of the features of the yarn "Y" during the continuous feeding along theline 5. - Each single yarn is controlled during the step of advance and maintained at the optimum tensioning in order to perform the finishing operations and, at the same time, to avoid any damage to the thread itself. Advantageously, this specific control on each thread allows the use of yarns "Y" of any type (material) and count, also those having a very high fineness.
- The
apparatus 1 further comprises distribution means 12, for distributing a finishing additive that is arranged along the line ofadvance 5. - The distribution means 12 deliver on each yarn "Y" fed along the line of advance 5 a respective additive that can be a dye to impart a specific colour to the yarn treated "Y". In addition or as an alternative, the distribution means 12 may be adapted to distributing on the yarns "Y" an additive capable of imparting final specific features of the yarn.
- In greater detail, the distribution means 12 comprise at least one
delivery device 13, for delivering the finishing additive, equipped with a chamber 14 (only visible in the partial cutaway view ofFigure 3 ) for the passing of the yarn "Y". - As is best shown in two perspective views,
Figures 1 and2 , thechamber 14 of thedispensing device 13 defines an inlet opening 15 and an outlet opening 16 of the thread Y" for passing through thechamber 14 itself. Preferably, as illustrated in the accompanying figures, the distribution means 12 comprise a plurality of dispensingdevices 13, arranged in series along the line ofadvance 5 of the yarn. In this circumstance, note that each yarn "Y" is fed in sequence inside thechamber 14 of eachdispensing device 13. - In the accompanying figures, four dispensing
devices 13 are illustrated that are arranged one after another along the line ofadvance 5. The dispensingdevices 13 may be arranged to feed the same additive or substances different between each other. - It should, however, be specified that the number of dispensing
devices 13 and the type of additive fed by eachdevice 13 may be different according to the various production requirements of the yarn "Y". - With particular reference to the view of
Figure 3 , thefirst dispensing device 13 is shown in a partial cutaway view to better show thechamber 14 disposed within eachdevice 13. - Within each
chamber 14 there is aspray nozzle 17 adapted to distribute a jet of additive on the yarn "Y" while it is being continuously fed. Advantageously, the dispensingdevice 13 comprises a plurality ofspray nozzles 17 mounted on asupport member 18 that is movable inside thechamber 14 to direct the jet of additive towards the yarn "Y" intermittently. Preferably, thesupport member 18 comprises a rotary drum that is rotatable about a rotation axis "X" transverse to the direction of advance "D" of the yarn "Y". In this circumstance, thenozzles 17 are arranged on a peripheral area of thedrum 18 to be facing the yarn "Y" and for direct the spray of additive to the yarn "Y" itself periodically. - The additive sprayed by the
nozzles 17 then reaches the advancing yarn "Y" and a portion of the additive falls downwards in a respective collection tank (not shown). Appropriate pumping means, active in the tank, allow the additive to be brought again towards thenozzles 17, then recycling the material that has not been absorbed by the yarns. Advantageously, this system allows for recovering a considerable amount of additive reducing the consumption of raw material (additive), and then the entire cost of the finishing process. - The distribution means 12 further comprise a comb 19 disposed between the feeding station 2 and the
first dispensing device 13. In particular, the comb 19 is mounted facing the inlet opening 15 of thefirst dispensing device 13 to guide the yarns "Y" maintaining them horizontal and close to each another along thefeed line 5. Moreover, the comb 19 maintains the yarns "Y" suitably spaced apart along the line ofadvance 5, to allow the correct distribution of the additive on the yarns themselves within theindividual chambers 14. - The presence of the comb 19 is also required to ensure the smooth passage of the yarns "Y" through the
openings single device 13. - An object of the present invention is also a method for the finishing of yarns "Y" usable with the
apparatus 1 described hereinabove. - The method comprises the steps of: feeding at least a yarn "Y" to be treated along the line of
advance 5 and distribute one or more finishing additives on the yarn along said line ofadvance 5. - The step of feeding the yarn comprises the substep of stretching the yarn along the line of
advance 5 to a predetermined tensioning value depending on the features and dimensions of the yarn itself. - As described above, the step of stretching the yarn is implemented by the resistance imparted by the restraining roller 9 around which the thread is partially wound. Therefore, the roller 9 brakes the advance of the thread towards the collecting station 6 depending on the predetermined tensioning value that is set and adjusted according to the structure, the features and dimensions of the thread.
- The step of distributing the finishing additive on the yarn "Y" is implemented by passing the yarn in a sequential manner in a plurality of dispensing
devices 13 for the additive. - Within each
device 13, the additive is sprayed on the yarn "Y" intermittently. - The yarn "Y" exiting the
last dispensing device 13 is collected by aroller 7 to form respective hanks "M". The formation of each hank "M" is preferably implemented by further guide elements (not illustrated since of known type) provided on theroller 7 to allow the correct positioning of the respective yarns "Y" on theroller 7. - Finally, the step is implemented to fix the additive previously distributed on the yarn "Y" collected in hanks "M" by means of a vaporization step at a predetermined pressure and temperature. This step is implemented by transferring the hanks "M" inside a respective steaming to allow for the fixing step.
- The above described invention solves the problems found in the prior art and provides numerous advantages.
- First, the
apparatus 1 and method thereof that is able to achieve a homogeneous dyeing on the years "Y". - This advantage is due to the dyeing action on the single yarn "Y" on which the colour is sprayed, in contrast to the known technique in which dyeing is performed on the bobbin or the entire hank.
- Furthermore, the present invention allows for treating any type of yarn regardless of its structure and size. This advantage is thanks to the presence of each
tensioning device 8 active on a respective thread. Thisdevice 8, in addition to maintaining each yarn in the optimum tensioning condition for feeding and finishing, also preserves the yarn from any tearing and damage. - Still, the presence of a plurality of devices in series allows the use of any type of additive, also additives different to each other.
- Consequently, the
apparatus 1 is very versatile and usable not only in dyeing operations but also in any finishing operation which includes the distribution of chemical additives on the yarn. - For example, the present invention is particularly advantageous when the aim is to obtain multicoloured dyeing on the yarn "Y" with a "random" and repeatable effect on the individual yarns.
- In addition or alternatively, the
apparatus 1 can advantageously be used to give the yarn "Y" specific multifunctional features. - Finally, a further advantage of the present invention is provided by the significant reduction in terms of environmental impact mainly due to the reduction of the raw materials used (water and additive).
Claims (17)
- Apparatus for the finishing of yarns, comprising:a feeding station (2) for at least one yarn (Y) to be treated for feeding said yarn (Y) along a line of advance (5);a collection station (6) for said yarn (Y) located downstream of the line of advance (5); anddistribution means (12) for distributing a finishing additive on said at least one yarn (Y), said means (12) being arranged along the line of advance (5);characterised in that said feeding station (2) also comprises at least one tensioning device (8) associated to the yarn (Y) to stretch the thread along the line of advance (5) to a predetermined tensioning value as a function of the features and dimensions of the yarn (Y).
- Apparatus according to the preceding claim, characterised in that said tensioning device (8) comprises at least one restraining roller (9) around which the thread (Y) is partially wrapped upstream of the line of advance (5); said roller (9) implementing a resistance to the advance of the thread (Y) towards the collection station (6) according to the predetermined tensioning value.
- Apparatus according to the preceding claim, characterised in that said tensioning device (8) further comprises means (10a) for detecting and adjusting the resistance of the roller (9) to determinate said predetermined tensioning value.
- Apparatus according to any one of the preceding claims, characterised in that said feeding station (2) comprises a support frame (3) having a plurality of spools (4), each spool (4) supporting a respective yarn (Y) which is unwound along the line of advance (5); said support frame (3) also supporting a plurality of tensioning devices (8) each of which is coupled to a respective yarn (Y).
- Apparatus according to any one of the preceding claims, characterised in that said distribution means (12) comprise at least one dispensing device (13) for said finishing additive having a chamber (14) for the passaging of the yarn (Y) defining an opening input (15) for the thread inside the chamber (14) and an outlet opening (16) for the thread to which the additive has been distributed.
- Apparatus according to the preceding claim, characterised in that said dispensing device (13) further comprises a spraying nozzle (17) arranged within said chamber (14) for the passaging of the yarn (Y) to distribute a jet of additive on the yarn (Y) fed continuously.
- Apparatus according to the preceding claim, characterised in that the said dispensing device (13) comprises a plurality of spraying nozzles (17) and a support member (18) for said nozzles (17); said member (18) being movable inside the chamber (14) to direct the jet of additive towards the yarn (Y) intermittently.
- Apparatus according to the preceding claim, characterised in that said support member (18) comprises a rotary drum rotatable about a rotation axis (X) transverse to the direction of advance (D) of the yarn (Y); said nozzles (17) being arranged on a peripheral area of the drum.
- Apparatus according to any one of claims 5 to 8, characterised in that said distribution means (12) comprise a plurality of dispensing devices (13) for said finishing additive, arranged in series along the line of advance (5) of the yarn (Y); said yarn (Y), being fed in sequence within each chamber (14) of the dispensing devices (13).
- Apparatus according to the preceding claim, characterised in that said additives distributed on the yarn (Y) in the respective dispensing devices (13) are different between each other.
- Apparatus according to any one of the preceding claims, characterised in that said additive is a dye for colouring the yarn (Y) and/or a chemical agent to give the yarn (Y) a multifunctional feature.
- Apparatus according to any one of the preceding claims, characterised in that said collecting station (6) comprises at least one roller (7) for winding the yarn (Y) in hanks (M) exiting the distribution means (12) of the finishing additive.
- Method for the finishing of yarns, comprising the steps of:feeding at least a yarn (Y) to be treated along a line of advance (5);distribute a finishing additive on the yarn (Y) along said line of advance (5);andcollect the treated yarn (Y) at the end of the line of advance (5);characterised in that said step of feeding the yarn (Y) comprises the substep of stretching the yarn (Y) along the line of advance 5 to a predetermined tensioning value depending on the features anddimensions of the yarn itself.
- Method according to the preceding claim, characterised in that said step of stretching the yarn (Y) is implemented by the resistance imparted by a restraining roller (9) around which the thread is partially wound; said roller (9) braking the thread advance towards the collection station (6) according to the predetermined tensioning value.
- Method according to the preceding claim, characterised in that said step of stretching the yarn (Y) further comprises the substep of adjusting the resistance action of the roller (9) as a function of the predetermined tensioning value.
- Method according to any of claims 13 to 15, characterised in that said step of distributing the finishing additive on the yarn (Y) is carried out by passing the yarn in a sequential manner in a plurality of dispensing devices (13 ) for said additive; said additive being sprayed on the yarn (Y) intermittently within each dispensing device (13).
- Method according to any of claims 13 to 16, characterised in that it further comprises the step of fixing the additive on the yarn (Y) collected in hanks (M) by a vaporisation step at a predetermined pressure and temperature.
Priority Applications (1)
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EP15425020.3A EP3070196B1 (en) | 2015-03-17 | 2015-03-17 | Apparatus and method for the finishing of yarns |
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EP15425020.3A EP3070196B1 (en) | 2015-03-17 | 2015-03-17 | Apparatus and method for the finishing of yarns |
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EP3070196A1 true EP3070196A1 (en) | 2016-09-21 |
EP3070196B1 EP3070196B1 (en) | 2019-05-08 |
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IT201700032365A1 (en) * | 2017-03-23 | 2018-09-23 | Manifattura Lane Moro Di Paolo Moro & C | APPARATUS AND METHOD FOR COLORING YARNS |
IT201700046089A1 (en) * | 2017-05-04 | 2018-11-04 | Technores S R L | "CONTINUOUS DEVICE AND METHOD OF TREATMENT OF A PLURALITY OF YARNS" |
CN112226939A (en) * | 2020-10-09 | 2021-01-15 | 山东明福染业有限公司 | Energy-saving multi-color yarn spray-dyeing device |
WO2021160384A1 (en) * | 2020-02-13 | 2021-08-19 | Memjet Technology Limited | Thread coating using inkjet printhead |
JP2022514135A (en) * | 2018-10-01 | 2022-02-10 | ユルディズ アリフィオグル,ハビベ | Dyeing machine |
CN114703577A (en) * | 2022-03-10 | 2022-07-05 | 台州东海翔织造有限公司 | Warping equipment and spandex component fabric production process |
CN117684338A (en) * | 2024-02-04 | 2024-03-12 | 佛山市国御环保科技有限公司 | Yarn printing and dyeing is with circulation scour formula dyestuff dip-dyeing device |
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CN117684338A (en) * | 2024-02-04 | 2024-03-12 | 佛山市国御环保科技有限公司 | Yarn printing and dyeing is with circulation scour formula dyestuff dip-dyeing device |
CN117684338B (en) * | 2024-02-04 | 2024-04-30 | 佛山市国御环保科技有限公司 | Yarn printing and dyeing is with circulation scour formula dyestuff dip-dyeing device |
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