Medical blood collection tube with label lock based on electronic information technology
Technical Field
The invention relates to the technical field of electronic information, in particular to a medical blood collection tube with a label lock based on an electronic information technology.
Background
In the medical links such as blood detection, the related information of a patient generally needs to be marked on a blood collection tube, and the existing marking mode is to stick self-adhesive paper with one surface printed with two-dimensional codes or brief information of the patient on the blood collection tube. This kind of mode needs special printer, and after the self-adhesive paper was pasted to the heparin tube, the self-adhesive paper was difficult to tear completely from the heparin tube, and this also is the reason that leads to the heparin tube to use once only and can not retrieve to cause the waste of resource and the pollution to the environment. In addition, the mode can sometimes cause confusion and information distortion of the sample because the adhesive sticker is not adhered tightly and falls off. In the information reading and restoring stage, the two-dimension code is manually scanned (sometimes, the two-dimension code is unclear and the code cannot be scanned, and manual input is also needed), so that manpower waste and efficiency reduction are caused.
Disclosure of Invention
The invention aims to provide a medical blood collection tube with a label lock based on an electronic information technology, so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
the utility model provides a take medical heparin tube of label lock based on electronic information technique, includes body, label lock, the label lock is including lock area, lock body, the lock body is fixed in through the lock area the body upper end, the lock body includes that one end is equipped with the container spare in a plurality of card holes, is equipped with the mounting with card hole matched with spring bolt, the other end and the container spare of mounting are articulated, the radio frequency tags is put into to the container spare, spring bolt and card hole parallel arrangement are in different positions, still be equipped with a plurality of lockholes of opening on the mounting.
In the label lock, the data information of the lock tongue and the card hole at different positions is written into the radio frequency label in the container in advance, and meanwhile, the radio frequency label can also be written with the related information of the patient's condition, the treatment condition, the examination item and the like. After the blood sampling tube is used for sampling blood, medical personnel can read information in the radio frequency tag and input new information by using the tag reader-writer at any time, and the tag lock needs to be opened only by a special unlocking device corresponding to the tag lock, so that the radio frequency tag is uniquely corresponding to the label lock in the whole work flow of the blood sampling tube, and the blood sampling tube has the characteristic of high safety and confidentiality. After the medical blood collection tube with the label lock based on the electronic information technology completes the detection and other processes, the medical blood collection tube can be conveyed to the unlocking device position by the assembly line device, the label reader reads the information embedded in the radio frequency label in the label lock and sends the information to the control circuit, the control circuit comprises an intelligent chip, and for an automatic circuit structure with intelligent analysis, storage and other functions, after the information about the locking of the label lock in the received information is analyzed and processed, the intelligent unlocking device jacks the lock tongue of the label lock by an extended rod piece according to the information of the lock tongue and the card hole at different positions, so that the lock tongue is just unlocked with the card hole, and the corresponding unlocking function is realized. The identification control system can control the telescopic structure to extend out by different lengths according to the position information in different radio frequency tags, so that after all matched tag locks are unlocked, the telescopic structure is controlled by the control circuit to drive the ejector rod structure to retract; the assembly line device sends the next blood sampling tube to the designated position, and the steps are repeated in such a circulating way, so that batch information reading processing of the assembly line and unlocking of the blood sampling tube and the radio frequency tag are realized.
For the medical blood collection tube with the label lock based on the electronic information technology to be operated on the production line, the position of the medical blood collection tube is conveniently fixed on the conveying belt, so that the unlocking hole of the medical blood collection tube is vertically aligned with the rod piece of the unlocking device, and preferably, a vertical limiting strip with a convex surface is arranged on the outer wall side of the lower end of the tube body. Through cooperating with the supporting recess that sets up on the conveyer belt to prevent that the heparin tube from upwards sliding and making the label lock to miss the member bar.
Preferably, the upper portion of the pipe body is provided with a protrusion, the lock belt is internally provided with a corresponding recess, and the lock belt is annularly fixed at the radial position of the pipe body corresponding to the protrusion. The protrusion of the pipe body is matched with the recess of the locking belt, so that the label lock can be limited in the radial direction and the axial direction.
Preferably, the upper portion of the pipe body is provided with a horizontal convex ring, and the convex ring is arranged at the lower edge of the locking belt and used for preventing the label lock from being misaligned due to sliding and dislocation along the pipe wall.
For the convenience of assembling and disassembling the label lock from the pipe body, preferably, one end of the lock body is fixedly connected with the lock belt, the other end of the lock body is provided with a ring buckle, and the lock belt is provided with a clamping hook detachably connected with the ring buckle.
Preferably, the fixing piece is provided with a buckle movable groove corresponding to the buckle, so that the buckle can be conveniently detached.
Compared with the prior art, the invention has the beneficial effects that: the medical blood collection tube with the label lock based on the electronic information technology replaces a self-adhesive label with a radio frequency label which is large in information capacity and can read and write information repeatedly, the information has the characteristics of safety, confidentiality and loss prevention through the combination of the label lock belt and the lock body, the blood collection tube is suitable for automatic large-scale operation of a pipeline through the optimized design of the structure of the tube body and the label lock, and the medical blood collection tube has the characteristics of simple structure, safety, confidentiality, large-batch processing and recycling, intelligence, environmental protection and the like.
Drawings
FIG. 1 is an overall structural view of an embodiment of the present invention;
FIG. 2 is a partial enlarged structural view at A in FIG. 1;
FIG. 3 is a block diagram of a lock body according to an embodiment of the present invention;
FIG. 4 is a side view of a tubular body according to an embodiment of the present invention;
FIG. 5 is a front view of a tubular body according to an embodiment of the present invention;
FIG. 6 is a right side view of a tubular body according to an embodiment of the present invention;
wherein: 1. the lock comprises a pipe body, 2 parts of a locking belt, 3 parts of a lock body, 4 parts of a container, 5 parts of clamping holes, 6 parts of a lock tongue, 7 parts of a fixing part, 8 parts of an unlocking hole, 9 parts of an unlocking device, 10 parts of a rod, 11 parts of a limiting strip, 12 parts of a bulge, 13 parts of a convex ring, 14 parts of a ring buckle, 15 parts of a clamping hook and 16 parts of a ring buckle movable groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-6, a medical heparin tube of tape label lock based on electronic information technology, including body 1, label lock, the label lock is including lock area 2, lock body 3 is fixed in through lock area 2 1 upper end of body, lock body 3 includes that one end is equipped with 3 card hole 5 container spare 4, is equipped with the mounting 7 with card hole 5 matched with spring bolt 6, the other end of mounting 7 is articulated with container spare 4, put into the radio frequency label in the container spare 4, spring bolt 6 and card hole 5 parallel arrangement are in different positions, still be equipped with 3 lockhole 8 on the mounting 7.
In the label lock, the data information of the lock tongue 6 and the card hole 5 at different positions is written into the radio frequency label in the container part 4 in advance, and meanwhile, the radio frequency label can also be written with the related information of the patient's state of illness, treatment condition, examination items and the like. After the blood sampling tube is used for sampling blood, medical personnel can read information in the radio frequency tag and input new information by using the tag reader-writer at any time, and the tag lock needs to be opened only by a special unlocking device 9 corresponding to the tag lock, so that the radio frequency tag is uniquely corresponding in the whole work flow of the blood sampling tube, and the radio frequency tag has the characteristic of high safety and confidentiality. After the medical blood collection tube with the label lock based on the electronic information technology completes the detection and other processes, the medical blood collection tube can be conveyed to the position of the unlocking device 9 by a production line device, the label reader reads the information embedded in the radio frequency label in the label lock and sends the information to the control circuit, the control circuit comprises an intelligent chip, and for an automatic circuit structure with intelligent analysis, storage and other functions, after the information about the locking of the label lock in the received information is analyzed and processed, the intelligent unlocking device 9 supports the lock tongue 6 of the label lock by the extending rod piece 10 according to the information of the lock tongue 6 and the card hole 5 at different positions, so that the lock tongue 6 is just unlocked with the card hole 5, and the corresponding unlocking function is realized. The identification control system can control the telescopic structure to extend out by different lengths according to the position information in different radio frequency tags, so that after all matched tag locks are unlocked, the telescopic structure is controlled by the control circuit to drive the ejector rod structure to retract; the assembly line device sends the next blood sampling tube to the designated position, and the steps are repeated in such a circulating way, so that batch information reading processing of the assembly line and unlocking of the blood sampling tube and the radio frequency tag are realized.
For the medical blood collection tube with the label lock based on the electronic information technology to operate on an assembly line, the medical blood collection tube is convenient to fix on a conveying belt, so that an unlocking hole 8 of the medical blood collection tube is vertically aligned with a rod piece 10 of an unlocking device 9, and a vertical limiting strip 11 with a convex surface is arranged on the outer wall side of the lower end of the tube body 1. By matching with the matched grooves arranged on the conveying belt, the blood sampling tube is prevented from sliding in the radial direction to prevent the labels from being locked and not aligned with the rod piece 10.
The top of body 1 is equipped with arch 12, be equipped with corresponding sunken in the lock area 2, 2 rings of lock area are fixed in the radial position of the body 1 that arch 12 corresponds. The label lock is restrained both radially and axially by the cooperation of the projections 12 of the tubular body 1 with the recesses of the locking strip 2.
The upper portion of body 1 is equipped with a horizontally bulge loop 13, bulge loop 13 is located 2 lower edges of lock area are used for preventing the label lock is because of along the pipe wall gliding dislocation to the position of inaccurate.
In order to facilitate the assembly and disassembly of the label lock from the pipe body 1, one end of the lock body 3 is fixedly connected with the lock belt 2, the other end of the lock body is provided with a ring buckle 14, and the lock belt 2 is provided with a clamping hook 15 which is detachably connected with the ring buckle 14.
The fixing piece 7 is provided with a buckle movable groove 16 corresponding to the buckle 14 so as to facilitate the disassembly of the buckle 14.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.