CN101342661A - Miller elevating table feed reverse apparatus - Google Patents
Miller elevating table feed reverse apparatus Download PDFInfo
- Publication number
- CN101342661A CN101342661A CNA2008101388930A CN200810138893A CN101342661A CN 101342661 A CN101342661 A CN 101342661A CN A2008101388930 A CNA2008101388930 A CN A2008101388930A CN 200810138893 A CN200810138893 A CN 200810138893A CN 101342661 A CN101342661 A CN 101342661A
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- bevel gear
- zygote
- power output
- output shaft
- lifting platform
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Abstract
The invention discloses a lifting platform feeding and reversing device of a milling machine with high work efficiency, comprising a lifting nut which is fixedly installed on the support rod at the lower end of a machine frame, a lifting platform and a lifting screw rod which is installed on the lifting platform. A driving shaft and a power output shaft are installed on the lifting platform. A driving shaft bevel gear is fixedly installed on the driving shaft. A positive rotation bevel gear and a reverse rotation bevel gear are installed on the power output shaft. The positive rotation bevel gear and the reverse rotation bevel gear are respectively meshed with the driving shaft bevel gear. A connector is installed on the power output shaft between the positive rotation bevel gear and the reverse rotation bevel gear. The connector can be connected respectively with the positive rotation bevel gear and the reverse rotation bevel gear. A connector toggle mechanism is installed on the lifting platform. A power helical gear is fixedly installed at the right end of the power output shaft. A screw rod helical gear is fixedly installed at the top of the lifting screw rod. The final feeding power drives the lifting platform to do feeding movement in a rotary way through the lifting screw rod.
Description
Technical field
The present invention relates to a kind of milling machine, relate in particular to a kind of miller elevating table feed reverse apparatus.
Background technology
At present, the feed reverse structure of traditional universal knee-and-column milling machine often adopts dual mode to realize: a kind of is to realize the rotating feeding by positive and negative the transferring of control button control feeding motor; Another kind is to realize commutation by straight-tooth shifting slide gear group.This dual mode all has its drawback: bad by electric realization reliability, because frequent positive and negative starter motor shortens the life-span of motor and other electrical equipment easily; The spur gear wheel bearing capacity is little, easily produces impact shock, and the commutating structure complexity.
Summary of the invention
The miller elevating table feed reverse apparatus that the purpose of this invention is to provide a kind of high efficiency.
To achieve these goals, the technical scheme that the present invention takes is: a kind of miller elevating table feed reverse apparatus, comprising being fixedly mounted on lifting nut, the lifting platform on the pillar of frame lower end and being installed in elevating screw on the lifting platform; Elevating screw is relative being rotatably connected with lifting platform, and lifting platform is connected for sliding up and down with frame, and elevating screw and lifting nut are for being threaded; Driving shaft, power output shaft are installed on the lifting platform; Be characterized in: be installed with the driving shaft bevel gear on the driving shaft, being equipped with on the power output shaft just changes bevel gear, counter-rotating bevel gear; Just changeing bevel gear, bevel gear is relative with power output shaft respectively is rotatably connected in counter-rotating, just changeing bevel gear, the counter-rotating bevel gear mesh with the driving shaft bevel gear respectively, just changeing on the power output shaft between bevel gear, the counter-rotating bevel gear zygote is being installed, zygote is connected for horizontally slipping with power output shaft, zygote can be respectively with just change bevel gear, the counter-rotating bevel gear is connected; The left and right end of zygote has tooth respectively, is just changeing the bevel gear right-hand member and is having and the corresponding tooth of zygote left end tooth, and counter-rotating bevel gear left end has and the corresponding tooth of zygote right gear; The zygote toggle mechanism is installed on the lifting platform, and the zygote toggle mechanism is connected with zygote; The power output shaft right-hand member fixedly mounts dynamic helical gear, and the elevating screw upper end is installed with the leading screw helical gear, and the power helical gear is meshed with the leading screw helical gear and is connected, and final feeding power drives the motion of lifting platform bottom and top feed by the elevating screw rotation.
Advantageous effect of the present invention is: owing to the present invention is to provide a kind of Bevel Gear Transmission commutating structure, overcome deficiency by motor positive and inverse, and Bevel Gear Transmission efficient height, it is little to generate heat, and bearing capacity is big, and structure is compact more.
Description of drawings
Fig. 1 is a kind of structural representation of the present invention;
Fig. 2 is a kind of user mode reference diagram of the present utility model.
The specific embodiment
Below in conjunction with accompanying drawing and specific embodiment the present invention is described further: a kind of miller elevating table feed reverse apparatus, as shown in Figure 1, 2, comprising being fixedly mounted on lifting nut, the lifting platform 16 on the pillar of frame lower end and being installed in elevating screw on the lifting platform; Elevating screw and lifting platform 16 is relative being rotatably connected, and lifting platform 16 is connected for sliding up and down with frame, and elevating screw and lifting nut are for being threaded; Driving shaft 15, power output shaft 8 are installed on the lifting platform 16; Be installed with driving shaft bevel gear 14 on the driving shaft 15, being equipped with on the power output shaft 8 just changes bevel gear 3, counter-rotating bevel gear 7; Just changeing bevel gear 3, the counter-rotating bevel gear 7 respectively with power output shaft 8 relative being rotatably connected, just changeing bevel gear 3, counter-rotating bevel gear 7 meshes with driving shaft bevel gear 14 respectively, just changeing on the power output shaft between bevel gear 3, the counter-rotating bevel gear 7 zygote 1 is being installed, zygote 1 is connected for horizontally slipping with power output shaft 8, zygote 1 can be respectively with just change bevel gear 3, counter-rotating bevel gear 7 is connected; Zygote 1 left and right end has tooth respectively, is just changeing bevel gear 3 right-hand members and is having and the corresponding tooth of zygote 1 left end tooth, and counter-rotating bevel gear 7 left ends have and the corresponding tooth of zygote 1 right gear; The zygote toggle mechanism is installed on the lifting platform 16, and the zygote toggle mechanism is connected with zygote 1; Power output shaft 8 right-hand members fixedly mount dynamic helical gear 9, and the elevating screw upper end is installed with leading screw helical gear 13, and power helical gear 9 is meshed with leading screw helical gear 13 and is connected, thereby feeding power is passed to elevating screw; Final feeding power drives the motion of lifting platform 16 bottom and top feeds by the elevating screw rotation.
In the present embodiment, the zygote toggle mechanism is comprising handle 5, clutch gear axle 6, connecting plate, shifting block 4; Zygote 1 middle part outer surface has and shifting block 4 corresponding concave ring grooves, and shifting block 4 is positioned at concave ring groove; Clutch gear axle 6 is installed on the lifting platform 16, and handle 5 is fixedly mounted on the front end of clutch gear axle 6, and connecting plate the inner is installed in the rear end of clutch gear axle 6, and shifting block 4 is installed in the outer end of connecting plate; Stir handle 5, clutch gear axle 6 rotates, drive connecting plate, shifting block 4 swings, shifting block 4 is stirred zygote 1 and is slided into position, the left and right sides along power output shaft 8, zygote 1 slip of turning left, the tooth that just changes on bevel gear 3 right sides is meshed with tooth on zygote 1 left side, just change bevel gear 3 and rotating 1 rotation of drive zygote, zygote 1 rotates and drives power output shaft 8 rotations, power output shaft 8 rotates and drives 9 rotations of power helical gear, power helical gear 9 rotating band movable wire thick sticks upper ends helical gear 13 rotates, and leading screw helical gear 13 rotates and drives elevating screws and rotate, and elevating screw rotates and drives lifting platform 16 and move up and down along frame; Zygote 1 slip of turning right, tooth on counter-rotating bevel gear 7 left sides is meshed with tooth on zygote 1 right side, counter-rotating bevel gear 7 is rotated and drives zygote 1 rotation, zygote 1 rotates and drives power output shaft 8 rotations, power output shaft 8 rotates and drives 9 rotations of power helical gear, helical gear 13 rotations of power helical gear 9 rotating band movable wire thick sticks upper end, leading screw helical gear 13 are rotated and are driven the elevating screws rotation, and elevating screw rotates the drive lifting platform and moves up and down along frame;
In the present embodiment, zygote 1 is the associative key cover, and power output shaft 8 passes zygote 1, and has pit on zygote 1 corresponding power output shaft 8 outer surfaces, pit on power output shaft 8 and outer surface that zygote 1 combines for a plurality of; And have cannelure on the outer surface of power output shaft 8 corresponding zygotes 1, a plurality of steel ball holes distribute on the cannelure inner periphery, the Spring Card that is contained in the cannelure is stuck in steel ball in the steel ball hole, and steel ball is corresponding with the pit on power output shaft 8 outer surfaces; When zygote 1 is just changeing power output shaft 8 interpositions between the bevel gear 7 of bevel gear 3, counter-rotating, pit in the middle of steel ball 2 is positioned at; When zygote 1 slided into position, the left and right sides, steel ball 2 was positioned at the left side or the pit on right side and the tooth that just changes on bevel gear 3 right sides is meshed with tooth on zygote 1 left side or the tooth on bevel gear 7 left sides of reversing is meshed with tooth on zygote 1 right side; Steel ball 2 is in the effect of playing the location in the pit;
In the present embodiment, have positive stop on the framework pillar; The rack shaft 10 and the connection that horizontally slips with it are installed on the lifting platform 16, and rack shaft 10 right-hand members have bearing pin 12, have the inclined-plane on the positive stop, and bearing pin 12 is corresponding with the inclined-plane on the positive stop; On the clutch gear axle 6 clutch gear is installed, the tooth that has on clutch gear and the rack shaft 10 is meshed; Positive stop is comprising upper limit block 11, lower limit block; The left side of upper limit block 11 is that the right side of inclined-plane, lower limit block is the inclined-plane, and bearing pin 12 is corresponding with the right-hand member inclined-plane of the left end inclined-plane of upper limit block 11, lower limit block respectively, and bearing pin 12 is between upper limit block 11, lower limit block; Stir handle 5, zygote 1 horizontally slips along power output shaft 8, and driving shaft 15 rotates and drives power output shafts 8 and rotate, and power output shaft 8 rotates and drives lifting platform 16 and move up and down along frame; Lifting platform 16 is when frame moves up, driving bearing pin 12 moves up, when reaching the limit of the position, bearing pin 12 knocks upper limit block 11, driving rack shaft 10 moves to left, rack shaft 10 drives clutch gear axle 6 and rotates, and 1 disengagement makes lifting platform 16 stop rising thereby the zygote toggle mechanism is stirred zygote; Lifting platform 16 drives bearing pin 12 and moves down when frame moves down, and when reaching the limit of the position, bearing pin 12 knocks the lower limit block, drive rack shaft 10 and move to right, thereby the zygote toggle mechanism is stirred zygote 1 and is thrown off and make lifting platform stop to descend.
The present invention can lean on frame for movement to realize the transmission commutation independently, realizes that simply the reliability height can be realized the automatic spacing hold function.
The present invention can provide power by gearbox, by gears engaged transmission of power to driving shaft 15.Driving shaft 15 can rotate by the driving shaft bevel gear 14 of bearing supporting strap moving axis end, and driving shaft bevel gear 14 is meshed with counter-rotating bevel gear 7 with just changeing bevel gear 3 simultaneously, and it is moving to drive its idle running.In the present invention, differ 180 degree with counter-rotating bevel gear 7 owing to just changeing bevel gear 3, all while and 14 engagements of driving shaft bevel gear, it is opposite with counter-rotating bevel gear 7 direction of rotation just to change bevel gear 3; Just changeing bevel gear 3 is installed on the power output shaft 8 simultaneously with counter-rotating bevel gear 7.In the present invention, zygote 1 can be connected by spline with power output shaft 8, and zygote 1 can horizontally slip on power output shaft 8, and steel ball 2 is in the effect of playing the location in the pit.
Claims (5)
1, a kind of miller elevating table feed reverse apparatus is comprising being fixedly mounted on lifting nut, the lifting platform (16) on the pillar of frame lower end and being installed in elevating screw on the lifting platform; Elevating screw is relative being rotatably connected with lifting platform (16), and lifting platform (16) is connected for sliding up and down with frame, and elevating screw and lifting nut are for being threaded; Driving shaft (15), power output shaft (8) are installed on the lifting platform (16); It is characterized in that: be installed with driving shaft bevel gear (14) on the driving shaft (15), being equipped with on the power output shaft (8) just changes bevel gear (3), counter-rotating bevel gear (7); Just changeing bevel gear (3), the counter-rotating bevel gear (7) respectively with relative being rotatably connected of power output shaft (8), just changeing bevel gear (3), the counter-rotating bevel gear (7) mesh with driving shaft bevel gear (14) respectively, just changeing on the power output shaft between bevel gear (3), the counter-rotating bevel gear (7) zygote (1) is being installed, zygote (1) is connected for horizontally slipping with power output shaft (8), zygote (1) can be respectively with just change bevel gear (3), counter-rotating bevel gear (7) is connected; The left and right end of zygote (1) has tooth respectively, is just changeing bevel gear (3) right-hand member and is having and the corresponding tooth of zygote (1) left end tooth, and counter-rotating bevel gear (7) left end has and the corresponding tooth of zygote (1) right gear; Lifting platform is equipped with the zygote toggle mechanism on (16), and the zygote toggle mechanism is connected with zygote (1); Power output shaft (8) right-hand member fixedly mounts dynamic helical gear (9), and the elevating screw upper end is installed with leading screw helical gear (13), and power helical gear (9) is meshed with leading screw helical gear (13) and is connected.
2, miller elevating table feed reverse apparatus according to claim 1 is characterized in that: the zygote toggle mechanism is comprising handle (5), clutch gear axle (6), connecting plate, shifting block (4); Described zygote (1) middle part outer surface has and the corresponding concave ring groove of shifting block (4), and shifting block (4) is positioned at concave ring groove; Clutch gear axle (6) is installed on the described lifting platform (16), and handle (5) is fixedly mounted on the front end of clutch gear axle (6), and connecting plate the inner is installed in the rear end of clutch gear axle (6), and shifting block (4) is installed in the outer end of connecting plate.
3, miller elevating table feed reverse apparatus according to claim 2, it is characterized in that: described zygote (1) is the associative key cover, described power output shaft (8) passes zygote (1), with have pit on the corresponding power output shaft of zygote (1) (8) outer surface, pit on power output shaft (8) and outer surface that zygote (1) combines for a plurality of; And have cannelure on the outer surface of the corresponding zygote of power output shaft (8) (1), a plurality of steel ball holes distribute on the cannelure inner periphery, the Spring Card that is contained in the cannelure is stuck in steel ball in the steel ball hole, and steel ball is corresponding with the pit on power output shaft (8) outer surface.
4, according to claim 2 or 3 described miller elevating table feed reverse apparatus, it is characterized in that: have positive stop on the described framework pillar; Rack shaft (10) is installed and the connection that horizontally slips with it on the described lifting platform (16), rack shaft (10) right-hand member has bearing pin (12), has the inclined-plane on the positive stop, and bearing pin (12) is corresponding with the inclined-plane on the positive stop; On the described clutch gear axle (6) clutch gear is installed, the tooth that has on clutch gear and the rack shaft (10) is meshed.
5, miller elevating table feed reverse apparatus according to claim 4 is characterized in that: described positive stop is comprising upper limit block (11), lower limit block; The left side of upper limit block (11) is that the right side of inclined-plane, lower limit block is the inclined-plane, described bearing pin (12) is corresponding with the right-hand member inclined-plane of the left end inclined-plane of upper limit block (11), lower limit block respectively, and bearing pin (12) is positioned between upper limit block (11), the lower limit block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN200810138893A CN100589924C (en) | 2008-08-05 | 2008-08-05 | Miller elevating table feed reverse apparatus |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN200810138893A CN100589924C (en) | 2008-08-05 | 2008-08-05 | Miller elevating table feed reverse apparatus |
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CN101342661A true CN101342661A (en) | 2009-01-14 |
CN100589924C CN100589924C (en) | 2010-02-17 |
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CN200810138893A Expired - Fee Related CN100589924C (en) | 2008-08-05 | 2008-08-05 | Miller elevating table feed reverse apparatus |
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CN (1) | CN100589924C (en) |
Cited By (6)
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CN105480455A (en) * | 2015-12-30 | 2016-04-13 | 全越 | Full-automatic film winding machine |
CN105501495A (en) * | 2015-12-30 | 2016-04-20 | 全越 | Convenient type thin film winding mechanism |
CN110672409A (en) * | 2019-08-27 | 2020-01-10 | 立方通达实业(天津)有限公司 | Rock tension-compression shear seepage test device |
CN112296448A (en) * | 2020-10-31 | 2021-02-02 | 株洲精工硬质合金有限公司 | Carbide unloader convenient to collect waste material |
CN114887543A (en) * | 2022-07-15 | 2022-08-12 | 潍坊科技学院 | Continuous proportioning device of liquid pesticide or fertilizer |
CN115847702A (en) * | 2023-02-16 | 2023-03-28 | 杭州富阳东山塑料机械有限公司 | Evacuating device for foaming machine |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4201271A (en) * | 1978-07-10 | 1980-05-06 | Larry Evans | Quill drive with variable feed |
DE3210897A1 (en) * | 1982-03-25 | 1983-10-06 | Mey Kg Maschf Mafell | DEVICE FOR LIFTING AND LOWERING A WORK TABLE OF A MACHINE TOOL |
CN2734407Y (en) * | 2004-10-11 | 2005-10-19 | 李维谦 | Lathe reversing mechanism |
CN201061854Y (en) * | 2007-07-31 | 2008-05-21 | 滕州市华強精密机床有限责任公司 | Feeder for miller |
CN201244724Y (en) * | 2008-08-05 | 2009-05-27 | 李升文 | Break loose apparatus for coal mine transportation adhesive tape |
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2008
- 2008-08-05 CN CN200810138893A patent/CN100589924C/en not_active Expired - Fee Related
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105480455A (en) * | 2015-12-30 | 2016-04-13 | 全越 | Full-automatic film winding machine |
CN105501495A (en) * | 2015-12-30 | 2016-04-20 | 全越 | Convenient type thin film winding mechanism |
CN110672409A (en) * | 2019-08-27 | 2020-01-10 | 立方通达实业(天津)有限公司 | Rock tension-compression shear seepage test device |
CN112296448A (en) * | 2020-10-31 | 2021-02-02 | 株洲精工硬质合金有限公司 | Carbide unloader convenient to collect waste material |
CN112296448B (en) * | 2020-10-31 | 2024-02-09 | 株洲精工硬质合金有限公司 | Cemented carbide unloader convenient to collect waste material |
CN114887543A (en) * | 2022-07-15 | 2022-08-12 | 潍坊科技学院 | Continuous proportioning device of liquid pesticide or fertilizer |
CN114887543B (en) * | 2022-07-15 | 2022-09-27 | 潍坊科技学院 | Continuous proportioning device of liquid pesticide or fertilizer |
CN115847702A (en) * | 2023-02-16 | 2023-03-28 | 杭州富阳东山塑料机械有限公司 | Evacuating device for foaming machine |
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Publication number | Publication date |
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CN100589924C (en) | 2010-02-17 |
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Granted publication date: 20100217 Termination date: 20170805 |