CN212076292U - Lifting mechanism for stacking textiles - Google Patents

Lifting mechanism for stacking textiles Download PDF

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Publication number
CN212076292U
CN212076292U CN202020491233.7U CN202020491233U CN212076292U CN 212076292 U CN212076292 U CN 212076292U CN 202020491233 U CN202020491233 U CN 202020491233U CN 212076292 U CN212076292 U CN 212076292U
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CN
China
Prior art keywords
base
threaded rod
welded
slider
lifting mechanism
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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.)
Expired - Fee Related
Application number
CN202020491233.7U
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Chinese (zh)
Inventor
程明水
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Shuershi Textile New Material Technology Co ltd
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Suzhou Shuershi Textile New Material Technology Co ltd
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Priority to CN202020491233.7U priority Critical patent/CN212076292U/en
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Publication of CN212076292U publication Critical patent/CN212076292U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a fabrics piles up and uses elevating system, the on-line screen storage device comprises a base, the mounting groove has been seted up in the base, base diapire sliding connection has the mobile device, the base lateral wall has second driving motor through the scaffold weldment, second driving motor's output shaft welding has the second threaded rod, the second threaded rod runs through the bearing with the base and rotates and be connected, second threaded rod both ends are provided with the screw thread that revolves to opposite, second threaded rod both ends threaded connection has first slider, every first slider upper wall all welds down the fixing base, every down the fixing base all is connected with the connecting rod through the round pin rotation, the intersection of connecting rod all rotates through the round pin axle and connects every the connecting rod keeps away from corresponding the one end of fixing base all is connected with the fixing base through the round pin rotation down. Has the advantages that: the height can be effectively adjusted without manpower, the working strength is greatly reduced, and the working efficiency is improved.

Description

Lifting mechanism for stacking textiles
Technical Field
The utility model relates to a textile production technical field especially relates to a fabrics piles up and uses elevating system.
Background
The textile is a product formed by processing and weaving textile fibers, which is divided into two categories of woven fabric and knitted fabric, China is one of the earliest countries in the world for producing textiles, and the main production places are Zhejiang Pupu house, Hebei Qinghe and the like. The correct stacking method of the textiles is to select the place which is favorable for ventilation and is convenient for fire prevention, the full cotton cloth is preferably placed in the place with good ventilation, such as the place which is close to a door and a window, the door width is a conventional door width by one meter, the fabric is rolled and arranged in a row from 6 to 7, the 2 nd layer is horizontally placed, the quantity is the same as the bottom, the 3 rd layer is horizontally placed, the quantity is the same, and the like.
In the prior art, after the production of textiles is completed, the textiles are usually stacked manually, after the textiles are stacked to a certain height, the textiles need to be lifted manually, labor is consumed relatively, and the lifting mechanism is very dangerous when the textiles are lifted manually.
Disclosure of Invention
The utility model aims at solving the problem of wasting time and energy when the manual work carries out the fabrics and piles up among the prior art, and the fabrics that provides piles up and uses elevating system.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a lifting mechanism for stacking textiles comprises a base, wherein a mounting groove is formed in the base, the bottom wall of the base is connected with a moving device in a sliding manner, a second driving motor is welded on the side wall of the base through a support, a second threaded rod is welded on an output shaft of the second driving motor, the second threaded rod is connected with the base in a penetrating and rotating manner through a bearing, threads with opposite rotating directions are arranged at two ends of the second threaded rod, first sliding blocks are connected at two ends of the second threaded rod in a threaded manner, a lower fixing seat is welded on the upper wall of each first sliding block, each lower fixing seat is connected with a connecting rod in a rotating manner through a pin shaft, the intersection of the connecting rods is connected in a rotating manner through a pin shaft, one end, far away from the corresponding lower fixing seat, of each connecting rod is connected with an upper fixing seat in a, and each second sliding block is jointly connected with a lifting plate in a sliding manner, the side wall of the lifting plate is welded with a third sliding block, the third sliding block is connected with an upright column in a sliding manner, the upright column is welded with the top wall of the base, and a placing box is arranged on the lifting plate.
In the above lifting mechanism for stacking textiles, the base is provided with an installation groove therein, the top wall of the mobile device is in threaded connection with a plurality of first threaded rods, each first threaded rod is in penetrating and rotating connection with the base through a bearing and extends into the mounting groove, one end of each first threaded rod, which is positioned in the mounting groove, is in interference fit with a first gear, each first gear is meshed with a second gear together, the second gear is in interference fit with a driven shaft, the driven shaft is rotationally connected with the top wall of the mounting groove through a bearing, the driven shaft is in interference fit with a worm wheel, the worm wheel is meshed with a worm, the worm is in interference fit with a rotating shaft, the rotating shaft is connected with the base in a penetrating and rotating mode through a bearing, a first driving motor is welded to the side wall of the base through a support, and an output shaft of the first driving motor is welded with the rotating shaft.
In foretell fabrics piles up and uses elevating system, it has the spliced pole to place roof wall welding, it is connected with the case lid to place the case through hinge rotation, the welding of case lid roof has the fixed block, it has the mounting panel to place roof wall welding, the mounting panel runs through sliding connection and has a plurality of fixed pins, every the fixed pin all runs through sliding connection with placing the roof wall, the mounting panel with place and be provided with a plurality of springs between the case, every the fixed pin is kept away from the one end of fixed block and all bonds there is the operation piece.
In the lifting mechanism for stacking textiles, four groups of first threaded rods and four groups of first gears are symmetrically arranged at least, and a plurality of universal wheels are welded on the bottom wall of the moving device.
In foretell fabrics piles up and uses elevating system, it is provided with a plurality of gyro wheels to place incasement diapire and case lid lateral wall, it all bonds and has the rubber pad to place incasement lateral wall.
In foretell fabrics piles up and uses elevating system, the welding of base lateral wall has a plurality of fixing device, every the fixing device diapire all welds the support column, every the support column diapire all bonds and has the slipmat.
In the above lifting mechanism for stacking textiles, the second sliding groove is formed in the bottom wall of the lifting plate, the second sliding block is connected with the lifting plate in a sliding mode through the second sliding groove, the first sliding groove is formed in one side, close to the lifting plate, of the stand column, and the third sliding block is connected with the stand column in a sliding mode through the first sliding groove.
In the above lifting mechanism for stacking textiles, the second slider and the third slider are both sliders with T-shaped cross sections, and the first sliding groove and the second sliding groove are both T-shaped sliding grooves.
In the above lifting mechanism for stacking textiles, the first driving motor should be a motor of type Y355L1-2, the second driving motor should be a motor of type Y315L2-2, and at least two sets of fixing devices are arranged on each side wall of the base.
Compared with the prior art, the utility model has the advantages of:
1. the first driving motor is started to enable the rotating shaft to rotate to drive the worm to rotate, the worm wheel rotates, the worm wheel drives the second gear to rotate through the driven shaft, the first gear meshed with the second gear rotates to drive the first threaded rod to rotate, the moving device moves downwards through the threaded matching of the first threaded rod and the moving device, the motor is turned off when the universal wheel is in contact with the ground, the lifting device can be conveniently moved to a use position through the universal wheel, and therefore the device is more practical;
2. the operation block is pulled to enable the fixing pin to move upwards, the limit of the fixing block is removed, the box cover is opened, the produced textile is placed in the placing box, the sliding friction of the textile during placing is changed into rolling friction through the idler wheels in the placing box, the placing is more labor-saving, and the rubber pad is arranged in the placing box, so that the textile can be prevented from being damaged due to rolling in the lifting process;
3. put into the fabrics and place the incasement, close the case lid, open second driving motor for the second threaded rod rotates, drives two first sliders inwards or outwards move simultaneously, makes the second slider inwards or outwards move simultaneously, realizes the lift of lifter plate, has replaced the manual work to carry, has reduced intensity of labour, has improved work efficiency.
Drawings
Fig. 1 is a schematic structural view of a lifting mechanism for stacking textiles according to the present invention;
fig. 2 is an enlarged view of a position a of the lifting mechanism for stacking textiles according to the present invention;
fig. 3 is an enlarged view of a lifting mechanism for stacking textiles at position B according to the present invention;
fig. 4 is an enlarged view of a C-position of the lifting mechanism for stacking textiles according to the present invention;
fig. 5 is a cross-sectional view of a lifting mechanism for stacking textiles at position D according to the present invention;
fig. 6 is a side view of the lifting mechanism for stacking textiles according to the present invention.
In the figure: the device comprises a base 1, a moving device 2, a first threaded rod 21, a first gear 22, a second gear 23, a driven shaft 24, a worm wheel 25, a worm 26, a rotating shaft 27, a first driving motor 28, a universal wheel 29, a second driving motor 3, a second threaded rod 31, a first sliding block 32, a lower fixed seat 33, a connecting rod 34, an upper fixed seat 35, a second sliding block 36, a vertical column 4, a first sliding groove 41, a third sliding block 5, a lifting plate 6, a second sliding groove 61, a placing box 7, a box cover 71, a fixed block 73, a mounting plate 74, a fixing pin 75, a spring 76, an operating block 77, a roller 78, a rubber pad 79, a connecting column 8, a fixing device 101, a supporting column 102, an anti-skid pad 103 and a mounting groove 104.
Detailed Description
The following examples are for illustrative purposes only and are not intended to limit the scope of the present invention.
Referring to fig. 1-6, a lifting mechanism for stacking textiles comprises a base 1, wherein a mounting groove 104 is formed in the base 1, the bottom wall of the base 1 is slidably connected with a moving device 2, a second driving motor 3 is welded on the side wall of the base 1 through a bracket, a second threaded rod 31 is welded on an output shaft of the second driving motor 3, the second threaded rod 31 is rotatably connected with the base 1 through a bearing in a penetrating manner, threads with opposite rotation directions are arranged at two ends of the second threaded rod 31, first sliding blocks 32 are connected with two ends of the second threaded rod 31 through threads, a lower fixing seat 33 is welded on the upper wall of each first sliding block 32, each lower fixing seat 33 is rotatably connected with a connecting rod 34 through a pin shaft, the crossing part of each connecting rod 34 is rotatably connected through a pin shaft, one end of each connecting rod 34, which is far away from the corresponding lower fixing seat 33, is rotatably connected with an, every common sliding connection of second slider 36 has lifter plate 6, 6 lateral wall welding of lifter plate has third slider 5, 5 sliding connection of third slider has stand 4, stand 4 and the welding of base 1 roof, it places case 7 to be provided with on the lifter plate 6, open second driving motor 3, second driving motor 3 makes second threaded rod 31 rotate, because second threaded rod 31 has the opposite screw thread of turning to soon, make two first sliders 32 inwards or outside motion simultaneously when second threaded rod 31 rotates, fixing base 33 inwards or outside motion simultaneously under two first sliders 32 drive, it inwards or outside motion simultaneously to drive the fixing base through connecting rod 34, jack or reduce lifter plate 6, freely adjust the height of lifter plate 6, do not need the manual work to pile up, time saving and labor saving.
The base 1 is internally provided with a mounting groove 104, the top wall of the mobile device 2 is in threaded connection with a plurality of first threaded rods 21, each first threaded rod 21 is in through-rotating connection with the base 1 through a bearing and extends into the mounting groove 104, one end of each first threaded rod 21, which is positioned in the mounting groove 104, is in interference fit with a first gear 22, each first gear 22 is meshed with a second gear 23 together, the second gear 23 is in interference fit with a driven shaft 24, the driven shaft 24 is in rotational connection with the top wall of the mounting groove 104 through a bearing, the driven shaft 24 is in interference fit with a worm wheel 25, the worm wheel 25 is meshed with a worm 26, the worm 26 is in interference fit with a rotating shaft 27, the rotating shaft 27 is in through-rotating connection with the base 1 through a bearing, the side wall of the base 1 is welded with a first driving motor 28 through a bracket, an output shaft of the first driving motor 28 is, make worm 26 rotate, it rotates rather than engaged with worm wheel 25 to drive, worm wheel 25 drives and rotates rather than interference fit's driven shaft 24, rotate with 24 interference fit's of driven shaft second gear 23, it rotates rather than engaged with first gear 22 to drive, first gear 22 drives the first threaded rod 21 that corresponds and rotates, it makes mobile device 2 reduce to rotate through first threaded rod 21, close the motor when universal wheel 29 and ground contact, make the device can be more convenient remove to required position, do not need the manual work to carry out the transport of fabrics, greatly reduced intensity of labour.
Place case 7 roof welding and have spliced pole 8, it is connected with case lid 71 to place case 7 through the hinge rotation, case lid 71 roof welding has fixed block 73, it has mounting panel 74 to place case 7 roof welding, mounting panel 74 runs through sliding connection and has a plurality of fixed pins 75, every fixed pin 75 all runs through sliding connection with placing case 7 roof, mounting panel 74 and place and be provided with a plurality of springs 76 between the case 7, the one end that fixed block 73 was kept away from to every fixed pin 75 all bonds and has operation block 77, case lid 71 is closed and is prevented to injure the people from placing the roll-off in case 7 at transportation and upgrading in-process textile.
At least four groups of first threaded rods 21 and first gears 22 are symmetrically arranged, and a plurality of universal wheels 29 are welded on the bottom wall of the moving device.
Place in the case 7 diapire and case lid 71 lateral wall and be provided with a plurality of gyro wheels 78, place the incasement lateral wall and all bond rubber pad 79, gyro wheel 78 can become rolling friction with the sliding friction when placing the fabrics, and is more laborsaving, and rubber pad 79 can prevent that the fabrics from rocking when placing case 7 transportation and causing the damage, protection fabrics.
The welding of base 1 lateral wall has a plurality of fixing device 101, and every fixing device 101 diapire all has welded support column 102, and every support column 102 diapire all bonds and has slipmat 103, and slipmat 103 prevents to receive external force to appear gliding phenomenon at the lift in-process device.
Second sliding tray 61 has been seted up to 6 diapalls of lifter plate, and second slider 36 passes through second sliding tray 61 and 6 sliding connection of lifter plate, and first sliding tray 41 has been seted up to one side that stand 4 is close to lifter plate 6, and third slider 5 is through first sliding tray 41 and stand 4 sliding connection, and setting up of stand 4 can make lifter plate 6 avoid appearing the skew at the lift in-process, goes up and down more steadily.
The second slider 36 and the third slider 5 are both sliders with T-shaped cross sections, the first sliding groove 41 and the second sliding groove 61 are both T-shaped sliding grooves, and the T-shaped sliders and the sliding grooves are matched to prevent the sliders from being separated from the sliding grooves in the sliding process, so that the device is more stable.
The first driving motor 28 should be a motor of type Y355L1-2, the second driving motor 3 should be a motor of type Y315L2-2, and at least two sets of fixing devices 101 are disposed on each side wall of the base 1.
In the utility model, firstly, the operation block 77 is pulled to make the fixed pin 75 move upwards to remove the limit to the fixed block 73, the box cover 71 is opened, the produced textile is put into the placing box 7, the box cover 71 is closed, the first driving motor 28 is opened, the first driving motor 28 drives the rotating shaft 27 to rotate, the worm 26 is rotated to drive the worm wheel 25 engaged with the worm wheel to rotate, the worm wheel 25 drives the driven shaft 24 in interference fit with the worm wheel to rotate, the second gear 23 in interference fit with the driven shaft 24 rotates to drive the first gear 22 engaged with the worm wheel to rotate, the first gear 22 drives the corresponding first threaded rod 21 to rotate, the moving device 2 is lowered through the rotation of the first threaded rod 21, the motor is closed when the universal wheel 29 is contacted with the ground, the device is pushed to the textile stacking position, the first driving motor 28 is opened, the moving device 2 is lifted, the motor is closed when the anti-skid pad 103 is contacted with the ground, open second driving motor 3, second driving motor 3 makes second threaded rod 31 rotate, because second threaded rod 31 has the opposite screw of turning to soon, make two first sliders 32 simultaneously inward movement when second threaded rod 31 rotates, fixing base 33 simultaneous inward movement under two first sliders 32 drive, drive fixing base simultaneous inward movement through connecting rod 34, with the jacking of lifter plate 6, rise to and stack the high back closed motor, open case lid 71 and take out the fabrics and pile up can.
Although the terms of the base 1, the moving device 2, the first threaded rod 21, the first gear 22, the second gear 23, the driven shaft 24, the worm wheel 25, the worm 26, the rotating shaft 27, the first driving motor 28, the universal wheel 29, the second driving motor 3, the second threaded rod 31, the first slider 32, the lower fixing seat 33, the connecting rod 34, the upper fixing seat 35, the second slider 36, the upright 4, the first sliding groove 41, the third slider 5, the lifting plate 6, the second sliding groove 61, the placing box 7, the box cover 71, the fixing block 73, the mounting plate 74, the fixing pin 75, the spring 76, the operation block 77, the roller 78, the rubber pad 79, the connecting column 8, the fixing device 101, the supporting column 102, the anti-slip pad 103, the mounting groove 104, and the like are used more herein, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention; they are to be construed in a manner that is inconsistent with the spirit of the invention.

Claims (9)

1. The lifting mechanism for stacking textiles comprises a base (1) and is characterized in that a mounting groove (104) is formed in the base (1), the bottom wall of the base (1) is connected with a moving device (2) in a sliding mode, a second driving motor (3) is welded on the side wall of the base (1) through a support, a second threaded rod (31) is welded on an output shaft of the second driving motor (3), the second threaded rod (31) is connected with the base (1) through a bearing in a penetrating and rotating mode, threads with opposite rotating directions are arranged at two ends of the second threaded rod (31), first sliding blocks (32) are connected at two ends of the second threaded rod (31) in a threaded mode, a lower fixing seat (33) is welded on the upper wall of each first sliding block (32), each lower fixing seat (33) is connected with a connecting rod (34) through a pin shaft in a rotating mode, and the intersections of the connecting rods (34), every connecting rod (34) are kept away from and are corresponded the one end of lower fixing base (33) all is connected with fixing base (35), every through the round pin axle rotation go up fixing base (35) upper wall and all have welded second slider (36), every the common sliding connection of second slider (36) has lifter plate (6), the welding of lifter plate (6) lateral wall has third slider (5), third slider (5) sliding connection has stand (4), stand (4) and base (1) roof welding, be provided with on lifter plate (6) and place case (7).
2. The lifting mechanism for stacking textiles, as claimed in claim 1, wherein a mounting groove (104) is formed in the base (1), a plurality of first threaded rods (21) are threadedly connected to a top wall of the moving device (2), each first threaded rod (21) is rotatably connected to the base (1) through a bearing and extends into the mounting groove (104), a first gear (22) is interference-fitted to one end of each first threaded rod (21) located in the mounting groove (104), a second gear (23) is engaged with each first gear (22), a driven shaft (24) is interference-fitted to the second gear (23), the driven shaft (24) is rotatably connected to the top wall of the mounting groove (104) through a bearing, a worm wheel (25) is interference-fitted to the driven shaft (24), and a worm (26) is engaged with the worm wheel (25), worm (26) interference fit has axis of rotation (27), axis of rotation (27) are run through the rotation with base (1) through the bearing and are connected, base (1) lateral wall has first driving motor (28) through the scaffold weldment, the output shaft and the axis of rotation (27) welding of first driving motor (28).
3. The textile stacking lifting mechanism according to claim 1, wherein a connecting column (8) is welded to the top wall of the placing box (7), a box cover (71) is rotatably connected to the placing box (7) through a hinge, a fixing block (73) is welded to the top wall of the box cover (71), a mounting plate (74) is welded to the top wall of the placing box (7), a plurality of fixing pins (75) are slidably connected to the mounting plate (74) in a penetrating manner, each fixing pin (75) is slidably connected to the top wall of the placing box (7) in a penetrating manner, a plurality of springs (76) are arranged between the mounting plate (74) and the placing box (7), and an operating block (77) is bonded to one end, far away from the fixing block (73), of each fixing pin (75).
4. The lifting mechanism for stacking textiles according to claim 2, wherein said first threaded rod (21) and said first gear (22) are symmetrically arranged in at least four groups, and a plurality of universal wheels (29) are welded to the bottom wall of said moving device (2).
5. The lifting mechanism for stacking textiles as claimed in claim 3, wherein a plurality of rollers (78) are disposed on the inner bottom wall of the placing box (7) and the side walls of the box cover (71), and rubber pads (79) are adhered to the inner side walls of the placing box (7).
6. The textile stacking lifting mechanism of claim 2, wherein a plurality of fixing devices (101) are welded on the side wall of the base (1), a supporting column (102) is welded on the bottom wall of each fixing device (101), and a non-slip mat (103) is adhered on the bottom wall of each supporting column (102).
7. The lifting mechanism for stacking textiles according to claim 1, wherein a second sliding groove (61) is formed in a bottom wall of the lifting plate (6), the second slider (36) is slidably connected with the lifting plate (6) through the second sliding groove (61), a first sliding groove (41) is formed in one side of the upright post (4) close to the lifting plate (6), and the third slider (5) is slidably connected with the upright post (4) through the first sliding groove (41).
8. A lifting mechanism for textile stacking according to claim 7, wherein the second slider (36) and the third slider (5) are both sliders with T-shaped cross sections, and the first sliding groove (41) and the second sliding groove (61) are both T-shaped sliding grooves.
9. A lifting mechanism for textile stacking according to claim 6, wherein the first driving motor (28) is a Y355L1-2 motor, the second driving motor (3) is a Y315L2-2 motor, and the fixing means (101) are provided in at least two sets on each side wall of the base (1).
CN202020491233.7U 2020-04-07 2020-04-07 Lifting mechanism for stacking textiles Expired - Fee Related CN212076292U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020491233.7U CN212076292U (en) 2020-04-07 2020-04-07 Lifting mechanism for stacking textiles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020491233.7U CN212076292U (en) 2020-04-07 2020-04-07 Lifting mechanism for stacking textiles

Publications (1)

Publication Number Publication Date
CN212076292U true CN212076292U (en) 2020-12-04

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Application Number Title Priority Date Filing Date
CN202020491233.7U Expired - Fee Related CN212076292U (en) 2020-04-07 2020-04-07 Lifting mechanism for stacking textiles

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CN (1) CN212076292U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113306081A (en) * 2021-05-25 2021-08-27 苏州市奇强工业设备工程有限公司 Frame injection mold for aviation
CN113478100A (en) * 2021-07-16 2021-10-08 东莞市欣莹机械有限公司 Laser cutting machine frame

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113306081A (en) * 2021-05-25 2021-08-27 苏州市奇强工业设备工程有限公司 Frame injection mold for aviation
CN113478100A (en) * 2021-07-16 2021-10-08 东莞市欣莹机械有限公司 Laser cutting machine frame

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Granted publication date: 20201204

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