CN209711745U - A kind of oil-free lever autobalance adjustment pressing device of sole press machine - Google Patents
A kind of oil-free lever autobalance adjustment pressing device of sole press machine Download PDFInfo
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- CN209711745U CN209711745U CN201920432136.8U CN201920432136U CN209711745U CN 209711745 U CN209711745 U CN 209711745U CN 201920432136 U CN201920432136 U CN 201920432136U CN 209711745 U CN209711745 U CN 209711745U
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- block
- lever
- oil
- press machine
- autobalance
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Abstract
The utility model discloses a kind of oil-free lever autobalances of sole press machine to adjust pressing device, including obliquity sensor, LCD display and the first pressing block, the obliquity sensor is mounted on lever block by screw, and lever block right end bottom welds together with the first hinged block, lever block left end bottom welds together with the second hinged block simultaneously, the middle part of lever block and strut pass through together with bolted splice, and lever block is hinged by the first hinged block and driving lever, driving lever is arranged across position-limiting tube simultaneously, rack gear is welded on driving lever, and rack gear is adapted with the size of driving gear.The oil-free lever autobalance of the sole press machine adjusts pressing device, driving lever drives the right end of lever block to pull down, and the left end of lever block moves up, and telescopic rod and threaded rod are moved up, so just there are enough spaces to take out shoes, is put into the shoes that another needs to press bottom.
Description
Technical field
The utility model relates to sole press machine equipment science and technology technical field, specially a kind of oil-free lever of sole press machine is put down automatically
Weighing apparatus adjustment pressing device.
Background technique
For shoe-making industry, the molding and combination of general sole and footwear material are mainly pressurizeed using sole press machine
Molding, the wall pressure holding mechanism and the compression bar for pressing down shoes that the primary structure of sole press machine is just included on board, wall pressure
Holding mechanism all is to include many to compress block, after being put into shoes inside the external member inside big seat, by power mechanism for compressing
Block transmission, when shoes, which compress work, to be completed, forward press and rear compression bar need to tilt and remove shoes rest area, to press
Good shoes take out, and this structure is easily damaged, is influenced the working efficiency of sole press machine using of long duration.
In order to solve disadvantage existing currently on the market, it is badly in need of improving the technology of sole press machine device.
Utility model content
The technical issues of the utility model solves is that the forward press of the prior art and rear compression bar is overcome to need to tilt removal
Shoes rest area, so that the shoes pressed take out, this structure is easily damaged, is influenced sole press machine using of long duration
The defects of working efficiency, provides a kind of oil-free lever autobalance adjustment pressing device of sole press machine.The lever block, servo electricity
There is telescopic rod and threaded rod to move up for machine and mobile station, so just have enough spaces to take out shoes, increase sole press machine
Working efficiency the features such as.
To achieve the above object, the utility model provides the following technical solutions: a kind of oil-free lever of sole press machine is put down automatically
Weighing apparatus adjustment pressing device, including obliquity sensor, LCD display and the first pressing block, the obliquity sensor are pacified by screw
On lever block, and lever block right end bottom welds together with the first hinged block, while lever block left end bottom and second
Hinged block welds together, the middle part of lever block and strut by bolted splice together with, and lever block passes through the first hinged block
It is hinged with driving lever, while driving lever is arranged across position-limiting tube, is welded with rack gear, and rack gear and driving tooth on driving lever
The size of wheel is adapted, while driving gear is mutually fixed by the rotor of bolt and servo motor, and servo motor is solid by base
It is scheduled on the bracket of body, and is welded with first sliding groove on bracket, while first sliding groove is adapted with the size of the first sliding block, the
One sliding block and limiting device are integrally formed, and the bottom side end of limiting device and driving lever welds together;
The LCD display is mounted on body by bolt, and LCD display and PLC controller are electrically connected, simultaneously
PLC controller and battery are electrically connected, and workbench is mounted on body, and slot is welded on workbench, movable slider and are inserted
Plate is integrally formed, and the right side of movable slider is fixed together with mobile station, while mobile station bottom is welded with the second sliding block, and second
Sliding block is adapted with the size of second sliding slot, and mobile station and the drop bar of stretching of telescopic cylinder are bolted on together, fixed slider
It is fixedly installed togather with slot;
First pressing block is hinged by pin and telescopic rod, and telescopic rod is plugged on inside forward press, together
When forward press pass through portal frame and weld together with link block, threaded rod is screwed onto the inside of rear compression bar, and the weldering of threaded rod bottom
It is connected to the second pressing block, while rear compression bar passes through portal frame and welds together with link block.
Preferably, the obliquity sensor is electrically connected with PLC controller, and the model of obliquity sensor
HT2DXXX-S07 can measure the tilt angle of lever block, and the inclining lever block by way of electrical by obliquity sensor
Rake angle information passes to PLC controller, inclined angle is needed by the way that lever block is arranged in PLC controller in advance, to control
The rotor of servo motor processed rotates forward or the time of reversion.
Preferably, the driving gear is engaged with rack together, and servo motor and PLC controller are electrically connected at one
It rising, while the model 90ST-M02430 of servo motor, driving gear drives the rack gear being meshed therewith to move up and down,
First sliding block slips inside first sliding groove, the effect for being limited and being oriented to driving lever.
Preferably, the limiting device is that the L shape dress being made by 304 stainless steel materials is set, and the first sliding block is slipped
The inside of one sliding slot.
Preferably, the telescopic rod is stretching structure, and threaded rod is stretching structure, while the second pressing block is by silicon rubber
The circular apparatus that glue material matter is made into.
Preferably, the model ZQ4395 of the telescopic cylinder, and the model S7-200 of PLC controller.
Preferably, the mobile station and movable slider are movable setting, and mobile station is slipped by the second sliding block second
Inside sliding slot, the elevating lever of telescopic cylinder pulls back plate toward post-tensioning, and the second sliding block on the downside of mobile station slips sliding second
Limit and guiding are played the role of in the inside of slot, and movable slider carries out extruding work under the drive of mobile station, to shoes.
Compared with prior art, the utility model has the beneficial effects that
1. driving gear drives the rack gear being meshed therewith to move up and down, the first sliding block slips in first sliding groove
Portion, the effect that driving lever is limited and is oriented to;
2. servo motor invert, driving lever drive lever block right end pull down, while drive telescopic rod and threaded rod to
Upper movement so just has enough spaces to take out shoes, is put into the shoes that another needs to press bottom, and structure is simple, convenient for real
It is existing;
3. the second pressing block is silicone rubber material, scratch, the work of threaded rod and the first pressing block will not be caused to line face
Length can cooperate the height of shoes to be adjusted.
Detailed description of the invention
Fig. 1 is the utility model structure schematic elevation view;
Fig. 2 is the utility model structure link block side schematic view;
Fig. 3 is the utility model structure plate and slot top view;
Fig. 4 is enlarged diagram at the utility model structure A;
Fig. 5 is the utility model structure driving gear and rack gear schematic diagram.
Figure label: 1, obliquity sensor, 2, lever block, the 3, first hinged block, 4, driving lever, 5, strut, 6, position-limiting tube,
7, servo motor, 8, driving gear, 9, rack gear, the 10, first sliding block, 11, limiting device, 12, first sliding groove, 13, LCD shows
Screen, 14, body, 15, PLC controller, 16, workbench, 17, movable slider, 18, plate, 19, slot, the 20, first pressing block, 21,
Telescopic rod, 22, forward press, 23, link block, the 24, second hinged block, 25, rear compression bar, 26, threaded rod, the 27, second pressing block,
28, telescopic cylinder, 29, mobile station, the 30, second sliding block, 31, second sliding slot, 32, fixed slider.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
Fig. 1-5 is please referred to, the utility model provides a kind of technical solution: a kind of oil-free lever autobalance tune of sole press machine
Whole pressing device, including obliquity sensor 1, LCD display 13 and the first pressing block 20, obliquity sensor 1 are installed by screw
On lever block 2, and 2 right end bottom of lever block welds together with the first hinged block 3, while 2 left end bottom of lever block and the
Two hinged blocks 24 weld together, and obliquity sensor 1 is electrically connected with PLC controller 15, and the type of obliquity sensor 1
Number be HT2DXXX-S07, the middle part of lever block 2 and strut 5 by bolted splice together with, and lever block 2 by first hingedly
Block 3 and driving lever 4 are hinged, while driving lever 4 is arranged across position-limiting tube 6, are welded with rack gear 9, and rack gear on driving lever 4
9 are adapted with the size of driving gear 8, while driving gear 8 is mutually fixed by the rotor of bolt and servo motor 7, driving tooth
Wheel 8 meshes together with rack gear 9, and servo motor 7 is electrically connected with PLC controller 15, while the type of servo motor 7
Number be 90ST-M02430, servo motor 7 is fixed on the bracket of body 14 by base, and first sliding groove is welded on bracket
12, while first sliding groove 12 is adapted with the size of the first sliding block 10, the first sliding block 10 is integrally formed with limiting device 11, and is limited
Position device 11 and the bottom side end of driving lever 4 weld together;Limiting device 11 is the L shape dress being made by 304 stainless steel materials
It sets, and the first sliding block 10 is slipped in the inside of first sliding groove 12, LCD display 13 is mounted on body 14 by bolt, and LCD
Display screen 13 and PLC controller 15 are electrically connected, while PLC controller 15 and battery are electrically connected, and workbench 16 is mounted on
On body 14, and slot 19 is welded on workbench 16, movable slider 17 and plate 18 are integrally formed, and the right side of movable slider 17 with
Mobile station 29 is fixed together, while 29 bottom of mobile station is welded with the second sliding block 30, the second sliding block 30 and second sliding slot 31
Size is adapted, and mobile station 29 and the drop bar of stretching of telescopic cylinder 28 are bolted on together, mobile station 29 and movable slider 17
It is movable setting, and mobile station 29 is slipped inside second sliding slot 31 by the second sliding block 30, the model of telescopic cylinder 28
ZQ4395, and the model S7-200 of PLC controller 15, fixed slider 32 are fixedly installed togather with slot 19;First pressing block
20 is hinged by pin and telescopic rod 21, and telescopic rod 21 is plugged on inside forward press 22, while forward press 22 passes through
Portal frame welds together with link block 23, and telescopic rod 21 is stretching structure, and threaded rod 26 is stretching structure, while second presses
Closing block 27 is the circular apparatus being made by silicone rubber material, and threaded rod 26 is screwed onto the inside of rear compression bar 25, and 26 bottom of threaded rod
Portion is welded with the second pressing block 27, while rear compression bar 25 passes through portal frame and welds together with link block 23;
It is as shown in Figs. 1-3: the tilt angle of lever block 2 can be measured by obliquity sensor 1, and will by way of electrical
The tilt angle information of lever block 2 passes to PLC controller 15, is needed by the way that lever block 2 is arranged in PLC controller 15 in advance
Inclined angle improves the work of lever block 2 and servo motor 7 to control the time that the rotor of servo motor 7 is rotated forward or inverted
Make efficiency, realizes the self balancing effect of lever block 2, structure is simple, is easy to implement;
As shown in Figs. 1-5: the rotor rotation of servo motor 7 drives the driving gear 8 mutually fixed therewith to be rotated, actively
Gear 8 drives the rack gear 9 being meshed therewith to move up and down, and the first sliding block 10 slips inside first sliding groove 12, to actively
The effect that bar 4 is limited and is oriented to.
Working principle: it in lever autobalance adjustment pressing device oil-free using the sole press machine, will press
The shoes that basic skill or training makees are put between fixed slider 32 and movable slider 17, and telescopic cylinder 28 is opened, and the elevating lever of telescopic cylinder 28 is past
Post-tensioning pulls back plate 18, and the second sliding block 30 of the downside of mobile station 29 is slipped in the inside of second sliding slot 31, play limit and
The effect of guiding, movable slider 17 carry out extruding work under the drive of mobile station 29, to shoes, then open servo motor 7,
The rotor rotation of servo motor 7 drives the driving gear 8 mutually fixed therewith to be rotated, and the drive of driving gear 8 is meshed therewith
Rack gear 9 move up and down, the first sliding block 10 slips inside first sliding groove 12, and driving lever 4 is limited and is oriented to
Effect, under the action of driving gear 8, driving lever 4 is moved up, and drives the right end of lever block 2 to move up, therewith lever block
2 left end moves down, and link block 23 drives the forward press 22 and rear compression bar 25 mutually fixed therewith to move down, the first pressing block
20 pairs of shoe trees carry out pressure basic skill or training and make, while the second pressing block 27 carries out pressing work to vamp, and the second pressing block 27 is silicon rubber
Material, will not cause scratch to line face, the active length of threaded rod 26 and the first pressing block 20 can cooperate the height of shoes into
Row is adjusted, while the press block of shoes two sides, carries out pressing work to shoes side, this is the prior art, is repeated no more, and shoes are worked as
After son pressing is good, for convenience of shoes are taken out, servo motor 7 is inverted, and driving lever 4 drives the right end of lever block 2 to pull down,
The left end of lever block 2 moves up, and telescopic rod 21 and threaded rod 26 are moved up, and so just has enough spaces to take shoes
Out, the shoes that another needs to press bottom are put into, here it is the oil-free lever autobalance adjustment pressing device work of the sole press machine
Whole process.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.
Claims (7)
1. a kind of oil-free lever autobalance of sole press machine adjusts pressing device, including obliquity sensor (1), LCD display
(13) and the first pressing block (20), it is characterised in that: the obliquity sensor (1) is mounted on lever block (2) by screw, and
Lever block (2) right end bottom welds together with the first hinged block (3), while lever block (2) left end bottom and the second hinged block
(24) weld together, the middle part of lever block (2) and strut (5) by bolted splice together with, and lever block (2) passes through first
Hinged block (3) and driving lever (4) are hinged, while driving lever (4) is arranged across position-limiting tube (6), and driving lever welds on (4)
Have rack gear (9), and rack gear (9) is adapted with the size of driving gear (8), while driving gear (8) passes through bolt and servo electricity
The rotor of machine (7) is mutually fixed, and servo motor (7) is fixed on the bracket of body (14) by base, and is welded on bracket
One sliding slot (12), while first sliding groove (12) is adapted with the size of the first sliding block (10), the first sliding block (10) and limiting device
(11) it is integrally formed, and limiting device (11) and the bottom side end of driving lever (4) weld together;
The LCD display (13) is mounted on body (14) by bolt, and LCD display (13) and PLC controller (15)
It is electrically connected, while PLC controller (15) and battery are electrically connected, workbench (16) is mounted on body (14), and is worked
It is welded on platform (16) slot (19), movable slider (17) and plate (18) are integrally formed, and the right side of movable slider (17) and movement
Platform (29) is fixed together, while mobile station (29) bottom is welded with the second sliding block (30), the second sliding block (30) and second sliding slot
(31) size is adapted, and the drop bar of stretching of mobile station (29) and telescopic cylinder (28) is bolted on together, fixed slider
(32) it is fixedly installed togather with slot (19);
First pressing block (20) is hinged by pin and telescopic rod (21), and telescopic rod (21) is plugged on forward press
(22) internal, while forward press (22) passes through portal frame and welds together with link block (23), threaded rod (26) is pressed after being screwed onto
The inside of bar (25), and threaded rod (26) bottom is welded with the second pressing block (27), at the same rear compression bar (25) pass through portal frame with
Link block (23) welds together.
2. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The obliquity sensor (1) is electrically connected with PLC controller (15), and the model of obliquity sensor (1)
HT2DXXX-S07。
3. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The driving gear (8) meshes together with rack gear (9), and servo motor (7) and PLC controller (15) are electrically connected at one
It rises, while the model 90ST-M02430 of servo motor (7).
4. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The limiting device (11) is that the L shape dress being made by 304 stainless steel materials is set, and the first sliding block (10) is slipped in first sliding groove
(12) inside.
5. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The telescopic rod (21) is stretching structure, and threaded rod (26) is stretching structure, while the second pressing block (27) is by silicon rubber
The circular apparatus that material is made into.
6. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The model ZQ4395 of the telescopic cylinder (28), and the model S7-200 of PLC controller (15).
7. the oil-free lever autobalance of a kind of sole press machine according to claim 1 adjusts pressing device, it is characterised in that:
The mobile station (29) and movable slider (17) are movable setting, and mobile station (29) is slipped by the second sliding block (30) second
Sliding slot (31) is internal.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920432136.8U CN209711745U (en) | 2019-04-02 | 2019-04-02 | A kind of oil-free lever autobalance adjustment pressing device of sole press machine |
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CN201920432136.8U CN209711745U (en) | 2019-04-02 | 2019-04-02 | A kind of oil-free lever autobalance adjustment pressing device of sole press machine |
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CN209711745U true CN209711745U (en) | 2019-12-03 |
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CN201920432136.8U Expired - Fee Related CN209711745U (en) | 2019-04-02 | 2019-04-02 | A kind of oil-free lever autobalance adjustment pressing device of sole press machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112107083A (en) * | 2020-09-28 | 2020-12-22 | 孙国花 | Sole compression fittings for shoes preparation |
-
2019
- 2019-04-02 CN CN201920432136.8U patent/CN209711745U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112107083A (en) * | 2020-09-28 | 2020-12-22 | 孙国花 | Sole compression fittings for shoes preparation |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CP02 | Change in the address of a patent holder | ||
CP02 | Change in the address of a patent holder |
Address after: 362000 No.47, Shanglin village, Dongyuan Town, Quanzhou Taiwan investment zone, Quanzhou City, Fujian Province Patentee after: Quanzhou Taichuang Machinery Technology Co.,Ltd. Address before: 362218 the second row of Liuyuan flood discharge Road, yangdai Village North District, Chendai Town, Jinjiang City, Quanzhou City, Fujian Province Patentee before: Quanzhou Taichuang Machinery Technology Co.,Ltd. |
|
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20191203 |