CN115137127B - Open type footwear folding-resistant experimental instrument system - Google Patents

Open type footwear folding-resistant experimental instrument system Download PDF

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Publication number
CN115137127B
CN115137127B CN202210712643.3A CN202210712643A CN115137127B CN 115137127 B CN115137127 B CN 115137127B CN 202210712643 A CN202210712643 A CN 202210712643A CN 115137127 B CN115137127 B CN 115137127B
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shoe
fixedly connected
groove
block
shoes
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CN115137127A (en
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单志敏
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Yearcon Co Ltd
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Yearcon Co Ltd
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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D1/00Foot or last measuring devices; Measuring devices for shoe parts
    • A43D1/08Measuring devices for shoe parts

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  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Abstract

The invention relates to the technical field of a folding-resistant experimental instrument for shoes, in particular to a folding-resistant experimental instrument system for open shoes, which comprises a case, wherein a display cavity with a forward opening is arranged in the case, the rear wall of the display cavity is fixedly connected with a support column, and the top of the support column is provided with a sample shoe fixing mechanism which can fix sample shoes needing to be displayed and operated and is convenient to operate through two connecting rods with symmetrical left and right positions; the utility model provides a sample shoes fixed establishment, inside fixed block is the fixed block of controlling or front and back position symmetry entirely, and the shoes body fixed block of front and back position symmetry is reverse simultaneous movement, can be fine with sample shoes with the position pendulum in fixed time, the operation of folding endurance test after the convenience ensures that folding endurance test's position is close with the position that needs the experiment, reduces experimental error, reaches experimental purpose and effect.

Description

Open type footwear folding-resistant experimental instrument system
Technical Field
The invention relates to the technical field of a folding endurance tester for shoes, in particular to a folding endurance tester system for open shoes.
Background
The folding endurance of the shoes is always a key problem affecting the quality of the shoes, and the detection of the folding endurance is mainly to test the shoes in a state of continuous walking and observe whether new cracks are generated on the uppers, whether the uppers are glued or not, and the like because of walking; the quality of the sole directly influences the quality level of the shoe, so that the folding endurance of the shoe is researched, and the improvement of the folding endurance quality can play a certain role in promoting the development of the whole shoe making industry.
However, after the ordinary folding-resistant test is carried out in a laboratory, the test result is not presented to society, the purchasing personnel cannot test the folding resistance of the shoes on site, and the situation of fake data and the like exists in the market at present, so that the masses cannot trust the result on paper, the masses cannot distinguish the quality of the shoes, and the sales force of partial real shoes is reduced.
Disclosure of Invention
It is an object of the present invention to provide a disclosed footwear fold-resistant tester system that overcomes the above-identified deficiencies in the prior art.
The invention discloses a folding-resistant shoes tester system, which comprises a case, wherein a display cavity with a forward opening is arranged in the case, a support column is fixedly connected to the rear wall of the display cavity, a sample shoe fixing mechanism which can fix sample shoes requiring display operation and is convenient to operate is arranged at the top of the support column through two connecting rods with symmetrical left and right positions, a secondary fixing mechanism which can play a role in secondarily fixing the sample shoes in folding-resistant experiments is arranged on the rear wall of the display cavity on the upper side of the sample shoe fixing mechanism, an extension block is fixedly connected to the right side of the case, a foot treading mechanism which can convert the kinetic energy of downwards treading of feet into the folding-resistant experimental kinetic energy is arranged in the case and a shoe cleaning cavity with a forward opening is arranged in the case, and a shoe cleaning mechanism which can simply clean the surfaces of shoes is arranged in the shoe cleaning cavity.
Preferably, the appearance shoes fixed establishment includes with the left side connecting rod roof fixed connection's left side fixed station and with the right side fixed station of connecting rod roof laminating, the left side fixed station with the right side fixed station rotates to be connected, fixedly connected with two symmetrical stay cords in position on the wall around the right side fixed station, install the pulling experiment mechanism that can assist user self to carry out the experiment on the stay cord, left side fixed station left side wall fixedly connected with shoe head fixed block, be equipped with the fixed spout that runs through from top to bottom in the right side fixed station, sliding connection in the fixed spout with right side fixed station passes through first spring fixed connection's shoe tail fixed block, the left side fixed station with all be equipped with two upper and lower position symmetry and opening outside second fixed chute on the right side fixed station, sliding connection has the shoe body fixed block in the second fixed chute, be equipped with in the second run through the shoe body fixed block and with the first axle of shoe body fixed block threaded connection's front and back body fixed block, two screw threads in the second fixed axle threaded connection has the front and back side is threaded connection in the opposite.
Preferably, the secondary fixing mechanism comprises a storage cavity which is fixedly arranged on the back wall of the display cavity and is provided with a front opening, a fixing rod which can rotate to the upper side of the sample shoe fixing machine is arranged in the storage cavity, two first rotating grooves which are symmetrical in position are formed in the left and right wall of the storage cavity, a first rotating shaft which is fixedly connected with the fixing rod is connected between the left and right rotating grooves, a first clamping groove with an upward opening is formed in the first rotating shaft and is positioned in the first rotating groove, a first clamping block is connected in the first clamping groove in a sliding manner through a second spring, the front wall and the back wall of the first rotating groove are communicated with the second clamping groove which is communicated with the first clamping groove, and a pushing block which can cancel the first clamping block entering the second clamping groove to be pushed out and blocked is connected in a sliding manner in the second clamping groove.
Preferably, the pulling experiment mechanism comprises a total pull rope which is fixedly connected with two stretching tops at the same time, a reversing column is fixedly connected to the upper side of the right side fixing table, and the total pull rope extends to the outer part of the left side of the chassis after passing through the reversing column and is fixedly connected with a pull ring with a certain weight.
Preferably, the foot pedal mechanism comprises a linkage groove fixedly arranged in the case and the extension block, a second threaded shaft extending to the display cavity is rotationally connected to the bottom of the linkage groove in the case, a chute communicated with the display cavity is arranged in the case, a pushing block extending to the display cavity and in sliding connection with the chute is connected to the second threaded shaft in a threaded manner, the pushing block is positioned on the lower side of the right side fixing table, a silica gel pad is fixedly connected to the top of the pushing block, the pushing block is in sliding connection with the chute through a third spring, a third threaded shaft is rotationally connected to the bottom of the linkage groove in the extension block, a pedal block is connected to the third threaded shaft in a threaded manner, an upward opening groove is formed in the top of the extension block, a positioning column is fixedly connected to the pedal block in the groove in a sliding manner, the pedal block is fixedly connected to the bottom of the groove through a fourth spring, and the second threaded shaft and the third threaded shaft are in a belt pulley through a belt.
Preferably, the shoe-cleaning mechanism comprises a third chute fixedly arranged on the bottom wall of the shoe-cleaning cavity, the bottom wall of the third chute is fixedly connected with an inductor, an auxiliary column extending into the shoe-cleaning cavity is connected in the third chute through a fifth spring in a sliding manner, two symmetrical vibrators are fixedly connected to the bottom wall of the shoe-cleaning cavity on the left side and the right side of the auxiliary column, the auxiliary column is fixedly connected with a stepping block through a silica gel column, the top of the shoe-cleaning cavity is fixedly connected with a wiping block internally provided with a second inductor through a telescopic rod, a wiping sponge is sleeved outside the wiping block, two water storage cavities with symmetrical left and right positions are fixedly arranged on the upper side of the shoe-cleaning cavity, the water storage cavities are communicated with the outside through a connecting water inlet groove, a first connecting pipe provided with a valve in a communicating manner is communicated with the inside the water storage cavities, two connecting pipes with a second connecting pipe provided with symmetrical left and right positions and communicated with the left wall of the shoe-cleaning cavity, and a fog-making spray nozzle is fixedly connected to the outlet end of the second connecting pipe in the shoe cavity.
Preferably, the front part of the display cavity is rotatably connected with a glass closing plate, and the front wall of the case is fixedly provided with a display panel.
The beneficial effects of the invention are as follows:
first: the sample shoe fixing mechanism is arranged in the invention, the inner fixing blocks are all fixing blocks with symmetrical left and right or front and back positions, and the shoe body fixing blocks with symmetrical front and back positions move reversely and simultaneously, so that the sample shoe can be well fixed and the positions of the sample shoe can be adjusted, the operation of a later folding endurance test is convenient, the folding endurance test position is ensured to be similar to the position to be tested, the experimental error is reduced, and the experimental purpose and effect are achieved;
second,: the second fixing mechanism is arranged in the invention, and the fixing rod is fixedly clamped above the sample shoes, so that the position design is fixedly arranged above the position to be detected for folding resistance, the folding position is ensured to be close to the preset position of the experiment, and the second fixing function is realized, thereby preventing the sample shoes from being separated from the fixing table in the operation of the folding resistance experiment and ensuring the experiment to be carried out smoothly;
third,: the pull experiment mechanism is arranged in the invention, an observer can drive the total stay rope to move by manually pulling the pull ring, so that the right fixed table rotates upwards to realize one-time folding-resistant experiment, the observer can feel the hardness degree of the sample shoes through the stress of the hands, the quality of the shoes is more clearly understood, meanwhile, the folding-resistant experiment is carried out in person, the reliability is better than that of directly watching the experiment result, the trust of the observer on the quality of the shoes is improved, and the observer can also replace the operator at will, so that the experiment is more transparent and popular;
fourth,: the invention is internally provided with the pedal mechanism, an observer can realize the starting of the folding-resistant experiment through downwards stepping of the foot, simple foot movement is converted into experimental kinetic energy, the experiment can be more labor-saving and convenient, the experiment can be carried out for many times in a short time, the labor is saved and the application range is wider than that of pulling the experiment mechanism, the silica gel pad arranged at the top of the pushing block is used for preventing the right fixed table from colliding with the pushing block during resetting, the unnecessary damage of internal machinery is avoided, and the service life is prolonged;
fifth,: the shoe polishing structure is arranged in the shoe polishing device, a user can automatically and simply wipe the shoes through a machine, the hands are liberated, the effect of relaxing feet is achieved in the vibration process, the whole device is started through the induction of the inductor, the danger possibly caused by the fact that the shoe is ready to be started is avoided, meanwhile, cleaning liquid is sprayed out through the fog making spray nozzle, the humidity of other parts except the shoes of the user is reduced, and the influence is reduced;
sixth: the display panel displays the starting times of the folding-resistant experiment, and the closing plate is a glass panel, so that the observation record of the sample shoes is facilitated, and the experimental result is more visual, public and fair.
Drawings
FIG. 1 is a schematic view of the appearance of the present invention;
FIG. 2 is a schematic view of the internal structure of the present invention;
FIG. 3 is a schematic top view of the sample shoe retaining mechanism of FIG. 2 according to the present invention;
FIG. 4 is an enlarged partial schematic view of the second shaft of FIG. 2 in accordance with the present invention;
FIG. 5 is a schematic top view of the second shaft of FIG. 4 after the second shaft is locked;
FIG. 6 is an enlarged schematic view of a portion of the inductor of FIG. 2 in accordance with the present invention;
FIG. 7 is a schematic view of the second connecting tube of FIG. 2 in accordance with the present invention;
fig. 8 is an enlarged partial schematic view of the tread block of fig. 2 in accordance with the present invention.
In the figure:
11. a chassis; 12. an extension block; 13. a display cavity; 14. a reversing column; 15. a total pull rope; 16. a pull rope; 17. a storage chamber; 18. a fixed rod; 19. a first rotating groove; 20. a first rotating shaft; 22. a first clamping groove; 23. a second spring; 24. a first clamping block; 25. a second clamping groove; 26. a push-out block; 27. a support column; 28. a connecting rod; 29. a left side fixing table; 30. a toe cap fixing block; 31. a right side fixing table; 32. a shoe tail fixing block; 33. a second fixed chute; 34. a first spring; 35. a fixed chute; 36. shoe body fixing blocks; 37. a first threaded shaft; 38. rotating the handle; 39. a linkage groove; 40. a second threaded shaft; 41. a chute; 42. a pushing block; 43. a silica gel pad; 45. a third spring; 46. a belt pulley; 47. a third threaded shaft; 48. a groove; 49. positioning columns; 50. a fourth spring; 51. stepping blocks; 54. a water storage cavity; 56. a water inlet tank; 57. a shoe-cleaning cavity; 58. a telescopic rod; 59. a wipe block; 60. wiping the sponge; 61. a second inductor; 62. an auxiliary column; 63. a vibrator; 64. a third chute; 65. an inductor; 66. a fifth spring; 67. stepping the block; 68. a silica gel column; 69. a valve; 70. a first connection pipe; 71. a second connection pipe; 72. a fog producing spray head; 73. a glass closing plate; 74. a display panel; 101. a sample shoe fixing mechanism; 102. a secondary fixing mechanism; 103. pulling the experimental mechanism; 104. a foot pedal mechanism; 105. a shoe-cleaning mechanism.
Detailed Description
In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the one shown in fig. 2, are merely for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention. The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-8, a disclosed folding-resistant footwear tester system according to an embodiment of the present invention includes a chassis 11, a display cavity 13 with a forward opening is provided in the chassis 11, a support column 27 is fixedly connected to a rear wall of the display cavity 13, a sample footwear fixing mechanism 101 capable of fixing a sample footwear to be displayed and operated for operation is mounted at a top of the support column 27 through two connecting rods 28 with symmetrical left and right positions, a secondary fixing mechanism 102 capable of fixing a sample footwear for a second time in a folding-resistant experiment is provided on a rear wall of the display cavity 13 on an upper side of the sample footwear fixing mechanism 101, an extension block 12 is fixedly connected to a right side of the chassis 11, a foot mechanism 104 capable of converting kinetic energy of foot stepping downward into folding-resistant kinetic energy is mounted in the chassis 11, a shoe polishing cavity 57 with a forward opening is provided in the chassis 11, and a shoe polishing mechanism 105 capable of cleaning a surface of a wearing footwear is mounted in the shoe polishing cavity 57.
In this embodiment, the sample shoe fixing mechanism 101 includes a left side fixing table 29 fixedly connected with the top wall of the connecting rod 28 on the left side and a right side fixing table 31 attached to the top wall of the connecting rod 28 on the right side, the left side fixing table 29 is rotatably connected with the right side fixing table 31, two pull ropes 16 with symmetrical positions are fixedly connected to the front and rear walls of the right side fixing table 31, a pulling experiment mechanism 103 capable of assisting a user to perform an experiment is mounted on the pull ropes 16, a shoe head fixing block 30 is fixedly connected to the left wall of the left side fixing table 29, a fixing chute 35 penetrating through the left side fixing table 31 from top to bottom is provided in the right side fixing table 31, a shoe tail fixing block 32 fixedly connected with the right side fixing table 31 through a first spring 34 is slidably connected in the fixing chute 35, two second fixing chutes 33 with symmetrical upper and lower positions and opening outwards are respectively provided on the left side fixing table 29 and the right side fixing table 31, a shoe body fixing block 36 is slidably connected in the second fixing chute 33, a second shaft fixing block 36 is fixedly connected with the front end of the shoe body fixing block 36 through a first spring 34, and the second shaft fixing chute 36 is rotatably connected with the front shaft fixing block 37 through the first shaft 37.
In this embodiment, the secondary fixing mechanism 102 includes a storage cavity 17 fixed on the upper wall of the display cavity 13 and having a forward opening, a fixing rod 18 capable of rotating to the upper side of the sample shoe fixing mechanism 101 is disposed in the storage cavity 17, two symmetrical first rotating grooves 19 are disposed on the left and right walls of the storage cavity 17, a first rotating shaft 20 fixedly connected to the fixing rod 18 is rotatably connected between the left and right first rotating grooves 19, a first clamping groove 22 having an upward opening is disposed in the first rotating shaft 20 and located in the first rotating groove 19, a first clamping block 24 is slidably connected in the first clamping groove 22 through a second spring 23, the front and rear walls of the first rotating grooves 19 are communicated with the second clamping groove 25 capable of communicating with the first clamping groove 22, and a pushing block 26 capable of pushing out the first clamping block 24 entering the second clamping groove 25 is slidably connected in the second clamping groove 25.
In this embodiment, the pulling experiment mechanism 103 includes a total pulling rope 15 fixedly connected with the tops of the two pulling ropes 16, the upper side of the right fixing table 31 is fixedly connected with a reversing column 14, and the total pulling rope 15 extends to the outside of the left side of the chassis 11 after passing through the reversing column 14 and is fixedly connected with a pull ring with a certain weight.
In this embodiment, the foot step mechanism 104 includes a linkage groove 39 fixedly disposed in the chassis 11 and the extension block 12, the bottom of the linkage groove 39 disposed in the chassis is rotationally connected with a second threaded shaft 40 extending into the display cavity 13, a chute 41 communicated with the display cavity 13 is disposed in the chassis 11, a pushing block 42 extending into the display cavity 13 and slidingly connected with the chute 41 is screwed on the second threaded shaft 40, the pushing block 42 is disposed on the lower side of the right side fixing table 31, a silica gel pad 43 is fixedly connected to the top of the pushing block 42, the pushing block 42 is slidingly connected with the chute 41 through a third spring 45, the bottom of the linkage groove 39 disposed in the extension block 12 is rotationally connected with a third threaded shaft 47, a step block 51 is screwed on the third threaded shaft 47, a positioning post 49 slidingly connected with the step block 51 is fixedly connected in the chute 48, and the fourth spring 50 is fixedly connected with the bottom of the third threaded shaft 47 through a belt pulley 46.
In this embodiment, the shoe polishing mechanism 105 includes a third chute 64 fixedly disposed on the bottom wall of the shoe polishing cavity 57, the bottom wall of the third chute 64 is fixedly connected with an inductor 65, an auxiliary column 62 extending into the shoe polishing cavity 57 is slidably connected in the third chute 64 through a fifth spring 66, two symmetrical vibrators 63 are fixedly connected to the bottom wall of the shoe polishing cavity 57 on the left and right sides of the auxiliary column 62, a stepping block 67 is fixedly connected to the auxiliary column 62 through a silica gel column 68, a wiping block 59 internally provided with a second inductor 61 is fixedly connected to the top of the shoe polishing cavity 57 through a telescopic rod 58, a wiping sponge 60 is sleeved outside the wiping block 59, two symmetrical water storage cavities 54 are fixedly disposed on the upper side of the shoe polishing cavity 57, the water storage cavities 54 are communicated with the outside through a connecting inlet groove 56, a first connecting pipe 70 provided with a valve 69 is disposed in the inner communication of the two water storage cavities 54, two symmetrical positions are disposed on the bottom ends of the first connecting pipe 70, and a second connecting pipe 71 is fixedly connected to the inner end of the shoe polishing cavity 57.
In this embodiment, a glass closing plate 73 is rotatably connected to the front portion of the display cavity 13, and a display panel 74 is fixedly mounted on the front wall of the chassis 11;
the invention discloses a folding-resistant experimental instrument system for shoes, which comprises the following working procedures:
firstly, the showing cavity 13 is opened, the heel of the sample shoe to be tested is propped against the shoe tail fixing block 32 to move backwards to stretch the first spring 34, the sample shoe is completely dropped on the fixing table to reduce force, the sample shoe is driven to be clung to the toe cap fixing block 30 through shrinkage and reset of the first spring 34, the position of the sample shoe is initially fixed at the moment, and then the left and right rotary handles 38 are manually rotated to fix the sample shoe on the fixing table, so that the later operation and showing are facilitated;
after the position of the sample shoes is fixed, the fixing rod 18 is manually shifted downwards, the first rotating shaft 20 rotates, the first clamping groove 22 is communicated with the second clamping groove 25, the first clamping block 24 enters the second clamping groove 25, so that the fixing rod 18 is fixedly clamped above the sample shoes, the position is fixedly arranged above the position where the folding endurance needs to be detected, the secondary fixing function is realized, and the sample shoes are prevented from being separated from the fixing table in the folding endurance test operation;
after the sample shoes are placed and fixed, the display cavity 13 is closed, an observer can drive the main pull rope 15 to move by manually pulling the pull ring, so that the right fixed table 31 rotates upwards to realize one-time folding-resistant experiment, the observer can feel the hardness degree of the sample shoes through the stress of the hands, the quality of the shoes is more clearly understood, the experiment can be carried out for many times by pulling for many times, the experiment times are all operated according to the thought of the observer, the operator can be replaced, and the transparency popularization of the experiment is better realized;
the third threaded shaft 47 rotates by downwards stepping the stepping block 51 with feet, the third threaded shaft 47 drives the second threaded shaft 40 to rotate through the belt pulley 46, the second threaded shaft 40 rotates to drive the pushing block 42 to move upwards, so that the right fixed table 31 is pushed to rotate upwards, a folding endurance test is realized again, and the third spring 45 and the fourth spring 50 in the inner part are matched to help the pushing block 42 and the stepping block 51 to reset so as to facilitate the test work again;
when simple shoe cleaning work is required, firstly cleaning liquid and clean water are filled in the two water storage cavities 54, a user steps on the stepping block 67 to drive the auxiliary column 62 to move downwards to start the sensor 65, after the sensor 65 is started, the valve 69 on the cleaning liquid side is automatically started, then the fog making spray heads 72 on two sides are started to spray the cleaning liquid on the surface of shoes, after a certain time, the telescopic rod 58 is started to drive the wiping block 59 and the wiping sponge 60 to move downwards to the shoe surface, the movement of the wiping block 59 is stopped by the force felt by the second sensor 61, after the position of the wiping sponge 60 is determined, the vibrators 63 on two sides are started to drive the feet to vibrate for friction wiping, after wiping is finished, the telescopic rod 58 is started to reset, and the user takes out the feet for wiping alternatively;
the number of times of starting the folding-endurance test is displayed through the display panel 74, and the glass closing plate 73 is a glass panel, so that the observation record of the sample shoes is facilitated, and the test result is more visual, public and fair.
It will be apparent to those skilled in the art that various modifications to the above embodiments may be made without departing from the general spirit and concepts of the invention. Which fall within the scope of the present invention. The protection scheme of the invention is subject to the appended claims.

Claims (5)

1. The utility model provides a resistant experimental instrument system of shoes, includes quick-witted case (11), be equipped with display chamber (13) forward of opening in quick-witted case (11), display chamber (13) back wall fixedly connected with support column (27), sample shoes fixed establishment (101) that can be fixed with the sample shoes that need show operation are installed through two left and right position symmetry's connecting rod (28) at support column (27) top, be located sample shoes fixed establishment (101) upside display chamber (13) back wall is equipped with can play secondary fixed sample shoes effect's secondary fixed establishment (102) in resistant experiment, machine case (11) right side fixedly connected with extension piece (12), machine case (11) with install in extension piece (12) can be with the kinetic energy of foot down step into resistant experimental kinetic energy's foot step on mechanism (104), be equipped with opening forward shoe-cleaning chamber (57) in quick-witted case (11), install in shoe-cleaning establishment (105) that can clear up the shoe-cleaning surface of wearing shoes;
the sample shoe fixing mechanism (101) comprises a left fixing table (29) fixedly connected with the top wall of the connecting rod (28) on the left side and a right fixing table (31) attached to the top wall of the connecting rod (28) on the right side, the left fixing table (29) is rotationally connected with the right fixing table (31), two pull ropes (16) which are symmetrical in position are fixedly connected to the front wall and the rear wall of the right fixing table (31), a pulling experiment mechanism (103) which can assist a user to perform experiments is mounted on the pull ropes (16), a shoe head fixing block (30) is fixedly connected to the left wall of the left fixing table (29), a fixing sliding groove (35) penetrating through the left fixing table from top to bottom is arranged in the right fixing table (31), a shoe tail fixing block (32) fixedly connected with the right fixing table (31) through a first spring (34), two front and rear positions of the left fixing table (29) and the right fixing table (31) are fixedly connected with a second shoe tail fixing block (33) symmetrically arranged on the front wall and the right fixing table (31), a second sliding block (33) is fixedly connected to a second sliding groove (36) in the second sliding groove (36), threads in the two shoe body fixing blocks (36) on the same first threaded shaft (37) are opposite, and a rotary handle (38) is fixedly connected to the extending ends of the front sides of the two first threaded shafts (37);
the utility model provides a dead joint, including show chamber (13) back wall is gone up and open-ended accomodates chamber (17) forward, be equipped with in accomodating chamber (17) and rotate extremely dead lever (18) of appearance shoes fixed establishment (101) upside, accomodate chamber (17) left and right sides wall intercommunication is equipped with two symmetrical first rotation groove (19), left and right sides two rotate between first rotation groove (19) be connected with dead lever (18) fixed connection's first pivot (20), be located in first rotation groove (19) be equipped with first draw-in groove (22) that open-ended in first pivot (20), be equipped with first fixture block (24) through second spring (23) sliding connection in first draw-in groove (22), first rotation groove (19) and show chamber (13) back wall are through second draw-in groove (25) intercommunication, second draw-in groove (25) can with first draw-in groove (22) intercommunication, second draw-in groove (25) are provided with second draw-in groove (25) release and can be cancelled, second draw-in groove (26) release and are connected with second fixture block (25) and are released.
2. A disclosed footwear fracture resistance tester system according to claim 1, wherein: the pulling experiment mechanism (103) comprises a total pulling rope (15) which is fixedly connected with the tops of the pulling ropes (16) at the same time, a reversing column (14) is fixedly connected above the right side fixing table (31), and the total pulling rope (15) extends to the left outside of the chassis (11) through the reversing column (14) and is fixedly connected with a pull ring.
3. A disclosed footwear fracture resistance tester system according to claim 2, wherein: the pedal mechanism (104) comprises a linkage groove (39) fixedly arranged in the case (11) and the extension block (12), a second threaded shaft (40) extending into the display cavity (13) is rotationally connected to the bottom of the linkage groove (39) in the case, a sliding groove (41) communicated with the display cavity (13) is arranged in the case (11), a pushing block (42) extending into the display cavity (13) and being in sliding connection with the sliding groove (41) is in threaded connection with the second threaded shaft (40), the pushing block (42) is positioned on the lower side of the right side fixed table (31), a silica gel pad (43) is fixedly connected to the top of the pushing block (42), the bottom of the linkage groove (39) in the extension block (12) is rotationally connected with a third threaded shaft (47), a threaded block (42) is connected with the third threaded shaft (47), a pedal block (48) is connected with the top of the sliding groove (48) in a sliding way, the pedal block (48) is connected with the bottom of the sliding groove (48) through a positioning groove (51), the second threaded shaft (40) and the third threaded shaft (47) are driven by a belt pulley (46).
4. A disclosed footwear fracture resistance tester system according to claim 1, wherein: the shoe-cleaning mechanism (105) comprises a third chute (64) arranged on the bottom wall of the shoe-cleaning cavity (57), the bottom wall of the third chute (64) is fixedly connected with an inductor (65), an auxiliary column (62) extending into the shoe-cleaning cavity (57) is slidably connected in the third chute (64) through a fifth spring (66), the auxiliary column (62) is positioned at the left side and the right side, two symmetrical vibrators (63) are fixedly connected with the bottom wall of the shoe-cleaning cavity (57), the auxiliary column (62) is fixedly connected with a stepping block (67) through a silica gel column (68), the top of the shoe-cleaning cavity (57) is fixedly connected with a wiping block (59) internally provided with a second inductor (61) through a telescopic rod (58), a wiping sponge (60) is sleeved outside the wiping block (59), two symmetrical water storage cavities (54) at left and right positions are fixedly arranged on the upper side of the shoe-cleaning cavity (57), the water storage cavities (54) are communicated with the outside through a connecting inlet groove (56), two symmetrical water storage cavities (69) are arranged at the left and right sides of the shoe-cleaning cavity (57) and are communicated with a first connecting pipe (70), and a fog-making spray head (72) is fixedly connected to the second connecting pipe (71) positioned at the outlet end in the shoe-cleaning cavity (57).
5. A disclosed footwear fracture resistance tester system according to claim 1, wherein: the front part of the display cavity (13) is rotatably connected with a glass closing plate (73), and a display panel (74) is fixedly arranged on the front wall of the case (11).
CN202210712643.3A 2022-06-22 2022-06-22 Open type footwear folding-resistant experimental instrument system Active CN115137127B (en)

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Application Number Priority Date Filing Date Title
CN202210712643.3A CN115137127B (en) 2022-06-22 2022-06-22 Open type footwear folding-resistant experimental instrument system

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Application Number Priority Date Filing Date Title
CN202210712643.3A CN115137127B (en) 2022-06-22 2022-06-22 Open type footwear folding-resistant experimental instrument system

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CN115137127A CN115137127A (en) 2022-10-04
CN115137127B true CN115137127B (en) 2024-02-02

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CN (1) CN115137127B (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4130007A (en) * 1976-11-25 1978-12-19 Nippon Rubber Co., Ltd. Footwear tester
CN207023431U (en) * 2017-03-31 2018-02-23 江苏三联安全评价咨询有限公司 A kind of footwear fold tester
CN210037400U (en) * 2019-03-15 2020-02-07 浙江利府鞋业有限公司 Shoe product folding resistance testing machine
CN215866208U (en) * 2021-04-30 2022-02-18 佛山市美玲鞋业有限公司 Shoe folding resistance testing machine
CN216051196U (en) * 2021-08-04 2022-03-15 莆田浩步鞋业有限公司 Shoe product folding resistance testing machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4130007A (en) * 1976-11-25 1978-12-19 Nippon Rubber Co., Ltd. Footwear tester
CN207023431U (en) * 2017-03-31 2018-02-23 江苏三联安全评价咨询有限公司 A kind of footwear fold tester
CN210037400U (en) * 2019-03-15 2020-02-07 浙江利府鞋业有限公司 Shoe product folding resistance testing machine
CN215866208U (en) * 2021-04-30 2022-02-18 佛山市美玲鞋业有限公司 Shoe folding resistance testing machine
CN216051196U (en) * 2021-08-04 2022-03-15 莆田浩步鞋业有限公司 Shoe product folding resistance testing machine

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