Heelpiece hardness detection equipment
By designing a shoe heel hardness testing device, and utilizing the mechanical cooperation of a hammering unit and a positioning unit, the hardness of the shoe heel can be tested simply and accurately. This solves the testing problem in the existing technology, improves the simplicity and accuracy of shoe heel hardness testing, and enhances the stability and comfort of the shoe.
Patent Information
- Application Number
- CN202423007496.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-05
AI Technical Summary
Existing technologies make it difficult to easily and accurately test the heel hardness of finished shoes.
A shoe heel hardness testing device was designed, including a fixing frame, a hammering unit and a positioning unit. Through the mechanical cooperation of the vertical movement module and the positioning module of the hammering unit, the hardness tester is made to fall naturally to strike the shoe heel. The hammering force is adjusted by the counterweight component.
It enables simple and accurate testing of shoe heel hardness, ensuring it is moderate to provide support and stability, while avoiding excessive hardness that causes discomfort and improving shoe comfort.
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Figure CN223585330U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoemaking field, concretely is a shoe heel hardness detection equipment. BACKGROUND
[0002] In the shoemaking industry, in order to guarantee the safety, durability, standardization of shoes, the strength of finished shoes needs to be detected from multiple directions.
[0003] CN201921969849.4 discloses a kind of finished shoe outsole hardness detector, including base, base is equipped with whole shoe translation structure, whole shoe translation structure includes first translation square and second translation square, second translation square is equipped with shoe tree, shoe tree is connected with second translation square screw thread, still include left and right translation hand wheel and front and rear translation hand wheel as control part, base is also equipped with lifting guide rod and lifting screw rod, lifting screw rod is equipped with lifting hand wheel, lifting guide rod outside is equipped with test branch arm, test branch arm one end is equipped with hardness tester, test branch arm is equipped with load weight.The finished shoe is sleeved on shoe tree, front and rear translation hand wheel and left and right translation hand wheel are operated, the movement of finished shoe is controlled, then lifting hand wheel is rotated, test branch arm position is moved, so that hardness tester reaches appropriate position, then load weight moving handle is lifted and put down, load weight is pressed down, and hardness tester degree is obtained.
[0004] The detector is aimed at the detection of finished shoe outsole, and in shoemaking industry, the hardness of shoe heel is crucial to the stability of shoes. Harder shoe heel can provide better support and stability, which helps to prevent lateral sliding and twisting of feet during walking or movement. This is particularly important for activities that require high stability, such as running, jumping and quick turning. Therefore, detecting the hardness of shoe heel becomes an important process.
[0005] Based on this, the technical problem solved in this case is: how to simply and accurately detect the hardness of shoe heel of finished shoes. UTILITY MODEL CONTENT
[0006] To solve the above technical problems, the utility model provides a kind of shoe heel hardness detection equipment, and the equipment is simple in structure and easy to operate, and has high applicability and high detection reliability.
[0007] The technical scheme of the utility model is:
[0008] The utility model provides a shoe heel hardness detection equipment, including fixed frame, connect on fixed frame hammering unit and positioning unit, positioning unit is arranged in the just below hammering unit and is used for fixing finished product shoes, hammering unit includes vertical motion module, hardness tester, clamping position module, vertical motion module is equipped with counterweight assembly for adjusting the degree of hammering, hardness tester fixedly connected on vertical motion module and is used for detecting the hardness of shoe heel, clamping position module fixedly connected on vertical motion module and is used for controlling whether vertical motion module moves.
[0009] In the shoe heel hardness detection equipment described above, the vertical motion module includes a slide rail fixed to the hammering unit and a slide block cooperating with the slide rail; the hardness tester is fixed to the slide block; the counterweight assembly is fixedly connected to the slide block; the clamping position module includes a connecting block and a clamping block; the connecting block is fixedly connected to the slide block and is provided with a positioning rod; and the clamping block is hinged to the slide rail and is provided with a cavity for clamping the positioning rod.
[0010] In the shoe heel hardness detection equipment described above, the clamping block is further provided with a first handle for loosening the positioning rod.
[0011] In the shoe heel hardness detection equipment described above, the slide block is provided with a second handle for resetting the positioning rod.
[0012] In the shoe heel hardness detection equipment described above, the fixed frame includes a base, a longitudinal guide rod, a first distance adjusting module, and a second distance adjusting module; the longitudinal guide rod is fixed to the base; the first distance adjusting module and the second distance adjusting module are detachably connected to the longitudinal guide rod; the hammering unit is fixed to the first distance adjusting module, and the positioning unit is fixed to the second distance adjusting module.
[0013] In the shoe heel hardness detection equipment described above, the first distance adjusting module includes a first moving block, a first transverse guide rod, and a first adjusting assembly; the first moving block is provided with a first through hole matched with the first transverse guide rod; the first transverse guide rod is slidably connected to the first moving block through the first through hole; the first adjusting assembly is used to control whether the first moving block can slide; and the hammering unit is fixed to one end of the first transverse guide rod.
[0014] In the shoe heel hardness detection equipment described above, the second distance adjusting module includes a second moving block, a second transverse guide rod, and a second adjusting assembly; the second moving block is provided with a second through hole matched with the second transverse guide rod; the second transverse guide rod is slidably connected to the second moving block through the second through hole; the second adjusting assembly is used to control whether the second moving block can slide; and the positioning unit is fixed to one end of the second transverse guide rod.
[0015] In the shoe heel hardness detection equipment described above, the positioning unit is a spherical ball.
[0016] The above technical scheme of the utility model has at least one of the following advantages or beneficial effects:
[0017] The utility model discloses a positioning unit fixes finished shoes below the hammering unit, and through the cooperation of each part of the hammering unit, the durometer naturally falls and hits the shoe heel, and the hardness of the shoe heel is more accurately detected, the hardness of the shoe heel is ensured to be moderate, enough support and stability can be provided, and the shoe is not too hard to cause discomfort, which helps to reduce the fatigue and discomfort of the foot and improve the comfort of wearing shoes. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the front view schematic drawing of the embodiment 1 of the utility model;
[0019] Figure 2 It is the three -dimensional schematic drawing of the embodiment 1 of the utility model. DETAILED DESCRIPTION
[0020] The technical scheme in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0021] Embodiment 1
[0022] Please refer to Figure 1 、 2 A shoe heel hardness detection equipment, including fixed frame 1, hammering unit 2 and positioning unit 3 connected on fixed frame 1, the positioning unit 3 is arranged directly below hammering unit 2 and is used for fixing finished shoes, the hammering unit 2 includes vertical movement module 21, durometer 22, clamping module 23, the vertical movement module 21 is equipped with counterweight assembly 24 for adjusting the hammering degree of force, the durometer 22 is fixedly connected on vertical movement module 21 and is used for detecting the hardness of shoe heel, the clamping module 23 is fixedly connected on vertical movement module 21 and is used for controlling whether vertical movement module 21 moves.
[0023] The embodiment fixes finished shoes below hammering unit 2 through positioning unit 3, and through the cooperation of each part of hammering unit 2, durometer 22 naturally falls and hits the shoe heel, and the hardness of the shoe heel is more accurately detected, the hardness of the shoe heel is ensured to be moderate, enough support and stability can be provided, and the shoe is not too hard to cause discomfort, which helps to reduce the fatigue and discomfort of the foot and improve the comfort of wearing shoes.
[0024] Specifically, the vertical movement module 21 comprises a sliding rail 211 fixed on the hammering unit 2, a sliding block 212 matched with the sliding rail 211; the durometer 22 is fixed on the sliding block 212; the counterweight assembly 24 is fixedly connected on the sliding block 212; the clamping module 23 comprises a connecting block 231 and a clamping block 232; the connecting block 231 is fixedly connected on the sliding block 212 and is provided with a positioning rod 233; the clamping block 232 is hinged on the sliding rail 211 and is provided with a cavity for clamping the positioning rod 233.
[0025] Under the above design, the durometer 22 is driven to freely fall and contact and hit the shoe heel, so as to detect the hardness of the shoe heel, through simple mechanical cooperation; meanwhile, the clamping module 23 also controls whether the vertical movement module 21 moves through simple cooperation; in addition, it needs to be explained that the counterweight assembly 24 in the embodiment is a weight, and the purpose is to more accurately control the hammering force.
[0026] In order to further simplify the operation process and facilitate the use of the operator, in the embodiment, preferably, the clamping block 232 is further provided with a first handle 2321 for loosening the positioning rod 233.
[0027] In order to further simplify the operation process and facilitate the use of the operator, in the embodiment, preferably, the sliding block 212 is provided with a second handle 2121 for resetting the positioning rod 233.
[0028] More preferably, the first handle 2321 is arranged on the right side, and the second handle 2121 is arranged on the left side; under the above design, the operator can control the two handles with two hands respectively.
[0029] Specifically, the fixed frame 1 comprises a base 11, a longitudinal guide rod 12, a first distance adjusting module 13 and a second distance adjusting module 14; the longitudinal guide rod 12 is fixed on the base 11; the first distance adjusting module 13 and the second distance adjusting module 14 are detachably connected on the longitudinal guide rod 12; the hammering unit 2 is fixed on the first distance adjusting module 13, and the positioning unit 3 is fixed on the second distance adjusting module 14.
[0030] More specifically, the first distance adjusting module 13 comprises a first moving block 131, a first transverse guide rod 132 and a first adjusting assembly 133; the first moving block 131 is provided with a first through hole matched with the first transverse guide rod 132; the first transverse guide rod 132 is slidably connected with the first moving block 131 through the first through hole; the first adjusting assembly 133 is used for controlling whether the first moving block 131 can slide; the hammering unit 2 is fixed on one end of the first transverse guide rod 132.
[0031] More specifically, the second distance adjusting module 14 comprises a second moving block 141, a second transverse guide rod 142 and a second adjusting assembly 143; the second moving block 141 is provided with a second through hole matched with the second transverse guide rod 142; the second transverse guide rod 142 is slidably connected with the second moving block 141 through the second through hole; the second adjusting assembly 143 is used for controlling whether the second moving block 141 can slide; and the positioning unit 3 is fixed at one end of the second transverse guide rod 142.
[0032] Under the above design, the first distance adjusting module 13 and the second distance adjusting module 14 can be adjusted up and down along the longitudinal guide rod 12, and the first distance adjusting module 13 and the second distance adjusting module 14 can be adjusted left and right along the first transverse guide rod 132 and the second transverse guide rod 142 respectively, thereby improving the applicability of the device.
[0033] As a preferred embodiment of the present application, the positioning unit 3 is a spherical ball. The reason is that most of the finished shoes are arc-shaped at the heel to adapt to the physiological structure of human beings, and when the positioning unit 3 is a spherical ball, it can better adapt to various shoe types.
[0034] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.
Claims
1. A shoe heel hardness testing apparatus comprising a fixing stand, a hammering unit connected to the fixing stand, and a positioning unit, characterized in that, The positioning unit is arranged directly below the hammering unit and is used for fixing the finished shoes; the hammering unit comprises a vertical movement module, a durometer and a clamping module; the vertical movement module is provided with a counterweight assembly for adjusting the hammering force; the durometer is fixedly connected to the vertical movement module and is used for detecting the hardness of the shoe heel; and the clamping module is fixedly connected to the vertical movement module and is used for controlling whether the vertical movement module moves.
2. The shoe heel stiffness detection apparatus according to claim 1, characterized by The vertical movement module comprises a slide rail fixed to the hammering unit and a slide block matched with the slide rail; the durometer is fixed to the slide block; the counterweight assembly is fixedly connected to the slide block; the clamping module comprises a connecting block and a clamping block; the connecting block is fixedly connected to the slide block and is provided with a positioning rod; and the clamping block is hinged to the slide rail and is provided with a cavity for clamping the positioning rod.
3. The shoe heel stiffness detection apparatus according to claim 2, wherein The clamping block is further provided with a first handle for loosening the positioning rod.
4. The shoe heel stiffness detection apparatus according to claim 2, characterized by The slide block is provided with a second handle for resetting the positioning rod.
5. The shoe heel stiffness testing apparatus of claim 1, wherein The fixing frame comprises a base, a longitudinal guide rod, a first distance adjusting module and a second distance adjusting module; the longitudinal guide rod is fixed to the base; the first distance adjusting module and the second distance adjusting module are detachably connected to the longitudinal guide rod; the hammering unit is fixed to the first distance adjusting module, and the positioning unit is fixed to the second distance adjusting module.
6. The shoe heel stiffness detection apparatus according to claim 5, wherein The first distance adjusting module comprises a first moving block, a first transverse guide rod and a first adjusting assembly; the first moving block is provided with a first through hole matched with the first transverse guide rod; the first transverse guide rod is slidably connected to the first moving block through the first through hole; the first adjusting assembly is used for controlling whether the first moving block can slide; and the hammering unit is fixed to one end of the first transverse guide rod.
7. The shoe heel stiffness detection apparatus according to claim 5, wherein The second distance adjusting module comprises a second moving block, a second transverse guide rod and a second adjusting assembly; the second moving block is provided with a second through hole matched with the second transverse guide rod; the second transverse guide rod is slidably connected to the second moving block through the second through hole; the second adjusting assembly is used for controlling whether the second moving block can slide; and the positioning unit is fixed to one end of the second transverse guide rod.
8. The shoe heel stiffness testing apparatus of any one of claims 1-7, wherein, The positioning unit is a spherical ball.
Citation Information
Patent Citations
Finished shoe outsole hardness detector
CN211505068U