Press test device
By designing a pressure testing device and utilizing the arrangement of the first and second support components and the movement adjustment of the force measuring unit, the problem of insufficient accuracy in watch wearing simulation testing was solved, achieving higher simulation accuracy and a better reflection of wearing comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-04-10
AI Technical Summary
In existing technologies, the simulation results of watch wearing simulation test components differ significantly from the actual wearing experience, resulting in insufficient accuracy.
A pressure testing device is designed, including a first support component and a second support component arranged along a first direction. The testing component is close to the first support component. A force measuring unit applies a pressing force along a second direction. The force measuring unit is moved and the pressing force is adjusted by combining a guide rail and a drive unit to simulate the force on the arm when wearing a watch.
This improves the similarity between the force exerted on the arm during testing and the actual wearing situation, enhances the accuracy of the simulation results, and better reflects the user's wearing experience.
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Figure CN224109038U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of human arm pressing test, in particular to a pressing test device. BACKGROUND
[0002] A watch is a kind of ornament worn on the arm of a user, which also has the function of timing, etc. In order to improve the wearing comfort of the arm, experiments of wearing need to be carried out to obtain the wearing feeling of the user on the designed watch.
[0003] The test assembly is a device that can output pressing force, and by adjusting the size of the pressing force, the force condition of the arm when the watch is worn on the arm can be simulated, and the size of the pressing force can also be displayed by the test assembly for the user to refer to.
[0004] In the related art, when the test assembly is used to simulate the pressure generated by the part of the watch in contact with the arm, the simulation result deviates greatly from the actual wearing feeling of the product. CONTENT OF THE INVENTION
[0005] In view of this, the present application provides a pressing test device to improve the accuracy of the simulation result.
[0006] Specifically, the technical scheme comprises the following:
[0007] The present application provides a pressing test device, which comprises a first support assembly, a second support assembly and a test assembly, wherein,
[0008] The first support assembly and the second support assembly are arranged along a first direction.
[0009] The test assembly is closer to the first support assembly than the second support assembly.
[0010] Optionally, the test assembly comprises a force measuring unit, which can apply a pressing force towards the first support assembly along a second direction, and the second direction intersects the first direction.
[0011] Optionally, the test assembly comprises a guide rail, and the force measuring unit is installed on the guide rail and can move along the extension direction of the guide rail.
[0012] Optionally, the test assembly comprises a driving unit, which is in transmission connection with the force measuring unit and can drive the force measuring unit to move along the extension direction of the guide rail.
[0013] Optionally, the driving unit comprises a first magnetic part, a second magnetic part and a coil, the first magnetic part is connected with the force measuring unit, the second magnetic part is sequentially arranged with the first magnetic part along the extension direction of the guide rail, the polarity of one side of the first magnetic part facing the second magnetic part is the same as the polarity of one side of the second magnetic part facing the first magnetic part, and the coil is wound outside the second magnetic part.
[0014] Optionally, the force measuring unit comprises a connecting rod and a force measuring part, the connecting rod connects the first magnetic part and the force measuring part, and the force measuring part is capable of rotating relative to the connecting rod.
[0015] Optionally, the force measuring unit comprises an elastic part and a supporting part, a plurality of limiting parts are arranged at the circumference of the connecting rod, the supporting part surrounds the circumference of the connecting rod, the elastic part is connected with the inner side of the supporting part, a part of the elastic part extends between two limiting parts, and the force measuring part is connected with one end of the supporting part.
[0016] Optionally, the force measuring part comprises a testing head, a housing and a driving motor, the testing head is installed in the housing, the driving motor is connected with the testing head and is capable of driving the testing head to move along the extension direction of the guide rail and extend out of the housing.
[0017] Optionally, the pressing testing device comprises a base, one end of the guide rail is connected with the base and is capable of rotating relative to the base around the axis of the guide rail.
[0018] Optionally, the testing assembly comprises a distance measuring module, and the distance measuring module is located at one side of the force measuring unit facing the first supporting assembly.
[0019] Optionally, the first supporting assembly comprises a gripping part, and the gripping part is arranged along the first direction with the second supporting assembly.
[0020] Optionally, the first supporting assembly comprises a binding belt, and one end of the binding belt is connected with one side of the gripping part.
[0021] Optionally, the second supporting assembly comprises a support, and the support has a groove, and the groove penetrates through the support along the first direction.
[0022] Optionally, the second supporting assembly comprises an expanding part, and the expanding part extends along the wall surface of the groove.
[0023] Optionally, the pressing testing device comprises a telescopic rod, and the telescopic rod connects the first supporting assembly and the second supporting assembly.
[0024] Optionally, the pressing test device comprises a base, the telescopic rod is mounted on the base and can rotate relative to the base around a first axis, the first axis intersects with the telescopic direction of the telescopic rod.
[0025] The technical scheme provided by the embodiment of the application has at least the following beneficial effects: the test assembly can simulate the force condition of the arm when the watch is worn by applying a pressing force to the arm. The first support assembly and the second support assembly are arranged along the first direction, which is beneficial to supporting at least two different positions of the arm at the same time, so that the arm can keep a relatively relaxed state during the test, which can make the force condition of the arm during the test close to the actual wearing condition, and thus improve the accuracy of the simulation result. BRIEF DESCRIPTION OF DRAWINGS
[0026] In order to more clearly illustrate the technical scheme in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of these drawings.
[0027] Figure 1 A structural schematic diagram of a pressing test device provided by the embodiment of the application;
[0028] Figure 2 A structural schematic diagram of a test assembly provided by the embodiment of the application;
[0029] Figure 3 A partial structural schematic diagram of a force measuring unit provided by the embodiment of the application;
[0030] Figure 4 A structural schematic diagram of a force measuring unit provided by the embodiment of the application;
[0031] Figure 5 A structural schematic diagram of another pressing test device provided by the embodiment of the application.
[0032] The reference signs in the drawings represent respectively:
[0033] 1, first support assembly; 11, gripping part; 12, bandage;
[0034] 2, second support assembly; 21, support; 2101, groove; 22, expansion part; 23, air pump;
[0035] 3. Test components; 31. Force measuring unit; 311. Connecting rod; 3111. Limiting part; 312. Force measuring part; 3121. Test head; 3122. Housing; 3123. Drive motor; 3124. Display screen; 3125. First button; 3126. Second button; 313. Elastic part; 314. Support part; 32. Guide rail; 33. Drive unit; 331. First magnetic part; 332. Second magnetic part; 333. Coil; 34. Distance measuring module;
[0036] 4. Base;
[0037] 5. Telescopic pole.
[0038] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0039] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0040] In the embodiments of this application, directional terms such as "upper," "lower," and "side" are generally used in the following ways: Figure 1 The relative positions shown are based on the given information, and these directional terms are used only to more clearly describe the relationships between structures, not to describe absolute positions. Positions may change when the product is placed in different orientations; for example, "up" and "down" may be interchanged.
[0041] Unless otherwise defined, all technical terms used in the embodiments of this application have the same meaning as commonly understood by one of ordinary skill in the art.
[0042] To make the technical solutions and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0043] This application provides a pressure testing device, such as... Figure 1 As shown, the pressure testing device includes a first support component 1, a second support component 2, and a testing component 3, wherein,
[0044] The first support component 1 and the second support component 2 are arranged along the first direction.
[0045] The test assembly 3 is closer to the first support assembly 1 than the second support assembly 2.
[0046] It can be understood that the test assembly 3 can simulate the force condition of the arm when the watch is worn by applying a pressing force to the arm. The first support assembly 1 and the second support assembly 2 are arranged along the first direction, which is beneficial to support at least two different positions of the arm at the same time, so that the arm remains in a relatively relaxed state during the test, which can make the force condition of the arm during the test close to the actual wearing condition, and thus improve the accuracy of the simulation result.
[0047] In the embodiments of the present application, the first support assembly 1 can support the palm or the upper arm, which is beneficial to the arm in a relaxed state.
[0048] In the embodiments of the present application, the second support assembly 2 can support the palm or the upper arm, which is beneficial to the arm in a relaxed state.
[0049] In the embodiments of the present application, the test assembly 3 can be in contact with the arm located between the first support assembly 1 and the second support assembly 2, and can apply a pressing force to the arm, so as to simulate the force condition of the arm when the watch is worn on the arm.
[0050] In the embodiments of the present application, the test assembly 3 can be a dynamometer, which can be installed at a relatively fixed position, and the first support assembly 1 and the second support assembly 2 have the freedom of movement and rotation relative to the dynamometer, which is beneficial to the first support assembly 1 and the second support assembly 2 to adapt to arms of different sizes to help the dynamometer apply a pressing force to the arm.
[0051] In the embodiments of the present application, the test assembly 3 is closer to the first support assembly 1 than the second support assembly 2, and can be located between the first support assembly 1 and the second support assembly 2, or can be located on the side of the first support assembly 1 away from the second support assembly 2.
[0052] In the embodiments of the present application, for a watch in the research and development stage, the force of each part of the arm when worn can be preliminarily obtained by simulation software or the like, and the test assembly 3 can apply a pressing force of the same size to the arm according to the force condition of each part, so as to simulate the wearing effect of the watch, and at the same time, it is also beneficial to obtain a more subjective wearing feeling.
[0053] In some embodiments of the present application, as shown in Figure 1 The test assembly 3 includes a force measuring unit 31, which can apply a pressing force towards the first support assembly 1 along a second direction, and the second direction intersects the first direction.
[0054] It can be understood that the force measuring unit 31 generates the pressing force in the second direction, and the pressing force can be applied to the ulnar side, the ulnar side, the palmar side and the dorsal side of the forearm, thereby simulating the stress of the arm when wearing the watch, so as to obtain the actual feeling of the user wearing the designed but not produced watch.
[0055] In the embodiment of the application, the force measuring unit 31 can be a force gauge, which can use the elastic part 313 with elasticity to realize the function of outputting the pressing force of a certain size.
[0056] In the embodiment of the application, the second direction can be perpendicular to the first direction.
[0057] In the embodiment of the application, the elastic part 313 can be formed by bending a sheet structure with elasticity, so as to have elasticity.
[0058] In some embodiments of the application, as shown in Figure 1 The test assembly 3 includes a guide rail 32, and the force measuring unit 31 is installed on the guide rail 32 and can move along the extension direction of the guide rail 32.
[0059] It can be understood that the guide rail 32 can adjust the distance between the force measuring unit 31 and the first fixing assembly, so as to facilitate the force measuring unit 31 to actively contact the arm to realize the pressing of the arm, so as to improve the simulation accuracy of the force measuring unit 31. Since the force measuring unit 31 is thus arranged to avoid the force measuring unit 31 being in contact with the arm before work, the force measuring unit 31 is subjected to stress in advance, which reduces the accuracy of the test results of the force measuring unit 31.
[0060] In the embodiment of the application, the force measuring unit 31 can move relative to the guide rail 32 by maintaining a certain clearance between the force measuring unit 31 and the guide rail 32, so as to realize the adjustment of the distance between the force measuring unit 31 and the arm.
[0061] In some embodiments of the application, as shown in Figure 2 The test assembly 3 includes a driving unit 33, and the driving unit 33 is in transmission connection with the force measuring unit 31 and can drive the force measuring unit 31 to move along the extension direction of the guide rail 32.
[0062] It can be understood that the driving unit 33 drives the force measuring unit 31, which is beneficial to the pressing test device to move the force measuring unit 31 to a suitable position according to the actual needs, so as to facilitate the force measuring unit 31 to press the arm.
[0063] In the embodiment of the application, the driving unit 33 can be a stepping motor, a worm gear and worm lifting machine or the like driving structure.
[0064] In some embodiments of the application, as shown in Figure 2As shown, the driving unit 33 includes a first magnetic part 331, a second magnetic part 332, and a coil 333. The first magnetic part 331 is connected with the force measuring unit 31. The second magnetic part 332 is sequentially arranged with the first magnetic part 331 along the extension direction of the guide rail 32. The polarity of the side of the first magnetic part 331 facing the second magnetic part 332 is the same as the polarity of the side of the second magnetic part 332 facing the first magnetic part 331. The coil 333 is wound outside the second magnetic part 332.
[0065] It can be understood that by changing the size of the current passing through the coil 333, the magnetic force can be increased or decreased in cooperation with the second magnetic part 332, so that the first magnetic part 331 moves along the extension direction of the guide rail 32 under the action of the magnetic force, and thus the distance between the force measuring unit 31 and the arm located between the first support assembly 1 and the second support assembly 2 can be adjusted.
[0066] In the embodiments of the present application, the test assembly 3 can include a first button 3125 and a second button 3126, both of which are electrically connected with the coil 333. The first button 3125 can increase the current of the coil 333 when closed, so that the coil 333 can cooperate with the second magnetic part 332 to increase the magnetic force, so that the first magnetic part 331 moves away from the second magnetic part 332 and drives the force measuring unit 31 to move. The second button 3126 can increase the current of the coil 333 when closed, so that the coil 333 can cooperate with the second magnetic part 332 to decrease the magnetic force, so that the first magnetic part 331 moves close to the second magnetic part 332 and drives the force measuring unit 31 to move.
[0067] In some embodiments of the present application, as shown in Figure 2 The force measuring unit 31 includes a connecting rod 311 and a force measuring part 312. The connecting rod 311 connects the first magnetic part 331 and the force measuring part 312. The force measuring part 312 can rotate relative to the connecting rod 311.
[0068] It can be understood that the connecting rod 311 serves to connect the force measuring part 312 and the first magnetic part 331, so that the first magnetic part 331 can drive the force measuring part 312 to move. The rotating force measuring part 312 can generate pressing force in more directions, and can press more positions of the arm to improve the accuracy of simulation.
[0069] In the embodiments of the present application, the force measuring part 312 can rotate relative to the connecting rod 311 about the axis of the connecting rod 311.
[0070] In the embodiments of the present application, the connecting rod 311 and the first magnetic part 331 can be connected by welding or the like.
[0071] In some embodiments of the present application, as shown in Figure 3As shown, the force measuring unit 31 comprises an elastic part 313 and a supporting part 314, a plurality of limiting parts are arranged at the circumference of the connecting rod 311, the supporting part 314 surrounds the circumference of the connecting rod 311, the elastic part 313 is connected with the inner side of the supporting part 314, and a part of the elastic part 313 extends between two limiting parts. The force measuring part 312 is connected with one end of the supporting part 314.
[0072] It can be understood that, when the elastic part 313 is located between two limiting parts, the elastic part 313 can limit the force measuring part 312, so that the force measuring part 312 is interfered by the two limiting parts when the force measuring part 312 rotates under the action of other natural external forces such as gravity, which is beneficial to improve the stability of the force measuring part 312. When the elastic part 313 is driven to rotate by the supporting part 314, the elastic part 313 will be deformed by being pressed by one limiting part first, and then fall between two limiting parts, so that the rotation of the force measuring part 312 can be realized, and the stability of the force measuring part 312 after rotation can be maintained.
[0073] In the embodiments of the present application, a part of the elastic part 313 protrudes towards the limiting part and extends between two limiting parts.
[0074] In some embodiments of the present application, as shown in Figure 4 The force measuring part 312 comprises a test head 3121, a shell 3122 and a driving motor 3123, the test head 3121 is installed in the shell 3122, and the driving motor 3123 is connected with the test head 3121 and can drive the test head 3121 to move out of the shell 3122 along the extension direction of the guide rail 32.
[0075] It can be understood that the test head 3121 can directly contact the arm and press the arm to obtain the feeling of the user when wearing the watch. The driving motor 3123 adjusts the extension degree of the test head 3121, which is beneficial to the contact between the test head 3121 and the arm and the pressing of the arm.
[0076] In the embodiments of the present application, the force measuring part 312 can further comprise a display screen 3124, which can display the size of the pressing force output by the test head 3121 at this time.
[0077] In some embodiments of the present application, as shown in Figure 5 The pressing test device comprises a base 4, and one end of the guide rail 32 is connected with the base 4 and can rotate relative to the base 4 about the axis of the guide rail 32.
[0078] It can be understood that the rotatable guide rail 32 is beneficial to increase the direction of the pressing force applied by the test assembly 3 located on the guide rail 32, which is beneficial to press more directions of the arm by the test assembly 3 to obtain the stress condition of the arm when wearing the watch.
[0079] In the embodiments of the present application, the guide rail 32 can be connected with the outer ring of the bearing, and the base 4 is connected with the inner ring of the bearing to rotate.
[0080] In some embodiments of the present application, as shown in Figure 4 The test assembly 3 includes a distance measuring module 34 located on the side of the force measuring unit 31 facing the first support assembly 1.
[0081] It can be understood that the distance measuring module can obtain the depth of the indentation of the arm when the force measuring unit 31 presses the arm. The data of the indentation depth can be used as a characterization parameter of the force of the watch on the arm in the reference design, which can be combined with subjective factors such as wearing experience to determine and improve the wearing effect of the watch.
[0082] In the embodiments of the present application, the distance measuring module can be an optical distance measuring sensor, which determines the depth of the indentation by receiving the time of its own emitted light.
[0083] In some embodiments of the present application, as shown in Figure 5 The first support assembly 1 includes a gripping portion 11, and the gripping portion 11 and the second support assembly 2 are arranged along the first direction.
[0084] It can be understood that the gripping portion 11 can be gripped by the palm to keep the palm in a relatively relaxed state, which is conducive to improving the accuracy of the simulation results of the force measuring assembly.
[0085] In the embodiments of the present application, the gripping portion 11 can be a palm profiling structure, which is conducive to the gripping of the palm.
[0086] In some embodiments of the present application, as shown in Figure 5 The first support assembly 1 includes a strap 12, and one end of the strap 12 is connected to one side of the gripping portion 11.
[0087] It can be understood that the other end of the strap 12 can be connected to the other side of the gripping portion 11 to limit the palm and reduce the situation that the simulation results are inaccurate due to the involuntary turning and moving of the palm during the pressing process.
[0088] In the embodiments of the present application, the other end of the strap 12 can be provided with a magic tape or other structure for connection to facilitate the limiting of the palm by the strap 12.
[0089] In some embodiments of the present application, as shown in Figure 5 The second support assembly 2 includes a support 21, and the support 21 has a groove 2101 penetrating through the support 21 along the first direction.
[0090] It can be understood that the recess 2101 can be used for placing the upper arm, and the upper arm can be placed on the first support assembly 1 through the recess 2101, so as to facilitate the arm to be in a relaxed state.
[0091] In some embodiments of the present application, as shown in Figure 5 The second support assembly 2 includes an expansion part 22 extending along the wall surface of the recess 2101.
[0092] It can be understood that the expansion part 22 can press the upper arm by expansion when the arm is placed in the recess 2101, so as to generate an interference effect on the upper arm, so that the upper arm can be kept in a relatively fixed posture, so as to facilitate the pressing of the arm by the test assembly 3 to complete the test.
[0093] In the embodiments of the present application, the expansion part 22 can be an air bag 23, which is supplied with air by an air pump, and the expansion part 22 filled with gas expands to achieve the limiting effect on the upper arm.
[0094] In some embodiments of the present application, as shown in Figure 5 The pressing test device includes a telescopic rod 5 connecting the first support assembly 1 and the second support assembly 2.
[0095] It can be understood that, since the lengths of arms of different people are different, the telescopic rod 5 can adjust the distance between the first support assembly 1 and the second support assembly 2 according to different arm lengths, so as to facilitate the first support assembly 1 and the second support assembly 2 to support the positions of the palm and the elbow joint of the arm at the same time, so as to improve the pressing accuracy of the test assembly 3.
[0096] In the embodiments of the present application, the shortest length of the telescopic rod 5 can be 427 mm, and the longest length can be 461 mm.
[0097] In some embodiments of the present application, as shown in Figure 5 The pressing test device includes a base 4, and the telescopic rod 5 is installed on the base 4 and can rotate relative to the base 4 about a first axis, and the first axis intersects the telescopic direction of the telescopic rod 5.
[0098] It can be understood that the rotatable telescopic rod 5 can adjust the orientations of the first support assembly 1 and the second support assembly 2, so as to facilitate the pressing test device to adjust the orientations of the two according to the actual needs and facilitate the placement of the arm, so that the two can form support for the arm.
[0099] In the embodiments of the present application, the telescopic rod 5 can be connected with the outer ring of a bearing, and the base 4 is connected with the inner ring of the bearing to realize rotation.
[0100] In the embodiment of the present application, the working process of the pressing test device can be: the subject places the palm on the upper surface of the palm support assembly, keeps relaxed, and fixes the palm with the strap 12. The elbow is placed on the groove 2101, the air pump is turned on to inflate the expansion part 22 to expand it, and then the elbow is fixed.
[0101] The test assembly 3 is moved downward, and stops when it is 1-2 cm above the arm. The first button 3125 is clicked, the test head 3121 is moved downward to press the arm, and the size of the pressing force and the skin indentation depth are read on the display screen 3124.
[0102] When testing the ulnar side, the subject's arm is not moved, the guide rail 32 is rotated counterclockwise by 90 degrees, and then the current of the coil 333 is reduced to reduce the height of the test assembly 3 to the position of the corresponding ulnar styloid process of the subject. The first button 3125 is clicked, the test head 3121 is moved to the ulnar side of the arm, and the size of the pressing force and the skin indentation depth are read on the display screen 3124.
[0103] In the present application, the terms "first" and "second" are only for descriptive purposes, and cannot be understood or implied to indicate or suggest relative importance. The term "a plurality of" refers to two or more, unless otherwise explicitly limited.
[0104] Other embodiments of the present application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the application following the general principles thereof and including such departures from the present disclosure as come within known or customary practice in the art. The specification and examples are to be regarded as exemplary only.
[0105] It should be understood that the present application is not limited to the precise structures described herein and illustrated in the drawings and that various modifications and changes can be made without departing from the scope thereof. The scope of the present application is limited only by the claims appended hereto.
Claims
1. A press test device characterized by, The pressing test device comprises a first support assembly (1), a second support assembly (2) and a test assembly (3), wherein, The first support assembly (1) and the second support assembly (2) are arranged along a first direction; The test assembly (3) is closer to the first support assembly (1) than the second support assembly (2).
2. The press test device of claim 1, wherein The test assembly (3) comprises a force measuring unit (31) capable of applying a pressing force towards the first support assembly (1) along a second direction intersecting the first direction.
3. The press test device of claim 2, wherein, The test assembly (3) comprises a guide rail (32), the force measuring unit (31) is installed on the guide rail (32) and is capable of moving along the extension direction of the guide rail (32).
4. The press test device of claim 3, wherein The test assembly (3) comprises a driving unit (33) in transmission connection with the force measuring unit (31) and capable of driving the force measuring unit (31) to move along the extension direction of the guide rail (32).
5. The press test device of claim 4, wherein, The driving unit (33) comprises a first magnetic part (331), a second magnetic part (332) and a coil (333), the first magnetic part (331) is connected with the force measuring unit (31), the second magnetic part (332) is sequentially arranged along the extension direction of the guide rail (32) with the first magnetic part (331), the polarity of the surface of the first magnetic part (331) facing the second magnetic part (332) is the same as the polarity of the surface of the second magnetic part (332) facing the first magnetic part (331), and the coil (333) is wound on the outside of the second magnetic part (332).
6. The press test device of claim 5, wherein, The force measuring unit (31) comprises a connecting rod (311) and a force measuring part (312), the connecting rod (311) connects the first magnetic part (331) and the force measuring part (312), and the force measuring part (312) is capable of rotating relative to the connecting rod (311).
7. The press test device of claim 6, wherein, The force measuring unit (31) comprises an elastic part (313) and a support part (314), a plurality of limiting parts (3111) are arranged at the circumference of the connecting rod (311) at intervals, the support part (314) surrounds the circumference of the connecting rod (311), the elastic part (313) is connected with the inner side surface of the support part (314), a part of the elastic part (313) extends into the space between two limiting parts (3111), and the force measuring part (312) is connected with one end of the support part (314).
8. The press test apparatus of claim 6, wherein The force measuring part (312) comprises a test head (3121), a housing (3122) and a driving motor (3123), the test head (3121) is installed in the housing (3122), the driving motor (3123) is connected with the test head (3121) and is capable of driving the test head (3121) to move along the extension direction of the guide rail (32) to extend out of the housing (3122).
9. The press test apparatus of claim 3, wherein The pressing test device comprises a base (4), one end of the guide rail (32) is connected with the base (4) and is capable of rotating around the axis of the guide rail (32) relative to the base (4).
10. The press test apparatus of claim 2, wherein The test assembly (3) comprises a distance measuring module (34) located on a side of the force measuring unit (31) facing the first support assembly (1).
11. The press test apparatus of claim 1, wherein The first support assembly (1) comprises a gripping portion (11) arranged along the first direction with the second support assembly (2).
12. The press test device of claim 11, wherein, The first support assembly (1) comprises a strap (12) with one end connected to one side of the gripping portion (11).
13. The press test device of claim 1, wherein, The second support assembly (2) comprises a support (21) having a groove (2101) extending through the support (21) along the first direction.
14. The press test apparatus of claim 13, wherein, The second support assembly (2) comprises an expansion portion (22) extending along a wall surface of the groove (2101).
15. The press test device of claim 1, wherein, The pressing test device comprises a telescopic rod (5) connecting the first support assembly (1) and the second support assembly (2).
16. The press test apparatus of claim 15, wherein, The pressing test device comprises a base (4), and the telescopic rod (5) is installed on the base (4) and can rotate relative to the base (4) about a first axis, and the first axis intersects with the telescopic direction of the telescopic rod (5).