Rotating shaft flip testing equipment
By designing a hinged flip cover testing device and using photoelectric sensors and pressure sensors to detect the flipping motion, the technical problems existing in the flip cover function testing of the prior art have been solved. This has enabled the quantitative testing of the flip cover unfolding speed and force, and improved the testing efficiency and accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-03-20
AI Technical Summary
In existing technologies, testing the flip phone function mainly relies on manual judgment, which results in low testing efficiency and inaccurate results.
Design a hinged flip cover testing device, including a test platform, a closing mechanism, a flip cover action detection device, a pressure sensor, and a control unit. The device uses a photoelectric sensor to detect the flip cover position, a pressure sensor to detect the flip cover pressure, a control unit to calculate the unfolding speed and force, and a display screen to show the test results.
It enables quantitative testing of the flip-open speed and force, reducing the subjectivity of human judgment and improving testing efficiency and accuracy.
Smart Images

Figure CN224019283U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic equipment test equipment technical field especially, relate to a kind of pivot flip testing equipment. BACKGROUND
[0002] In the related art, the flip device usually includes a host and a flip that can be flipped relative to the host. In some flip devices, a torsion spring or the like driving mechanism is provided between the flip and the host to drive the flip to automatically flip and unfold relative to the host for the convenience of use. During the production of the flip device, the automatic unfolding function of the flip usually needs to be tested to ensure that the flip can normally flip and flip to the designed open-close position. At present, the flip function test is mainly manually tested by the relevant test personnel, and the test result is mainly subjectively judged by the test personnel, so the test efficiency is low, and the test result is inaccurate when a large number of tests are performed. SUMMARY
[0003] The utility model provides a kind of pivot flip testing equipment, to solve the test result of flip function test in prior art is mainly subjectively judged by test personnel, test efficiency is low, and the test result is inaccurate when a large number of continuous tests are performed.
[0004] The utility model provides a kind of pivot flip testing equipment, it includes:
[0005] Test table, for placing the equipment to be tested;
[0006] Cover closing mechanism, it is set to the test table, for driving the flip of the equipment to be tested is rotated to the cover closing position from target unfolded position;
[0007] Flip action detection device, it is set to the test table, for detecting whether the flip is rotated to the target unfolded position or the cover closing position;
[0008] Pressure sensor, it is set to the cover closing mechanism, for detecting the pressure of the flip to the cover closing mechanism;
[0009] Control unit, it is communicated with the flip action detection device and the pressure sensor respectively;The control unit is used for obtaining the unfolding speed of the flip according to the information fed back by the flip action detection device, and also used for obtaining the pressure data fed back by the pressure sensor.
[0010] According to the pivot flip testing equipment of the utility model, the flip action detection device includes first photoelectric sensor and second photoelectric sensor;
[0011] In the case where the flip is rotated to the cover closing position, the emitting end of the first photoelectric sensor is aligned with the flip;
[0012] In the case that the flip cover rotates to the target unfolded position, the emitting end of the second photoelectric sensor is aligned with the flip cover.
[0013] The hinge flip cover testing device according to the present application, the cover closing mechanism comprises a first driving member and a rotating assembly;
[0014] The rotating assembly is rotatably arranged on the testing table; the first driving member and the rotating assembly are in transmission connection to drive the rotating assembly to rotate, and the rotating assembly is used to drive the flip cover to rotate from the target unfolded position to the cover closing position during the rotation; and the pressure sensor is arranged on the rotating assembly.
[0015] The hinge flip cover testing device according to the present application, the rotating assembly comprises a rotating support and an abutting member; the rotating support is rotatably arranged on the testing table; the first driving member and the rotating support are in transmission connection; the pressure sensor is arranged on the rotating support; the abutting member is connected to the detection end of the pressure sensor; and the abutting member is used to abut against the back surface of the flip cover.
[0016] The hinge flip cover testing device according to the present application further comprises a display screen; the display screen and the control unit are in communication connection; the control unit is further used to obtain a testing result according to the pressure data and the unfolding speed; and the display screen is used to display the testing result.
[0017] The hinge flip cover testing device according to the present application further comprises a prompting device; the prompting device and the control unit are in communication connection; and the control unit is further used to control the prompting device to perform light prompting and / or sound prompting according to the testing result.
[0018] The hinge flip cover testing device according to the present application further comprises a second driving member and a clamping assembly; the clamping assembly is movably arranged on the testing table; and the second driving member and the clamping assembly are in transmission connection to drive the clamping assembly to clamp or release the device to be tested.
[0019] The hinge flip cover testing device according to the present application, the clamping assembly comprises a fixed clamping block and a movable clamping block;
[0020] The fixed clamping block is fixedly arranged on the testing table; the movable clamping block is movably arranged on the testing table; at least a part of the fixed clamping block is arranged opposite to the movable clamping block; and the second driving member and the movable clamping block are in transmission connection to drive the movable clamping block to move close to or away from the fixed clamping block.
[0021] According to the utility model discloses a pivot flip test equipment, the fixed clamping block includes the first part and the second part of being connected, the first part with the movable clamping block opposite setting, the second part with the first part angle setting, the first part is used to abut on the first side of the equipment to be tested, and the second part is used to abut on the second side of the equipment to be tested adjacent to the first side.
[0022] According to the utility model discloses a pivot flip test equipment, the equipment to be tested is provided with the button of making the flip unfold after triggering, and the pivot flip test equipment further includes a pressing piece and a third driving piece, the pressing piece is movably arranged on the test table corresponding to the position of the button, and the third driving piece is in transmission connection with the pressing piece to drive the pressing piece to press or move away from the button.
[0023] The pivot flip test equipment of the utility model, the equipment to be tested is placed on the test table, and the flip of the equipment to be tested can be freely turned from the closing position to the target unfolding position, the flip action detection device on the test table is used to detect whether the flip reaches the target unfolding position from the closing position, so that the whole unfolding action is completed, the control unit is in communication connection with the flip action detection device, so as to determine the unfolding time of the flip according to the information fed back by the flip action detection device, and then the unfolding speed of the flip is calculated, at the same time, the test table is also provided with a closing mechanism, the closing mechanism can drive the flip to return to the closing position from the target unfolding position, and the pressure sensor on the closing mechanism can detect the pressure on the closing mechanism in the rotating process of the flip, and the control unit is used to acquire and record the pressure data in the rotating process, which can feed back the unfolding degree of the flip.
[0024] From the above, the pivot flip test equipment of the utility model tests the unfolding speed of the flip in the process of the free unfolding of the flip of the equipment to be tested, drives the flip to close through the closing mechanism, tests the unfolding degree of the flip in the closing process, so that the unfolding speed and the unfolding degree of the flip are tested, and the quantitative test result can be obtained, without the subjective judgment of the test personnel, the defects that the test result of the flip function test in the prior art is mainly subjected to the subjective judgment of the test personnel, the test efficiency is low, and the test result is inaccurate in a large number of continuous tests are effectively solved. BRIEF DESCRIPTION OF DRAWINGS
[0025] In order to more clearly illustrate the technical scheme of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating labor.
[0026] Figure 1 is a schematic view of a flip action detection device provided by an embodiment of the present application.
[0027] Reference signs:
[0028] 1, a shaft flip test equipment;
[0029] 11, test table;
[0030] 12, flip action detection device; 121, first photoelectric sensor; 122, second photoelectric sensor;
[0031] 13, cover closing mechanism; 131, first driving member; 132, rotating assembly; 1321, rotating support; 1322, abutting member;
[0032] 14, pressure sensor; 15, display screen; 16, prompting device; 17, second driving member;
[0033] 18, clamping assembly; 181, fixed clamp block; 1811, first part; 1812, second part; 182, movable clamp block;
[0034] 19, pressing member; 191, third driving member;
[0035] 2, the device to be tested; 21, flip; 22, main machine. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical scheme and advantages of the present application more clear, the technical scheme of the present application will be described clearly and completely below in combination with the drawings in the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0037] The shaft flip test equipment of the present application will be described below in combination with Figure 1
[0038] It should be noted that, as Figure 1 As shown, the hinged flip phone testing device 1 in this application is mainly applicable to testing devices 2 with flip phone functions, such as translators and flip phones. The device 2 typically includes a main unit 22 and a flip cover 21 that can be flipped relative to the main unit 22. The flip cover 21 can unfold relative to the main unit 22 under the drive of a driving mechanism (such as a torsion spring) between the main unit 22 and the flip cover 21. It is understood that the flip cover 21 can rotate relative to the main unit 22 to a closed position or a target unfolded position. In the closed position, the flip cover 21 and the main unit 22 fit together for storage; in the target unfolded position, the unfolding angle between the flip cover 21 and the main unit 22 reaches the designed maximum unfolding angle.
[0039] like Figure 1 As shown, this utility model provides a hinged flip-top testing device 1, including: a test platform 11, a flip-top action detection device 12, a closing mechanism 13, a pressure sensor 14, and a control unit. The test platform 11 is used to place the device 2 to be tested. The closing mechanism 13 is disposed on the test platform 11 and is used to drive the flip-top 21 of the device 2 to rotate from a target unfolded position to a closed position. The flip-top action detection device 12 is disposed on the test platform 11 and is used to detect whether the flip-top 21 has rotated to the target unfolded or closed position. The pressure sensor 14 is disposed on the closing mechanism 13 and is used to detect the pressure of the flip-top 21 on the closing mechanism 13. The control unit is communicatively connected to both the flip-top action detection device 12 and the pressure sensor 14. The control unit is used to obtain the unfolding speed of the flip-top 21 based on the information fed back by the flip-top action detection device 12, and also to obtain the pressure data fed back by the pressure sensor 14.
[0040] In this embodiment, the test platform 11 is used to place the device to be tested 2 and other test components. The test platform 11 is equipped with a flip-top action detection device 12 to detect the position of the flip-top 21 and send a corresponding detection signal to the control unit when the flip-top 21 rotates to the target unfolded position or closed position. During the process of the flip-top 21 freely unfolding relative to the host 22, the control unit can obtain the unfolding speed of the flip-top 21 based on the information fed back by the flip-top action detection device 12.
[0041] Specifically, the flip action detection device 12 can include a proximity switch or a photoelectric switch, which can respectively feed back different position information to the control unit when the flip 21 is located at the closed position, between the closed position and the target unfolded position, and at the target unfolded position. During the process of free unfolding of the flip 21 relative to the main machine 22, the control unit can record the time point when the flip 21 leaves the closed position and the time point when the flip 21 rotates to the target unfolded position according to the information fed back by the flip action detection device 12, and calculate the unfolding time required for the flip 21 to rotate from the closed position to the target unfolded position according to the two time points, and obtain the unfolding speed of the flip 21 according to the unfolding time and the unfolding angle. The unfolding speed can be used to judge whether the unfolding speed of the flip 21 meets the design requirements. It can be understood that the unfolding angle of the flip 21 when it freely unfolds to the target unfolded position is fixed, and is usually designed and determined during the structural design stage of the device to be tested 2, so the unfolding angle can be input into the control unit in advance so that the control unit can call it according to the product model of the device to be tested 2.
[0042] Meanwhile, the test table 11 is also provided with a closing mechanism 13 and a pressure sensor 14, which can cooperate with the flip action detection device 12 to detect the unfolding degree of the flip 21. Specifically, after the flip 21 rotates to the target unfolded position, the closing mechanism 13 can drive the flip 21 to rotate from the target unfolded position to the closed position. The pressure sensor 14 on the closing mechanism 13 can be used to detect the pressure of the flip 21 on the closing mechanism 13 during the rotating process, and send the pressure data to the control unit. The pressure data is used to judge whether the unfolding degree of the flip 21 meets the design requirements.
[0043] The shaft flip test device 1 of the utility model, place the device to be tested 2 on the test table 11, the flip 21 of the device to be tested 2 can be freely turned from the closed position to the target unfolded position, the flip action detection device 12 on the test table 11 is used to detect whether the flip 21 reaches the target unfolded position from the closed position, so as to complete the entire unfolding action, the control unit is in communication with the flip action detection device 12, so as to determine the unfolding time of the flip 21 according to the information fed back by the flip action detection device 12, and then calculate the unfolding speed of the flip 21. Meanwhile, the test table 11 is also provided with a closing mechanism 13, which can drive the flip 21 to return to the closed position from the target unfolded position. The pressure sensor 14 on the closing mechanism 13 can detect the pressure of the flip 21 on the closing mechanism 13 during the rotating process. The control unit is used to obtain and record the pressure data during the rotating process. The pressure data can feed back the unfolding degree of the flip 21.
[0044] From the above, the test equipment 1 of the hinge cover of the utility model, in the process of the free unfolding of the hinge cover 21 of the test equipment 2, the unfolding speed of the hinge cover 21 is tested, and the hinge cover 21 is driven to close by the closing mechanism 13, the unfolding force of the hinge cover 21 is tested in the closing process, so that the unfolding speed and the unfolding force of the hinge cover 21 are tested, and the quantitative test result can be obtained, without subjective judgment of the tester, effectively solve the defects that the test result of the hinge cover function test in the prior art is mainly subjective judgment of the tester, the test efficiency is low, and the test result is inaccurate in a large number of continuous tests.
[0045] Specifically, in some embodiments, as shown in Figure 1 The hinge action detection device 12 includes a first photoelectric sensor 121 and a second photoelectric sensor 122. In the case of the hinge cover 21 rotating to the closing position, the emitting end of the first photoelectric sensor 121 is aligned with the hinge cover 21. In the case of the hinge cover 21 rotating to the target unfolding position, the emitting end of the second photoelectric sensor 122 is aligned with the hinge cover 21.
[0046] In the embodiment, it can be understood that the emitting end of the photoelectric sensor will feed back different detection information to the control unit when it is shielded by the hinge cover 21 and not shielded by the hinge cover 21. By setting the first photoelectric sensor 121 and the second photoelectric sensor 122 corresponding to the closing position and the target unfolding position of the hinge cover 21 respectively, when the hinge cover 21 is located at the closing position, the light path of the first photoelectric sensor 121 is shielded by the hinge cover 21, and the first photoelectric sensor 121 will feed back the first detection information to the control unit; when the hinge cover 21 is located at the target unfolding position, the light path of the second photoelectric sensor 122 is shielded by the hinge cover 21, and the second photoelectric sensor 122 will feed back the second detection information to the control unit; when the first photoelectric sensor 121 is not shielded by the hinge cover 21, the first photoelectric sensor 121 will feed back the third detection information to the control unit; when the second photoelectric sensor 122 is not shielded by the hinge cover 21, the second photoelectric sensor 122 will feed back the fourth detection information to the control unit. The control unit can determine whether the hinge cover 21 rotates to the closing position or the target unfolding position by the change of the information fed back by the first photoelectric sensor 121 and the second photoelectric sensor 122, and determine the time point when the hinge cover 21 rotates to the closing position or the target unfolding position.
[0047] In some embodiments, as shown in Figure 1 The closing mechanism 13 includes a first driving member 131 and a rotating assembly 132. The rotating assembly 132 is rotatably arranged on the test table 11. The first driving member 131 and the rotating assembly 132 are drivingly connected to drive the rotating assembly 132 to rotate, and the rotating assembly 132 is used to drive the hinge cover 21 to rotate from the target unfolding position to the closing position during rotation. The pressure sensor 14 is arranged on the rotating assembly 132.
[0048] In the embodiment, the rotating assembly 132 is rotatably arranged on the test table 11, and the first driving member 131 is in transmission connection with the rotating assembly 132. The first driving member 131 can drive the rotating assembly 132 to rotate, so as to adjust the position of the rotating assembly 132 according to the test requirement. In the process of the flip cover 21 freely turning and unfolding relative to the main machine 22, the rotating assembly 132 can rotate to a position away from the flip cover 21, so as to avoid blocking the flip cover 21 and affecting the test on the unfolding speed of the flip cover 21. When the pressure of the flip cover 21 is tested, the first driving member 131 can drive the rotating assembly 132 to rotate to contact the flip cover 21 and drive the flip cover 21 to rotate from the target unfolding position to the closing position. The pressure sensor 14 on the rotating assembly 132 can be used to detect the pressure of the flip cover 21 on the rotating assembly 132 in the rotating process.
[0049] Specifically, the first driving member 131 can be a servo motor.
[0050] It can be understood that, in the rotating process, the pressure of the flip cover 21 on the rotating assembly 132 is affected by the torque of the rotating assembly 132 and the driving force of the driving mechanism (such as a torsional spring) of the flip cover 21 when unfolding. When the first driving member 131 drives the rotating assembly 132, the torque can be controlled. For example, the torque of the rotating assembly 132 can be kept constant, so that the pressure data detected by the pressure sensor 14 can better reflect the unfolding force of the driving mechanism of the flip cover 21.
[0051] Specifically, in some embodiments, as shown in Figure 1 The rotating assembly 132 includes a rotating support 1321 and an abutting piece 1322. The rotating support 1321 is rotatably arranged on the test table 11, the first driving member 131 is in transmission connection with the rotating support 1321, the pressure sensor 14 is arranged on the rotating support 1321, and the abutting piece 1322 is connected to the detection end of the pressure sensor 14 and is used to abut against the back surface of the flip cover 21.
[0052] In the embodiment, the rotating support 1321 is rotatably arranged on the test table 11 and is in transmission connection with the first driving member 131. The rotating support 1321 is used to fixedly install the pressure sensor 14 and the abutting piece 1322 and drive the pressure sensor 14 and the abutting piece 1322 to rotate under the driving of the first driving member 131. The abutting piece 1322 is used to abut against the back surface of the flip cover 21, so as to drive the flip cover 21 to rotate from the target unfolding position to the closing position. In the rotating process, the abutting piece 1322 can press the detection end of the pressure sensor 14, so that the pressure sensor 14 can detect the pressure of the flip cover 21 on the abutting piece 1322.
[0053] Specifically, the abutting member 1322 can be made of a flexible material to avoid scratching or wearing the flip cover 21 during the test.
[0054] In some embodiments, as shown in FIG. 1, the hinge cover test device 1 further comprises a display screen 15, which is in communication with the control unit, and the control unit is further configured to obtain a test result according to the pressure data and the opening speed. The display screen 15 is configured to display the test result. Figure 1
[0055] In the present embodiment, after obtaining the pressure data and the opening speed, the control unit can compare the pressure data and the opening speed with pre-stored qualified pressure data and qualified opening speed in the control unit. It can be understood that the qualified pressure data is usually a qualified data range of pressure, and the qualified opening speed is usually a qualified data range of opening speed. The above two data ranges can be obtained by experiments or simulations on the device to be tested 2 and pre-stored in the control unit before the test. When the pressure data and the opening speed obtained by the control unit both fall within the corresponding qualified data range, the control unit determines that the flip cover function of the device to be tested 2 is qualified, and controls the display screen 15 to prompt the tester through images or text that the flip cover test of the device to be tested 2 is passed, and the device to be tested 2 can continue the subsequent production or test process; otherwise, when any one of the pressure data and the opening speed falls outside the corresponding qualified data range, the display screen 15 prompts the tester that the flip cover test of the device to be tested 2 is unqualified through text or images, so as to remind the tester to recycle the device to be tested 2 and perform subsequent maintenance and fault analysis processes.
[0056] It can be understood that the display screen 15 can also be used to display the opening speed value calculated by the control unit after the test or to display the pressure value detected by the pressure sensor 14 in real time during the test, so that the tester can monitor the entire test process and discover data abnormalities in time.
[0057] Optionally, in some embodiments, the display screen 15 can also be a touch screen, so that the tester can input control instructions to the control unit through the touch screen, so as to configure and modify the parameters of the control unit according to the test requirements.
[0058] Optionally, in some embodiments, the hinge cover test device 1 further comprises a prompting device 16, which is in communication with the control unit, and the control unit is further configured to control the prompting device 16 to perform light prompting and / or sound prompting according to the test result.
[0059] In the embodiment, the prompt device 16 is communicatively connected with the setting and control unit. The prompt device 16 can be a buzzer, an alarm lamp or other components with sound or light functions, or can be a component integrated with both sound and light functions. After the control unit determines that the test result is “qualified” or “unqualified”, the control unit can control the prompt device 16 to emit different sounds or lights, so that the tester can distinguish the test result through the sound and light prompts of the prompt device 16 and perform corresponding subsequent operations.
[0060] It can be understood that, when placing the device to be tested 2 on the test table 11, the device to be tested 2 needs to be placed at a preset test position, so that the flip action detection device 12, the cover closing mechanism 13 and the pressure sensor 14 can normally cooperate with the device to be tested 2 to realize the functions of closing the cover, detecting the position of the flip cover 21 and detecting the pressure.
[0061] Specifically, a mark for identifying the placement position of the device to be tested 2 can be arranged on the test table 11. For example, an identification frame can be drawn or pasted on the test table 11 corresponding to the placement position of the device to be tested 2.
[0062] Further, in some embodiments, the position of the test table 11 corresponding to the placement of the device to be tested 2 can be provided with a limiting slot or a limiting mechanism, so as to limit the device to be tested 2 when it is placed on the test table 11, thereby avoiding the device to be tested 2 from deviating during the test and affecting the test result.
[0063] Optionally, the limiting mechanism can limit the device to be tested 2 through clamping, magnetic attraction or the like.
[0064] Specifically, in some embodiments, the pivot cover test device 1 further comprises a second driving member 17 and a clamping assembly 18, and the clamping assembly 18 is movably arranged on the test table 11. The second driving member 17 and the clamping assembly 18 are drivingly connected to drive the clamping assembly 18 to clamp or release the device to be tested 2.
[0065] In the embodiment, the clamping assembly 18 is arranged at a position of the test table 11 for placing the device to be tested 2. The clamping assembly 18 can be moved relative to the test table 11 under the driving of the second driving member 17 to clamp or release the device to be tested 2, so as to clamp and fix the device to be tested 2 on the test table 11 during the test, and release the device to be tested 2 after the test is completed, so that the tester can take away the device to be tested 2 for subsequent operations.
[0066] Specifically, in some embodiments, as shown in FIG. 2, the clamping assembly 18 comprises a clamping frame 181 and a clamping mechanism 182. Figure 1As shown, the clamping assembly 18 includes a fixed clamping block 181 and a movable clamping block 182. The fixed clamping block 181 is fixedly arranged on the test table 11, and the movable clamping block 182 is movably arranged on the test table 11. At least a portion of the fixed clamping block 181 is arranged opposite to the movable clamping block 182. The second driving member 17 is in transmission connection with the movable clamping block 182 to drive the movable clamping block 182 to move close to or away from the fixed clamping block 181.
[0067] In the embodiment, the fixed clamping block 181 is divided into the first portion 1811 and the second portion 1812 which are arranged opposite to the movable clamping block 182 to form a clamping space for placing and clamping the device under test 2. The fixed clamping block 181 is fixed on the test table 11 and can be used as a positioning structure to position the device under test 2 by abutting against a side of the device under test 2 when the device under test 2 is placed on the test table 11. After the device under test 2 is placed on the test table 11, the movable clamping block 182 can be driven by the second driving member 17 to move close to the fixed clamping block 181 to clamp and fix the device under test 2 together with the fixed clamping block 181. After the test is completed, the movable clamping block 182 can be driven by the second driving member 17 to move away from the fixed clamping block 181 to release the device under test 2.
[0068] Specifically, in some embodiments, as shown in FIG. 1, the fixed clamping block 181 includes a first portion 1811 and a second portion 1812 which are arranged opposite to the movable clamping block 182. Figure 1 As shown, the fixed clamping block 181 includes a first portion 1811 and a second portion 1812 which are arranged opposite to the movable clamping block 182.
[0069] In the embodiment, the fixed clamping block 181 is divided into the first portion 1811 and the second portion 1812 which are arranged opposite to the movable clamping block 182 to form a clamping space for placing and clamping the device under test 2. The fixed clamping block 181 is fixed on the test table 11 and can be used as a positioning structure to position the device under test 2 by abutting against a side of the device under test 2 when the device under test 2 is placed on the test table 11. After the device under test 2 is placed on the test table 11, the movable clamping block 182 can be driven by the second driving member 17 to move close to the fixed clamping block 181 to clamp and fix the device under test 2 together with the fixed clamping block 181. After the test is completed, the movable clamping block 182 can be driven by the second driving member 17 to move away from the fixed clamping block 181 to release the device under test 2.
[0070] It can be understood that the first portion 1811 and the second portion 1812 are usually arranged perpendicularly.
[0071] Specifically, the second driving member 17 can be any controllable power element such as a pneumatic cylinder, a motor, etc.
[0072] It is understandable that for the test device 2 that can unfold automatically, when the flip cover 21 is in the closed position, the flip cover 21 and the main unit 22 are usually locked by a locking structure. At the same time, the test device 2 is usually equipped with a button for controlling the release of the locking structure. After the button is triggered, the locking structure is released, allowing the flip cover 21 to unfold relative to the main unit 22.
[0073] In some embodiments, such as Figure 1 As shown, the hinged flip cover testing device 1 also includes a pressing component 19 and a third driving component 191. The pressing component 19 is movably disposed on the test platform 11 at the position corresponding to the button. The third driving component 191 and the pressing component 19 are connected by a drive mechanism to drive the pressing component 19 to press or move away from the button.
[0074] In this embodiment, by providing a movable pressing member 19 on the test bench 11, when the device under test 2 is placed on the test bench 11, the pressing member 19 can be aligned with the button on the device under test 2 used to control the release of the flip cover 21 of the locking structure. During the test, the pressing member 19 can be pressed and triggered by the third driving member 191 to control the release of the flip cover 21 of the locking structure, so that the flip cover 21 can be freely unfolded relative to the host 22, so as to test the unfolding speed of the flip cover 21.
[0075] Optionally, the third drive component 191 can be any controllable power element such as a cylinder or an electric motor.
[0076] Optionally, in some embodiments, the first drive component 131, the second drive component 17, and the third drive component 191 of the hinge flip cover testing device 1 are all communicatively connected to a control unit. The control unit can be equipped with a control program to control the operation of the aforementioned drive components, thereby automating the entire testing process. Optionally, the test bench 11 can be equipped with control switches for controlling the first drive component 131, the second drive component 17, and the third drive component 191, so that the tester can sequentially control the operation of the first drive component 131, the second drive component 17, and the third drive component 191 according to the testing procedure to complete the entire testing process.
[0077] Specifically, in one specific embodiment, the test procedure is as follows: the tester triggers the first switch on the test table 11, after the first switch is triggered, the control unit controls the first driving member 131 to drive the rotating assembly 132 to rotate to a position away from the placement position of the device to be tested 2, so as to avoid blocking interference to the device to be tested 2; then the tester places the device to be tested 2 at the preset placement position, and triggers the second switch again, after the second switch is triggered, the control unit controls the second driving member 17 to drive the clamping assembly 18 to clamp and fix the device to be tested 2, after clamping is completed, the control unit controls the third driving member 191 to drive the pressing member 19 to trigger the key on the device to be tested 2, so that the flip cover 21 is automatically unfolded, in the process of unfolding the flip cover 21 from the closed position to the target unfolded position, the control unit can determine the time consumed by the flip cover 21 from leaving the closed position to reaching the target unfolded position according to the information fed back by the flip cover action detection device 12, and calculate the unfolding speed according to the time; after the flip cover 21 is unfolded to the target unfolded position, the control unit controls the first driving member 131 to drive the rotating assembly 132 to drive the flip cover 21 to return to the closed position from the target unfolded position, in the process of resetting the flip cover 21, the control unit will continuously record the pressure data detected by the pressure sensor 14 until the flip cover 21 reaches the closed position. Then the control unit controls the first driving member 131 to drive the rotating assembly 132 to rotate to a position away from the placement position of the device to be tested 2. The control unit judges whether the flip cover function of the device to be tested 2 is qualified according to the pressure data and the unfolding speed, and displays the corresponding result on the display screen 15, and informs the tester to take out the device to be tested 2 and perform subsequent operation through the prompting device 16.
[0078] Finally, it should be pointed out that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A rotating hinge flip cover testing device, characterized in that, include: A test stand is used to place the device to be tested. A lid-closing mechanism is provided on the test platform to drive the lid of the device under test to rotate from the target unfolded position to the closed position; A flip-top action detection device is installed on the test platform to detect whether the flip-top has rotated to the target unfolded position or the closed position; A pressure sensor is disposed in the lid closing mechanism to detect the pressure exerted by the flip lid on the lid closing mechanism; The control unit is communicatively connected to the flip-top action detection device and the pressure sensor, respectively; the control unit is used to obtain the unfolding speed of the flip-top based on the information fed back by the flip-top action detection device, and is also used to obtain the pressure data fed back by the pressure sensor.
2. The rotating hinge cover testing device according to claim 1, characterized in that, The flip-cover action detection device includes a first photoelectric sensor and a second photoelectric sensor; When the flip cover is rotated to the closed position, the emitting end of the first photoelectric sensor is aligned with the flip cover; When the flip cover is rotated to the target unfolded position, the transmitting end of the second photoelectric sensor is aligned with the flip cover.
3. The rotating hinge cover testing device according to claim 1, characterized in that, The closing mechanism includes a first driving component and a rotating assembly; The rotating assembly is rotatably mounted on the test bench; the first driving member and the rotating assembly are connected in a transmission manner to drive the rotating assembly to rotate, and the rotating assembly is used to drive the flip cover to rotate from the target unfolded position to the closed position during the rotation; the pressure sensor is mounted on the rotating assembly.
4. The hinged flip cover testing device according to claim 3, characterized in that, The rotating assembly includes a rotating bracket and an abutment. The rotating bracket is rotatably mounted on the test bench. The first driving member is connected to the rotating bracket. The pressure sensor is mounted on the rotating bracket. The abutment is connected to the detection end of the pressure sensor and is used to abut against the back of the flip cover.
5. The rotating hinge cover testing device according to claim 1, characterized in that, It also includes a display screen, which is communicatively connected to the control unit. The control unit is also used to obtain test results based on the pressure data and the deployment speed; the display screen is used to display the test results.
6. The rotating hinge cover testing device according to claim 5, characterized in that, It also includes a prompting device, which is communicatively connected to the control unit. The control unit is also used to control the prompting device to provide light and / or sound prompts based on the test results.
7. The rotating hinge cover testing device according to claim 1, characterized in that, It also includes a second driving member and a clamping assembly, the clamping assembly being movably disposed on the test bench; the second driving member and the clamping assembly are connected by a drive to drive the clamping assembly to clamp or release the device under test.
8. The hinged flip cover testing device according to claim 7, characterized in that, The clamping assembly includes a fixed clamping block and a movable clamping block; The fixed clamp is fixedly disposed on the test bench, and the movable clamp is movably disposed on the test bench. At least a portion of the fixed clamp is disposed opposite to the movable clamp. The second driving member is kinetically connected to the movable clamp to drive the movable clamp to move closer to or away from the fixed clamp.
9. The rotating hinge cover testing device according to claim 8, characterized in that, The fixed clamping block includes a first part and a second part connected together; the first part and the movable clamping block are disposed opposite to each other, and the second part and the first part are disposed at an angle; the first part is used to abut against a first side of the device under test, and the second part is used to abut against a second side of the device under test adjacent to the first side.
10. The rotating hinge cover testing device according to claim 1, characterized in that, The device under test is equipped with a button that unfolds the flip cover when triggered. The hinge flip cover testing device also includes a pressing component and a third driving component. The pressing component is movably disposed on the test platform at the position corresponding to the button. The third driving component and the pressing component are connected in a transmission manner to drive the pressing component to press or move away from the button.