Mobile phone battery service life detection equipment
By introducing multiple testing seats and sliding frames into the testing equipment, combined with the automated drive of hydraulic cylinders and hydraulic rods, the problem that existing equipment can only perform single testing is solved. Simultaneous testing of multiple batteries and flexible clamping of batteries of different specifications are achieved, thereby improving testing efficiency and equipment adaptability.
Patent Information
- Application Number
- CN202422469524.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-10-12
AI Technical Summary
Existing mobile phone battery life testing equipment has a simple structure and single function. It cannot test multiple batteries at the same time, relies on manual operation, and has poor adaptability, resulting in low testing efficiency, high labor costs, unstable and error-prone operation, and cannot adapt to batteries of different specifications.
Multiple inspection seats and sliding frames are designed, combined with an automated drive device of hydraulic cylinders and hydraulic rods. The clamping device can flexibly clamp batteries of different specifications through driven wheels, driving wheels, screws and other components, reducing manual operations and improving inspection efficiency and consistency.
It realizes the simultaneous detection of multiple batteries, and the automated operation reduces the intensity of manual labor, improves the detection efficiency and accuracy, expands the adaptability of the equipment, and is suitable for batteries of different specifications.
Smart Images

Figure CN223461676U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mobile phone battery service life detection equipment technical field, more specifically, it relates to a mobile phone battery service life detection equipment. BACKGROUND
[0002] In the current mobile phone battery service life detection technology field, there are some significant limitations and deficiencies, these problems seriously affect the detection efficiency, operation convenience and equipment applicability, and bring many challenges to the industry.
[0003] Firstly, the existing detection equipment generally has the problems of simple structure and single function, these devices can usually only charge and discharge detection of a single battery at the same time to evaluate its service life, this single detection mode greatly limits the detection efficiency, especially in the scene of batch detection, such as mobile phone production line quality control or large-scale maintenance service, this inefficient detection method will lead to the whole process becomes long and time-consuming, not only so, this method will increase the labor cost, because the need for operating personnel frequently change and monitor the measured battery, which undoubtedly increases the labor intensity and the possibility of human error, in the high-intensity working environment, this single detection mode not only reduces the overall work efficiency, but also may affect the accuracy and consistency of the detection results.
[0004] Secondly, in the process of battery placement, the existing technology still highly depends on manual operation, which further aggravates the problems of low efficiency and complicated operation, the operator needs to manually push and pull the sliding plate to make the detection seat slide out of the detection box, and then place or take out the battery to be tested, this process not only consumes time, but also easily leads to operation fatigue due to repetitive labor, increasing the risk of operation errors, the action of manually pushing and pulling the sliding plate may seem simple, but in the long-term, high-frequency operation, it may cause the operator to have occupational diseases, such as carpal tunnel syndrome, in addition, the instability of manual operation may cause the sliding plate to move unstably, this manual operation mode not only reduces the overall work efficiency, but also increases the disturbance of human factors to the detection process.
[0005] In addition, another major defect of the existing detection equipment is its limited adaptability, most detection equipment is designed to detect only a specific specification of mobile phone battery, this single severely limits the scope of application of the device, in the mobile phone models and battery specifications are increasingly diverse today, this limitation is particularly prominent, when faced with different size batteries, these devices often can not provide effective fixation and detection function, this poor adaptability problem not only increases the equipment procurement and maintenance costs, because the need for different specifications of the battery with specialized detection equipment, but also reduces the flexibility and response speed of the detection center, in the rapidly changing consumer electronics market, this limitation can lead to detection equipment quickly become obsolete, unable to meet the detection needs of new models of battery. Practical new content
[0006] (I) the technical problem solved
[0007] In view of the problems existing in the prior art, the utility model provides a mobile phone battery service life detection equipment to solve the technical problems mentioned in the background art.
[0008] (II) technical scheme
[0009] In order to achieve the above object, the utility model provides the following technical scheme: a mobile phone battery service life detection equipment, including detection box, characterized by: detection device is arranged in the detection box, the detection device includes detection seat, sliding frame and box door, the sliding frame is slidably arranged in the detection box, the detection seat is detachably installed above the sliding frame, the box door is movably installed on one side of the detection box, the driving device is arranged below the sliding frame, the clamping device is arranged on one side of the detection seat, the clamping device includes driven wheel, control sleeve, movable plate, driving wheel, fixed sleeve, sliding groove, clamping rod, lead screw, matching block, connecting rod, matching groove, matching plate and connecting sleeve, the driven wheel is fixedly connected to one end of the lead screw, the control sleeve is connected to one side of the driving wheel, the movable plate is connected with the connecting sleeve through the connecting rod penetrating the sliding groove, the driving wheel is engaged with the driven wheel, the fixed sleeve is installed on one side of the detection seat, the sliding groove is opened in the side wall of the fixed sleeve, the clamping rod is arranged in the inner side of the fixed sleeve, the movable plate is movably connected with the lead screw through the screw thread, the matching block is connected to one side of the matching plate, the matching groove is opened in the fixed sleeve, and the matching plate is slidably arranged in the matching groove.
[0010] The utility model is further provided with a sliding plate connected to one side of the clamping rod, and the sliding plate is made of rubber on one side.
[0011] The utility model is further provided with an inclined structure design of the matching groove and the matching plate.
[0012] The utility model further sets up, one side of the cooperation piece is connected with the compression spring, the other end of compression spring is connected with the compression plate.
[0013] The utility model further sets up, one side of the cooperation piece is connected with the connecting block, one side of the connecting sleeve is equipped with the connecting groove in correspondence, and the connecting groove is fit with the connecting block.
[0014] The utility model further sets up, the rubber strip is connected outside the control sleeve, and the setting of rubber strip improves the operation feeling of control sleeve.
[0015] The utility model further sets up, the drive arrangement includes hydraulic cylinder and hydraulic rod, the hydraulic cylinder is detachably installed on the both sides of detection box, one end of hydraulic rod is connected with the output end of hydraulic cylinder, the other end of hydraulic rod is connected with the sliding frame, and the setting of drive arrangement makes the movement of sliding plate not need to use manpower operation again.
[0016] The utility model further sets up, the connecting frame is detachably arranged in the detection box, the sliding sleeve is detachably arranged on the connecting frame, the sliding rod is connected below the sliding frame, the sliding rod is slidably arranged in the inboard of sliding sleeve, and the setting of sliding rod and sliding sleeve improves the stability of sliding frame movement.
[0017] (Three) beneficial effects
[0018] Compared with the prior art, the utility model provides a kind of mobile phone battery service life detection equipment, with following beneficial effects:
[0019] 1, the design of detection device solves the limitation that only one battery can be detected simultaneously in prior art, by setting multiple detection seats and sliding frames in detection box, the function of simultaneously detecting the service life of multiple mobile phone batteries is realized, this design greatly improves detection efficiency, reduces detection time and labor consumption, and the design of sliding frame makes detection seat can be conveniently slid out from detection box, to facilitate operator to place and take out battery, improve work efficiency.
[0020] 2, the introduction of drive arrangement overcomes the shortcomings that sliding plate needs to be manually pushed and pulled in prior art, by the combination of hydraulic cylinder and hydraulic rod, the automatic movement of detection seat is realized, this design not only reduces the labor intensity of manual operation, but also improves the accuracy and consistency of operation, the cooperation of connecting frame, sliding sleeve and sliding rod makes the movement of sliding frame more stable and reliable, ensures the stability of detection process, this automatic driving mode greatly improves detection efficiency, reduces human error, and also reduces the labor intensity of operator.
[0021] 3、The innovative design of the clamping device solves the problem that the detection equipment in the prior art can only detect the same specification battery, and through the ingenious cooperation of the driven wheel, the driving wheel, the lead screw, the movable plate and other components, flexible clamping of different specifications of mobile phone batteries is realized, the design of the control sleeve makes the adjustment process simple and intuitive, the combination of the compression spring and the compression plate ensures the stability of the clamping rod, the design of the sliding plate and the rubber material increases the friction force of the contact surface with the battery, and the fixing effect is further improved, and hard impact damage is prevented, the multifunctional clamping device greatly improves the adaptability of the detection equipment, so that it can cope with mobile phone batteries of various specifications, and greatly expands the use range of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a whole structure schematic view of a mobile phone battery service life detection equipment in the utility model.
[0023] Figure 2 It is a whole structure schematic view of a mobile phone battery service life detection equipment in the utility model. Figure 1 It is a local enlarged structure schematic view of A in the utility model.
[0024] Figure 3 It is a sectional structure schematic view in the utility model.
[0025] Figure 4 It is a sectional structure schematic view of the clamping device part in the utility model.
[0026] Figure 5 It is a sectional structure schematic view of the movable plate and the cooperating block part in the utility model.
[0027] In the drawing: 1, detection box; 2, detection seat; 3, sliding frame; 4, box door; 5, driven wheel; 6, control sleeve; 7, movable plate; 8, driving wheel; 9, fixed sleeve; 10, sliding groove; 11, clamping rod; 12, lead screw; 13, cooperating block; 14, connecting rod; 15, cooperating groove; 16, cooperating plate; 17, connecting sleeve; 18, sliding plate; 19, compression spring; 20, compression plate; 21, connecting block; 22, connecting groove; 23, rubber strip; 24, hydraulic cylinder; 25, hydraulic rod; 26, connecting frame; 27, sliding sleeve; 28, sliding rod. DETAILED DESCRIPTION
[0028] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0029] It should be noted that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as generally understood by those skilled in the art to which the present application belongs.
[0030] In the utility model, in the case where no opposite statement is made, the orientation such as "upper, lower" is usually for the direction shown in the drawing, or for the vertical, perpendicular or gravity direction; similarly, for the convenience of understanding and description, "left, right" is usually for the left and right shown in the drawing; "inner, outer" refers to the inner and outer relative to the contour of each component itself, but the above orientation words are not used to limit the utility model.
[0031] Please refer to Figures 1-5 A mobile phone battery service life detection equipment, including detection box 1, its characterized in that: detection box 1 is provided with detection device, detection device includes detection seat 2, sliding frame 3 and box door 4, sliding frame 3 is slidably arranged in detection box 1, detection seat 2 is detachably installed on the upper side of sliding frame 3, box door 4 is movably installed on one side of detection box 1, driving device is arranged below sliding frame 3, clamping device is arranged on one side of detection seat 2, clamping device includes driven wheel 5, control sleeve 6, movable plate 7, driving wheel 8, fixed sleeve 9, sliding groove 10, clamping rod 11, lead screw 12, matching block 13, connecting rod 14, matching groove 15, matching plate 16 and connecting sleeve 17, driven wheel 5 is fixedly connected to one end of lead screw 12, control sleeve 6 is connected to one side of driving wheel 8, movable plate 7 is connected with connecting sleeve 17 through connecting rod 14 passing through sliding groove 10, driving wheel 8 is engaged with driven wheel 5, fixed sleeve 9 is installed on one side of detection seat 2, sliding groove 10 is opened in the side wall of fixed sleeve 9, clamping rod 11 is arranged in the inner side of fixed sleeve 9, movable plate 7 is movably connected with lead screw 12 through screw thread, matching block 13 is connected to one side of matching plate 16, matching groove 15 is opened in fixed sleeve 9, and matching plate 16 is slidably arranged in matching groove 15.
[0032] The side of clamping rod 11 is connected with sliding plate 18, and the side of sliding plate 18 is made of rubber material.
[0033] The matching groove 15 and the matching plate 16 are both designed as inclined structures.
[0034] The side of matching block 13 is connected with compression spring 19, and the other end of compression spring 19 is connected with compression plate 20.
[0035] The side of matching block 13 is connected with connecting block 21, and the side of connecting sleeve 17 is correspondingly provided with connecting groove 22, and the connecting groove 22 is matched with the connecting block 21.
[0036] The outer side of control sleeve 6 is connected with rubber strip 23.
[0037] In this embodiment, when using the device, the plurality of detection seats 2 arranged on the plurality of sliding frames 3 can enable the device to detect the service life of multiple mobile phone batteries simultaneously, without the need to detect the mobile phone batteries one by one, greatly improving the detection efficiency. When it is necessary to clamp the mobile phone battery inside the detection seat 2, first rotate the control sleeve 6, the control sleeve 6 drives the driving wheel 8 connected on one side to rotate, then the driving wheel 8 drives the driven wheel 5 engaged therewith to rotate, then the driven wheel 5 drives the lead screw 12 to rotate, then the movable plate 7 slides along the lead screw 12, then the movable plate 7 drives the connecting sleeve 17 to slide along the sliding groove 10 through the connecting rod 14, then the connecting sleeve 17 drives the matching block 13 to slide through the connecting block 21 and the connecting groove 22, then the matching block 13 drives the matching plate 16 connected on one side to slide along the matching groove 15, due to the inclined structure design of the matching groove 15 and the matching plate 16, then the matching plate 16 spreads outward while sliding, and the matching block 13 drives the connecting block 21 to slide along the connecting groove 22, then the compression spring 19 slowly resets, so that the pressing plate 20 no longer clamps the side wall of the clamping rod 11, then pull or push the clamping rod 11, so that the clamping rod 11 drives the sliding plate 18 to move, then place the mobile phone battery in the detection seat 2, and align the power supply end of the mobile phone battery with the terminal post arranged inside the detection seat 2, then push the clamping rod 11, so that the clamping rod 11 drives the sliding plate 18 to clamp the mobile phone battery, then rotate the control sleeve 6 in the opposite direction, the control sleeve 6 drives the lead screw 12 to reverse through the cooperation of the driving wheel 8 and the driven wheel 5, then the movable plate 7 slides along the lead screw 12 to reset, at the same time the movable plate 7 drives the connecting sleeve 17 to reset through the connecting rod 14, then the connecting sleeve 17 drives the matching block 13 to reset, then the matching block 13 drives the matching plate 16 to reset along the matching groove 15, at the same time the matching plate 16 drives the matching block 13 to gather inward, so that the matching block 13 drives the connecting block 21 to slide along the connecting groove 22, then the inside of the pressing plate 20 abuts against the outer wall of the clamping rod 11, then the matching block 13 cooperates with the pressing plate 20 to press the compression spring 19, so that multiple pressing plates 20 clamp the clamping rod 11, so that the mobile phone battery is stably fixed inside the detection seat 2 through the cooperation of the clamping rod 11, the sliding plate 18 and the detection seat 2. The structure design can flexibly clamp batteries of different sizes, thereby enhancing the use flexibility and adaptability of the device.
[0038] Please refer to Figure 1 and Figure 3 , as an embodiment of the driving device: the driving device comprises a hydraulic cylinder 24 and a hydraulic rod 25, the hydraulic cylinder 24 is detachably installed on both sides of the detection box 1, one end of the hydraulic rod 25 is connected with the output end of the hydraulic cylinder 24, and the other end of the hydraulic rod 25 is connected with the sliding frame 3.
[0039] The detection box 1 is detachably provided with a connecting frame 26, the connecting frame 26 is detachably provided with a sliding sleeve 27, and the sliding frame 3 is connected below the sliding rod 28 which is slidably arranged in the sliding sleeve 27.
[0040] More specifically, when the device is needed to detect the service life of the mobile phone battery, first, open the two symmetrical hydraulic cylinders 24, the hydraulic cylinder 24 drives the hydraulic rod 25 to move, then the hydraulic rod 25 drives the sliding frame 3 connected at the other end to move, then the sliding frame 3 drives the sliding rod 28 arranged below to slide along the sliding sleeve 27, then the sliding frame 3 drives the detection seat 2 arranged above to move out of the detection box 1, then place the mobile phone battery in the detection seat 2 one by one, then drive the hydraulic cylinder 24 again, so that the hydraulic cylinder 24 drives the hydraulic rod 25 to reset, then the hydraulic rod 25 drives the sliding frame 3 and the detection seat 2 to reset, at the same time, the sliding frame 3 drives the sliding rod to reset along the sliding sleeve, then open the external detection power supply device and the detection seat 2 to power on, then charge and discharge the battery through the wire column arranged in the detection seat 2, so as to calculate the service life of the mobile phone battery.
[0041] In summary, the overall device in use or operation: in the use of the device, a plurality of detection seats 2 arranged on a plurality of sliding racks 3 arranged can enable the device to detect the service life of multiple mobile phone batteries simultaneously, without the need to detect mobile phone batteries one by one, greatly improving the detection efficiency. When the mobile phone battery needs to be clamped inside the detection seat 2, first rotate the control sleeve 6, the control sleeve 6 drives the driving wheel 8 on one side to rotate, then the driving wheel 8 drives the driven wheel 5 engaged with it to rotate, then the lead screw 12 is driven to rotate by the driven wheel 5, then the movable plate 7 will slide along the lead screw 12, then the connecting sleeve 17 will slide along the sliding groove 10 by the connecting rod 14, then the connecting sleeve 17 will drive the matching block 13 to slide through the connecting block 21 and the connecting groove 22, then the matching block 13 will drive the matching plate 16 connected on one side to slide along the matching groove 15, due to the inclined structure design of the matching groove 15 and the matching plate 16, then the matching plate 16 will spread outward while sliding, and the matching block 13 will drive the connecting block 21 to slide along the connecting groove 22, then the compression spring 19 will slowly reset, so that the pressing plate 20 no longer clamps the side wall of the clamping rod 11, then pull or push the clamping rod 11, so that the clamping rod 11 drives the sliding plate 18 to move, then place the mobile phone battery in the detection seat 2, and align the power supply end of the mobile phone battery with the terminal post arranged inside the detection seat 2, then push the clamping rod 11, so that the clamping rod 11 drives the sliding plate 18 to clamp the mobile motor, then rotate the control sleeve 6 in the opposite direction, the control sleeve 6 drives the lead screw 12 to reverse through the cooperation of the driving wheel 8 and the driven wheel 5, then the movable plate 7 will slide along the lead screw 12 to reset, at the same time the movable plate 7 will drive the connecting sleeve 17 to reset through the connecting rod 14, then the connecting sleeve 17 will drive the matching block 13 to reset, then the matching block 13 will drive the matching plate 16 to reset along the matching groove 15, at the same time the matching plate 16 drives the matching block 13 to gather inward, so that the matching block 13 drives the connecting block 21 to slide along the connecting groove 22, then the inside of the pressing plate 20 will be attached to the outer wall of the clamping rod 11, then the matching block 13 will cooperate with the pressing plate 20 to press the compression spring 19, so that multiple pressing plates 20 clamp the clamping rod 11, so that the mobile phone battery is stably fixed inside the detection seat 2 through the cooperation of the clamping rod 11, the sliding plate 18 and the detection seat 2. The design of this structure can flexibly clamp batteries of different sizes, thereby enhancing the flexibility and adaptability of the device.
[0042] When the device is needed to detect the life of the mobile phone battery, first open the two symmetrical hydraulic cylinders 24, the hydraulic cylinder 24 drives the hydraulic rod 25 to move, then the hydraulic rod 25 drives the sliding frame 3 connected to the other end to move, then the sliding frame 3 drives the sliding rod 28 arranged below to slide along the sliding sleeve 27, then the sliding frame 3 drives the detection seat 2 arranged above to move out of the detection box 1, then the mobile phone battery is placed in the detection seat 2 one by one, then the hydraulic cylinder 24 is driven again, so that the hydraulic cylinder 24 drives the hydraulic rod 25 to reset, then the hydraulic rod 25 drives the sliding frame 3 and the detection seat 2 to reset, at the same time the sliding frame 3 drives the sliding rod to reset along the sliding sleeve, then the detection power supply device connected outside is opened and the detection seat 2 is powered on, then the battery is charged and discharged through the binding post arranged inside the detection seat 2, so as to calculate the service life of the mobile phone battery.
[0043] In all the above-mentioned solutions, the connection between the two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection or other known connection mode, which will not be described one by one, and the welding is preferred when the fixed connection is mentioned above, although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A mobile phone battery life detection device comprising a detection box (1), characterized in that: The utility model provides a detection box (1) is provided with detection device, detection device includes detection seat (2), sliding frame (3) and box door (4), sliding frame (3) is arranged in detection box (1), detection seat (2) is installed on sliding frame (3), and box door (4) is installed in one side of detection box (1), and driving device is arranged below sliding frame (3), one side of detection seat (2) is provided with clamping device, the clamping device includes driven wheel (5), control sleeve (6), movable plate (7), driving wheel (8), fixed sleeve (9), sliding slot (10), clamping rod (11), lead screw (12), cooperation block (13), connecting rod (14), cooperation groove (15), cooperation plate (16) and connecting sleeve (17), driven wheel (5) is connected in one end of lead screw (12), control sleeve (6) is connected in one side of driving wheel (8), movable plate (7) passes through sliding slot (10) with connecting sleeve (17) and is connected through connecting rod (14), and sliding slot (10) is set up in the side wall of fixed sleeve (9), and clamping rod (11) is arranged in the inboard of fixed sleeve (9), and movable plate (7) is connected through screw with lead screw (12), and cooperation block (13) is connected in one side of cooperation plate (16), and cooperation groove (15) is set up in fixed sleeve (9) inside.
2. A mobile phone battery life detection device according to claim 1, characterized in that: The side of the clamping rod (11) is connected with a sliding plate (18), and the side of the sliding plate (18) is made of rubber material.
3. A mobile phone battery life detection device according to claim 2, characterized in that: The cooperation groove (15) and the cooperation plate (16) are both inclined structure design.
4. A mobile phone battery life detection device according to claim 3, characterized in that: The side of the cooperation block (13) is connected with a compression spring (19), and the other end of the compression spring (19) is connected with a pressing plate (20).
5. A mobile phone battery life detection device as claimed in claim 4, wherein: The side of the cooperation block (13) is connected with a connecting block (21), and the side of the connecting sleeve (17) is correspondingly provided with a connecting groove (22), and the connecting groove (22) is matched with the connecting block (21).
6. A mobile phone battery life detection device according to claim 5, characterized in that: The outside of the control sleeve (6) is connected with a rubber strip (23).
7. A mobile phone battery life detection device according to any one of claims 1 to 6, wherein: the battery life detection device is configured to determine the battery life of the battery based on the battery voltage and the battery current. The driving device includes a hydraulic cylinder (24) and a hydraulic rod (25), the hydraulic cylinder (24) is detachably installed on both sides of the detection box (1), one end of the hydraulic rod (25) is connected with the output end of the hydraulic cylinder (24), and the other end of the hydraulic rod (25) is connected with the sliding frame (3).
8. A mobile phone battery life detection device according to claim 7, characterized in that: The detection box (1) is detachably provided with a connecting frame (26), the connecting frame (26) is detachably provided with a sliding sleeve (27), and the lower side of the sliding frame (3) is connected with a sliding rod (28), and the sliding rod (28) is slidably arranged in the inner side of the sliding sleeve (27).