Fascia gun battery aging test device
By designing an automated fascia gun battery aging test device, the problems of low efficiency and inaccurate test results in existing testing methods have been solved. The device enables automated multi-mode testing and sorting of batteries, improving the efficiency and accuracy of quality inspection.
Patent Information
- Application Number
- CN202511290668.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2025-10-17
AI Technical Summary
Existing fascia gun battery aging test methods rely on manual operation, making it difficult to achieve continuous batch testing, resulting in inaccurate test results, and lack of automated sorting mechanisms, leading to low quality inspection efficiency.
A fascia gun battery aging test device is designed, which adopts a collaborative design of turntable, clamping module and double discharge ramp to realize automated feeding, testing and unloading sorting. Combined with continuous and intermittent testing interfaces, the device achieves automatic clamping and plug ejection through the linkage design of electric cylinder driven pull rod and ramp.
It improves the overall efficiency of battery aging testing, enables flexible multi-mode testing on the same platform, obtains more accurate battery performance evaluation, and achieves automated sorting of qualified and unqualified products.
Smart Images

Figure CN120802104A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of battery testing, in particular to a fascia gun battery aging test device. BACKGROUND
[0002] As a portable muscle relaxation device, the core power source of the fascia gun is a built-in rechargeable battery. The performance state of the battery directly affects the use experience and safety of the product. Especially as the use time increases, the battery will show aging phenomena such as increased internal resistance, unstable voltage, capacity attenuation, and the like, which seriously affect the endurance and output stability of the device. Therefore, it is particularly important to perform systematic and efficient aging tests and performance screening on the fascia gun battery in the production and quality inspection links. At present, the traditional method for battery aging test mainly relies on manual operation and simple test tools, which has the following obvious shortcomings: the traditional test usually requires manual installation of batteries, connection of test instruments, and manual recording of data, and it is difficult to realize continuous batch testing, which cannot meet the quality inspection efficiency requirements under large-scale production. Manual operation is prone to poor battery contact, non-uniform test pressure, and difficulty in accurately controlling the on-off frequency and contact time during the test process, which affects the accuracy and comparability of the test results. Most existing devices can only perform single-mode tests such as continuous discharge or simple internal resistance measurement, and cannot flexibly realize continuous working mode and intermittent on-off mode tests on the same platform, which makes it difficult to fully simulate the actual working state of the battery. After the test, the batteries need to be sorted manually according to the results, which is low in efficiency and prone to errors, lacks integrated automatic judgment and sorting mechanism, and increases labor costs and operation complexity. Therefore, it is urgent to develop an automatic test device integrating clamping, testing, judgment, and sorting, which can efficiently and accurately perform multi-mode aging tests on fascia gun batteries and automatically sort qualified and unqualified products, thereby improving the product quality control level and production efficiency. SUMMARY
[0003] In view of the above technical problems, the technical scheme adopted by the application is as follows: a fascia gun battery aging test device, which comprises a main body mechanism for fixing and clamping the fascia gun battery, the main body mechanism comprises a bottom box, two groups of release mechanisms for releasing the clamping of the tested fascia gun battery are arranged on the main body mechanism, and a detection mechanism for aging test of the fascia gun battery is arranged on the main body mechanism, the detection mechanism comprises a battery internal resistance tester. The main body mechanism comprises two clamping modules, the clamping module comprises two docking frames, a docking shell is rotatably installed on the docking frame, a rotating gear is fixedly installed on the docking shell, three groups of guide grooves are arranged on the docking shell of one of the docking frames, two guide rings are fixedly installed on the docking shell of the other docking frame, a plug-in seat is fixedly installed on the docking shell, and the battery plug of the fascia gun battery is inserted into the plug-in seat during use.
[0004] Further, the main body mechanism comprises a qualified discharge slope and an unqualified discharge slope fixedly installed in the bottom box, a rotating disc motor fixedly installed in the bottom box, a motor gear fixedly installed on the motor shaft of the rotating disc motor, a rotating column rotatably installed in the bottom box, a rotating disc fixedly installed on the rotating column, a rotating disc gear fixedly installed on the rotating column, and the rotating disc gear is engaged with the motor gear.
[0005] Further, the clamping module further comprises a sliding rail fixedly installed on the rotating disc, the docking frame is slidingly installed on the sliding rail, a fixed plate is fixedly installed on the rotating disc, a guide column is fixedly installed on the fixed plate, the docking frame is slidingly installed with the guide column, and a guide column spring is arranged between the docking frame and the fixed plate.
[0006] Further, the docking shell slidingly installs a pressing column, a button and a groove block are fixedly installed on the pressing column, a pressing spring is arranged between the pressing column and the docking shell, a slot is arranged on the groove block, an intermediate column is fixedly installed in the docking shell, a push-out rotating rod is rotatably installed on the intermediate column, a horizontal sliding column is fixedly installed on the push-out rotating rod, the horizontal sliding column slides in the slot of the groove block, a push-out block is slidingly installed in the docking shell, the push-out block is rotatably installed with the push-out rotating rod, and the two plug-in sockets in the docking shell are electrically connected with the guide ring and the guide groove respectively.
[0007] In use, first, the fascia gun battery is placed between the two docking shells of the clamping module above the unqualified discharge slope, then the battery plug is inserted into the plug-in socket, when the continuous test of the fascia gun battery is needed, the battery plug is inserted into the plug-in socket on the docking shell provided with the guide ring, when the on-off test of the fascia gun battery is needed, the battery plug is inserted into the plug-in socket on the docking shell provided with the guide groove, the docking frame slides along the guide column and the sliding rail through the guide column spring, so that the two docking shells clamp the fascia gun battery, then the rotating disc motor drives the motor gear to rotate, drives the rotating disc gear, the rotating column and the rotating disc to rotate, so that the rotating disc rotates one hundred and eighty degrees, the fascia gun battery just clamped is moved to the detection shell, and the other clamping module reaches above the unqualified discharge slope.
[0008] Further, the release mechanism comprises two brackets fixedly installed on the rotating disc, the two brackets are respectively located on the two sides of the clamping module, a receiver is fixedly installed on the bracket, an electric cylinder is fixedly installed on the bracket, the electric cylinder is electrically connected with the receiver, and the receiver is electrically connected with the battery internal resistance instrument.
[0009] Further, an active block is fixedly installed on the output end of the electric cylinder, a pull-out rod is rotatably installed on the active block, a limit block is fixedly installed on the pull-out rod, a fixed slope block is fixedly installed on the bracket, a slope surface is arranged on the fixed slope block, a rear slope block and a front slope block are fixedly installed below the pull-out rod, and slope surfaces are arranged on the rear slope block and the front slope block.
[0010] When the fascia gun battery detection is completed, if it is qualified, when the clamping module is above the qualified discharge slope, that is, the clamping module is beside the detection shell, the receiver controls the electric cylinder to elongate, so that the movable block and the pull-out rod are extended, after the current slope block is in contact with the docking rack, the docking rack passes through the slope surface of the front slope block, so that the pull-out rod rotates upward relative to the movable block, after the current slope block passes through the docking rack, the pull-out rod rotates downward due to gravity, the pull-out rod restores to horizontal, then after the pull-out rod contacts the button, the button, the pressing column and the groove block slide inward, the pressing spring is compressed, the groove block drives the push-out rotating rod to rotate relative to the middle column through the slot hole, so that the push-out block slides outward through the push-out rotating rod, the battery plug inserted in the plug-in seat is pushed out through the push-out block, so that the battery plug is separated from the plug-in seat, then the electric cylinder is retracted, the pressing spring rebounds, so that the button and the plug-in seat reset, after the front slope block contacts the docking rack in the retreat process, the docking rack is pulled outward along the guide column and the sliding rail, the guide column spring is compressed, so that the docking shell no longer clamps the fascia gun battery, the qualified fascia gun battery falls into the qualified discharge slope, then slides out of the qualified discharge slope, if the detection is unqualified, when the clamping module carrying the unqualified fascia gun battery moves above the unqualified discharge slope, the receiver controls the electric cylinder to elongate, so that the movable block and the pull-out rod are extended, after the current slope block is in contact with the docking rack, the docking rack passes through the slope surface of the front slope block, so that the pull-out rod rotates upward relative to the movable block, after the current slope block passes through the docking rack, the pull-out rod rotates downward due to gravity, the pull-out rod restores to horizontal, then after the pull-out rod contacts the button, the button, the pressing column and the groove block slide inward, the pressing spring is compressed, the groove block drives the push-out rotating rod to rotate relative to the middle column through the slot hole, so that the push-out block slides outward through the push-out rotating rod, the battery plug inserted in the plug-in seat is pushed out through the push-out block, so that the battery plug is separated from the plug-in seat, then the electric cylinder is retracted, the pressing spring rebounds, so that the button and the plug-in seat reset, after the front slope block contacts the docking rack in the retreat process, the docking rack is pulled outward along the guide column and the sliding rail, the guide column spring is compressed, so that the docking shell no longer clamps the fascia gun battery, the unqualified fascia gun battery falls into the unqualified discharge slope, then slides out of the unqualified discharge slope.
[0011] Further, the detection mechanism comprises a detection shell fixedly installed on the bottom box, and the battery internal resistance instrument is fixedly installed on the detection shell.
[0012] Further, a stretching rack is fixedly installed on the stretching frame, and the stretching rack is engaged with the rotating gear when the detection electric cylinder is elongated.
[0013] When the clamping module moves to the detection shell with the muscle gun battery, the detection cylinder extends to drive the extension frame, the extension rack, the slide column and the detection block to move outward, then a group of detection pieces contact the guide groove, and another group of detection pieces contact the guide ring, then the extension rack begins to mesh with the rotating gear, as the detection cylinder continues to extend, the slide column slides relative to the extension frame, the slide column spring is compressed, the extension rack drives the rotating gear and the docking shell to rotate, thereby rotating the muscle gun battery a full circle, if the battery plug is inserted into the plug-in seat of the docking shell provided with the guide ring, the guide ring continuously contacts the detection piece, at this time the internal resistance, current and voltage of the muscle gun battery are measured by the battery internal resistance instrument; if the battery plug is inserted into the plug-in seat of the docking shell provided with the guide groove, the three groups of guide grooves intermittently contact the detection piece, at this time the internal resistance, current and voltage of the muscle gun battery are measured by the battery internal resistance instrument, the aging degree of the muscle gun battery is determined by measuring the internal resistance, current and voltage of the muscle gun battery, the greater the internal resistance of the muscle gun battery, the more serious the aging degree.
[0014] The beneficial effects of the present application compared with the prior art are: (1) The present application realizes the whole process automation circulation of feeding, testing and discharging sorting through the cooperative design of the turntable, the clamping module and the double discharging ramps, the operator only needs to continuously feed at one station, the device can automatically complete the clamping of the battery, rotation to the test station, detection, then rotation to different ramps according to the results and automatic discharging, greatly improving the overall efficiency of the battery aging test, especially suitable for the quality inspection link in large-scale production; (2) The present application adopts two different test interfaces, namely the continuous contact interface with the guide ring and the intermittent contact interface with the guide groove, and through the cooperation with the detection mechanism, the continuous discharge test or the start-stop test simulating the actual working state can be flexibly selected, the internal resistance, voltage and current data of the battery in the continuous working and intermittent pulse working two modes can be obtained, so that the performance and aging condition of the battery can be more accurately evaluated; (3) The release mechanism of the present application realizes the automatic pushing out of the battery plug after detection and the automatic release of the clamping force through the linkage design of the cylinder driven pull rod, the slope block and the button, the whole release process is orderly carried out by using the characteristics of the mechanical structure, the action is reliable, the use of complex sensors or separate power sources is avoided, and it is ensured that the qualified and unqualified batteries can be accurately discharged into the corresponding discharging ramps, realizing automatic sorting. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a whole structure schematic diagram of the present application.
[0016] Figure 2 It is a main body mechanism structure schematic diagram of the present application Figure One .
[0017] Figure 3Structure diagram of main body mechanism of the present application Figure Two .
[0018] Figure 4 Structure diagram of clamping module of the present application Figure One .
[0019] Figure 5 Structure diagram of clamping module of the present application Figure Two .
[0020] Figure 6 Structure diagram of Figure 5 partial structure at A in the present application.
[0021] Figure 7 Structure diagram of releasing mechanism of the present application Figure One .
[0022] Figure 8 Structure diagram of releasing mechanism of the present application Figure Two .
[0023] Figure 9 Structure diagram of detecting mechanism of the present application Figure One .
[0024] Figure 10 Structure diagram of detecting mechanism of the present application Figure Two .
[0025] Reference numerals: 101 - bottom box; 102 - rotating disc; 103 - qualified discharge slope; 104 - unqualified discharge slope; 105 - rotating disc motor; 106 - motor gear; 107 - rotating column; 108 - rotating disc gear; 109 - slide rail; 110 - butt joint frame; 111 - fixed plate; 112 - guide column; 113 - guide column spring; 114 - butt joint shell; 115 - rotating gear; 116 - guide ring; 117 - plug-in seat; 118 - button; 119 - pressing column; 120 - pressing spring; 121 - slot block; 122 - transverse slide column; 123 - push-out rotating lever; 124 - intermediate column; 125 - push-out block; 126 - guide groove; 201 - support; 202 - receiver; 203 - electric cylinder; 204 - movable block; 205 - pull-out lever; 206 - fixed slope block; 207 - limiting block; 208 - rear slope block; 209 - front slope block; 301 - detection shell; 302 - battery internal resistance instrument; 303 - inner plate; 304 - detection electric cylinder; 305 - extension frame; 306 - extension rack; 307 - slide column; 308 - electric wire; 309 - detection block; 310 - detection sheet; 311 - slide column spring; 4 - fascia gun battery; 5 - battery plug. DETAILED DESCRIPTION
[0026] The technical solutions of the present application are further illustrated below by specific embodiments in combination with the drawings.
[0027] Among them, the drawings are only used for illustrative description, and the representation is only a schematic diagram, not a physical diagram, and cannot be understood as a limitation on the patent; in order to better illustrate the embodiments of the present application, some components of the drawings will be omitted, enlarged or reduced, and do not represent the size of the actual product; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings can be omitted.
[0028] Embodiment: as Figures 1-10 The muscle fascia gun battery aging test device shown in the figure, including for the muscle fascia gun battery 4 fixed and clamped main body mechanism, the main body mechanism includes the bottom box 101, the main body mechanism is provided with two groups of release mechanism for releasing the muscle fascia gun battery 4 clamped after detection is completed and a detection mechanism for aging test of muscle fascia gun battery 4, the detection mechanism includes battery internal resistance instrument 302; The main body mechanism includes two clamping modules, the clamping module includes two docking frames 110, the docking frame 110 is rotatably installed with a docking shell 114, the docking shell 114 is fixedly installed with a rotating gear 115, three groups of guide grooves 126 are arranged on the docking shell 114 of one of the docking frames 110, two guide rings 116 are fixedly installed on the docking shell 114 of the other docking frame 110, the docking shell 114 is fixedly installed with a plug-in seat 117, and the battery plug 5 on the muscle fascia gun battery 4 is inserted into the plug-in seat 117 during use.
[0029] As Figures 2-6 The main body mechanism includes a qualified discharge slope 103 and an unqualified discharge slope 104 fixedly installed in the bottom box 101, a rotary motor 105 is fixedly installed in the bottom box 101, a motor gear 106 is fixedly installed on the motor shaft of the rotary motor 105, a rotating column 107 is rotatably installed in the bottom box 101, a rotating disc 102 is fixedly installed on the rotating column 107, a rotating disc gear 108 is fixedly installed on the rotating column 107, and the rotating disc gear 108 is engaged with the motor gear 106.
[0030] As Figures 2-6 The clamping module further includes a slide rail 109 fixedly installed on the rotating disc 102, the docking frame 110 is slidably installed on the slide rail 109, a fixed plate 111 is fixedly installed on the rotating disc 102, a guide column 112 is fixedly installed on the fixed plate 111, the docking frame 110 is slidably installed with the guide column 112, and the guide column spring 113 is arranged between the docking frame 110 and the fixed plate 111.
[0031] As Figures 2-6As shown, the push-down column 119 is slidingly installed in the docking shell 114, the button 118 and the slot block 121 are fixedly installed on the push-down column 119, the push-down spring 120 is arranged between the push-down column 119 and the docking shell 114, the slot hole is arranged on the slot block 121, the intermediate column 124 is fixedly installed in the docking shell 114, the push-out rotating rod 123 is rotatably installed on the intermediate column 124, the horizontal sliding column 122 is fixedly installed on the push-out rotating rod 123, the horizontal sliding column 122 slides in the slot hole of the slot block 121, the push-out block 125 is slidingly installed in the docking shell 114, and the push-out block 125 is rotatably installed with the push-out rotating rod 123. The plug-in sockets 117 in the two docking shells 114 are electrically connected with the guide ring 116 and the guide groove 126 respectively.
[0032] In use, first, the fascia gun battery 4 is placed between the two docking shells 114 of the clamping module above the unqualified discharge slope 104, then the battery plug 5 is inserted into the plug-in socket 117, when the continuous battery test of the fascia gun battery 4 is needed, the battery plug 5 is inserted into the plug-in socket 117 on the docking shell 114 provided with the guide ring 116, when the on-off test of the fascia gun battery 4 is needed, the battery plug 5 is inserted into the plug-in socket 117 on the docking shell 114 provided with the guide groove 126, the docking frame 110 is made to slide along the guide column 112 and the sliding rail 109 by the guide column spring 113, so that the two docking shells 114 clamp the fascia gun battery 4, then the rotating disc motor 105 drives the motor gear 106 to rotate, drives the rotating disc gear 108, the rotating column 107 and the rotating disc 102 to rotate, so that the rotating disc 102 rotates one hundred and eighty degrees, and the fascia gun battery 4 just clamped is moved to the detection shell 301, and the other clamping module reaches above the unqualified discharge slope 104.
[0033] As shown in Figure 7 , Figure 8 The release mechanism includes two supports 201 fixedly installed on the rotating disc 102, the two supports 201 are respectively located on both sides of the clamping module, the receiver 202 is fixedly installed on the support 201, the electric cylinder 203 is fixedly installed on the support 201, the electric cylinder 203 is electrically connected with the receiver 202, and the receiver 202 is electrically connected with the battery internal resistance instrument 302.
[0034] As shown in Figure 7 , Figure 8 The movable block 204 is fixedly installed on the output end of the electric cylinder 203, the pull-out rod 205 is rotatably installed on the movable block 204, the limit block 207 is fixedly installed on the pull-out rod 205, the fixed slope block 206 is fixedly installed on the support 201, the slope surface is arranged on the fixed slope block 206, the rear slope block 208 and the front slope block 209 are fixedly installed below the pull-out rod 205, and the slope surfaces are arranged on the rear slope block 208 and the front slope block 209.
[0035] When the fascia gun battery 4 detects completion, if it detects qualified, when the clamping module is located above the qualified discharge slope 103, that is, the clamping module is located beside the detection shell 301, the receiver 202 controls the electric cylinder 203 to extend, so that the movable block 204 and the pull-out rod 205 extend out, the front slope block 209 contacts the docking rack 110, the docking rack 110 passes through the slope surface of the front slope block 209, so that the pull-out rod 205 rotates upward relative to the movable block 204, the front slope block 209 passes through the docking rack 110, the pull-out rod 205 rotates downward due to the action of gravity, the pull-out rod 205 restores to horizontal, then the pull-out rod 205 contacts the button 118, pushes the button 118, the press-down column 119 and the slot block 121 to slide inward, the press-down spring 120 is compressed, the slot block 121 drives the push-out rotating rod 123 to rotate relative to the middle column 124, so that the push-out block 125 slides outward through the push-out rotating rod 123, the battery plug 5 inserted in the plug-in seat 117 is pushed out through the push-out block 125, so that the battery plug 5 is separated from the plug-in seat 117, then the electric cylinder 203 retracts, the press-down spring 120 rebounds, so that the button 118 and the plug-in seat 117 reset, the front slope block 209 contacts the docking rack 110 in the process of returning, pulls the docking rack 110 to move outward along the guide column 112 and the slide rail 109, the guide column spring 113 is compressed, so that the docking shell 114 no longer clamps the fascia gun battery 4, the qualified fascia gun battery 4 falls into the qualified discharge slope 103, then slides out from the qualified discharge slope 103, if the detection is unqualified, when the clamping module carrying the unqualified fascia gun battery 4 moves above the unqualified discharge slope 104, the receiver 202 controls the electric cylinder 203 to extend, so that the movable block 204 and the pull-out rod 205 extend out, the front slope block 209 contacts the docking rack 110, the docking rack 110 passes through the slope surface of the front slope block 209, so that the pull-out rod 205 rotates upward relative to the movable block 204, the front slope block 209 passes through the docking rack 110, the pull-out rod 205 rotates downward due to the action of gravity, the pull-out rod 205 restores to horizontal, then the pull-out rod 205 contacts the button 118, pushes the button 118, the press-down column 119 and the slot block 121 to slide inward, the press-down spring 120 is compressed, the slot block 121 drives the push-out rotating rod 123 to rotate relative to the middle column 124, so that the push-out block 125 slides outward through the push-out rotating rod 123, the battery plug 5 inserted in the plug-in seat 117 is pushed out through the push-out block 125, so that the battery plug 5 is separated from the plug-in seat 117, then the electric cylinder 203 retracts, the press-down spring 120 rebounds, so that the button 118 and the plug-in seat 117 reset, the front slope block 209 contacts the docking rack 110 in the process of returning, pulls the docking rack 110 to move outward along the guide column 112 and the slide rail 109, the guide column spring 113 is compressed, so that the docking shell 114 no longer clamps the fascia gun battery 4, the unqualified fascia gun battery 4 falls into the unqualified discharge slope 104, then slides out from the unqualified discharge slope 104.
[0036] As shown in Figure 9 , Figure 10 , the detection mechanism includes a detection shell 301 fixedly installed on the bottom box 101, a battery internal resistance meter 302 fixedly installed on the detection shell 301, an inner plate 303 fixedly installed in the detection shell 301, two detection cylinders 304 fixedly installed on the inner plate 303, an extension frame 305 fixedly installed on the output end of the detection cylinder 304, a sliding column 307 slidingly installed on the extension frame 305, a detection block 309 fixedly installed on the sliding column 307, a sliding column spring 311 arranged between the detection block 309 and the extension frame 305, two detection sheets 310 arranged on the detection block 309, and the detection sheets 310 being electrically connected to the battery internal resistance meter 302 through wires 308.
[0037] As shown in Figure 9 , Figure 10 , the extension frame 305 is fixedly installed with an extension rack 306, and when the detection cylinder 304 is elongated, the extension rack 306 is engaged with the rotating gear 115.
[0038] When the clamping module with the fascia gun battery 4 moves to the side of the detection shell 301, the detection cylinder 304 is elongated to drive the extension frame 305, the extension rack 306, the sliding column 307 and the detection block 309 to move outward, and then one group of detection sheets 310 is in contact with the guide groove 126, and the other group of detection sheets 310 is in contact with the guide ring 116, and then the extension rack 306 starts to engage with the rotating gear 115, and as the detection cylinder 304 continues to extend, the sliding column 307 slides relative to the extension frame 305 because the detection block 309 cannot continue to advance, the sliding column spring 311 is compressed, the extension rack 306 drives the rotating gear 115 and the docking shell 114 to rotate, thereby driving the fascia gun battery 4 to rotate a full circle, if the battery plug 5 is inserted into the plug seat 117 of the docking shell 114 provided with the guide ring 116, the guide ring 116 continuously contacts the detection sheet 310, and at this time, the internal resistance, current and voltage of the fascia gun battery 4 are measured by the battery internal resistance meter 302; if the battery plug 5 is inserted into the plug seat 117 of the docking shell 114 provided with the guide groove 126, the three groups of guide grooves 126 intermittently contact the detection sheets 310, and at this time, the internal resistance, current and voltage of the fascia gun battery 4 during start and stop are measured by the battery internal resistance meter 302, and the aging degree of the fascia gun battery 4 is determined by measuring the internal resistance, current and voltage of the fascia gun battery 4, and the greater the internal resistance of the fascia gun battery 4, the more serious the aging degree.
[0039] The working principle of the fascia gun battery aging test device is as follows: in use, first, the fascia gun battery 4 is placed between the two butt shells 114 of the clamping module above the unqualified discharge slope 104, then the battery plug 5 is inserted into the plug seat 117, when the continuous test of the battery of the fascia gun battery 4 is needed, the battery plug 5 is inserted into the plug seat 117 on the butt shell 114 provided with the guide ring 116, when the on-off test of the fascia gun battery 4 is needed, the battery plug 5 is inserted into the plug seat 117 on the butt shell 114 provided with the guide groove 126, the butt frame 110 is driven to slide along the guide column 112 and the sliding rail 109 by the guide column spring 113, so that the two butt shells 114 clamp the fascia gun battery 4, then the rotary disc motor 105 drives the motor gear 106 to rotate, drives the rotary disc gear 108, the rotary column 107 and the rotary disc 102 to rotate, so that the rotary disc 102 rotates one hundred and eighty degrees, the fascia gun battery 4 just clamped is moved to the detection shell 301, and the other clamping module reaches above the unqualified discharge slope 104. When the clamping module moves to the detection shell 301 with the fascia gun battery 4, the detection cylinder 304 is elongated to drive the extension frame 305, the extension rack 306, the sliding column 307 and the detection block 309 to move outward, then one group of detection sheets 310 contact with the guide groove 126, and the other group of detection sheets 310 contact with the guide ring 116, then the extension rack 306 meshes with the rotating gear 115, as the detection cylinder 304 continues to extend, the sliding column 307 slides relative to the extension frame 305, the sliding column spring 311 is compressed, the extension rack 306 drives the rotating gear 115 and the butt shell 114 to rotate, thereby driving the fascia gun battery 4 to rotate a whole circle, if the battery plug 5 is inserted into the plug seat 117 on the butt shell 114 provided with the guide ring 116, the guide ring 116 continuously contacts with the detection sheet 310, at this time, the internal resistance, current and voltage of the fascia gun battery 4 are measured by the battery internal resistance instrument 302; if the battery plug 5 is inserted into the plug seat 117 on the butt shell 114 provided with the guide groove 126, three groups of guide grooves 126 intermittently contact with the detection sheet 310, at this time, the internal resistance, current and voltage of the fascia gun battery 4 at start-stop are measured by the battery internal resistance instrument 302, the aging degree of the fascia gun battery 4 is determined by measuring the internal resistance, current and voltage of the fascia gun battery 4, the greater the internal resistance of the fascia gun battery 4, the more serious the aging degree.When the fascia gun battery 4 detects completion, if it detects qualified, when the clamping module is located above the qualified discharge slope 103, that is, the clamping module is located beside the detection shell 301, the receiver 202 controls the electric cylinder 203 to extend, so that the movable block 204 and the pull-out rod 205 extend out, the front slope block 209 contacts the docking rack 110, the docking rack 110 passes through the slope surface of the front slope block 209, so that the pull-out rod 205 rotates upward relative to the movable block 204, the front slope block 209 passes through the docking rack 110, the pull-out rod 205 rotates downward due to the action of gravity, the pull-out rod 205 restores to horizontal, then the pull-out rod 205 contacts the button 118, pushes the button 118, the press-down column 119 and the slot block 121 to slide inward, the press-down spring 120 is compressed, the slot block 121 drives the push-out rotating rod 123 to rotate relative to the middle column 124, so that the push-out block 125 slides outward through the push-out rotating rod 123, the battery plug 5 inserted in the plug-in seat 117 is pushed out through the push-out block 125, so that the battery plug 5 is separated from the plug-in seat 117, then the electric cylinder 203 retracts, the press-down spring 120 rebounds, so that the button 118 and the plug-in seat 117 reset, the front slope block 209 contacts the docking rack 110 in the process of returning, pulls the docking rack 110 to move outward along the guide column 112 and the slide rail 109, the guide column spring 113 is compressed, so that the docking shell 114 no longer clamps the fascia gun battery 4, the qualified fascia gun battery 4 falls into the qualified discharge slope 103, then slides out from the qualified discharge slope 103, if the detection is unqualified, when the clamping module carrying the unqualified fascia gun battery 4 moves above the unqualified discharge slope 104, the receiver 202 controls the electric cylinder 203 to extend, so that the movable block 204 and the pull-out rod 205 extend out, the front slope block 209 contacts the docking rack 110, the docking rack 110 passes through the slope surface of the front slope block 209, so that the pull-out rod 205 rotates upward relative to the movable block 204, the front slope block 209 passes through the docking rack 110, the pull-out rod 205 rotates downward due to the action of gravity, the pull-out rod 205 restores to horizontal, then the pull-out rod 205 contacts the button 118, pushes the button 118, the press-down column 119 and the slot block 121 to slide inward, the press-down spring 120 is compressed, the slot block 121 drives the push-out rotating rod 123 to rotate relative to the middle column 124, so that the push-out block 125 slides outward through the push-out rotating rod 123, the battery plug 5 inserted in the plug-in seat 117 is pushed out through the push-out block 125, so that the battery plug 5 is separated from the plug-in seat 117, then the electric cylinder 203 retracts, the press-down spring 120 rebounds, so that the button 118 and the plug-in seat 117 reset, the front slope block 209 contacts the docking rack 110 in the process of returning, pulls the docking rack 110 to move outward along the guide column 112 and the slide rail 109, the guide column spring 113 is compressed, so that the docking shell 114 no longer clamps the fascia gun battery 4, the unqualified fascia gun battery 4 falls into the unqualified discharge slope 104, then slides out from the unqualified discharge slope 104.
[0040] The application is not limited to the above specific embodiments, and various modifications made by those skilled in the art based on the above concept without creative labor are all within the protection scope of the application.
Claims
1. A fascia gun battery aging test device, comprising a main body mechanism for fixing and clamping a fascia gun battery (4), characterized in that: The main body mechanism includes a bottom box (101), and the main body mechanism is provided with two sets of release mechanisms for releasing the clamping of the fascia gun battery (4) after testing, and a detection mechanism for performing an aging test on the fascia gun battery (4), and the detection mechanism includes a battery internal resistance meter (302); The main body mechanism includes two clamping modules, and the clamping modules include two docking frames (110), a docking shell (114) is rotatably mounted on the docking frame (110), and a rotating gear (115) is fixedly mounted on the docking shell (114), three groups of guide grooves (126) are provided on the docking shell (114) on one docking frame (110), and two guide rings (116) are fixedly mounted on the docking shell (114) on the other docking frame (110), and a socket (117) is fixedly mounted on the docking shell (114), and when in use, the battery plug (5) on the fascia gun battery (4) is inserted into the socket (117).
2. The fascia gun battery aging test device according to claim 1, characterized in that: The main body mechanism comprises a qualified material discharging slope (103) and an unqualified material discharging slope (104) fixedly mounted in a bottom box (101); a turntable motor (105) is fixedly mounted in the bottom box (101); a motor gear (106) is fixedly mounted on the motor shaft of the turntable motor (105); a rotating column (107) is rotatably mounted in the bottom box (101); a turntable (102) is fixedly mounted on the rotating column (107); a turntable gear (108) is fixedly mounted on the rotating column (107); and the turntable gear (108) is meshed with the motor gear (106).
3. The fascia gun battery aging test device according to claim 2, characterized in that: The clamping module further comprises a slide rail (109) fixedly mounted on the turntable (102); a docking frame (110) is slidably mounted on the slide rail (109); a fixed plate (111) is fixedly mounted on the turntable (102); a guide post (112) is fixedly mounted on the fixed plate (111); the docking frame (110) and the guide post (112) are slidably mounted; and a guide post spring (113) is provided between the docking frame (110) and the fixed plate (111).
4. The fascia gun battery aging test device according to claim 3, characterized in that: A pressing column (119) is slidably installed in the docking shell (114), a button (118) and a slot block (121) are fixedly installed on the pressing column (119), a pressing spring (120) is provided between the pressing column (119) and the docking shell (114), a slot hole is provided on the slot block (121), an intermediate column (124) is fixedly installed in the docking shell (114), a push-out rotating rod (123) is rotatably installed on the intermediate column (124), a horizontal sliding column (122) is fixedly installed on the push-out rotating rod (123), the horizontal sliding column (122) slides in the slot hole of the slot block (121), a push-out block (125) is slidably installed in the docking shell (114), the push-out block (125) is rotatably installed with the push-out rotating rod (123), and the plug sockets (117) in the two docking shells (114) are electrically connected to the guide ring (116) and the guide slot (126) respectively.
5. The fascia gun battery aging test device according to claim 1, characterized in that: The release mechanism comprises two brackets (201) fixedly mounted on the turntable (102), the two brackets (201) being respectively located on both sides of the clamping module, a receiver (202) being fixedly mounted on the brackets (201), an electric cylinder (203) being fixedly mounted on the brackets (201), the electric cylinder (203) being electrically connected to the receiver (202), and the receiver (202) being electrically connected to the battery internal resistance meter (302).
6. The fascia gun battery aging test device according to claim 5, characterized in that: A movable block (204) is fixedly mounted on the output end of the electric cylinder (203), a pull-out rod (205) is rotatably mounted on the movable block (204), a limit block (207) is fixedly mounted on the pull-out rod (205), a fixed slope block (206) is fixedly mounted on the bracket (201), a slope surface is provided on the fixed slope block (206), a rear slope block (208) and a front slope block (209) are fixedly mounted below the pull-out rod (205), and both the rear slope block (208) and the front slope block (209) are provided with slope surfaces.
7. The fascia gun battery aging test device according to claim 1, characterized in that: The detection mechanism comprises a detection shell (301) fixedly mounted on the bottom box (101), a battery internal resistance meter (302) fixedly mounted on the detection shell (301), an inner plate (303) fixedly mounted in the detection shell (301), two detection electric cylinders (304) fixedly mounted on the inner plate (303), an extension frame (305) fixedly mounted on the output end of the detection electric cylinder (304), a sliding column (307) slidably mounted on the extension frame (305), a detection block (309) fixedly mounted on the sliding column (307), a sliding column spring (311) provided between the detection block (309) and the extension frame (305), two detection pieces (310) provided on the detection block (309), and the detection pieces (310) and the battery internal resistance meter (302) are electrically connected via wires (308).
8. The fascia gun battery aging test device according to claim 7, characterized in that: A protruding rack (306) is fixedly mounted on the protruding frame (305). When the detection electric cylinder (304) is extended, the protruding rack (306) engages with the rotating gear (115).