Snowboard boot and buckle corresponding fastening inspection system and equipment
The automated system consisting of a base, coupling unit, and drive cylinder solves the problem of time-consuming and inaccurate inspection of the fit between snowboard boots and buckles, achieves fast and accurate fit quality inspection, and improves inspection efficiency and quality.
Patent Information
- Application Number
- CN202210408522.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-19
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2042-04-19
AI Technical Summary
In the prior art, the fastening inspection of snowboard boots and buckles relies on manual methods, which is time-consuming and costly and cannot accurately and stably inspect the fastening quality.
The automated system, consisting of a base, a coupling unit, a side drive unit, and a drive cylinder, automatically inspects the fastening quality of the buckle and the snowboard boot through sensing devices and sensors, and activates an alarm device if the inspection fails.
It realizes automated inspection, shortens inspection time, improves inspection accuracy and stability, and enhances fastening quality and ease of use.
Smart Images

Figure CN116952550B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to a corresponding fastening inspection system and equipment for snowboard boots and buckles, and in particular, a system that can save a lot of time and cost and can more accurately and stably inspect the product fastening quality of the buckle and snowboard boots. Background Art
[0002] Snowboarding is a relatively new sport within cross-country skiing. Snowboard boots are designed to effectively transmit your body movements to the snowboard through the buckles, while also supporting and protecting your legs, ankles, and feet. They are one of the most important pieces of ski equipment, not only powerful but also crucial for a comfortable day of skiing. Finished snowboard boots and buckles are inspected for a stable and reliable fit, as a secure fit between the buckle and the boot is essential for safe use. Existing inspection methods rely on manual press-fitting of buckles one by one. However, this manual inspection is time-consuming and inefficient, and cannot accurately and reliably verify the quality of the fit between the buckle and the boot.
[0003] In view of the above phenomenon, the inventors of this application have invented a more extensive practical invention based on their many years of experience in manufacturing. Summary of the Invention
[0004] The technical problem to be solved by this application is to provide a system and equipment for inspecting the fit of snowboard boots and buckles. The problem to be solved is that the existing inspection method is to manually press and fit the buckles one by one. However, this manual inspection method is very time-consuming and cannot accurately and stably inspect the quality of the fit between the buckle and the snowboard boot.
[0005] The technical features for solving the problem include a base, a base frame is provided on the top, an inspection space is formed in the base frame, a first driving cylinder is provided on the top of the base frame, an auxiliary guide rod is provided on both sides, a lifting rod is extended from the first driving cylinder corresponding to the inspection space, a lifting plate is provided at the end of the lifting rod, and a plurality of pressure columns are provided at the bottom of the lifting plate; a combining unit is provided on the top surface of the base, the combining unit has a base plate, and a plurality of sensing devices are provided on the base plate corresponding to the bottom of the plurality of pressure columns, each sensing device is provided with a sensing end on the top, and the sensing device is provided with a peripheral edge relative to the sensing end. An elastic component is configured to extend upward from the base plate. A pivot is provided at a predetermined position on the bottom of the base plate, and the base plate is pivoted forward and backward by the pivot. A support seat is provided at the horizontal support of the rear end of the base plate, a sensor is provided on one side of the support seat, and a sensing portion is provided on the top of the sensor. A quick-release bolt and a positioning bolt are provided on both sides of the base plate, respectively. A side drive unit is provided on one side of the base, comprising a fixing frame, a second driving cylinder is provided on the top of the second driving cylinder, and a top pressure plate is provided on the top of the second driving cylinder. The top pressure plate extends laterally into one side of the inspection space.
[0006] By this means, the present application uses the first drive cylinder, coupling unit, side drive unit and coupling unit of the base to automatically inspect the fastening quality of the buckle and the snowboard boot. If the inspection fails, the alarm device is activated to remind the user. The consistent operation of the corresponding fastening inspection equipment of the snowboard boot and the buckle of the present application can shorten and simplify many manual inspection processes. The machine-operated inspection can save a lot of time costs and can more accurately and stably inspect the product fastening quality of the buckle and the snowboard boot, thereby achieving practical progress in quality improvement and convenience of use.
[0007] The details of other functions and embodiments of the present application are described below with reference to the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments recorded in this application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0009] Figure 1 It is a front view of the corresponding fastening inspection system and equipment of the snowboard boot and buckle of the present application;
[0010] Figure 2 is a side view of the corresponding fastening inspection system and equipment for snowboard boots and buckles of the present application;
[0011] Figure 3This is an exploded perspective view of the clip and positioning fixture of the present application;
[0012] Figure 4 This is a combined three-dimensional diagram of the clip and positioning fixture of the present application;
[0013] Figure 5 It is a front view of an embodiment of the system and apparatus for checking the fit of a snowboard boot and a buckle according to the present application;
[0014] Figure 6 is a side view of an embodiment of the present invention's system and apparatus for verifying the fit of a snowboard boot and a buckle, and a partially exploded schematic diagram of the detent fixture;
[0015] Figure 7 This is an exploded view of the buckle configuration of the snowboard boot of the present application, showing that the buckle and the base are pivoted backward, so that the rear buckle end of the snowboard boot is placed on the elastic buckle while pressing down to fasten it incompletely. Figure 1 ;
[0016] Figure 8 This is a diagram of the combination of the buckle of the present application and the snowboard boot, showing that the buckle and the base are pivoted backwards, so that the rear buckle end of the snowboard boot is placed on the elastic buckle and pressed down to complete the buckling action. Figure 2 ;
[0017] Figure 9 is a perspective view of the buckle of the present application configured with the snowboard boot, showing the rear buckle end of the snowboard boot and the elastic fastener being fastened relative to each other;
[0018] Figure 10 yes Figure 9 A partially enlarged schematic diagram clearly shows the relative engagement state between the rear buckle end of the snowboard boot and the elastic fastener;
[0019] Figure 11 This is the test action of the buckle configuration of the snowboard boots of this application Figure 1 , which shows that the buckle and the snowboard boot are pivoted forward with the base plate to a horizontal state and press the sensor;
[0020] Figure 12 This is the test action of the buckle configuration of the snowboard boots of this application Figure 2 , which shows that the first driving cylinder receives information from the sensor and lowers the pressure column to press the pressure surface of the snowboard boot, so that the snowboard boot and the buckle perform relative buckling operations;
[0021] Figure 13 yes Figure 12 The buckle configuration of the snowboard boots is simple to buckle together Figure 1 , which shows that the snowboard boot and the buckle are not fastened together;
[0022] Figure 14 yes Figure 12 The buckle configuration of the snowboard boots is simple to buckle together Figure 2 , which shows that the snowboard boot and the buckle are fastened together;
[0023] Figure 15 This is the test action of the buckle configuration of the snowboard boots of this application Figure 3 , which shows that the first driving cylinder receives information from the sensing device and raises the pressure column to leave the pressure surface of the snowboard boot;
[0024] Figure 16 This is the test action of the buckle configuration of the snowboard boots of this application Figure 4 , which shows that the second driving cylinder receives the raising information from the first driving cylinder, and the second driving cylinder raises the top pressure plate to rotate the loosening handle, so that the rear buckle end of the snowboard boot is relatively loosened from the elastic fastener;
[0025] Figure 17 This is the test action of the buckle configuration of the snowboard boots of this application Figure 5 , which shows the descending state of the second driving cylinder;
[0026] Figure 18 This is the test action of the buckle configuration of the snowboard boots of this application Figure 6 , which shows that the buckle and the base plate are pivoted backward, so that the snowboard boot that has been inspected is taken out facing upward;
[0027] Figure 19 This is another embodiment of the present application, which shows that the corresponding fastening inspection equipment for the snowboard boot and the buckle can be two sets symmetrically arranged in parallel;
[0028] Figure 20 This is a flow chart of the corresponding fastening inspection system and equipment for ski boots and buckles of the present application.
[0029] Explanation of symbols
[0030] A: Snowboard boot and buckle corresponding fastening test equipment
[0031] A1: Base 10: Base frame 11: First drive cylinder
[0032] 12: Auxiliary guide rod 13: Lifting rod 14: Lifting plate
[0033] 15: Pressure column 16: Inspection space 20: Combination unit
[0034] 21: Base plate 22: Fixed seat 23: Movable seat
[0035] 24: Pivot 25: Sensing device 26: Sensing end
[0036] 27: Elastic component 271: Pressing fixture 272: Pressing end
[0037] 28: Backing seat 281: Backing pad 29: Sensor
[0038] 291: Sensing unit 30: Side drive unit 31: Fixed frame
[0039] 32: Second drive cylinder 33: Adjustment plate 34: Top pressure plate
[0040] 40: Control unit 41: Power switch 42: Indicator light
[0041] 43: Alarm device 44: First timer 45: Second timer
[0042] 46: Third timer 47: Fourth timer 50: Buckle
[0043] 501: Configuration space 51: Buckle plate 52: Elastic fastener
[0044] 521: pivoting portion 522: snap-on protrusion 53: release handle
[0045] 54: Placement surface 55: Disc groove 551: Connection disc
[0046] 552: Through hole 553: Screw 56: Side buckle
[0047] 561: Side buckle embedded part 57: Telescopic space 58: Positioning fixture
[0048] 581: Fixed slot 582: Positioning guide hole 583: Telescopic through-hole
[0049] 59: screw hole 60: snowboard boot 61: rear buckle end
[0050] 611: buckle recess 62: lateral positioning buckle 621: positioning embedded part
[0051] 63: Pressing surface S: Quick release bolt S1: Positioning bolt DETAILED DESCRIPTION
[0052] The positional relationships described in the following embodiments include up, down, left, and right. Unless otherwise specified, they are based on the directions of the components shown in the drawings.
[0053] See also Figures 1 to 18 FIG. 1 shows a preferred embodiment of the present invention's apparatus for inspecting the fit of a snowboard boot and a buckle. However, these embodiments are for illustrative purposes only and the patent application is not limited to these structures. The apparatus A for inspecting the fit of at least one snowboard boot and a buckle comprises:
[0054] A base A1 is provided with a base frame 10 on the top, and an inspection space 16 is formed in the base frame 10. A first driving cylinder 11 is provided on the top of the base frame 10, and auxiliary guide rods 12 are provided on both sides. A lifting rod 13 is extended from the first driving cylinder 11 corresponding to the inspection space 16, and a lifting plate 14 is provided at the end of the lifting rod 13. A plurality of pressure columns 15 are provided at the bottom of the lifting plate 14;
[0055] A coupling unit 20 is provided on the top surface of the base A1. The coupling unit 20 has a base plate 21. The base plate 21 is provided with a plurality of sensing devices 25 corresponding to the bottoms of the plurality of pressure pillars 15. The top of each sensing device 25 is provided with a sensing end 26. The sensing device 25 is provided with an elastic component 27 on the outer periphery of the sensing end 26, so that each elastic component 27 extends upward from the base plate 21. A pivot 24 is provided at a predetermined position on the bottom of the base plate 21. The base plate 21 is movable and pivoted forward and backward through the pivot 24. The bottom of the base plate 21 is provided with a fixed seat 22 and a movable seat 23 on both sides relative to the pivot 24. A support seat 28 is provided at the horizontal support of the rear end of the base plate 21. A sensor 29 is provided on one side of the support seat 28, and a sensing portion 291 is provided on the top of the sensor 29. A quick-release bolt S and a positioning bolt S1 are respectively provided on both sides of the base plate 21. A support pad 281 made of elastic-plastic material is provided above the support column of the coupling unit 20 to buffer the supporting gravity of the base plate 21.
[0056] A side drive unit 30 is provided on one side of the base A1 and includes a fixing frame 31. A second drive cylinder 32 is provided on the top of the fixing frame 31. A top pressure plate 34 is provided on the top of the second drive cylinder 32. The top pressure plate 34 extends laterally into one side of the inspection space 16. An adjustment plate 33 is provided on one side of the top pressure plate 34 of the side drive unit 30 for adjusting the front, back, left and right positions of the top pressure plate 34.
[0057] Then, a fastener 50 is provided above the base plate 21 for configuration and fixing, wherein the fastener 50 includes a buckle plate 51 and a placement surface 54 provided at a relative position of the buckle plate 51, and a configuration space 501 is constructed by the buckle plate 51 and the placement surface 54. An elastic fastener 52 is movably provided inside the buckle plate 51, and the elastic fastener 52 has a pivot portion 521 and a snap-on protrusion 522. A loosening handle 53 is provided on one side of the fastener 50, and the loosening handle 53 is rotated to drive the elastic fastener 52 and its snap-on protrusion to rotate. The portion 522 is pivotally movable, and a disc-shaped slot 55 is provided at a predetermined position on the placement surface 54. The disc-shaped slot 55 is fixed in combination with a connecting plate 551. The connecting plate 551 is provided with a plurality of through holes 552. Each of the through holes 552 is provided with a plurality of screws 553 for screwing and locking a corresponding screw hole 59 provided by a positioning fixture 58. The front side of the positioning fixture 58 is provided with a plurality of telescopic through portions 583. The placement surface 54 of the buckle 50 is also provided with a corresponding telescopic space 57 corresponding to the telescopic through portion 583. The positioning fixture 5 8 is configured to be fixed to the substrate 21, and the positioning fixture 58 is provided with a fixing slot 581 corresponding to the quick-release bolt S of the substrate 21, so that the quick-release bolt S can correspond to the fixing slot 581 of the positioning fixture 58, and the positioning fixture 58 is assembled and fixed on the substrate 21, and the positioning fixture 58 is provided with a positioning guide hole 582 corresponding to the positioning bolt S1 of the substrate 21, and the positioning guide hole 582 cooperates with the positioning bolt S1 of the substrate 21. In addition, the telescopic through portion 583 of the positioning fixture 58 and the buckle The expansion space 57 of the tool 50 corresponds to the elastic element 27 on the substrate 21. The elastic element 27 extends out of the configuration space 501 through the expansion through portion 583 and the expansion space 57. After the elastic element 27 extends out, a pressing fixture 271 is placed on the free end of the elastic element 27. The bottom end of the pressing fixture 271 is provided with a pressing end 272. The pressing end 272 can compress the elastic element 27 by applying an external force, thereby contacting the sensing end 26 of the sensing device 25.
[0058] Furthermore, the configuration space 501 of the buckle 50 provides a snowboard boot 60 for positioning, wherein the rear end surface of the snowboard boot 60 is provided with a rear buckle end 61, and the rear buckle end 61 is provided with a buckle recess 611 inside. The buckle recess 611 cooperates with the spring buckle protrusion 522 of the elastic buckle 52 of the buckle 50 to engage and position. In addition, the front side edges of the snowboard boot 60 are respectively provided with a lateral positioning buckle 62, and each of the lateral positioning buckles 62 is provided with a positioning embedded portion 621, and the positioning embedded portion 621 cooperates with the buckle 5 0, the side buckle embedding portion 561 of the side buckle portion 56 is engaged and positioned; in addition, a pressure surface 63 is formed on the top surface of the front end of the snowboard boot 60, and the pressure surface 63 presses down corresponding to the pressure column 15 of the first driving cylinder 11, and causes the bottom surface of the snowboard boot 60 to be pressed down on the pressing fixture 271, and the elastic component 27 is compressed by the pressing end 272 at the bottom end of the pressing fixture 271, and touches the sensing end 26 of the sensing device 25 to perform the locking and positioning test between the snowboard boot 60 and the buckle 50.
[0059] See also Figures 7 to 10 The buckle 50 and the base plate 21 are shown pivoting backward, so that the rear buckle end 61 of the snowboard boot 60 is placed on the elastic buckle 52 and pressed downward to engage. An elastic buckle 52 is movably disposed inside the buckle plate 51. The elastic buckle 52 has a pivot portion 521 and a snap-on protrusion 522. A release handle 53 is provided on one side of the buckle 50. The release handle 53 is rotated to drive the elastic buckle 52 and its snap-on protrusion 522 to pivot. The rear end surface of the snowboard boot 60 is provided with a rear buckle end 61. A snap-on recess 611 is provided inside the rear buckle end 61. The snap-on recess 611 cooperates with the snap-on protrusion 522 of the elastic buckle 52 of the buckle 50 to engage and lock in place.
[0060] See also Figure 11 As shown, the buckle 50 and the snowboard boot 60 and the base plate 21 are pivoted forward to a horizontal position and press the sensor 29;
[0061] See also Figures 12 to 14 As shown, the first driving cylinder 11 receives information from the sensor 29 and lowers the pressure column 15 to press the pressure surface 63 of the snowboard boot 60, so that the positioning embedded parts 621 of the side positioning buckles 62 respectively provided on the two side edges of the front end of the snowboard boot 60 cooperate with the side buckle embedded parts 561 of the side buckle part 56 of the buckle 50 to be locked and positioned;
[0062] See also Figure 15 As shown, the first driving cylinder 11 receives information from the sensing device 25 and raises the pressure post 15 to leave the pressure surface 63 of the snowboard boot 60;
[0063] See also Figure 16As shown, the second driving cylinder 32 receives the raising signal from the first driving cylinder 11 and raises the pressing plate 34 to rotate the release handle 53, thereby releasing the rear buckle end 61 of the snowboard boot 60 from the elastic buckle 52.
[0064] See also Figure 17 As shown, the second driving cylinder 32 is in a descending state;
[0065] See also Figure 18 As shown, the buckle 50 and the base plate 21 are pivoted backward, so that the snowboard boot 60 that has been inspected is taken out upward;
[0066] See also Figure 19 As shown, another embodiment of the present application shows that the ski boot and buckle corresponding fastening inspection equipment A can be two sets symmetrically arranged in parallel.
[0067] The present application further discloses a system for verifying the corresponding fastening of a snowboard boot and a buckle, comprising:
[0068] A control unit 40 is electrically and pneumatically connected to the first drive cylinder 11, the second drive cylinder 32, the sensing device 25 and the sensor 29 of the corresponding fit inspection device A of the snowboard boot 60 and the buckle 50, so as to drive the first drive cylinder 11, the second drive cylinder 32, the sensing device 25 and the sensor 29 to perform automated inspection operations, wherein the control unit 40 further includes a power switch 41, an indicator light 42, an alarm device 43, a first timer 44, a second timer 45, a third timer 46 and a fourth timer 47. When turned on, the power switch 41 must be started first and the indicator light 42 lights up. After the base plate 21 fixes the buckle 50 and a snowboard boot 60 to be inspected is arranged on the buckle 50, the base plate 21 is pivoted to a horizontal position. When positioned, the bottom of one end of the base plate 21 touches the sensor 29. After the touch, the first timer 44 is started to count the standby time in seconds, and then the first drive is actuated. The cylinder 11 causes the pressure column 15 to press down the pressure surface 63 of the snowboard boot 60, so that the positioning embedded parts 621 of the lateral positioning buckles 62 on both sides of the snowboard boot 60 respectively cooperate with the side buckle embedded parts 561 of the buckle 50 for locking and positioning, and the second timer 45 is started to start counting the time for the pressure column 15 to press down. After the pressure column 15 completes the downward pressure within the time, it will rise. When the buckle 50 and the snowboard boot 60 are indeed fastened together, it will synchronously touch the sensing device 25. If the buckle 50 is not fastened to the ski boot 60, the alarm device 43 will be activated, wherein the alarm device 43 is in the form of a buzzer and the indicator light 42 will flash, and all operation processes will be terminated; then when the third timer 46 is started, the waiting time after the pressure column 15 is pressed down will be started, the second drive cylinder 32 will be started to drive the top pressure plate 34 to rise, and the fourth timer 47 will be started to start counting the time when the top pressure plate 34 rises and stays there before falling.
[0069] Thus, the present application uses the first drive cylinder 11, the coupling unit 20, the side drive unit 30 and the coupling unit 20 of the base A1 to automatically inspect the fastening quality of the buckle 50 and the snowboard boot 60. If the inspection fails, the alarm device 43 is activated to remind the user. The consistent operation of the corresponding fastening inspection equipment A of the snowboard boot 60 and the buckle 50 of the present application can shorten and simplify many manual inspection processes, save a lot of time costs through machine operation inspection, and can more accurately and stably inspect the product fastening quality of the buckle 50 and the snowboard boot 60, thereby achieving practical progress in quality improvement and convenience in use.
[0070] The embodiments and / or implementation methods described above are only used to illustrate the preferred embodiments and / or implementation methods for realizing the technology of the present application, and do not impose any form of limitation on the implementation methods of the technology of the present application. Any person skilled in the art may make slight changes or modifications to other equivalent embodiments without departing from the scope of the technical means disclosed in the content of the present application, but they should still be regarded as technologies or embodiments that are essentially the same as those of the present application.
Claims
1. A ski boot and buckle corresponding fastening inspection device, characterized in that: Include: A base, with a base frame around the top, an inspection space formed in the base frame, a first driving cylinder provided on the top of the base frame, an auxiliary guide rod provided on both sides, a lifting rod extending from the first driving cylinder corresponding to the inspection space, a lifting plate provided at the end of the lifting rod, and a plurality of pressure columns provided at the bottom of the lifting plate; A combining unit is provided on the top surface of the base, the combining unit has a base plate, the base plate is provided with a plurality of sensing devices corresponding to the bottoms of the plurality of pressure columns, the top of each sensing device is provided with a sensing end, the outer periphery of the sensing device relative to the sensing end is provided with an elastic component, so that each elastic component extends upward from the base plate, a pivot is provided at a predetermined position on the bottom of the base plate, the base plate is pivoted forward and backward through the pivot, a rest seat is provided at the horizontal support of the rear end of the base plate, a sensor is provided on one side of the rest seat, and a sensing portion is provided on the top of the sensor; a quick-release bolt and a positioning bolt are respectively provided on both sides of the base plate; and A side driving unit is arranged on one side of the base and includes a fixing frame, a second driving cylinder is arranged on the top of the fixing frame, a top pressure plate is arranged on the top of the second driving cylinder, and the top pressure plate extends laterally into one side of the inspection space.
2. The snowboard boot and buckle corresponding fastening inspection device according to claim 1, characterized in that: The bottom of the base plate is provided with a fixed seat and a movable seat respectively arranged on two sides relative to the pivot.
3. The snowboard boot and buckle corresponding fastening inspection device according to claim 1, characterized in that: An adjusting plate is provided on one side of the top pressing plate of the side driving unit.
4. The snowboard boot and buckle corresponding fastening inspection device according to claim 1, characterized in that: A plastic material supporting pad is arranged above the supporting column of the combining unit.
5. The snowboard boot and buckle corresponding fastening inspection device according to claim 1, characterized in that: A fastener is provided for configuration and fixing above the base plate, wherein the fastener includes a buckle plate and a placement surface arranged at a relative position of the buckle plate, and a configuration space is jointly constructed by the buckle plate and the placement surface, an elastic fastener is movably arranged inside the buckle plate, the elastic fastener has a pivot portion and a snap-on protrusion, a loosening handle is provided on one side of the fastener, and the loosening handle drives the elastic fastener and its snap-on protrusion to perform a pivoting motion by rotating, and a disc-shaped groove is provided at a predetermined position of the placement surface, the disc-shaped groove is fixed in combination with a connecting plate, and the connecting plate is provided with a plurality of through holes, each of the through holes is for a plurality of screws to pass through and screw and fix to a corresponding screw hole provided by a positioning fixture, wherein a plurality of telescopic through parts are provided on the front side of the positioning fixture, and the placement surface of the fastener is also provided with a corresponding telescopic space for the telescopic through part, wherein the positioning fixture The configuration is fixed to the substrate, and the positioning fixture is provided with a fixing slot corresponding to the quick-release bolt of the substrate, so that the quick-release bolt can correspond to the fixing slot of the positioning fixture, and the positioning fixture is assembled and fixed on the substrate. The positioning fixture is provided with a positioning guide hole corresponding to the positioning bolt of the substrate, and the positioning guide hole cooperates with the positioning bolt of the substrate to position the substrate. In addition, the telescopic penetration portion of the positioning fixture and the telescopic space of the buckle correspond to the elastic component on the substrate, and the elastic component extends out of the configuration space through the telescopic penetration portion and the telescopic space. When the elastic component is extended, the free end of the elastic component is sleeved with a pressing fixture, and a pressing end is provided at the bottom end of the pressing fixture. The pressing end compresses the elastic component by pressing an external force and touches the sensing end of the sensing device.
6. The snowboard boot and buckle corresponding fastening inspection device according to claim 5, characterized in that: The configuration space of the buckle provides a configuration for positioning a ski boot, wherein the rear end face of the ski boot is provided with a rear buckle end, and a buckle recess is provided inside the rear buckle end, and the buckle recess cooperates with the buckle protrusion of the elastic buckle of the buckle to perform an embedding and buckling positioning; in addition, a lateral positioning buckle is provided on both side edges of the front end of the ski boot, and each of the lateral positioning buckles is provided with a positioning embedding portion, and the positioning embedding portion cooperates with the side buckle embedding portion of the side buckle portion of the buckle to perform an embedding and buckling positioning; in addition, a pressure surface is formed on the top surface of the front end of the ski boot, and the pressure surface presses down on the pressure column of the first driving cylinder, and causes the bottom surface of the ski boot to be further pressed down on the pressing fixture, and the elastic component is compressed by the pressing end at the bottom end of the pressing fixture, and touches the sensing end of the sensing device to perform a buckling and positioning test between the ski boot and the buckle.
7. The snowboard boot and buckle corresponding fastening inspection device according to claim 1, characterized in that: The corresponding fastening inspection equipment for the snowboard boot and the buckle is arranged in two groups symmetrically in parallel.
8. A system for checking the corresponding fit of a snowboard boot and a buckle, characterized in that: include: The corresponding fastening inspection device for a snowboard boot and a buckle according to any one of claims 1 to 7; as well as A control unit is electrically and pneumatically connected to the first drive cylinder, the second drive cylinder, the sensing device and the sensor of the corresponding fastening inspection equipment for the snowboard boot and the buckle, and is used to drive the first drive cylinder, the second drive cylinder, the sensing device and the sensor to perform automated inspection operations, wherein the control unit further includes a power switch, an indicator light, an alarm device, a first timer, a second timer, a third timer and a fourth timer. When turned on, the power switch must be turned on first and the indicator light must be turned on. When the base plate fixes the buckle and a snowboard boot to be inspected is configured on the buckle, the base plate is pivoted to a horizontal position. When positioned, the bottom of one end of the base plate touches the sensor. After the touch, the first timer is started to count the standby time in seconds, and then the first drive cylinder is actuated. The pressure column is made to press down the pressure surface of the snowboard boot, so that the positioning embedded parts of the lateral positioning buckles on both sides of the snowboard boot respectively cooperate with the side buckle embedded parts of the buckle for locking and positioning, and the second timer is started to start counting the time for the pressure column to press down. After the pressure column completes the downward pressure within the time, it will rise. When the buckle and the snowboard boot are indeed fastened together, the sensing device will be touched synchronously; if the buckle is not fastened with the snowboard boot, the alarm device will be started, wherein the alarm device is in the form of a buzzer and the indicator light will flash, and all operation processes will be terminated; then when the third timer is started, the waiting time after the pressure column is pressed down will be started, and the second drive cylinder will be started to drive the top pressure plate to rise, and the fourth timer will be started to start counting the top pressure plate to stay for the time it rises and then fall.
Citation Information
Patent Citations
Corresponding buckling inspection system equipment for snowboard boot and buckle
CN217542359U