Rotating disc type information acquisition and detection device

By setting guide rods and linkage structures in the rotary information acquisition and detection device, the problems of threaded sleeve deflection and detection component displacement are solved, and stable positioning and efficient detection of the detection component are achieved.

CN223678488UActive Publication Date: 2025-12-16CHINA AUTOMOTIVE ENG RES INST
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Patent Information

Application Number
CN202522351401.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2025-12-16
Estimated Expiration
2035-11-06

AI Technical Summary

Technical Problem

In existing technologies, threaded sleeves are prone to deflection and horizontal displacement of the detection components during sliding, leading to inaccurate detection and false alarms or missed alarms.

Method used

By setting a through guide rod on the threaded sleeve, combined with the connection design of the vertical and horizontal grooves, and using the linkage structure of the vertical rod, horizontal rod and linkage component, along with the elastic component and reset component, the threaded sleeve can be stably and quickly positioned.

Benefits of technology

It effectively avoids deflection during the sliding process of the threaded sleeve, improves the stability and positioning reliability of the detection component, and ensures the accuracy and efficiency of the detection results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of part inspection, and discloses a rotating disc type information acquisition and detection device, which effectively limits the sliding track of a thread bushing through guide rods penetrating through the thread bushing on two sides of a chute, avoids deflection and remarkably improves the sliding stability. The vertical groove and the transverse groove in the threaded sleeve are communicated and matched with the vertical rod, the transverse rod and the linkage piece to form a linkage structure, the transverse rod can be driven to protrude and abut against the sliding groove positioning structure by pressing the pressing plate, rapid positioning is achieved, and the problem that a traditional threaded sleeve is unstable in positioning is solved. The elastic piece and the reset piece ensure that all the components are automatically reset in a non-positioning state, so that the threaded sleeve restores free sliding, positioning reliability and operation convenience are both considered, and the detection efficiency of the device is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of spare parts inspection, and particularly relates to a rotary table type information acquisition detection device. BACKGROUND

[0002] Automobile spare parts have various styles, and circular spare parts are a common type, in the production and processing process, whether the circular spare parts are regular circles needs to be detected to ensure the quality of the spare parts.

[0003] A kind of automobile spare parts inspection device is disclosed in Chinese patent with authorization announcement No.CN216846081U, including workbench, rotating assembly is equipped in middle of workbench top surface, rotating disc is in middle of workbench top surface, upper side is equipped with magnetic disc;Rotating disc bottom is equipped with limit ring, rotating groove is opened in workbench top surface corresponding limit ring, rotating groove is evenly equipped with ball, limit ring is rotationally connected with rotating groove, driving assembly is equipped in workbench bottom corresponding rotating assembly, mounting bracket is in middle of workbench bottom, lower side is equipped with first motor, first motor upper side is equipped with connecting shaft;Connecting shaft passes through workbench and is connected with rotating disc, and rotationally connected with workbench, workbench top surface right side is equipped with mobile detection assembly and alarm lamp, in mobile detection assembly, sliding groove is in workbench top surface right side, and is equipped with screw rod in it;Second motor is equipped in workbench right side corresponding screw rod, threaded sleeve is sleeved on screw rod outer wall, threaded sleeve is threadedly connected with screw rod and slidingly connected with sliding groove;Induction plate is equipped on threaded sleeve upper side, its corner is equipped with guide column, guide column is slidingly connected with induction plate and fixedly connected with detection plate, buffer spring is equipped in induction plate right side middle, detection plate is equipped in buffer spring left side, touch rod is equipped in detection plate right side middle, induction plate is electrically connected with alarm lamp.

[0004] However, when the detection assembly in the prior art adjusts position by cooperation of the second motor, the screw rod and the threaded sleeve, the threaded sleeve is easy to rotate synchronously with the screw rod in the sliding process, which causes the detection plate to deviate in angle and cannot be accurately aligned with the radius direction of the spare part, and after the second motor stops running, the threaded sleeve will be displaced along the screw rod due to the influence of the pushing force of the spare part or the vibration of the equipment, so that the detection position deviates from the preset radius, and the phenomenon of false alarm of regular parts and missed alarm of deformed parts may occur. UTILITY MODEL CONTENTS

[0005] The utility model intends to provide a rotary table type information acquisition detection device to solve the problems of deflection of the threaded sleeve and horizontal displacement of the detection assembly in the prior art.

[0006] To achieve the above object, the utility model discloses the following technical scheme: a carousel type information collection detection device, including a chute, the threaded sleeve slidingly connected in the chute and the induction board connected above the threaded sleeve, the chute both sides are provided with the guide rod that penetrates the threaded sleeve, the threaded sleeve is opened with the vertical groove and horizontal groove that intercommunication, vertical groove, horizontal groove are slidingly connected vertical pole, horizontal pole respectively, vertical pole and vertical groove, horizontal pole and horizontal groove all are equipped with elastic member, vertical pole is equipped with the linkage of corresponding horizontal pole, and the linkage is used for when vertical pole is down to push horizontal pole and moves along the horizontal groove transversely, the chute both sides are provided with the positioning structure of corresponding horizontal pole, and the induction board bottom end is opened with the positioning groove for vertical pole embedding, and the positioning groove is slidingly connected with the positioning rod, and the positioning rod is connected with the pressing plate and reset piece, and the pressing plate can drive the positioning rod and drive vertical pole to go down, and the linkage will be inserted into the positioning structure with horizontal pole and realize the positioning of threaded sleeve, and the elastic member and reset piece are used for component reset.

[0007] The beneficial effects of the scheme are: by setting the guide rod penetrating the threaded sleeve, the sliding track of the threaded sleeve in the chute can be effectively limited, the deflection in the sliding process is avoided, and the sliding stability is improved; the communication design of the vertical groove and the horizontal groove on the threaded sleeve is matched with the linkage structure of the vertical pole, the horizontal pole and the linkage, and the horizontal pole can be driven to protrude and be inserted into the positioning structure of the chute by pressing the pressing plate, so that the threaded sleeve is quickly positioned, and the problem of unstable positioning of the traditional threaded sleeve is solved; the setting of the elastic member and the reset piece ensures that the components can be automatically reset in the non-positioning state, the threaded sleeve returns to the free sliding state, the overall structure considers the positioning reliability and the operation convenience, and the detection efficiency of the device is improved.

[0008] Preferably, as an improvement, the two side guide rods are symmetrically distributed along the length direction of the chute; the end of the horizontal pole can protrude from the threaded sleeve; the elastic member includes a vertical spring arranged at the bottom end of the vertical groove and sleeving the vertical pole, and a horizontal tension spring connecting the horizontal groove and the horizontal pole, and the horizontal tension spring makes the horizontal pole not protrude from the threaded sleeve in the natural state; the linkage is a round block fixed to the two sides of the vertical pole, the movement track of the round block intersects with the horizontal pole, and the end of the horizontal pole relative to the vertical pole is provided with a round corner.

[0009] The beneficial effects are: the two side guide rods are symmetrically distributed along the length direction of the chute, the guiding accuracy of the threaded sleeve during sliding is further improved, and the inclination caused by unilateral stress is avoided; the elastic member is definitely the vertical spring and the horizontal tension spring, the vertical spring provides stable reset force for the vertical pole, the horizontal tension spring makes the horizontal pole not protrude from the threaded sleeve in the natural state, the horizontal pole can be prevented from touching the positioning structure by mistake in the non-positioning state, and the positioning interference is reduced; the linkage adopts the round block fixed to the two sides of the vertical pole, and is matched with the round corner design of the end of the horizontal pole, so that the friction resistance during linkage of the vertical pole and the horizontal pole is reduced, mechanical jamming is avoided, the service life of the components is prolonged, and the positioning action is smooth and reliable.

[0010] Preferably, as an improvement, the positioning structure is a corrugated groove opened at the two sides of the chute and matched with the end of the horizontal pole, and the end of the horizontal pole close to the corrugated groove is also provided with a round corner.

[0011] The beneficial effect is that the positioning structure adopts a corrugated groove matched with the end of the cross rod, and the multi-groove design of the corrugated groove can provide multiple positioning points, so that the threaded sleeve can be accurately positioned at different positions of the sliding groove, adapt to the detection needs of different sizes of parts, and expand the application range of the device; the end of the cross rod close to the corrugated groove is provided with a round corner, which has stronger adaptability with the corrugated groove, can reduce wear during embedding and disengaging, and can ensure that the cross rod is quickly and accurately clamped into the corrugated groove, thereby improving positioning accuracy and operation smoothness.

[0012] Preferably, as an improvement, the reset member is a positioning tension spring connecting the positioning rod and the positioning groove, and the positioning tension spring is used to pull up the positioning rod so that the positioning rod does not contact the vertical rod.

[0013] The beneficial effect is that the reset member is a positioning tension spring, and the positioning rod is pulled up so that the positioning rod does not contact the vertical rod, which can separate the positioning rod from the vertical rod in a non-operation state, avoid accidental downward movement of the vertical rod caused by equipment vibration or accidental touch, prevent the cross rod from protruding and being inserted into the positioning structure by mistake, ensure that the threaded sleeve can slide freely in a non-positioning state, and improve the operation safety and stability of the device.

[0014] Preferably, as an improvement, guide grooves are provided on both sides of the vertical groove, and guide blocks embedded in the guide grooves are fixed on both sides of the vertical rod; when the positioning rod slides along the positioning groove, the vertical rod pushes the cross rod out and embeds it into the corrugated groove; when the vertical rod is not under stress, the vertical spring pushes the guide blocks to drive the vertical rod to extend from the top end of the vertical groove, and the horizontal tension spring pushes the cross rod to reset.

[0015] The beneficial effect is that the guide grooves on both sides of the vertical groove cooperate with the guide blocks on both sides of the vertical rod to further limit the sliding direction of the vertical rod, avoid radial deviation of the vertical rod during upward and downward sliding, ensure the accurate linkage position of the vertical rod and the cross rod, make the positioning triggering process more reliable, and through the resetting action of the vertical spring and the horizontal tension spring, ensure that the cross rod quickly disengages from the corrugated groove and the vertical rod resets in a non-positioning state, reduce wear of the parts when they are idle, and improve the durability of the device.

[0016] Preferably, as an improvement, the cross section of the positioning groove and the vertical rod are both rectangular, and the positioning groove and the vertical rod are gap-fitted.

[0017] The beneficial effect is that the positioning groove and the vertical rod adopt a rectangular cross-sectional design, which can prevent the vertical rod from rotating relative to the positioning groove, ensure the stability of the corresponding positions of the round blocks on both sides of the vertical rod and the cross rod, and avoid linkage failure caused by rotation; the gap fit can ensure smooth sliding of the vertical rod in the positioning groove and reduce shaking during sliding, improve the fitting accuracy of the vertical rod and the positioning rod, and indirectly ensure the accuracy of the positioning action.

[0018] Preferably, as an improvement, the depth of the positioning groove is greater than the sum of the maximum length of the positioning rod and the positioning spring, and the depth of the vertical groove is less than the sum of the minimum length of the vertical rod and the vertical spring.

[0019] The beneficial effect is that the end of the vertical rod always protrudes from the top of the workbench and is embedded in the positioning groove, and the positioning rod will not push the vertical rod out of the positioning groove when sliding at the maximum stroke, because the vertical rod needs to drive the induction plate to move on the workbench through the positioning groove.

[0020] Preferably, as an improvement, a detection plate is slidably connected to the induction plate, the detection plate is provided with a touch rod and a buffer spring, the touch rod is detachably connected to the detection plate, and the buffer spring is also detachably connected to the detection plate.

[0021] The beneficial effect is that the detachable connection of the buffer spring and the touch rod can flexibly replace buffer springs of different specifications and touch rods of different lengths according to the radial tolerance allowance range of the detected parts, solving the problem of fixed specifications of the buffer spring and the touch rod in the original device, which can only detect parts with a single error requirement.

[0022] For example, when detecting high-precision circular parts with a radial tolerance allowance of 0.2mm, a natural length of 10mm of the buffer spring and a length of 9.8mm of the touch rod can be selected, and the length difference of 0.2mm between the two is used as the minimum identification threshold of the radial tolerance; when detecting ordinary circular parts with a radial tolerance allowance of 1mm, a natural length of 12mm of the buffer spring and a length of 11mm of the touch rod can be replaced, which is suitable for different detection scenes with different precision requirements and expands the application range of the device.

[0023] Therefore, the difference between the natural length of the buffer spring and the length of the touch rod is the minimum identification threshold of the radial tolerance, which makes the detection standard more accurate and controllable. Compared with the original device, which has no clear threshold for the cooperation of the spring and the touch rod and is prone to false detection or missed detection due to fixed specifications, the improvement ensures that only when the radial tolerance of the part reaches the preset threshold, the detection plate can compress the spring, the touch rod can contact the induction plate, and the alarm lamp can be triggered, effectively reducing false alarms caused by ambiguous thresholds, and improving the accuracy of the detection result. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a schematic view of the workbench structure of the embodiment of the utility model;

[0025] Figure 2 It is a top view of the workbench structure of the embodiment of the utility model;

[0026] Figure 3 It is Figure 2 It is a schematic view of the partial structure section of the threaded sleeve in A-A direction;

[0027] Figure 4 For Figure 2 The partial structure section view of the threaded sleeve in the B-B direction;

[0028] Figure 5 The structure schematic view of the induction assembly of the embodiment of the utility model;

[0029] Figure 6 For Figure 5 The overall structure side view;

[0030] Figure 7 For Figure 6 The partial structure section view of the induction plate in the A-A direction;

[0031] Figure 8 The partial structure section view of the one-way locking groove and the end part connection of the pressing plate in the positioning groove of the embodiment of the utility model. DETAILED DESCRIPTION

[0032] The following is further explained in detail through specific embodiments:

[0033] The reference signs in the drawings of the specification include: workbench 1, rotating assembly 11, sliding groove 12, guide rod 121, corrugated groove 122, screw rod 13, motor 14, threaded sleeve 2, vertical groove 21, vertical rod 211, round stopper 2111, vertical spring 212, guide groove 213, guide block 214, horizontal groove 22, horizontal rod 221, horizontal tension spring 222, induction plate 3, positioning groove 31, one-way locking groove 311, positioning rod 32, pressing plate 321, convex block 3211, positioning tension spring 322, detection plate 33, touch rod 331, buffer spring 332.

[0034] EMBODIMENT

[0035] The embodiment is basically as shown in the drawings Figures 1-8 As shown in the drawings, for example Figures 1-4The rotary information acquisition and detection device shown includes a slide groove 12. Guide rods 121 are symmetrically fixed on both sides of the slide groove 12 along its length. The guide rods 121 penetrate the threaded sleeve 2, limiting the sliding trajectory of the threaded sleeve 2 and preventing offset or rotation during sliding. The threaded sleeve 2 has mating groove structures: a vertical groove 21 and a horizontal groove 22. The top of the vertical groove 21 extends to the outer surface of the threaded sleeve 2, and both sides of the horizontal groove 22 extend to the outer surface of the threaded sleeve 2. The vertical groove 21 and the horizontal groove 22 are interconnected. This forms a channel for the movement of internal components; a vertical rod 211 is vertically slidably connected inside the vertical groove 21, dividing the horizontal groove 22 into two parts symmetrically distributed on both sides of the vertical groove 21. Horizontal rods 221 are slidably connected to both ends of the horizontal groove 22, and the ends of the horizontal rods 221 can protrude outside the threaded sleeve 2 during sliding; to ensure the sliding stability of the vertical rod 211, vertical guide grooves 213 are provided on both sides of the vertical groove 21, and vertical guide blocks 214 are fixed on both sides of the vertical rod 211. The guide blocks 214 are embedded in the guide grooves 213, and the directional sliding of the vertical rod 211 is achieved through the cooperation of the guide blocks 214 and the guide grooves 213.

[0036] like Figures 3-4 As shown, a vertical spring 212 is provided at the bottom of the vertical groove 21. The vertical spring 212 is located between the bottom of the vertical groove 21 and the guide block 214, and is sleeved on the vertical rod 211 to provide an upward restoring force for the vertical rod 211. A horizontal tension spring 222 is connected between the horizontal groove 22 and the horizontal rod 221. In its natural state, the horizontal tension spring 222 pulls the horizontal rod 221 into the vertical groove 21. At this time, the lateral distance between the opposite ends of the two horizontal rods 221 and the vertical surface of the threaded sleeve 2 is 5mm. When the opposite ends of the two horizontal rods 221 are pulled into the vertical groove 21, the length of the two horizontal rods 221 is greater than the length of the two horizontal grooves 22. At this time, the length of the opposite side of the horizontal rods 221 entering the vertical groove 21 is 5cm. At this time, the end of the horizontal rod 221 Not protruding from the threaded sleeve 2, the vertical rod 211 has round abutment blocks 2111 fixed on both sides. The round abutment blocks 2111 correspond one-to-one with the horizontal rods 221 on both sides. The horizontal width of the vertical groove 21 is equal to the sum of the horizontal width of the vertical rod 211 and the horizontal width of the round abutment blocks 2111 on both sides. The horizontal width of the round abutment blocks 2111 is 5cm, and the horizontal width of the vertical rod 211 is 10cm. When the vertical rod 211 moves downward in the vertical groove 21, it drives the round abutment blocks 2111 to move downward. During the downward movement, the round abutment blocks 2111 abut against the opposite ends of the horizontal rods 221 on both sides, and push the opposite ends of the horizontal rods 221 out of the horizontal groove 22. At this time, the horizontal tension spring 222 is compressed, and the opposite ends of the horizontal rods 221 push out of the horizontal groove 22.

[0037] The two side cross bars 221 are rounded at one end close to the vertical bar 211, so as to reduce friction when the round block 2111 pushes the cross bar 221; correspondingly, the two sides of the sliding groove 12 are provided with corrugated grooves 122 corresponding to the end of the cross bar 221, and the end of the cross bar 221 close to the corrugated groove 122 is also rounded, which can be fitted into the corrugated groove 122 to realize the positioning of the threaded sleeve 2 and the sliding groove 12; when the vertical bar 211 drives the round block 2111 to move upward, the end of the cross bar 221 is not in contact with the round block 2111, at this time the cross bar 221 is pulled to the inside of the vertical groove 21 under the natural state of the horizontal tension spring 222, which provides a reset force to the cross bar 221 in the direction of the vertical groove 21; at the same time, the cross bar 221 is pulled out of the corrugated groove 122 under the pull of the horizontal tension spring 222.

[0038] As shown in Figures 5-7 To provide power for the sliding of the vertical bar 211, an induction plate 3 is arranged at the top end of the threaded sleeve 2, the bottom end of the induction plate 3 is provided with a positioning groove 31, the positioning groove 31 can accommodate the top end of the vertical bar 211, the cross section of the positioning groove 31 and the vertical bar 211 are both rectangular, the positioning groove 31 and the vertical bar 211 are gap fitted, the cross section width of the vertical groove 21 is greater than the cross section width of the vertical bar 211, the top end of the positioning groove 31 is vertically and slidingly connected with a positioning rod 32, the positioning rod 32 and the positioning groove 31 are connected with a positioning tension spring 322, the positioning tension spring 322 pulls the positioning rod 32 upward in the natural state without force, so that the positioning rod 32 is not in contact with the top end of the vertical bar 211, a pressing plate 321 is horizontally fixed on the positioning rod 32, pressing the pressing plate 321 downward can drive the positioning rod 32 to slide downward along the positioning groove 31, the two sides of the positioning groove 31 are provided with one-way locking grooves corresponding to the pressing plate 321, the two sides of the pressing plate 321 are elastically connected with protrusions 3211.

[0039] As shown in Figure 8As shown, the one-way locking groove 311 is provided with a plurality of longitudinally arranged large-angle trapezoidal teeth, the inclined surface of the trapezoidal teeth is located at the upper side, the bottom end of the trapezoidal teeth is horizontally arranged, the tooth tip is roundly arranged, the tooth groove for embedding the protrusion 3211 is formed between every two adjacent trapezoidal teeth, the upper side of the protrusion 3211 near one end of the one-way locking groove 311 is provided with an upwardly protruding arc surface and a lower side which is also provided with an inclined surface, the arc surface on the upper side of the protrusion 3211 corresponds to the horizontal surface of the bottom end of the trapezoidal teeth and the round corner tip, and the inclined surface on the lower side corresponds to the upper inclined surface of the trapezoidal teeth; the pressing plate 321 is provided with a guide groove for sliding of the protrusion 3211, a locking spring is connected between the guide groove and the protrusion 3211, and the locking spring is used to press the protrusion 3211 into the tooth groove of the one-way locking groove 311; when it is needed to position the rod 32 to press downwardly the vertical rod 211, the pressing plate 321 is manually pushed downwardly, at this time, the inclined surface on the lower side of the protrusion 3211 does not interfere with the inclined surface on the upper side of the trapezoidal teeth, with the movement of the pressing plate 321, the protrusion 3211 is gradually pressed into the lower tooth groove of the one-way locking groove 311, when the pressing plate 321 is stopped, the protrusion 3211 is still pressed into the tooth groove under the action of the locking spring, at this time, the positioning spring 322 presses upwardly the pressing plate 321, the pressing plate 321 drives the protrusion 3211 to have a tendency to move upwardly, but since the protrusion 3211 is pressed against the horizontal surface of the bottom end of the trapezoidal teeth, the spring cannot overcome the frictional force of relative sliding between them, thus the protrusion 3211 is locked, thereby achieving the purpose of freely adjusting and pressing the vertical rod 211 downwardly; after the protrusion 3211 is locked, the relative position of the rod 32 and the vertical rod 211 is also locked, thus the purpose of moving the induction plate 3 by the threaded sleeve 2 can be achieved; if the part detection is completed, the pressing plate 321 is manually pulled upwardly, the pressing plate 321 gives the protrusion 3211 an upward force, the arc surface on the upper side of the protrusion 3211 is pressed between the lower end surface of the trapezoidal teeth and the round corner tooth, enters the guide groove, and causes the locking spring to be compressed, finally, through layer-by-layer pushing and pulling, the rod 32 and the vertical rod 211 are separated from each other.

[0040] The induction plate 3 is slidingly connected with a detection plate 33, the detection plate 33 is detachably connected with a touch rod 331 and a buffer spring 332, the end of the touch rod 331 is provided with a threaded section, the end of the buffer spring 332 is fixedly provided with a connecting column, the end of the connecting column is also provided with a threaded section, the detection plate 33 is respectively provided with threaded holes for connection of the touch rod 331 and the connecting column, the end of the touch rod is threadedly connected with the detection plate through the threaded hole, and the connecting column is also threadedly connected with the detection plate through the threaded hole, thereby achieving detachable connection of the touch rod 331 and the buffer spring 332.

[0041] The positioning rod 32 slides downward, and the vertical rod 211 slides downward synchronously, the vertical rod 211 pushes the corresponding horizontal rod 221 through the two side circular abutting blocks 2111, and the horizontal rod 221 moves away from the vertical groove 21, at this time, the vertical spring 212 is compressed, the horizontal tension spring 222 is lengthened, and the end of the horizontal rod 221 is finally inserted into the corrugated groove 122 on both sides of the sliding groove 12, so that the positioning of the threaded sleeve 2 on the sliding groove 12 is realized. When the vertical rod 211 is not stressed, the vertical spring 212 pushes the guide block 214 to drive the vertical rod 211 to slide upward, so that the vertical rod 211 extends from the top end of the vertical groove 21; at the same time, the horizontal tension spring 222 pulls the horizontal rod 221 to move to the inside of the vertical groove 21, so that the end of the horizontal rod 221 is separated from the corrugated groove 122 and returns to the state of not protruding from the threaded sleeve 2. In addition, the width of the vertical groove 21 is greater than the width of the vertical rod 211, so as to adapt to the sliding action of the vertical rod 211; the depth of the positioning groove 31 is greater than the sum of the maximum length of the positioning rod 32 and the positioning tension spring 322, the depth of the vertical groove 21 is less than the sum of the shortest length of the vertical rod 211 and the vertical spring 212, the cross sections of the positioning groove 31 and the vertical rod 211 are both set as rectangles, and the positioning groove 31 and the vertical rod 211 are gap-fitted.

[0042] The above is only an embodiment of the present application, and the specific technical solutions and / or common knowledge of characteristics in the scheme are not described in detail. It should be noted that for those skilled in the art, without departing from the technical solutions of the present application, a number of modifications and improvements can be made, which should also be considered as the protection scope of the present application, and these will not affect the effect and practicality of the present application. The protection scope of the present application should be subject to the content of its claims, and the specific embodiments in the specification can be used to explain the content of the claims.

Claims

1. A carousel information acquisition and detection apparatus, characterized by: The chute, a threaded sleeve slidingly connected in the chute, and an induction plate connected above the threaded sleeve are included. The chute is provided with guide rods penetrating the threaded sleeve on both sides, the threaded sleeve is provided with vertical grooves and horizontal grooves in communication with each other, and the vertical grooves and the horizontal grooves are slidingly connected with vertical rods and horizontal rods respectively. Elastic members are arranged between the vertical rods and the vertical grooves and between the horizontal rods and the horizontal grooves, the vertical rods are provided with linkage members corresponding to the horizontal rods, and the linkage members are used to push the horizontal rods to move horizontally along the horizontal grooves when the vertical rods move downward. The chute is provided with positioning structures corresponding to the horizontal rods on both sides, the bottom end of the induction plate is provided with a positioning groove for embedding the vertical rods, a positioning rod is slidingly connected in the positioning groove, and the positioning rod is connected with a pressing plate and a reset member; the pressing plate can be pressed downward to drive the positioning rod to move the vertical rods downward, the linkage members can make the horizontal rods enter the positioning structures to position the threaded sleeve, and the elastic members and the reset member are used for resetting the components.

2. The carousel information gathering inspection apparatus of claim 1, wherein: The two guide rods are symmetrically distributed along the length direction of the chute; the end of the horizontal rod can protrude out of the threaded sleeve; the elastic members include vertical springs arranged at the bottom end of the vertical grooves and sleeving the vertical rods and horizontal tension springs connecting the horizontal grooves and the horizontal rods, the horizontal tension springs naturally make the horizontal rods not protrude out of the threaded sleeve; the linkage members are round blocks fixed on both sides of the vertical rods, the motion track of the round blocks intersects with the horizontal rods, and one end of the horizontal rod relative to the vertical rod is provided with a round corner.

3. The carousel information gathering inspection apparatus of claim 2, wherein: The positioning structures are corrugated grooves provided on both sides of the chute and matched with the end of the horizontal rod, and the end of the horizontal rod close to the corrugated groove is also provided with a round corner.

4. The carousel information gathering inspection apparatus of claim 3, wherein: The reset member is a positioning tension spring connecting the positioning rod and the positioning groove, and the positioning tension spring is used to pull the positioning rod upward so that the positioning rod does not contact the vertical rod.

5. The carousel information gathering inspection apparatus of claim 4, wherein: Guide grooves are provided on both sides of the vertical grooves, and guide blocks embedded in the guide grooves are fixed on both sides of the vertical rods; when the positioning rod slides downward along the positioning groove, the vertical rod pushes the horizontal rod out of the corrugated groove and embeds the horizontal rod in the corrugated groove, and when the vertical rod is not stressed, the vertical spring pushes the guide blocks to drive the vertical rods to extend out of the top end of the vertical groove, and the horizontal tension spring pulls the horizontal rod to reset.

6. The carousel information gathering inspection apparatus of claim 1, wherein: The cross sections of the positioning groove and the vertical rod are both rectangular, and the positioning groove and the vertical rod are gap-fitted.

7. The carousel information gathering inspection apparatus of claim 4, wherein: The depth of the positioning groove is greater than the sum of the maximum lengths of the positioning rod and the positioning tension spring, and the depth of the vertical groove is less than the sum of the minimum lengths of the vertical rod and the vertical spring.

8. The carousel information gathering inspection apparatus of claim 1, wherein: A detection plate is slidingly connected on the induction plate, the detection plate is provided with a touch rod and a buffer spring, the touch rod is detachably connected to the detection plate, and the buffer spring is also detachably connected to the detection plate.

Citation Information

Patent Citations

  • Automobile part inspection device

    CN216846081U