Detection device
By designing a detection device with a rotatable mounting part and a detachable positioning part, the problem of difficult detection of the side of the workpiece is solved, and an efficient and low-cost multi-angle detection effect is achieved.
Patent Information
- Application Number
- CN202211045185.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2042-08-30
AI Technical Summary
The side surfaces of the workpiece cannot be inspected by handheld instruments, and automatic inspection equipment is expensive and has poor versatility, making effective inspection difficult.
A detection device including a frame, a mounting part, a clamping part and a positioning part is designed. The mounting part is rotatably arranged on the frame, the clamping part is used to clamp the target part, and the positioning part is detachably arranged at the mounting position. The detection module is used to detect different parameters of the target part. The side to be detected is rotated to the horizontal plane by rotating the mounting part, which facilitates comprehensive detection.
The accuracy and efficiency of workpiece side detection are improved, the detection cost is reduced, the versatility of detection is enhanced, the structure is simple and the operation is easy.
Smart Images

Figure CN115406487B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection tooling, and in particular to a detection device. Background Art
[0002] When inspecting a workpiece using a handheld inspection instrument, the workpiece's large surface provides support for the instrument, enabling normal measurement. However, the side surfaces of the workpiece are difficult to support, preventing the instrument from effectively measuring the side surfaces. Automated inspection equipment is often used in the prior art, but this equipment is expensive, lacks versatility, and is also not effective in inspecting workpieces. Summary of the Invention
[0003] The present invention provides a detection device to solve the technical problem that the side surface of a workpiece cannot be detected by a handheld instrument.
[0004] The embodiment of the present invention is achieved as follows:
[0005] A detection device includes a frame, a mounting member, a clamping member and a plurality of positioning members. The mounting member is rotatably provided on the frame, and the mounting member is configured to be locked to the frame. The outer peripheral surface of the mounting member is provided with a plurality of mounting positions, and the plurality of mounting positions are arranged around the rotation axis of the mounting member. The mounting member defines an insertion interface, and the insertion interface is used to accommodate a part of the target member. The clamping member is provided on the mounting member, and the clamping member is used to clamp the target member. The plurality of positioning members are respectively detachably provided on the plurality of mounting positions, and the plurality of positioning members respectively define detection ports, and the detection port of at least one positioning member can be connected to the plug interface, and some of the detection ports can also accommodate a part of the target member. Each positioning member is configured to carry a detection module, and the detection module is used to detect different parameters of the target member.
[0006] The detection device of the present invention has a simple and ingenious structure, low processing cost, and easy operation. It can stably clamp the target part and can rotate the installation position to the horizontal plane in sequence along with the side of the target part to be detected, so that the operator can complete the side detection of the target part through the detection module. Compared with the known direct detection through handheld instruments, the detection accuracy and efficiency of the target part are improved. Compared with the known detection through automatic detection equipment, the detection versatility is significantly improved and the detection cost is reduced.
[0007] In one possible embodiment: the mounting member includes: a mounting seat, the mounting seat is rotatably provided on the frame, the clamping member is provided on the mounting seat and is used to clamp the target member to the plate surface of the mounting seat, the mounting seat has a plurality of edge end faces, and the plurality of edge end faces are connected in sequence to form the outer peripheral surface of the mounting seat; the supporting plate, the supporting plate is provided on one of the edge end faces of the mounting seat, and the supporting plate defines the plug interface.
[0008] In a possible embodiment: there is a first mounting position among the multiple mounting positions, the first mounting position is arranged on the side of the supporting plate away from the mounting seat, and the plug interface is arranged at the first mounting position; there are multiple first positioning members among the multiple positioning members, and the multiple first positioning members can be arranged at the first mounting position in turn, and the detection port of the first positioning member arranged at the first mounting position is connected to the plug interface.
[0009] In a possible embodiment: the plurality of mounting positions further comprise a plurality of second mounting positions, and the plurality of second mounting positions are respectively arranged on the other edge end faces of the mounting seat; the plurality of positioning members further comprise a plurality of second positioning members, and the plurality of second positioning members are arranged in one-to-one correspondence with the plurality of second mounting positions, and different parts of the target member can be respectively inserted into the plug-in interfaces of the plurality of second positioning members.
[0010] In one possible embodiment: the target part is a thin plate structure, and when the clamping part clamps the target part, the plate surface of the thin plate structure is attached to the plate surface of the mounting seat, one end of the thin plate structure is inserted into the insertion port, and part of the detection port is used to accommodate the edge end of the target part.
[0011] In a possible embodiment, the mounting member is further configured to be able to move closer to engage with the frame and be locked to the frame, or move away from the frame to disengage and rotate.
[0012] In a possible embodiment: the detection device further includes a rotating member, which extends along a first direction and can move relative to the frame in the first direction, the first direction is parallel to the rotation axis of the mounting member, one end of the rotating member is rotatably provided on the frame, and the other end of the rotating member is connected to the mounting member.
[0013] In a possible implementation manner, one of the mounting member and the frame is provided with an inserting portion, and the other is provided with an inserting slot, and the inserting portion can be inserted into the inserting slot to limit the relative rotation of the mounting member and the frame.
[0014] In a possible implementation manner, a plurality of the mounting positions are respectively provided with a first magnetic attraction portion, and a plurality of the positioning members are respectively provided with a second magnetic attraction portion, and the second magnetic attraction portion can be attracted to the first magnetic attraction portion.
[0015] In a possible embodiment: the detection device also includes a leveling member, which can cooperate with at least one of the mounting positions. When the leveling member cooperates with one of the mounting positions, the surface of the leveling member facing the mounting position is a horizontal surface, so that the side of the target part can abut the surface of the leveling member and remain level. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings in the embodiments will be briefly introduced below. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0017] Figure 1 This is a schematic diagram of the structure of a detection device according to an embodiment of the present invention;
[0018] Figure 2 This is a schematic structural diagram of a positioning member according to an embodiment of the present invention;
[0019] Figure 3 This is a second structural diagram of a detection device according to an embodiment of the present invention;
[0020] Figure 4 This is a second structural diagram of a positioning member according to an embodiment of the present invention;
[0021] Figure 5 This is a third structural diagram of a detection device according to an embodiment of the present invention;
[0022] Figure 6 This is a third structural diagram of a positioning member according to an embodiment of the present invention;
[0023] Figure 7 This is a fourth structural diagram of a detection device according to an embodiment of the present invention;
[0024] Figure 8 This is a schematic diagram of the exploded structure of a detection device according to an embodiment of the present invention;
[0025] Figure 9 is a schematic cross-sectional structural diagram of a detection device according to an embodiment of the present invention;
[0026] Figure 10 A schematic structural diagram of a plug-in block and a plug-in portion according to an embodiment of the present invention;
[0027] Figure 11 FIG. 1 is a schematic diagram of a partial structure of a detection device according to an embodiment of the present invention.
[0028] Description of main component symbols:
[0029] Detection device 100
[0030] Target 200
[0031] Rack 10
[0032] Connecting portion 11
[0033] Splice rib 111
[0034] Rib 12
[0035] Fixed plate 13
[0036] Bottom plate 14
[0037] Mounting piece 20
[0038] Plug port 21
[0039] Insertion bevel 211
[0040] Mounting Block 22
[0041] Loading plate 23
[0042] First installation position 24
[0043] Second installation position 25
[0044] Plug-in block 26
[0045] Plug slot 261
[0046] First magnetic attraction portion 27
[0047] Clamping member 30
[0048] Clamping elbow clamp 31
[0049] Flexible pressing block 32
[0050] Positioning piece 40
[0051] Detection port 41
[0052] First positioning member 42
[0053] Color difference positioning block 421
[0054] Gloss positioning block 422
[0055] Second positioning member 43
[0056] Long side positioning block 431
[0057] Short side positioning block 432
[0058] Second magnetic attraction portion 44
[0059] Positioning slot 45
[0060] Detection slope 46
[0061] Detection module 50
[0062] Color difference detector 51
[0063] Gloss tester 52
[0064] Roughness tester 53
[0065] Rotating member 60
[0066] Rotating rod 61
[0067] First end 611
[0068] Second end 612
[0069] Push-pull portion 62
[0070] Limiting portion 63
[0071] Leveling piece 70
[0072] Leveling groove 71
[0073] Vertical positioning piece 80 DETAILED DESCRIPTION
[0074] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0075] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may also be an element centered therein. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may also be an element centered therein. When an element is considered to be "set on" another element, it may be directly set on the other element or there may also be an element centered therein. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0076] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the present invention pertains. The terms used herein in the specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "or / and" as used herein includes any and all combinations of one or more of the associated listed items.
[0077] Some embodiments of the present invention are described in detail. In the absence of conflict, the following embodiments and features of the embodiments can be combined with each other.
[0078] Example
[0079] See also Figures 1 to 11 This embodiment provides a detection device 100, comprising a frame 10, a mounting member 20, a clamping member 30, and a plurality of mounting members 20. The mounting member 20 is rotatably disposed on the frame 10, and is configured to be locked to the frame 10. The outer circumferential surface of the mounting member 20 is provided with a plurality of mounting positions, and the plurality of mounting positions are arranged around the rotation axis of the mounting member 20. The mounting member 20 defines an insertion port 21, and the insertion port 21 is used to accommodate a portion of the target part 200. The clamping member 30 is disposed on the mounting member 20, and the clamping member 30 is used to clamp the target part 200. A plurality of positioning members 40 are detachably disposed at the plurality of mounting positions, and the plurality of positioning members 40 respectively define a detection port 41. The detection port 41 of at least one positioning member 40 can be communicated with the insertion port 21, and some of the detection ports 41 can also accommodate a portion of the target part 200. Each positioning member 40 is configured to carry a detection module 50, and the detection module 50 is used to detect different parameters of the target part 200.
[0080] The clamping member 30 provided on the mounting member 20 is capable of clamping the target part 200, and the plug-in port 21 within the mounting member 20 is capable of accommodating a portion of the target part 200. The plug-in port 21 cooperates with the clamping member 30 to fix the target part 200 relative to the mounting member 20. The outer peripheral surface of the mounting member 20 is also provided with a plurality of mounting positions, and a plurality of positioning members 40 are detachably provided at the plurality of mounting positions. The detection ports 41 of some of the positioning members 40 are capable of accommodating a portion of the target part 200, and the detection ports 41 of some of the positioning members 40 are capable of communicating with the plug-in port 21. The detection ends of at least some of the detection modules 50 are capable of accurately and stably fitting within the detection ports 41, thereby enabling the detection modules 50 placed on the positioning members 40 to detect different sides of the target part 200 through the detection ports 41. Furthermore, the positioning members 40 themselves provide stable and reliable support for some of the detection modules 50, so that an operator can hold the detection modules 50 and detect different sides of the mounting member 20. In addition, after the detection port 41 accommodates a portion of the target part 200, the detection port 41 can protect the surface of the target part 200 adjacent to the side to be detected, preventing the detection module 50 from damaging other surfaces of the target part 200 when detecting the side.
[0081] At the same time, when the mounting member 20 rotates on the frame 10, the outer peripheral surface of the target part 200 can be rotated relative to the frame 10, and the side to be detected can be rotated to a horizontal plane. The mounting position corresponding to the side to be detected can also be rotated to a horizontal plane, so that the operator can place the positioning member 40 adapted to the mounting position on the mounting position, thereby improving the support stability of the mounting position for the positioning member 40, and facilitating further improving the accuracy of the detection results of the side of the target part 200 detected by the operator through the detection module 50. Moreover, by rotating the mounting member 20, different sides can be rotated to a horizontal plane, eliminating the need to disassemble and assemble the target part 200 multiple times. During the detection process, the target part 200 only needs to be clamped once, eliminating the need for multiple disassembly and assembly.
[0082] Therefore, the detection device 100 of the embodiment of the present invention has a simple and ingenious structure, low processing cost, and easy operation. It can stably clamp the target part 200, and can rotate the installation position to the horizontal plane in sequence along with the side of the target part 200 to be detected, so that the operator can complete the side detection of the target part 200 through the detection module 50. Compared with the known direct detection through handheld instruments, the detection accuracy and efficiency of the target part 200 are improved. Compared with the known detection through automatic detection equipment, the detection versatility is significantly improved and the detection cost is reduced.
[0083] Specifically, see Figure 9The inner surface of the plug-in port 21 is provided with a plug-in slope 211 to facilitate the target part 200 to extend into the plug-in port 21 and prevent the plug-in port 21 from interfering with and damaging the target part 200 .
[0084] Specifically, see Figures 1 to 6 The multiple inspection modules 50 include a color difference detector 51, a gloss detector 52, and a roughness detector 53, which respectively detect the color difference, gloss, and roughness of the side surface of the target part 200. Of course, in other embodiments of the present invention, other inspection modules 50 can also be used to inspect the side surface of the target part 200.
[0085] In some embodiments, see Figures 7 to 9 The mounting member 20 includes a mounting seat 22 and a supporting plate 23. The mounting seat 22 is rotatably mounted on the frame 10. The clamping member 30 is mounted on the mounting seat 22 and is used to clamp the target part 200 to the plate surface of the mounting seat 22. The mounting seat 22 has multiple edge end surfaces, which are sequentially connected to form the outer peripheral surface of the mounting seat 22. The supporting plate 23 is mounted on one edge end surface of the mounting seat 22. The supporting plate 23 defines the insertion port 21. The side surfaces of the mounting seat 22 and the top surface of the supporting plate 23 respectively define the mounting position.
[0086] The side surface of the mounting seat 22 can define multiple mounting positions, so that when the target part 200 is clamped on the board surface of the mounting seat 22, each side surface of the target part 200 can correspond one-to-one to the multiple mounting positions. At the same time, the plug-in interface 21 defined by the supporting plate 23 can accommodate the end face of the target part 200, so that when the target part 200 is clamped on the board surface of the mounting seat 22, the plug-in interface 21 can also play a stable limiting role.
[0087] In some embodiments, see Figures 1 to 6 , multiple installation positions are respectively provided with a first magnetic attraction portion 27 , and multiple positioning members 40 are respectively provided with a second magnetic attraction portion 44 , and the second magnetic attraction portion 44 can be attracted to the first magnetic attraction portion 27 .
[0088] The first magnetic part 27 and the second magnetic part 44 cooperate with each other to improve the convenience of disassembly and assembly of the positioning part 40 at the installation position, thereby facilitating the operator to quickly replace different positioning parts 40 according to different detection modules 50, and further improving the detection efficiency of the side of the target part 200.
[0089] Specifically, in this embodiment, the first magnetic attraction portion 27 and the second magnetic attraction portion 44 can be respectively configured as various magnetic attraction structures such as permanent magnets and electromagnets.
[0090] Specifically, in this embodiment, the mounting member 20 is provided with a first mounting slot, and the first magnetic portion 27 is locked in the first mounting slot by a locking structure such as a bolt, and the first magnetic portion 27 does not protrude from the slot of the first mounting slot. The positioning member 40 is provided with a second mounting slot, and the second magnetic portion 44 is locked in the second mounting slot by a locking structure such as a bolt, and the second magnetic portion 44 does not protrude from the slot of the second mounting slot, so as to avoid the problem that when the positioning member 40 is set in the mounting position, the detection module 50 cannot be used smoothly due to the action of the protruding first magnetic portion 27 and the second magnetic portion 44, thereby further improving the side detection reliability of the target part 200.
[0091] Specifically, in this embodiment, a plurality of first magnetic portions 27 and a plurality of second magnetic portions 44 are respectively provided, and the plurality of second magnetic portions 44 on the positioning member 40 correspond one-to-one to the plurality of first magnetic portions 27 on the mounting position, so as to further improve the firmness of the positioning member 40 at the mounting position, thereby providing a more stable detection platform for the detection module 50.
[0092] Of course, in other embodiments of the present invention, the positioning member 40 and the mounting position may also be quickly released by a detachable locking structure such as a buckle, without any specific limitation.
[0093] In some embodiments, see Figures 1 to 6 One of the positioning member 40 and the mounting member 20 is provided with a positioning groove 45, and the other can be adapted to the groove surface of the positioning groove 45 to locate the placement position of the positioning member 40 on the mounting position.
[0094] By setting the positioning groove 45, the problem of the positioning member 40 moving relative to the mounting member 20 after being set in the installation position can be further avoided. Not only can the positioning between the positioning member 40 and the mounting member 20 be made more accurate and reliable, but it can also prevent the positioning member 40 from damaging the target member 200 located in its detection port 41 after the relative displacement between the positioning member 40 and the mounting member 20. This not only improves the side detection accuracy of the target member 200, but also improves the protection effect on the target member 200.
[0095] In some embodiments, see Figure 8 The plurality of mounting positions includes a first mounting position 24, which is located on a side of the carrier plate 23 facing away from the mounting seat 22, and the plug interface 21 is located at the first mounting position 24. The plurality of positioning members 40 includes a plurality of first positioning members 42, which can be sequentially located at the first mounting position 24. The detection port 41 of the first positioning member 42 located at the first mounting position 24 is in communication with the plug interface 21.
[0096] It is understandable that the plurality of first positioning members 42 can be respectively adapted to different detection modules 50 so as to measure different parameters of the same side of the target part 200. For example, see Figure 1 and Figure 2 The multiple first positioning members 42 can be divided into a color difference positioning block 421 and a gloss positioning block 422. The color difference positioning block 421 defines multiple detection ports 41. The multiple detection ports 41 are spaced apart along the length of the color difference positioning block 421 and staggered along the width of the color difference positioning block 421. The detection ports 41 of the color difference positioning block 421 have a circular cross-section to accommodate the color difference detector 51. The gloss positioning block 422 defines multiple detection ports 41. The multiple detection ports 41 are spaced apart along the length of the gloss positioning block 422 and staggered along the width of the gloss positioning block 422. The detection ports 41 of the gloss positioning block 422 have a rectangular cross-section to accommodate the gloss detector 52. In addition, since the plug-in interface 21 provided on the carrier plate 23 has been used to accommodate the target part 200, the carrier plate 23 can directly carry the roughness detector 53 and enable the roughness detector 53 to complete the roughness detection of the side of the target part 200, so that the carrier plate 23 takes into account the functions of limiting the target part 200 and carrying the detection module 50, which can further improve the detection efficiency of the target part 200.
[0097] In addition, in the embodiments of the present invention, see Figure 1 Since the multiple detection ports 41 on the gloss positioning block 422 and the color difference positioning block 421 are staggered, even if the operator flips the gloss positioning block 422 and the color difference positioning block 421 and places them on the first positioning member 42, the parameter detection of the side of the target part 200 can still be completed, thereby further improving the convenience and versatility of disassembly and assembly of the first positioning member 42 on the mounting member 20, and improving the detection efficiency of the target part 200.
[0098] In some embodiments, see Figures 3 to 6 , there are also multiple second mounting positions 25 in the multiple mounting positions, and the multiple second mounting positions 25 are respectively arranged on other edge end surfaces of the mounting seat 22; there are also multiple second positioning members 43 in the multiple positioning members 40, and the multiple second positioning members 43 are arranged in a one-to-one correspondence with the multiple second mounting positions 25, and different parts of the target part 200 can be respectively inserted into the plug-in interfaces 21 of the multiple second positioning members 43.
[0099] It is understood that, since the other edge end surfaces of the mounting base 22 are not provided with the supporting plate 23, the one-to-one correspondence between the plurality of second positioning members 43 and the plurality of second mounting positions 25 allows different second positioning members 43 to be matched with the differently shaped edge end surfaces of the mounting base 22, thereby better ensuring the accuracy of the detection module 50 in detecting the target part 200 on the second positioning members 43. Since the target part 200 can be inserted into the insertion ports 21 of the plurality of second positioning members 43, the roughness detector 53 provided on the second positioning member 43 can directly detect the roughness of the side surface of the target part 200.
[0100] Specifically, in this embodiment, the multiple second positioning members 43 respectively include a long side positioning block 431 and a short side positioning block 432. In this embodiment, the target part 200 is a rectangular structure, wherein the supporting plate 23 is arranged relative to one long side of the target part 200, so that the long side positioning block 431 cooperates with the other long side part of the target part 200, and the short side positioning block 432 can cooperate with the two short side parts of the target part 200.
[0101] Specifically, see Figure 4 In this embodiment, the inner surface of the detection port 41 of the second positioning member 43 is provided with a detection slope 46 to facilitate the target part 200 to extend into the detection port 41 and prevent the target part 200 from interfering with the detection port 41 and damaging the target part 200.
[0102] In addition, in other embodiments of the present invention, the color difference positioning block 421 and the gloss positioning block 422 in the first positioning member 42 can also be detachably arranged on the second positioning member 43, thereby facilitating the detection of color difference parameters and gloss parameters of other parts of the target part 200 through the color difference positioning block 421 and the gloss positioning block 422.
[0103] In some embodiments, see Figure 7 The target part 200 is a thin plate structure. When the clamping part 30 clamps the target part 200, the plate surface of the thin plate structure is attached to the plate surface of the mounting seat 22, and one end of the thin plate structure is inserted into the insertion port 21. Part of the detection port 41 is used to accommodate the edge end of the target part 200.
[0104] Because the length and width of a thin plate structure are much larger than its thickness, direct inspection of the side surfaces of the thin plate structure using the inspection module 50 is difficult and has low inspection accuracy. Therefore, the inspection device 100 of this embodiment is more suitable for inspecting thin plate structures. Of course, in other embodiments of the present invention, the inspection device 100 can also be applied to target parts 200 of other shapes.
[0105] Specifically, the thin plate structure in this embodiment is not limited to the back panels of electronic devices such as laptop computers and mobile phones.
[0106] In some embodiments, see Figure 11 The detection device 100 also includes a vertical positioning member 80, which is provided on the mounting member 20. The cross-section of the vertical positioning member 80 is rectangular, and the side surfaces of the vertical positioning member 80 are all flat. The side surface of the target part 200 has at least one flat surface. When the target part 200 is clamped by the clamping member 30, the flat side surface of the target part 200 can be pressed against the side surface of the vertical positioning member 80, thereby reliably positioning the installation position of the target part 200 on the mounting member 20, thereby further improving the subsequent detection reliability of the target part 200.
[0107] Specifically, in this embodiment, the vertical positioning member 80 is a positioning pin with a rectangular cross section, and the positioning pin is provided on the mounting member 20 perpendicular to the surface of the mounting member 20 .
[0108] In some embodiments, see Figure 1 and Figure 11 The clamping member 30 includes two spaced-apart clamping elbow clamps 31, and flexible pressing blocks 32 are provided at the ends of the clamping elbow clamps 31. The two clamping elbow clamps 31 are respectively used to clamp the two ends of the target member 200, so that the flexible pressing blocks 32 can press the target member 200 onto the mounting member 20 through the clamping elbow clamps 31. The flexible pressing blocks 32 can prevent the clamping elbow clamps 31 from exerting excessive local force on the target member 200 and damaging the target member 200 during the clamping process, thereby providing better protection for the target member 200.
[0109] In some embodiments, see Figure 1 and Figure 2 The detection device 100 also includes a leveling member 70, which can cooperate with at least one installation position. When the leveling member 70 cooperates with a installation position, the surface of the leveling member 70 facing the installation position is a horizontal surface, so that the side of the target part 200 can abut the surface of the leveling member 70 and remain level.
[0110] After the target part 200 is locked to the mounting part 20 by the clamping part 30, the position of the target part 200 can be positioned through the detection port 41. At the same time, in order to further improve the position accuracy of the target part 200 on the mounting part 20, a leveling part 70 can be set on the mounting position. At this time, the target part 200 can abut against the surface of the leveling part 70 facing the mounting position in the detection port 41. Since the surface of the leveling part 70 is horizontal, when the side of the target part 200 abuts against the surface of the leveling part 70, the side of the target part 200 can be made horizontal, thereby improving the installation position accuracy of the target part 200 on the mounting part 20.
[0111] In addition, in this embodiment, the leveling member 70 is provided with a leveling groove 71 , the mounting position can be accommodated in the leveling groove 71 , and the outer surface of the mounting position is adapted to the groove surface of the leveling groove 71 to ensure that the target member 200 can be positioned by abutting the leveling member 70 .
[0112] In addition, in other embodiments of the present invention, the leveling member 70 is provided with a second magnetic portion 44 to cooperate with the first magnetic portion 27 on the mounting position, thereby preventing the target member 200 from lifting the leveling member 70 during the leveling process. Of course, in other embodiments of the present invention, the leveling member 70 can also be connected to the mounting member 20 by snapping, without specific limitation.
[0113] Specifically, the target part 200 in this embodiment can be set as a regular polygon structure, so that when one side of the target part 200 is horizontal, the mounting part 20 only needs to be rotated by a preset angle so that the upward side of the target part 200 remains horizontal after rotation.
[0114] In some embodiments, see Figures 7 to 9 One of the mounting member 20 and the frame 10 is provided with an inserting portion 11, and the other is provided with an inserting slot 261. The inserting portion 11 can be inserted into the inserting slot 261 to limit the relative rotation of the mounting member 20 and the frame 10.
[0115] The plug-in portion 11 and the plug-in slot 261 can not only limit the relative rotation between the mounting member 20 and the frame 10 , but also adjust the rotation angle between the mounting member 20 and the frame 10 .
[0116] In some embodiments, see Figures 7 to 10 The plug-in portion 11 includes a plurality of plug-in ribs 111, one ends of the plurality of plug-in ribs 111 intersect at one point, and the other ends of the plurality of plug-in ribs 111 extend in different straight line directions. The plug-in groove 261 is adapted to the plug-in portion 11. The target part 200 is a polygonal structure and has a plurality of side surfaces connected at angles in sequence. The extension directions of the plurality of plug-in ribs 111 are respectively perpendicular to the extension directions of the plurality of side surfaces of the target part 200, and the intersection point of the plurality of plug-in ribs 111 is located on the rotation axis of the target part 200. Therefore, in the initial position of the mounting member 20, one side of the target part 200 is located on the horizontal plane. When the mounting member 20 rotates relative to the frame 10 and causes one plug-in rib 111 to disengage from the current plug-in slot 261 and then engage with the next plug-in slot 261, the side of the target part 200 adjacent to the previous side can enter the horizontal plane. As a result, after each rotation of the mounting member 20, one side of the target part 200 is located on the horizontal plane, so that the operator does not need to perform additional leveling operations after rotating the mounting member 20, thereby further improving the detection efficiency of the target part 200.
[0117] Specifically, in this embodiment, the target part 200 is a rectangular structure, the plug-in portion 11 is a cross plug-in block 26, and the plug-in slot 261 is a cross slot, so that the mounting part 20 can only rotate 90 degrees, 180 degrees, 270 degrees and 360 degrees relative to the frame 10.
[0118] In some embodiments, see Figure 10 The cross section of the plug-in portion 11 is V-shaped, and the cross section of the plug-in groove 261 is V-shaped, which can better improve the docking reliability between the plug-in portion 11 and the plug-in groove 261.
[0119] In some embodiments, the plug-in portion 11 is disposed on the frame 10 , the mounting member 20 includes a plug-in block 26 , and the plug-in slot 261 is opened on the frame 10 .
[0120] Of course, in other embodiments of the present invention, the mounting member 20 and the frame 10 can also be locked and disengaged by means of a ratchet, or by means of a self-locking drive motor. However, the ratchet operation is complicated and cannot achieve reverse rotation. The mounting member 20 has high load requirements for the drive motor, which will increase the cost of the detection device 100. Therefore, the cooperation between the plug-in portion 11 and the plug-in slot 261 in this embodiment can reduce the adjustment cost of the mounting member 20 on the frame 10 and is easy to operate.
[0121] In some embodiments, see Figures 7 to 9 The mounting member 20 is further configured to be able to move closer to engage with the frame 10 and be locked to the frame 10 , or move away from the frame 10 to be disengaged and rotated.
[0122] When measuring a side of the target part 200, the mounting member 20 is driven toward and engaged with the frame 10, locking the mounting member 20 to the frame 10. This prevents the mounting member 20 from causing the target part 200 to rotate relative to the frame 10 during measurement, improving the safety of the measurement process and reducing the risk of damage to the target part 200. When measuring other sides of the target part 200, the mounting member 20 is driven away from the frame 10, rotating the mounting member relative to the frame 10 and rotating the side to be measured until it is parallel to the horizontal plane.
[0123] In some embodiments, see Figures 7 to 9 The detection device 100 also includes a rotating member 60, which extends along a first direction and can move relative to the frame 10 in the first direction. The first direction is parallel to the rotation axis of the mounting member 20. One end of the rotating member 60 is rotatably provided on the frame 10, and the other end of the rotating member 60 is connected to the mounting member 20.
[0124] The rotating member 60 enables the mounting member 20 to move relative to the frame 10 along the first direction while being able to rotate relative to the frame 10 around the first direction, thereby facilitating the mounting member 20 to engage with the frame 10 to be locked on the frame 10, or to detach from the frame 10 to rotate relative to the frame 10.
[0125] In some embodiments, see Figure 9 The rotating member 60 includes a rotating rod 61, a push-pull portion 62, and a stopper 63. The rotating rod 61 passes through the frame 10, and a first end 611 of the rotating rod 61 is connected to the mounting member 20. The push-pull portion 62 is connected to a second end 612 of the rotating rod 61 facing away from the mounting member 20. The push-pull portion 62 is used to push the mounting member 20 to move in a first direction to engage with or disengage from the frame 10. The stopper 63 is used to limit the movement of the rotating rod 61 in the first direction to prevent the rotating rod 61 from disengaging from the frame 10.
[0126] In some embodiments, see Figure 7 The frame 10 includes a bottom plate 14, a rib plate 12 and a fixed plate 13. The rib plate 12 is arranged on the bottom plate 14, the fixed plate 13 is arranged on the bottom plate 14 and connected to the rib plate 12, the plug-in portion 11 is fixedly connected to the rib plate 12, and the rotating member 60 is passed through the fixed plate 13 and is rotatably connected to the fixed plate 13.
[0127] Specifically, in this embodiment, the push-pull portion 62 is a push-pull toggle clamp, which is both easy to operate and self-locking. This prevents the mounting member 20 from accidentally disengaging from the frame 10 after engagement with the frame 10, ensuring smooth testing. The stopper portion 63 is a stopper pin inserted into the rotating rod 61 and positioned between the plug portion 11 and the fixed plate 13.
[0128] Specifically, in this embodiment, the first direction is the length direction of the rotating rod 61 .
[0129] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the above preferred embodiments, those skilled in the art should understand that modifications or equivalent replacements of the technical solutions of the present invention may be made without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. A detection device, characterized in that: include: frame; a mounting member rotatably mounted on the frame, the mounting member being configured to be locked to the frame, the mounting member having a plurality of mounting positions defined on an outer circumference thereof, the plurality of mounting positions being arranged around an axis of rotation of the mounting member, the mounting member defining an insertion port for receiving a portion of a target member; a clamping member, the clamping member being provided on the mounting member and being used for clamping the target member; a plurality of positioning members, each of the positioning members being detachably disposed at each of the plurality of mounting positions, each of the positioning members defining a detection port, the detection port of at least one of the positioning members being capable of communicating with the plug-in port, and some of the detection ports being capable of accommodating a portion of the target member, each of the positioning members being configured to carry a detection module for detecting different parameters of the target member; and the mounting member comprising a mounting seat and a carrying plate; The mounting seat is rotatably mounted on the frame, the clamping member is mounted on the mounting seat and is used to clamp the target member to the plate surface of the mounting seat, the mounting seat has a plurality of edge end faces, and the plurality of edge end faces are sequentially connected to form the outer peripheral surface of the mounting seat; the supporting plate is mounted on one of the edge end faces of the mounting seat, the supporting plate defines the plug-in port, and the side surfaces of the mounting seat and the top surface of the supporting plate respectively define the mounting position.
2. The detection device according to claim 1, characterized in that: The plurality of mounting positions include a first mounting position, the first mounting position being located on a side of the carrier plate facing away from the mounting seat, and the plug interface being located at the first mounting position; There are multiple first positioning members within the multiple positioning members, and the multiple first positioning members can be sequentially arranged at the first installation positions. The detection ports of the first positioning members arranged at the first installation positions are connected to the plug-in interface.
3. The detection device according to claim 1, characterized in that: The plurality of mounting positions further include a plurality of second mounting positions, and the plurality of second mounting positions are respectively arranged on the other edge end surfaces of the mounting seat; The plurality of positioning members further comprise a plurality of second positioning members, and the plurality of second positioning members are arranged in one-to-one correspondence with the plurality of second mounting positions, and different parts of the target member can be respectively inserted into the insertion ports of the plurality of second positioning members.
4. The detection device according to claim 1, characterized in that: The target part is a thin plate structure. When the clamping part clamps the target part, the plate surface of the thin plate structure is attached to the plate surface of the mounting seat, one end of the thin plate structure is inserted into the insertion port, and part of the detection port is used to accommodate the edge end of the target part.
5. The detection device according to claim 1, characterized in that: The mounting member is further configured to be able to move closer to engage with the frame and be locked to the frame, or move away from and be disengaged from the frame so as to rotate relative to the frame.
6. The detection device according to claim 5, characterized in that: The detection device also includes a rotating member, which extends along a first direction and can move relative to the frame in the first direction. The first direction is parallel to the rotation axis of the mounting member. One end of the rotating member is rotatably provided on the frame, and the other end of the rotating member is connected to the mounting member.
7. The detection device according to claim 5, characterized in that: One of the mounting member and the frame is provided with an inserting portion, and the other is provided with an inserting slot. The inserting portion can be inserted into the inserting slot to limit the relative rotation of the mounting member and the frame.
8. The detection device according to claim 1, characterized in that: The plurality of mounting positions are respectively provided with a first magnetic attraction portion, and the plurality of positioning members are respectively provided with a second magnetic attraction portion, and the second magnetic attraction portion can be attracted to the first magnetic attraction portion.
9. The detection device according to claim 1, characterized in that: The detection device also includes a leveling piece, which can cooperate with at least one of the mounting positions. When the leveling piece cooperates with one of the mounting positions, the surface of the leveling piece facing the mounting position is a horizontal surface, so that the side of the target part can abut the surface of the leveling piece and remain level.