Multipurpose detection platform
By designing a multi-purpose testing platform, the problems of low testing accuracy and high cost in existing testing methods have been solved, achieving high-precision and low-cost testing to meet the needs of a variety of products.
Patent Information
- Application Number
- CN202520208277.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-11
AI Technical Summary
In the existing manufacturing industry, the problems of low inspection accuracy and high cost, especially the high cost of three-dimensional optical tube bending measurement systems and the large cost of manufacturing and storing special inspection tools, make it difficult to meet the inspection needs of a variety of products.
Design a multi-purpose inspection platform with freely controllable linear and rotational degrees of freedom. Through a combination of digital models and solid models, provide an adjustable inspection head to adapt to the inspection needs of different types of structural components.
It achieves high-precision, low-cost detection, reduces the cost of manufacturing and storing specialized inspection tools, is highly adaptable, and offers the benefit of a one-time investment for lifelong returns.
Smart Images

Figure CN223755923U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to equipment manufacturing technical field, specifically is a multipurpose detection platform. BACKGROUND
[0002] In order to guarantee that product can reach the installation size requirement of host factory in the existing manufacturing industry (such as automobile air conditioner pipeline, high pressure oil pipe manufacturing, the manufacturing of other various structural parts etc.), generally adopts height gauge and various support combination form to detect, after the batch production of product, some adopt special gauge to detect, and the enterprise with condition can adopt three-dimensional optical elbow pipe measuring system (adopts multiple industrial grade cameras) to detect online. The first detection mode has low detection precision and low detection efficiency, the second detection mode has high detection precision and detection efficiency, but the detection cost is high (a kind of gauge can only detect one kind of product, the production cost is a few hundred yuan, and a few thousand yuan, and it needs larger place to store and keep, once the product is discontinued, the gauge can only be scrapped), the third scheme has high cost (generally, a detection space of cubic meter needs about 700,000 yuan). CONTENT OF UTILITY MODEL
[0003] In view of the defects in the prior art, the utility model aims at providing a multipurpose detection platform, which has three linear degrees of freedom (detected by scale) and two or three rotational degrees of freedom (detected by angle disc) that can be freely controlled, the three linear degrees of freedom can be independently adjusted, fixed and calibrated to zero without affecting each other, and the three rotational degrees of freedom can also be independently adjusted, fixed and calibrated to zero without affecting each other, and various different types of structural parts can be detected by replacing the detection adapter in the detection head.
[0004] To achieve the above purpose, the utility model takes the technical scheme that a multipurpose detection platform, including standard detection table, be used for fixedly waiting and measuring product's positioning device is provided on the standard detection table, at least a pair of longitudinal scale slide rail is provided on the standard detection table, at least one sliding crossbeam is provided on each pair of longitudinal scale slide rail, the sliding crossbeam is provided with the scale slide rail, the scale slide rail is provided with the sliding stand, the sliding stand is provided with the vertical scale slide rail, the vertical scale slide rail is provided with the detection device for detecting the product to be measured.
[0005] Further improvement lies in that at least one end of the standard detection table is provided with a transverse scale guide rail, the positioning device includes a first sliding block slidingly arranged on the transverse scale guide rail, a first pointer adapted to the transverse scale guide rail is arranged on the side surface of the first sliding block, an inclined plate is arranged on the first sliding block, and a positioning chuck adapted to the end of the product to be measured is arranged on the inclined plate.
[0006] Further improvement lies in that the bottom edge of the inclined plate is hinged with the first sliding block, and an adjusting connecting rod is arranged between the inclined plate and the first sliding block for adjusting the angle of the inclined plate.
[0007] Further improvement lies in that the two ends of the sliding cross beam are connected with the longitudinal scale sliding rail through the second sliding block respectively, and the side surface of the second sliding block is provided with a second pointer matched with the longitudinal scale sliding rail.
[0008] Further improvement lies in that the bottom of the sliding stand is connected with the transverse scale sliding rail through the third sliding block, and the side surface of the third sliding block is provided with a third pointer matched with the transverse scale sliding rail.
[0009] Further improvement lies in that a fourth sliding block is arranged on the vertical scale sliding rail in sliding mode, and the side surface of the fourth sliding block is provided with a fourth pointer matched with the vertical scale sliding rail; the front surface of the fourth sliding block is provided with a mounting seat for mounting the detection device.
[0010] Further improvement lies in that the zero adjustment calibration device is further included, the zero adjustment calibration device comprises a fifth sliding block arranged on the transverse scale sliding rail in sliding mode, and the side surface of the fifth sliding block is provided with a fifth pointer matched with the transverse scale sliding rail; a calibration stand is fixedly arranged on the fifth sliding block, and the calibration stand is provided with a vertical scale guide rail; a sixth sliding block is arranged on the vertical scale guide rail in sliding mode, and the side surface of the sixth sliding block is provided with a sixth pointer matched with the vertical scale guide rail; a calibration seat is arranged on the front surface of the sixth sliding block, and the calibration seat is provided with a horizontal scale guide rail, a seventh sliding block is arranged on the horizontal scale guide rail in sliding mode, and the side surface of the seventh sliding block is provided with a seventh pointer matched with the horizontal scale guide rail; a calibration plate is arranged on the seventh sliding block, and the calibration plate is provided with a calibration shaft.
[0011] Further improvement lies in that the detection device is a two-axis detection mechanism, the two-axis detection mechanism comprises a first rotating shaft and a second rotating shaft, the proximal end of the first rotating shaft is connected with the mounting seat through a first connecting seat, and the distal end of the first rotating shaft is connected with a second connecting seat; the second rotating shaft penetrates the second connecting seat in vertical mode, and the upper end of the second rotating shaft is provided with a detection head matched with the product to be detected; the first rotating shaft is provided with a first scale angle disc, the second rotating shaft is provided with a second scale angle disc, the second connecting seat is provided with an eighth pointer matched with the first scale angle disc and a ninth pointer matched with the second scale angle disc.
[0012] Further improvement lies in that the detection device is a three-axis detection mechanism, the three-axis detection mechanism comprises a third rotating shaft, a fourth rotating shaft and a fifth rotating shaft; the third rotating shaft is arranged transversely, the proximal end of the third rotating shaft is connected with the mounting base, and the distal end of the third rotating shaft is connected with a third connecting base; the fourth rotating shaft is arranged longitudinally, the proximal end of the fourth rotating shaft is connected with the third connecting base, and the distal end of the fourth rotating shaft is connected with a fourth connecting base; the fifth rotating shaft vertically penetrates through the fourth connecting base, and the upper end of the fifth rotating shaft is provided with a rotating arm, and the rotating arm is provided with a detection pin matched with the product to be detected; the third rotating shaft is provided with a third scale dial, the fourth rotating shaft is provided with a fourth scale dial, the fifth rotating shaft is provided with a fifth scale dial, the third connecting base is provided with a tenth pointer matched with the third scale dial, the fourth connecting base is provided with an eleventh pointer matched with the fourth scale dial and a twelfth pointer matched with the fifth scale dial.
[0013] Further improvement lies in that the standard detection table is installed on a movable base, and the bottom of the movable base is provided with casters and height-adjustable ground feet.
[0014] The utility model discloses the beneficial effect lies in:
[0015] 1, this detection platform has the effect of one-time investment, lifelong benefit (can detect most products) 2, need not the production cost investment of various kinds of special gauge and the subsequent storage, storage, maintenance cost's continuous investment 3, the detection precision can satisfy the precision requirement of most products of existing manufacturing industry 4, maintenance is more convenient and maintenance cost is extremely low 4, through extremely low investment, immediate change its detection product type, adaptability is extremely good 5, this detection platform has excellent value -preserving function, can be flexibly transferred to other company uses. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the perspective view of multipurpose detection platform in the utility model embodiment;
[0017] Figure 2 It is the front view of multipurpose detection platform in the utility model embodiment;
[0018] Figure 3 It is the side view of multipurpose detection platform in the utility model embodiment;
[0019] Figure 4 It is the top view of multipurpose detection platform in the utility model embodiment;
[0020] Figure 5 It is the structural schematic view of sliding crossbeam in the utility model embodiment;
[0021] Figure 6Structure schematic view of sliding vertical column in the embodiment of the utility model;
[0022] Figure 7 Structure schematic view of two-axis detection mechanism in the embodiment of the utility model;
[0023] Figure 8 Structure schematic view of three-axis detection mechanism in the embodiment of the utility model;
[0024] Figure 9 Working schematic view of three-axis detection mechanism in the embodiment of the utility model;
[0025] Figure 10 Working schematic view of three-axis detection mechanism in the embodiment of the utility model another side view angle;
[0026] Figure 11 Structure schematic view of positioning device in the embodiment of the utility model;
[0027] Figure 12 Structure schematic view of zero adjustment calibration device in the embodiment of the utility model.
[0028] Reference signs:
[0029] 1-standard detection table;11-longitudinal slide rail with scale;12-lateral guide rail with scale;13-movable base;14-trolley;15-foot;
[0030] 2-positioning device;21-first slider;22-first pointer;23-inclined plate;24-positioning chuck;25-adjusting connecting rod;
[0031] 3-sliding crossbeam;31-second slider;32-second pointer;33-lateral slide rail with scale;
[0032] 4-sliding vertical column;401-third slider;402-third pointer;403-vertical slide rail with scale;404-fourth slider;405-fourth pointer;406-mounting seat;
[0033] 5-zero adjustment calibration device;501-fifth slider;502-fifth pointer;503-calibration vertical column;504-vertical guide rail with scale;505-sixth slider;506-sixth pointer;507-calibration seat;508-horizontal guide rail with scale;509-seventh slider;510-seventh pointer;511-calibration plate;512-calibration shaft;
[0034] 6-product to be measured;
[0035] 7 - two-axis detection mechanism; 701 - first connecting seat; 702 - first rotating shaft; 703 - first scale angle disc; 704 - second connecting seat; 705 - second rotating shaft; 706 - second scale angle disc; 707 - eighth pointer; 708 - ninth pointer; 709 - detection head;
[0036] 8 - three-axis detection mechanism; 801 - third rotating shaft; 802 - third scale angle disc; 803 - third connecting seat; 804 - tenth pointer; 805 - fourth rotating shaft; 806 - fourth scale angle disc; 807 - fourth connecting seat; 808 - fifth rotating shaft; 809 - fifth scale angle disc; 810 - eleventh pointer; 811 - twelfth pointer; 812 - rotating arm; 813 - detection pin. DETAILED DESCRIPTION
[0037] The embodiments of the present application are described in detail below, and the embodiments are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout.
[0038] In the description of the present application, it should be noted that, for the orientation words, such as the terms "center", "lateral (X)", "longitudinal (Y)", "vertical (Z)", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like indicate the orientation and positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and cannot be understood as limiting the specific protection scope of the present application.
[0039] In addition, the terms "first" and "second" are only used for description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features. Therefore, the "first" and "second" features can explicitly or implicitly include one or more features, and in the description of the present application, the meaning of "several" and "a number of" is two or more than two, unless otherwise explicitly specified.
[0040] The technical scheme of the present application and its beneficial effects will be clearer and more explicit through the further description of the specific embodiments of the present application in combination with the drawings of the specification. The description of the embodiments by referring to the drawings is exemplary and is intended to explain the present application, and cannot be understood as limiting the present application.
[0041] Referring to Figures 1-4The utility model discloses a multipurpose detection platform, including standard detection platform 1, the positioning device 2 for fixing the product 6 of measuring is provided on standard detection platform 1, standard detection platform 1 is provided with two pairs of longitudinal scale slide rail 11, each pair of longitudinal scale slide rail 11 is provided with a plurality of sliding crossbeam 3, and the sliding crossbeam 3 is provided with the transverse scale slide rail 33, and the transverse scale slide rail 33 is provided with the sliding column 4, and the sliding column 4 is provided with vertical scale slide rail 403, and the vertical scale slide rail 403 is provided with the detection device for detecting the product 6 of measuring. Specifically, standard detection platform 1 is installed on movable base 13, and the bottom of movable base 13 is provided with trundle 14 and adjustable height foot 15. After detection platform is in place, the fixed support can be supported by the trundle, and the weight of the table body is borne by the fixed support;Adjustable height foot 15 can adjust standard detection platform, and ensure the flatness of the table top. In the embodiment, the multipurpose detection platform is divided into left and right two detection areas, and is provided with two groups of detection components (each group of detection components is composed of a plurality of independent detection units, and the number can be increased or decreased according to the requirement), and is respectively arranged in the two detection areas of the detection platform, and each detection unit is provided with three linear degrees of freedom (detection is carried out by using a scale) and two or three rotational degrees of freedom (detection is carried out by using a protractor) which can be freely controlled. In the embodiment, the product to be measured is a bent tubular structure.
[0042] Referring to Figure 11 As shown, at least one end of standard detection platform 1 is provided with transverse scale guide rail 12, and the positioning device 2 comprises a first sliding block 21 slidingly arranged on the transverse scale guide rail 12, and the side surface of the first sliding block 21 is provided with a first pointer 22 matched with the transverse scale guide rail 12;An inclined plate 23 is arranged on the first sliding block 21, and the inclined plate 23 is provided with a positioning chuck 24 matched with the end of the product 6 to be measured, which can rotate by 360° in the plane of the inclined plate. Specifically, the bottom edge of the inclined plate 23 is hinged to the first sliding block 21, and an adjusting connecting rod 25 for adjusting the angle of the inclined plate 23 is arranged between the inclined plate 23 and the first sliding block 21.
[0043] Referring to Figure 5 As shown, the two ends of the sliding crossbeam 3 are connected with the longitudinal scale slide rail 11 through the second sliding block 31 respectively, and the side surface of the second sliding block 31 is provided with a second pointer 32 matched with the longitudinal scale slide rail 11.
[0044] Referring to Figure 6As shown, the bottom of the sliding column 4 is connected with the transverse scale slide rail 33 through the third sliding block 401, and the side surface of the third sliding block 401 is provided with the third pointer 402 matched with the transverse scale slide rail 33. Specifically, the fourth sliding block 404 is slidingly arranged on the vertical scale slide rail 403, and the side surface of the fourth sliding block 404 is provided with the fourth pointer 405 matched with the vertical scale slide rail 403; the front surface of the fourth sliding block 404 is provided with the mounting seat 406 for mounting the detection device.
[0045] Referring to Figure 12 As shown, in the utility model, each angle disc needs zero adjustment function, and the pointers after zero adjustment are ensured to point to the zero scale line of the dial. The multipurpose detection platform further comprises a zero adjustment calibration device 5, the zero adjustment calibration device 5 comprises a fifth sliding block 501 slidingly arranged on the transverse scale slide rail 33, and the side surface of the fifth sliding block 501 is provided with a fifth pointer 502 matched with the transverse scale slide rail 33; the fifth sliding block 501 is fixedly provided with a calibration column 503, and the calibration column 503 is provided with a vertical scale guide rail 504; the vertical scale guide rail 504 is slidingly provided with a sixth sliding block 505, and the side surface of the sixth sliding block 505 is provided with a sixth pointer 506 matched with the vertical scale guide rail 504; the front surface of the sixth sliding block 505 is provided with a calibration seat 507, and the calibration seat 507 is provided with a horizontal scale guide rail 508, and the horizontal scale guide rail 508 is slidingly provided with a seventh sliding block 509, and the side surface of the seventh sliding block 509 is provided with a seventh pointer 510 matched with the horizontal scale guide rail 508; the seventh sliding block 509 is provided with a calibration plate 511, and the calibration plate 511 is provided with a calibration shaft 512. Before use, the detection platform needs to calibrate and zero adjust each detection head, and the zero adjustment calibration device 5 can calibrate the entity of each detection head, so that the entity is consistent with the digital model.
[0046] Referring to Figure 7 As shown, the detection device is a two-axis detection mechanism 7, the two-axis detection mechanism 7 comprises a first rotating shaft 702 and a second rotating shaft 705, the proximal end of the first rotating shaft 702 is connected with the mounting seat 406 through a first connecting seat 701, and the distal end of the first rotating shaft 702 is connected with a second connecting seat 704; the second rotating shaft 705 vertically penetrates the second connecting seat 704, and the upper end of the second rotating shaft 705 is provided with a detection head 709 matched with the product to be detected 6; the first rotating shaft 702 is provided with a first scale angle disc 703, the second rotating shaft 705 is provided with a second scale angle disc 706, and the second connecting seat 704 is provided with an eighth pointer 707 matched with the first scale angle disc 703 and a ninth pointer 708 matched with the second scale angle disc 706.
[0047] Referring to Figures 8-10As shown, the detection device is a three-axis detection mechanism 8, which comprises a third rotating shaft 801, a fourth rotating shaft 805 and a fifth rotating shaft 808; the third rotating shaft 801 is arranged transversely, and the proximal end of the third rotating shaft 801 is connected with the mounting seat 406, and the distal end of the third rotating shaft 801 is connected with a third connecting seat 803; the fourth rotating shaft 805 is arranged longitudinally, and the proximal end of the fourth rotating shaft 805 is connected with the third connecting seat 803, and the distal end of the fourth rotating shaft 805 is connected with a fourth connecting seat 807; the fifth rotating shaft 808 vertically penetrates through the fourth connecting seat 807, and the upper end of the fifth rotating shaft 808 is provided with a rotating arm 812, and the rotating arm 812 is provided with a detection pin 813 matched with the product to be detected 6; the third rotating shaft 801 is provided with a third scale dial 802, the fourth rotating shaft 805 is provided with a fourth scale dial 806, the fifth rotating shaft 808 is provided with a fifth scale dial 809, the third connecting seat 803 is provided with a tenth pointer 804 matched with the third scale dial 802, the fourth connecting seat 807 is provided with an eleventh pointer 810 matched with the fourth scale dial 806 and a twelfth pointer 811 matched with the fifth scale dial 809.
[0048] In actual manufacturing industry, there are usually a large number of different types of products in the same kind of products that need to be detected, and due to the complexity of the structure of each product, it is often difficult to detect or the detection precision cannot meet the requirements by using a general gauge, and only a special gauge can be used for detection; thus, two problems are generated: first, specific special gauges need to be made for different varieties (which requires the production of many special gauges and needs to be stored, maintained and repaired); second, a high one-time investment is required (for example, a three-dimensional optical pipe bending measurement system with a cubic meter needs an investment of about 700,000 yuan).
[0049] The utility model adopts the mode of combining digital model and entity, only needs a digital model detection platform and an entity detection platform, and provides a digital model of a product to be detected, so that the above two problems can be solved, and the one-time investment only needs about 60,000 yuan (a detection platform with a length * width * height of 1m * 2m * 0.7m).
[0050] During detection, the digital model of the product to be detected is placed in the digital model of the detection platform for simulation detection, and the coordinate parameters and angles of each detection point are recorded, then each detection head is adjusted and fixed in the entity of the detection platform, finally the product to be detected is placed on the entity detection platform for detection, and whether the product meets the requirements can be determined.
[0051] In the description of the specification, the description of the terms "one embodiment", "preferably", "example", "specific example" or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model, and the illustrative description of the above terms in the specification does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0052] Through the description of the structure and principle above, those skilled in the art should understand that the utility model is not limited to the specific embodiments described above, and improvements and replacements of the technology known in the art based on the utility model all fall within the protection scope of the utility model, which should be limited by the claims.
Claims
1. A multi-purpose testing platform comprising a standard testing bench (1) on which positioning means (2) for fixing a product to be tested (6) are provided, characterized in that: The standard detection platform (1) is provided with at least one pair of longitudinal scale sliding rails (11), each pair of longitudinal scale sliding rails (11) is provided with at least one sliding beam (3), the sliding beam (3) is provided with a transverse scale sliding rail (33), the transverse scale sliding rail (33) is provided with a sliding column (4), the sliding column (4) is provided with a vertical scale sliding rail (403), and the vertical scale sliding rail (403) is provided with a detection device for detecting a product (6) to be detected.
2. The multipurpose detection platform of claim 1, wherein: At least one end of the standard detection platform (1) is provided with a transverse scale guide rail (12), the positioning device (2) comprises a first sliding block (21) slidingly arranged on the transverse scale guide rail (12), and the side surface of the first sliding block (21) is provided with a first pointer (22) matched with the transverse scale guide rail (12); the first sliding block (21) is provided with an inclined plate (23), and the inclined plate (23) is provided with a positioning chuck (24) matched with the end of the product (6) to be detected.
3. The multipurpose detection platform of claim 2, wherein: The bottom edge of the inclined plate (23) is hinged to the first sliding block (21), and an adjusting connecting rod (25) for adjusting the angle of the inclined plate (23) is arranged between the inclined plate (23) and the first sliding block (21).
4. The multipurpose detection platform of claim 1, wherein: The two ends of the sliding beam (3) are connected with the longitudinal scale sliding rails (11) through the second sliding blocks (31) respectively, and the side surface of the second sliding block (31) is provided with a second pointer (32) matched with the longitudinal scale sliding rail (11).
5. The multipurpose detection platform of claim 1, wherein: The bottom of the sliding column (4) is connected with the transverse scale sliding rail (33) through the third sliding block (401), and the side surface of the third sliding block (401) is provided with a third pointer (402) matched with the transverse scale sliding rail (33).
6. The multipurpose detection platform of claim 1, wherein: The vertical scale sliding rail (403) is provided with a fourth sliding block (404) slidingly arranged thereon, and the side surface of the fourth sliding block (404) is provided with a fourth pointer (405) matched with the vertical scale sliding rail (403); and the front surface of the fourth sliding block (404) is provided with a mounting seat (406) for mounting the detection device.
7. The multipurpose detection platform of claim 1, wherein: Also include zero calibration device (5), the zero calibration device (5) includes the fifth slider (501) of slidingly arranged in the transverse scale slide rail (33), and the side of the fifth slider (501) is provided with the fifth pointer (502) matched with the transverse scale slide rail (33);The fifth slider (501) is fixedly provided with a calibration column (503), and the calibration column (503) is provided with a vertical scale guide rail (504);The vertical scale guide rail (504) is slidably provided with the sixth slider (505), and the side of the sixth slider (505) is provided with the sixth pointer (506) matched with the vertical scale guide rail (504);The front of the sixth slider (505) is provided with a calibration seat (507), and the calibration seat (507) is provided with a horizontal scale guide rail (508), the horizontal scale guide rail (508) is slidably provided with the seventh slider (509), and the side of the seventh slider (509) is provided with the seventh pointer (510) matched with the horizontal scale guide rail (508);The seventh slider (509) is provided with a calibration plate (511), and the calibration plate (511) is provided with a calibration shaft (512).
8. The multipurpose detection platform of claim 6, wherein: The detection device is a two-axis detection mechanism (7), the two-axis detection mechanism (7) includes a first rotating shaft (702) and a second rotating shaft (705), the proximal end of the first rotating shaft (702) is connected with the mounting seat (406) through the first connecting seat (701), and the distal end of the first rotating shaft (702) is connected with the second connecting seat (704);The second rotating shaft (705) vertically penetrates the second connecting seat (704), and the upper end of the second rotating shaft (705) is provided with a detection head (709) matched with the product to be detected (6);The first rotating shaft (702) is provided with a first scale angle disc (703), the second rotating shaft (705) is provided with a second scale angle disc (706), and the second connecting seat (704) is provided with an eighth pointer (707) matched with the first scale angle disc (703) and a ninth pointer (708) matched with the second scale angle disc (706).
9. The multipurpose detection platform of claim 6, wherein: The detection device is a three-axis detection mechanism (8), which comprises a third rotating shaft (801), a fourth rotating shaft (805) and a fifth rotating shaft (808); the third rotating shaft (801) is transversely arranged, the proximal end of the third rotating shaft (801) is connected with the mounting seat (406), and the distal end of the third rotating shaft (801) is connected with a third connecting seat (803); the fourth rotating shaft (805) is longitudinally arranged, the proximal end of the fourth rotating shaft (805) is connected with the third connecting seat (803), and the distal end of the fourth rotating shaft (805) is connected with a fourth connecting seat (807); the fifth rotating shaft (808) vertically penetrates through the fourth connecting seat (807), and the upper end of the fifth rotating shaft (808) is provided with a rotating arm (812) provided with a detection pin (813) matched with the product (6) to be detected; the third rotating shaft (801) is provided with a third scale dial (802), the fourth rotating shaft (805) is provided with a fourth scale dial (806), the fifth rotating shaft (808) is provided with a fifth scale dial (809), the third connecting seat (803) is provided with a tenth pointer (804) matched with the third scale dial (802), the fourth connecting seat (807) is provided with an eleventh pointer (810) matched with the fourth scale dial (806) and a twelfth pointer (811) matched with the fifth scale dial (809).
10. The multipurpose detection platform of claim 1, wherein: The standard detection table (1) is installed on a movable base (13), and the bottom of the movable base (13) is provided with casters (14) and height-adjustable feet (15).