Detection equipment for cellular board
The honeycomb panel testing equipment, which integrates dual testing devices and positioning and clamping components, enables strength and damage testing to be completed on the same equipment. This solves the problem of low efficiency in step-by-step testing of traditional equipment and improves production efficiency and space utilization.
Patent Information
- Application Number
- CN202520126023.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Traditional honeycomb panel testing equipment requires multiple devices to complete strength and damage testing in stages, which increases operational complexity, extends testing time, increases labor and cost, and occupies space, making it unsuitable for large-scale production needs.
Design a honeycomb panel inspection device that integrates two sets of dual inspection devices, positioning components and clamping components. Through linear modules and material handling components, the product can complete strength and damage inspection on the same equipment. Multiple positioning and inspection are performed using a rotary table and vision inspection device.
It improves testing efficiency, optimizes equipment footprint, is suitable for mass production, and reduces operational complexity and cost.
Smart Images

Figure CN223955312U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to honeycomb board production technical field, concretely is a honeycomb board's detection equipment. BACKGROUND
[0002] Honeycomb board has been widely used in the field of building decoration, aerospace, transportation and the like due to its light weight, high strength and good sound insulation and heat insulation performance. With the growth of market demand, the quality requirement of honeycomb board is also higher and higher, especially its structural integrity such as strength, damage condition, which will directly affect the service life and safety of the product.
[0003] The traditional equipment can only complete one detection task, for example, strength detection or damage detection, which means that after the honeycomb board is subjected to strength detection, it needs to be moved to another set of equipment for damage detection again. This way not only increases the complexity of operation, but also prolongs the overall detection time. After each detection is completed, the board body needs to be manually moved out and repositioned on the next set of detection equipment, which increases the labor of workers. Since multiple detection equipment with different functions are needed, the entire detection line occupies a large space, which is not conducive to the space optimization of the factory. Frequent manual operation and the use of multiple equipment significantly increase the detection cost. For large-scale production lines, the step-by-step detection method is inefficient and difficult to meet the needs of rapid production and efficient quality inspection. SUMMARY
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a honeycomb board detection equipment, comprising a detection table and two sets of double detection devices installed on the detection table, two sets of positioning assemblies respectively opposite to the corresponding double detection devices are installed on the detection table, and two sets of compression assemblies respectively vertically opposite to the corresponding positioning assemblies are installed, a linear module is installed on the detection table, and a material taking assembly is installed on the moving end of the linear module.
[0005] The positioning assembly comprises a rotating table, a rack is fixed on the table top of the rotating table, two sets of limiting plates are installed on the front face of the rack, a side pushing cylinder is installed on the top, a side pushing plate is fixed on the piston rod of the side pushing cylinder and is distributed opposite to the limiting plate;
[0006] The compression assembly comprises a stand, a down pressure cylinder is installed on the stand, and a guide column plate is provided, the piston rod of the down pressure cylinder is connected to the bottom of the guide column plate, and a follow-up shaft plate is installed on the bottom of the guide column plate.
[0007] Further, a top pushing cylinder is installed on the back of the rack, a top pushing plate is fixed on the piston rod of the top pushing cylinder, and the side pushing cylinder is installed on the top of the top pushing plate.
[0008] Further, the pushing plate is T-shaped, and a front pushing cylinder is mounted on the top of each end of the pushing plate, and a piston rod of the front pushing cylinder is fixed with a top plate, and a front pushing plate is mounted between the two top plates.
[0009] Further, a plurality of threaded holes are formed in the sidewall of the front pushing plate and the side wall of the rack and the top end of the side pushing cylinder, and adjusting holes are formed in the limiting plate, the top plate and the side pushing plate and matched with the corresponding threaded holes.
[0010] Further, a plurality of sleeve columns are arranged on the rack, and a plurality of compression springs are fixed on the rack, a bearing plate is fixed between the sleeve columns, and the compression springs extend to the bottom of the bearing plate.
[0011] Further, an arch plate is fixed on the lower plate of the guide column plate, a piston rod of the downward pushing cylinder is fixed on the arch plate, a positioning cylinder is mounted on one side of the arch plate, a through hole is formed in the top shaft end of the follow-up shaft plate, and a piston rod of the positioning cylinder is opposite to the through hole.
[0012] Further, the material taking assembly comprises a moving plate, a pushing plate and a pushing cylinder are slidably connected to the moving plate, a piston rod of the pushing cylinder is connected to the pushing plate, an upward pushing cylinder is mounted on one side of the pushing plate, an upward pushing plate is fixed to a piston rod of the upward pushing cylinder, two groups of inserting plates are fixed on one side of the upward pushing plate, and a clamping cylinder is mounted above the inserting plates.
[0013] Compared with the prior art, the technical scheme has the following beneficial effects:
[0014] The detection equipment of the honeycomb plate can first move the product to the first group of positioning assemblies, position the product through cooperation with the compression assembly, rotate the positioning assembly to complete the compression detection of the product through the top pressing detection of the double detection device, and then move the product to the second group of positioning assemblies through the material taking assembly, and complete the damage detection through the visual detection of the double detection device, so that multiple detections can be completed on the same equipment to improve the detection efficiency, optimize the occupied area, and also be suitable for mass production. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structural schematic view of the utility model;
[0016] Figure 2 It is a three-dimensional view of the material taking assembly in the utility model;
[0017] Figure 3 It is a three-dimensional view of the positioning assembly in the utility model;
[0018] Figure 4 It is a three-dimensional view of the compression assembly in the utility model.
[0019] In the figure: 1, detection table; 2, double detection device; 3, linear module; 4, material taking assembly; 401, moving plate; 402, advancing cylinder; 403, advancing plate; 404, upward pushing cylinder; 405, upward pushing plate; 406, inserting plate; 407, clamping cylinder; 5, positioning assembly; 501, rotating table; 502, rack; 503, limiting plate; 504, front pushing cylinder; 505, top plate; 506, front pushing plate; 507, side pushing cylinder; 508, side pushing plate; 509, sleeve column; 510, bearing plate; 511, compression spring; 512, top pushing cylinder; 513, top pushing plate; 6, pressing assembly; 601, stand; 602, downward pushing cylinder; 603, guide column plate; 604, follow-up shaft plate; 605, arch plate; 606, positioning cylinder. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0021] Please refer to Figures 1-4 The detection equipment for the honeycomb plate in the embodiment comprises a detection table 1 and double detection devices 2 installed on the detection table 1. The double detection devices 2 comprise horizontal moving devices fixed on the detection table 1. The moving ends of the horizontal moving devices are installed with two groups of front moving devices. The moving ends of the front moving devices are installed with lifting devices. The moving ends of the two groups of lifting devices are respectively installed with top pressing detection devices and visual detection devices. The detection table 1 is also installed with a linear module 3, two groups of positioning assemblies 5 and stands 601 between the linear module 3 and the double detection devices 2. The moving end of the linear module 3 is installed with a material taking assembly 4 and the stand 601. The stand 601 is installed with two groups of pressing assemblies 6 which are respectively perpendicular to the two groups of positioning assemblies 5. The two groups of positioning assemblies are respectively opposite to the two groups of top pressing detection devices and visual detection devices.
[0022] In the above structure, the linear module drives the picking component to move left and right. Therefore, the picking component can transfer the product to be inspected to the first set of positioning components. With the cooperation of the corresponding clamping component, the product is positioned. At the same time, the first set of positioning components moves the product to be opposite the top pressure detection device to complete the strength test of the product. After the test is completed, it is reset. The picking component can transfer the product after the strength test to the second set of positioning components. At the same time, a new product has been sent to the first set. Combined with the above-mentioned positioning, the product is aligned with the vision inspection device to complete the damage detection. After the test is completed, it is taken out and removed. The above operation is repeated. Strength and damage tests can be completed in one machine, improving inspection efficiency and cost. At the same time, it can also optimize the site and is suitable for mass production inspection.
[0023] like Figure 2 ,by Figure 2 As shown in the diagram, the material handling assembly 4 includes a movable plate 401 fixed to the movable end of the linear module 3. A push plate 403 is slidably connected to the surface of the movable plate 401, and a push cylinder 402 connected to the push plate 403 is installed. An upward push cylinder 404 is installed on the left side of the push plate 403. An upward push plate 405 is fixed to the piston rod of the upward push cylinder 404. Two insert plates 406 are fixed to the surface of the upward push plate 405, and a clamping cylinder 407 is installed above the two insert plates 406. The clamping end of the clamping cylinder 407 is L-shaped. When the material handling assembly is opposite to the product, the push cylinder can drive the push plate to advance, so that the two insert plates are located below the product. The product is then clamped and fixed by the clamping cylinder, and the upward push cylinder drives the upward push plate to lift, thereby raising the product to a certain height, thus realizing automatic material handling and unloading.
[0024] like Figure 3 ,by Figure 3 As shown in the diagram, the positioning assembly 5 includes a rotary table 501 mounted on the inspection table 1. A frame 502 is fixed on the rotary table 501. Two limiting plates 503, arranged vertically, are provided on the front of the frame 502. The limiting plates 503 are L-shaped. A side-push cylinder 507 is mounted on the top of the frame 502. The piston rod of the side-push cylinder 507 is fixed to a side-push plate 508 located above the limiting plates 503 and facing away from the limiting plates 503. When the product is on the frame, the side-push cylinder drives the side-push plate to push the product. With the cooperation of the two limiting plates, the product can be clamped and fixed. By rotating the rotary table, the surface of the product can be aligned with the top pressure inspection device or the visual inspection device.
[0025] The back of the rack 502 is provided with a pushing cylinder 512, the piston rod of the pushing cylinder 512 is fixed with a pushing plate 513, the pushing plate 513 is T-shaped, the side pushing cylinder 507 is installed on the top of the pushing plate 513, the top of the pushing plate 513 is provided with two front pushing cylinders 504 located on the left and right sides of the side pushing cylinder 507, the piston rod of the front pushing cylinder 504 is fixed with a top plate 505, and the front pushing plate 506 is installed between the two top plates 505. First, the pushing cylinder pushes the pushing plate up, when the pushing plate moves up, the front pushing plate and the side pushing plate move up synchronously, so that the product is placed on the rack, and through the operation of the front pushing cylinder, the front pushing plate is driven by the top plate to retreat, so that the product can be corrected, the product is more closely attached to the side wall of the rack, and the support is improved. Then, the positioning assembly is matched to complete the positioning of the product.
[0026] Further explanation, a plurality of threaded holes are formed on the left and right sides of the front pushing plate 506, the side wall of the rack 502 and the ejection end of the side pushing cylinder 507, and adjusting holes adapted to the corresponding threaded holes are formed on the limiting plate 503, the top plate 505 and the side pushing plate 508. In cooperation of the threaded holes and the adjusting holes, the positions of the limiting plate, the front pushing plate and the side pushing plate can be adjusted according to the requirements, and then the pushing cylinder is moved up, so that the honeycomb plate of different sizes can be fixed and corrected according to the requirements.
[0027] As Figure 4 The pressing assembly 6 comprises a stand 601 fixed on the detection table 1, two downward pressing cylinders 602 installed on the stand 601, and a guide column plate 603 penetratingly arranged, the guide column plate 603 is divided into an upper plate and a lower plate, the bottom of the lower plate is provided with a follow-up shaft plate 604, and the top of the lower plate is fixed with an arch plate 605, the top of the upper plate is provided with a notch matched with the downward pressing cylinder 602, and the piston rod of the downward pressing cylinder 602 is fixed with the arch plate 605. When the product positioning is completed, the downward pressing cylinder drives the guide column plate to move downward until the follow-up shaft plate is tightly pressed against the top of the product, the firmness of positioning is improved, and the follow-up shaft plate does not hinder the turning of the product.
[0028] Further explanation, the side surface of the arch plate 605 is provided with a positioning cylinder 606, the top shaft end of the follow-up shaft plate 604 is provided with a through hole, and the ejection end of the positioning cylinder 606 can extend into the through hole, so that after the product is rotated by one hundred and eighty degrees, the positioning cylinder can extend into the through hole, so that the position after rotation is determined without deviation, and the strength detection and damage detection can be completed.
[0029] The four sleeve columns 509 are arranged on the table top of the rack 502, the bottom of the sleeve column 509 is provided with a baffle, four compression springs 511 are fixed on the table top of the rack 502, the top of the four sleeve columns 509 is fixed with a bearing plate 510, and the compression spring 511 extends to the bottom of the bearing plate 510. The product is first placed on the bearing plate, when the push shaft plate is pressed by the downward pressing cylinder, the compression spring is extruded through the bearing plate, thereby playing a buffering role, and under the elastic force of the compression spring, the bearing plate can be lifted, and the firmness of the pressing can be improved.
[0030] The working principle of the above embodiment is:
[0031] Firstly, the push plate is lifted by the push cylinder, so that the plug plate extends below the product, then the product is lifted to a certain height by the lifting plate driven by the lifting cylinder, and the product is clamped and fixed by the clamping cylinder, the push cylinder is retracted, the product is transferred to the bearing plate by the linear module, the push plate is lowered by the push cylinder according to the requirement, until the front push plate is transferred to the appropriate position, then the product is pushed to the side wall of the rack by the front push plate driven by the front push cylinder, the product is clamped and positioned by the cooperation of the limiting plate, at the same time, the guide column plate is lowered by the arch plate driven by the downward pressing cylinder, until the product is pressed by the top of the product, the bearing plate extrudes the compression spring to play a buffering role, and the firmness of the product positioning is improved, the product is rotated by the rotating table, and the rotation of the rotating table is not affected by the cooperation of the guide shaft plate, so that the product is opposite to the top pressing detection device, then the positioning cylinder is lifted, the lifting end extends to the shaft end through hole of the guide shaft plate, so as to determine whether the rotation angle is accurate, when it is confirmed that the rotation angle is accurate, the product is detected, after the detection is completed, the above-mentioned material taking, material moving, correction positioning and pressing are repeated, so that the product is completed on the first group and the second group of racks. The operation of damage detection, so that multiple detections can be completed on one equipment, and automation can be realized, thereby improving the detection efficiency and consistency, and optimizing the floor area and being suitable for mass production.
[0032] The whole working process is completed, and the contents not described in detail in the specification belong to the prior art known by those skilled in the art.
[0033] It is to be understood that the phrases such as "first" and "second", and the like, used herein do not connote any ordinal, sequential, or priority relationship between the items or operations to which they are applied, but instead are used merely to distinguish one from another. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
[0034] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.
Claims
1. A honeycomb plate detection device, comprising a detection table (1) and two groups of double detection devices (2) installed on the detection table (1), characterized in that: Two sets of positioning assemblies (5) are installed on the detection table (1) and are opposite to the corresponding double detection devices (2), and two sets of pressing assemblies (6) are installed on the detection table (1) and are vertically opposite to the corresponding positioning assemblies (5), and a linear module (3) is installed on the detection table (1), and a moving end of the linear module (3) is provided with a material taking assembly (4); The positioning assembly (5) comprises a rotating table (501), a rack (502) is fixed on the table top of the rotating table (501), two sets of limiting plates (503) are installed on the front face of the rack (502), and a side pushing cylinder (507) is installed on the top, and the piston rod of the side pushing cylinder (507) is fixed with a side pushing plate (508) which is opposite to the limiting plate (503); The pressing assembly (6) comprises a stand (601), a pressing cylinder (602) is installed on the stand (601), and a guide column plate (603) is penetrated, the piston rod of the pressing cylinder (602) is connected to the bottom of the guide column plate (603), and the bottom of the guide column plate (603) is provided with a follow-up shaft plate (604).
2. The honeycomb panel detection apparatus of claim 1, wherein: A pushing cylinder (512) is installed on the back of the rack (502), the piston rod of the pushing cylinder (512) is fixed with a pushing plate (513), and the side pushing cylinder (507) is installed on the top of the pushing plate (513).
3. A honeycomb panel detection apparatus according to claim 2, wherein: The pushing plate (513) is T-shaped, and a front pushing cylinder (504) is installed on the top of both ends of the pushing plate (513), the piston rod of the front pushing cylinder (504) is fixed with a top plate (505), and a front pushing plate (506) is installed between the two top plates (505).
4. A honeycomb board detection apparatus according to claim 3, wherein: A plurality of threaded holes are formed in the front pushing plate (506), the side wall of the rack (502) and the ejection end of the side pushing cylinder (507), and adjusting holes are formed in the limiting plate (503), the top plate (505) and the side pushing plate (508) which are matched with the corresponding threaded holes.
5. A honeycomb board detection apparatus according to claim 4, wherein: A plurality of sleeve columns (509) are penetrated through the rack (502), and a plurality of compression springs (511) are fixed, a plurality of sleeve columns (509) are fixed between the sleeve columns (509), and the compression springs (511) extend to the bottom of the bearing plate (510).
6. The honeycomb board detection apparatus of claim 1, wherein: An arch plate (605) is fixed on the lower plate of the guide column plate (603), the piston rod of the pressing cylinder (602) is fixed on the arch plate (605), a positioning cylinder (606) is installed on one side of the arch plate (605), a through hole is formed in the top shaft end of the follow-up shaft plate (604), and the piston rod of the positioning cylinder (606) is opposite to the through hole.
7. The honeycomb board detection apparatus of claim 1, wherein: The material taking assembly (4) comprises a moving plate (401), a pushing plate (403) and a pushing cylinder (402) are slidably connected to the moving plate (401), the piston rod of the pushing cylinder (402) is connected to the pushing plate (403), an up pushing cylinder (404) is installed on one side of the pushing plate (403), the piston rod of the up pushing cylinder (404) is fixed with an up pushing plate (405), two sets of insertion plates (406) are fixed on one side of the up pushing plate (405), and a clamping cylinder (407) is installed above the insertion plates (406).