Size detection equipment for building energy-saving material
By designing a dimensional inspection device for building energy-saving materials with a cylinder and gear rack structure, the problem of expensive and complex maintenance of existing equipment has been solved, realizing low-cost and efficient material dimensional measurement to meet the needs of the public.
Patent Information
- Application Number
- CN202520183598.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-06
AI Technical Summary
Existing testing equipment for building energy-saving materials is expensive, complex to maintain, and costly to repair, making it difficult to meet the needs of the public. Furthermore, existing testing methods are inefficient or lack accuracy.
A dimensional inspection device for building energy-saving materials, comprising a first detection component and a control component, was designed. The device utilizes a cylinder and gear rack structure to clamp and measure the material, employs common machined parts, and is low in cost and highly efficient in measurement.
It enables low-cost and efficient dimensional inspection of building energy-saving materials. It has a simple structure, uses common tools for its parts, and has high measurement accuracy, meeting the needs of the general public.
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Figure CN223678373U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building material detection technical field more specifically, the utility model relates to a size detection equipment for building energy saving material. BACKGROUND
[0002] Building energy saving material refers to the material that can effectively reduce energy consumption, improve energy efficiency, optimize indoor comfort and environmental quality in the process of building design, construction and use. The building energy saving materials include polyurethane foam, polystyrene foam board, rock wool, glass wool and vacuum insulation board.
[0003] In the construction industry, the size precision of energy saving material is required to be high to meet the needs of installation. The existing detection of the size of energy saving material is either detected by manual detection, or measured by detection personnel with a tape measure, which is labor-intensive and low in detection efficiency. Or through machine detection, the existing detection machine realizes the size detection of energy saving material board through various sensors, which is high in efficiency and high in detection accuracy. However, there are the following deficiencies, the existing detection equipment is expensive, the maintenance is complex and the maintenance cost is high, which is difficult to meet the needs of the public. UTILITY MODEL CONTENT
[0004] In order to overcome the deficiencies of the prior art, the utility model provides a size detection equipment for building energy saving material.
[0005] In order to achieve the above purpose, the utility model provides the following technical scheme: a size detection equipment for building energy saving material, including detection table, four corners of the bottom of detection table are fixedly connected with support leg, the left side of the top of detection table is fixedly connected with baffle, the middle of the bottom of detection table is installed with first detection assembly, the bottom of first detection assembly is installed with control assembly, the right side of the bottom of detection table is installed with second detection assembly, first detection assembly includes fixed frame fixedly connected in the bottom of detection table, the middle of the inner side of fixed frame is movably sleeved with rotating rod, the outer side of rotating rod is fixedly sleeved with cylindrical gear, the bottom of the inner side of fixed frame is installed with first rack assembly, the front surface of first rack assembly is installed with first clamping plate, the top of the inner side of fixed frame is installed with second rack assembly, the back surface of second rack assembly is installed with second clamping plate, the top of the back surface of first clamping plate is fixedly connected with sleeve pipe, the top of the front surface of second clamping plate is fixedly connected with first measuring scale plate, second detection assembly includes second cylinder fixedly connected in the bottom of detection table and second measuring scale plate fixedly connected in the right side of detection table, the end of second cylinder piston rod is fixedly connected with push plate, push plate and second measuring scale plate are movably sleeved, the front surface of second measuring scale plate is provided with second measuring scale.
[0006] As a preferred technical scheme of the utility model, the sleeve pipe is movably sleeved with the first measuring scale plate, and the right side surface of the first measuring scale plate is provided with a first measuring scale.
[0007] As a preferred technical scheme of the utility model, the second rack assembly comprises a second rack plate and a second positioning strip fixedly connected to the inner wall of the fixed frame, second positioning sliding grooves are formed in the two sides of the second rack plate, and the second positioning sliding grooves are movably sleeved with the second positioning strip.
[0008] As a preferred technical scheme of the utility model, the top and bottom of the second positioning strip are movably sleeved with second rollers, and the second rollers are in contact with the inner wall of the second positioning sliding groove.
[0009] As a preferred technical scheme of the utility model, the first rack assembly comprises a first rack plate and a first positioning strip fixedly connected to the inner wall of the fixed frame, first positioning sliding grooves are formed in the two sides of the first rack plate, the first positioning sliding grooves are movably sleeved with the first positioning strip, the top and bottom of the first positioning strip are movably sleeved with first rollers, and the first rollers are in contact with the inner wall of the first positioning sliding groove.
[0010] As a preferred technical scheme of the utility model, the bottom of the first rack plate is fixedly connected with a sliding block, the bottom of the fixed frame is provided with a rectangular groove, and the rectangular groove is movably sleeved with the sliding block.
[0011] As a preferred technical scheme of the utility model, the control assembly comprises a first air cylinder fixedly connected to the bottom of the fixed frame, the end of the piston rod of the first air cylinder is fixedly connected with a connecting block, and the top of the connecting block is fixedly connected with the bottom of the sliding block.
[0012] Compared with the prior art, the utility model has the beneficial effects as follows:
[0013] 1、the utility model discloses a first detection assembly and a control assembly are equipped, the first air cylinder is started and is pulled to the back and is moved to connecting block, and the first rack plate is moved to the back along the first positioning strip with the sliding block, and the meshing of the first rack plate, the cylindrical gear and the second rack plate is used, and the second rack plate moves to the front along the second positioning strip, and the first clamping plate and the second clamping plate move to the direction of mutual approach, and the front and back of the material plate are clamped, and the first measuring scale plate is retracted to the inside of the sleeve pipe, and the value of the first measuring scale at the connecting place of the sleeve pipe and the first measuring scale plate is the size of the distance between the front and back of the material plate.
[0014] 2, the utility model discloses a second detection subassembly is equipped with, and the second cylinder is started and drives the horizontal movement of push board to left side along the outside of second measurement toothed plate, until push board and the right side of material board are pasted, and the numerical value of push board and second measurement scale coincident part is the size of the distance between material board left side and right side, and the equipment simple structure, and the part is all ordinary processing spare, namely common tool, and cost is low, and the measurement efficiency is high, and the length and width of building material are measured simultaneously. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is structure schematic drawing for the utility model;
[0016] Figure 2 It is fixed frame cross section structure schematic drawing for the utility model;
[0017] Figure 3 It is second rack assembly structure schematic drawing for the utility model;
[0018] Figure 4 It is first rack assembly structure schematic drawing for the utility model;
[0019] Figure 5 It is control assembly structure schematic drawing for the utility model;
[0020] Figure 6 It is second detection subassembly structure schematic drawing for the utility model.
[0021] In the drawing: 1, detection table;101, support leg;102, baffle;2, first detection subassembly;201, fixed frame;211, rectangular groove;202, rotating rod;203, cylindrical gear;204, first rack assembly;241, first positioning strip;242, first roller;243, first rack plate;244, first positioning sliding slot;245, sliding block;205, first clamping plate;206, second rack assembly;261, second positioning strip;262, second roller;263, second rack plate;264, second positioning sliding slot;207, second clamping plate;208, sleeve;209, first measurement scale plate;210, first measurement scale;3, control assembly;301, first cylinder;302, connecting block;4, second detection subassembly;401, second cylinder;402, push board;403, second measurement toothed plate;404, second measurement scale. DETAILED DESCRIPTION
[0022] Clearly, the described embodiments are merely part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0023] As shown in Figures 1 to 6 The utility model provides a size detection equipment for building energy -saving material, including detection stage 1, four corners of detection stage 1 bottom are fixedly connected with support leg 101, the left side of detection stage 1 top is fixedly connected with baffle 102, the middle of detection stage 1 bottom is installed with first detection subassembly 2, and the bottom of first detection subassembly 2 is installed with control assembly 3, and the right side of detection stage 1 bottom is installed with second detection subassembly 4, and first detection subassembly 2 includes fixed frame 201 fixedly connected in the bottom of detection stage 1, and the middle of the inner side of fixed frame 201 movably bushing joint has rotating lever 202, and the outer side of rotating lever 202 fixedly bushing joint has cylindrical gear 203, and the bottom of the inner side of fixed frame 201 installs first rack assembly 204, and the front of first rack assembly 204 is installed with first clamping plate 205, and the top of the inner side of fixed frame 201 installs second rack assembly 206, and the back of second rack assembly 206 is installed with second clamping plate 207, and the top of the back of first clamping plate 205 is fixedly connected with sleeve pipe 208, and the top of the front of second clamping plate 207 is fixedly connected with first measuring scale plate 209, and second detection subassembly 4 includes second cylinder 401 fixedly connected in the bottom of detection stage 1 and second measuring tooth plate 403 fixedly connected in the right side of detection stage 1, and the end of second cylinder 401 piston rod is fixedly connected with push plate 402, and push plate 402 and second measuring tooth plate 403 movably bushing joint, and the front of second measuring tooth plate 403 is provided with second measuring scale 404.
[0024] In the embodiment of the application, before detection, the material plate is horizontally placed in the middle position of the top of the detection stage 1, and the left side of the material plate is attached to the surface of the baffle 102, then the first cylinder 301 is started to pull the connecting block 302 to move to the back, so that the first rack plate 243 is driven by the sliding block 245 to move horizontally to the back along the first positioning strip 241, through the meshing action of the first rack plate 243, the cylindrical gear 203 and the second rack plate 263, the second rack plate 263 moves horizontally to the front along the second positioning strip 261, so that the first clamping plate 205 and the second clamping plate 207 move to the direction of approaching each other, clamping the front and back of the material plate, at the same time, the first measuring scale plate 209 is retracted to the inside of the sleeve pipe 208, and the value of the first measuring scale 210 at the connection between the sleeve pipe 208 and the first measuring scale plate 209 is the size of the distance between the front and back of the material plate.
[0025] The second cylinder 401 drives the push plate 402 to move horizontally along the outside of the second measuring scale plate 403 to the left until the push plate 402 is attached to the right side of the material plate, and the value of the overlapping part of the push plate 402 and the second measuring scale 404 is the size of the distance between the left and right sides of the material plate.
[0026] The sleeve 208 is movably sleeved with the first measuring scale plate 209, and the right surface of the first measuring scale plate 209 is provided with the first measuring scale 210.
[0027] When the first clamping plate 205 and the second clamping plate 207 move, the first measuring scale plate 209 slides along the inside of the sleeve 208, and the value of the first measuring scale 210 at the connection between the back of the sleeve 208 and the first measuring scale plate 209 is the width data of the material plate.
[0028] The second rack assembly 206 comprises a second rack plate 263 and a second positioning strip 261 fixedly connected to the inner wall of the fixed frame 201, and the two sides of the second rack plate 263 are provided with second positioning sliding grooves 264, the second positioning sliding grooves 264 are movably sleeved with the second positioning strip 261, and the top and bottom of the second positioning strip 261 are movably sleeved with second rollers 262, and the second rollers 262 are in contact with the inner wall of the second positioning sliding grooves 264.
[0029] The back of the second rack plate 263 is fixedly connected with the front of the second clamping plate 207, and the top of the second rack plate 263 is in meshing with the outside of the cylindrical gear 203.
[0030] The first rack assembly 204 comprises a first rack plate 243 and a first positioning strip 241 fixedly connected to the inner wall of the fixed frame 201, and the two sides of the first rack plate 243 are provided with first positioning sliding grooves 244, the first positioning sliding grooves 244 are movably sleeved with the first positioning strip 241, and the top and bottom of the first positioning strip 241 are movably sleeved with first rollers 242, and the first rollers 242 are in contact with the inner wall of the first positioning sliding grooves 244.
[0031] The front of the first rack plate 243 is fixedly connected with the back of the first clamping plate 205, and the top of the first rack plate 243 is in meshing with the outside of the cylindrical gear 203, and the cooperation of the first positioning strip 241 and the first positioning sliding grooves 244 plays a positioning role in the sliding of the first rack plate 243.
[0032] The bottom of the first rack plate 243 is fixedly connected with a sliding block 245, and the bottom of the fixed frame 201 is provided with a rectangular groove 211, the rectangular groove 211 is in sliding fit with the sliding block 245, and the control assembly 3 comprises a first air cylinder 301 fixedly connected to the bottom of the fixed frame 201, the end of the piston rod of the first air cylinder 301 is fixedly connected with a connecting block 302, and the top of the connecting block 302 is fixedly connected with the bottom of the sliding block 245.
[0033] When the first air cylinder 301 pushes the connecting block 302 to move along the inner side of the rectangular groove 211 to the front, the first rack plate 243 drives the first clamping plate 205 to move to the front, and through the meshing effect of the cylindrical gear 203, the second rack plate 263 drives the second clamping plate 207 to move to the back, so that the first clamping plate 205 and the second clamping plate 207 are away from each other.
[0034] The working principle and use process of the utility model:
[0035] Before detection, the material plate is horizontally placed at the middle position of the top of the detection table 1, and the left side of the material plate is attached to the surface of the baffle 102, then the first air cylinder 301 is started to pull the connecting block 302 to move to the back, so that the first rack plate 243 is driven to move to the back along the first positioning strip 241 horizontally through the sliding block 245, and through the meshing effect of the first rack plate 243, the cylindrical gear 203 and the second rack plate 263, the second rack plate 263 moves to the front along the second positioning strip 261 horizontally, so that the first clamping plate 205 and the second clamping plate 207 move to the direction of approaching each other, and the front and back of the material plate are clamped, and at the same time, the first measuring scale plate 209 is retracted to the inside of the sleeve 208, and the value of the first measuring scale 210 at the connecting position of the sleeve 208 and the first measuring scale plate 209 is the size of the distance between the front and back of the material plate;
[0036] The second air cylinder 401 is started to drive the push plate 402 to move to the left side along the outer side of the second measuring rack plate 403 horizontally, until the push plate 402 is attached to the right side of the material plate, and the value of the overlapping part of the push plate 402 and the second measuring scale 404 is the size of the distance between the left side and the right side of the material plate, the equipment has the advantages of simple structure, ordinary machining parts, common tools, low cost, high measurement efficiency, and measurement of the length and width of the building material.
[0037] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation 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.
[0038] 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 dimensional inspection device for building energy-saving materials, comprising an inspection table (1), characterized in that: Support legs (101) are fixedly connected to the four corners of the bottom of the testing platform (1). A baffle (102) is fixedly connected to the left side of the top of the testing platform (1). A first testing component (2) is installed in the middle of the bottom of the testing platform (1). A control component (3) is installed at the bottom of the first testing component (2). A second testing component (4) is installed on the right side of the bottom of the testing platform (1). The first testing component (2) includes a fixed frame (201) fixedly connected to the bottom of the testing platform (1). A rotating rod (202) is movably sleeved in the middle of the inner side of the fixed frame (201). A cylindrical gear (203) is fixedly sleeved on the outer side of the rotating rod (202). A first rack assembly (204) is installed at the bottom of the inner side of the fixed frame (201). A first clamping plate is installed on the front of the first rack assembly (204). 205), a second rack assembly (206) is installed on the top of the inner side of the fixed frame (201), a second clamping plate (207) is installed on the back of the second rack assembly (206), a sleeve (208) is fixedly connected to the top of the back of the first clamping plate (205), a first measuring scale plate (209) is fixedly connected to the top of the front of the second clamping plate (207), the second detection assembly (4) includes a second cylinder (401) fixedly connected to the bottom of the detection table (1) and a second measuring tooth plate (403) fixedly connected to the right side of the detection table (1), a push plate (402) is fixedly connected to the end of the piston rod of the second cylinder (401), the push plate (402) is movably sleeved with the second measuring tooth plate (403), and a second measuring scale (404) is provided on the front of the second measuring tooth plate (403).
2. The dimensional inspection equipment for building energy-saving materials according to claim 1, characterized in that: The sleeve (208) is movably connected to the first measuring scale plate (209), and the right side surface of the first measuring scale plate (209) is provided with a first measuring scale (210).
3. The dimensional inspection equipment for building energy-saving materials according to claim 1, characterized in that: The second rack assembly (206) includes a second rack plate (263) and a second positioning strip (261) fixedly connected to the inner wall of the fixed frame (201). The second rack plate (263) has a second positioning groove (264) on both sides, and the second positioning groove (264) is slidably sleeved with the second positioning strip (261).
4. The dimensional inspection equipment for building energy-saving materials according to claim 3, characterized in that: The top and bottom of the second positioning strip (261) are movably fitted with second rollers (262), and the second rollers (262) are in contact with the inner wall of the second positioning groove (264).
5. The dimensional inspection equipment for building energy-saving materials according to claim 1, characterized in that: The first rack assembly (204) includes a first rack plate (243) and a first positioning strip (241) fixedly connected to the inner wall of the fixed frame (201). The first rack plate (243) has a first positioning groove (244) on both sides. The first positioning groove (244) is slidably sleeved with the first positioning strip (241). The top and bottom of the first positioning strip (241) are movably sleeved with first rollers (242). The first rollers (242) are in contact with the inner wall of the first positioning groove (244).
6. The dimensional inspection equipment for building energy-saving materials according to claim 5, characterized in that: The bottom of the first rack plate (243) is fixedly connected to a slider (245), and the bottom of the fixed frame (201) is provided with a rectangular groove (211), which is slidably sleeved with the slider (245).
7. The dimensional inspection equipment for building energy-saving materials according to claim 1, characterized in that: The control component (3) includes a first cylinder (301) fixedly connected to the bottom of the fixed frame (201), and a connecting block (302) is fixedly connected to the end of the piston rod of the first cylinder (301), and the top of the connecting block (302) is fixedly connected to the bottom of the slider (245).