A contour detection device for air compressor machining parts

By combining adjustment, stabilization, detection, installation, and lifting mechanisms, the compatibility and stability issues of traditional height measurement devices have been resolved, enabling precise detection of parts of different sizes and improving detection efficiency and accuracy.

CN224535064UActive Publication Date: 2026-07-21SHEN XINGJIAN (SHANGHAI) NEW ENERGY AUTO PARTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHEN XINGJIAN (SHANGHAI) NEW ENERGY AUTO PARTS CO LTD
Filing Date
2025-08-20
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional height measurement devices cannot quickly adapt to parts of different sizes and specifications, and are prone to displacement during the measurement process due to unstable bolt connections, affecting measurement accuracy and causing damage to the surface of the parts.

Method used

It adopts a combined design of adjustment mechanism, stabilization mechanism, detection mechanism, installation mechanism, drive mechanism and lifting mechanism, and achieves precise fixing and stable detection of parts of different sizes through components such as sleeve, support frame, push table and cylinder.

Benefits of technology

It enables rapid and accurate inspection of parts of different sizes, reduces inspection errors and surface damage to parts, and improves inspection efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to air compressor processing technical field discloses an air compressor processing part's contour detection device, including detection table, a plurality of sleeve and mounting bracket, the top rear side of detection table is connected with support frame with sliding, the top of mounting bracket is provided with adjusting mechanism, the top of detection table is provided with stabilizing mechanism, the inside of sleeve is provided with detection mechanism, the top front side of support frame is provided with mounting mechanism, the bottom of detection table is provided with drive mechanism, the rear side of support frame is provided with elevating system, the adjusting mechanism includes mounting block, mounting block fixed connection in the top end of sleeve. In the utility model, according to the size of detection piece, after placing mounting block in mounting bracket, rotating top extruding peg, extruding peg is extruded to the clamping plate, makes it to the two sides to carry out quick unfolding, to be clamped into the card slot in the middle, completes more subtle adjustment installation.
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Description

Technical Field

[0001] This utility model relates to the field of air compressor processing technology, and in particular to a height detection device for air compressor processed parts. Background Technology

[0002] In modern industrial manufacturing, air compressors are an important power equipment, and the machining accuracy of their parts directly affects the performance and reliability of the entire machine. Height measurement is a key link in the quality control of air compressor parts. With the continuous development of the air compressor manufacturing industry, the requirements for the machining accuracy of parts are increasing. This requires more efficient and accurate height measurement devices. Height measurement devices can accurately measure and compare the height dimensions of air compressor parts, detect dimensional deviations in a timely manner, and avoid assembly problems caused by inconsistent part heights.

[0003] Traditional height measurement devices can only inspect parts within a specific size range. They lack a flexible adjustment mechanism and cannot quickly adapt to parts of different sizes and specifications, which greatly limits their application range and inspection efficiency. They cannot meet the diverse and high-precision production needs of modern air compressor manufacturing. Existing height measurement devices usually have multiple screw holes designed on the mounting bracket, and use bolts to connect the threads to achieve the initial fixation and inspection position adjustment of different parts. This method avoids the situation where the device is completely unable to adapt to different parts, and can perform simple inspections on some parts with small size differences.

[0004] However, when encountering parts with large size differences and complex shapes, the connection method relying solely on multiple screw holes and bolts reveals obvious limitations. During testing operations requiring high pressure, such as extrusion testing, the stress points between bolts and screw holes are relatively concentrated, and the stability of threaded connections is easily affected by external forces. Once subjected to large lateral or impact forces, the testing device will shift, resulting in insecure fixation. This shift not only causes large errors in the test data and inaccurate testing, but also damages the surface of the parts due to device shaking, affecting the subsequent use of the parts. Therefore, a height-matching testing device for parts processed by an air compressor is proposed to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to provide an oil storage device for processing pet dog and cat food, which solves the obvious problems exposed by the existing technology when dealing with parts with large size differences and complex shapes, which rely solely on the connection method of multiple screw holes and bolts.

[0006] To achieve the above objectives, this utility model provides a height detection device for air compressor parts, including a detection platform, multiple sleeves, and a mounting frame. A support frame is slidably connected to the top rear side of the detection platform. An adjustment mechanism is provided on the top of the mounting frame. A stabilizing mechanism is provided on the top of the detection platform. A detection mechanism is provided inside the sleeves. A mounting mechanism is provided on the top front side of the support frame. A driving mechanism is provided at the bottom of the detection platform. A lifting mechanism is provided on the rear side of the support frame.

[0007] The adjustment mechanism includes a mounting block, which is fixedly connected to the top of the sleeve. The inner side of the mounting frame has multiple slots. The front and rear sides of the mounting block are slidably connected to locking plates. Two locking plates are fixedly connected to the opposite sides of each other. The top of the mounting block is threaded with a compression bolt.

[0008] The stabilizing mechanism includes a push platform slidably connected to the top of the testing platform. The bottom left and right ends of the push platform are provided with mounting grooves. Multiple pulleys are rotatably connected to the inner side of the mounting grooves. Two reinforcing bolts are threaded to the left and right sides of the push platform. One adjacent end of each reinforcing bolt penetrates the outer wall of the push platform and is rotatably connected to a C-shaped plate. A second pulley is rotatably connected to the inner side of the C-shaped plate. A groove is provided on the outer wall of the second pulley. A clamping assembly is provided at the top of the push platform.

[0009] The clamping assembly includes two cylinders, which are fixedly connected to the top left and right ends of the push table, and each cylinder has a clamping plate fixedly connected to one end.

[0010] The detection mechanism includes a push rod, which is slidably connected to the inner side of the sleeve. A spring is fixedly connected to the top of the outer wall of the push rod, and a pressure sensor is fixedly connected to the top of the inner side of the sleeve. A replacement component is provided at the bottom of the push rod.

[0011] The replacement component includes a threaded groove, which is formed at the bottom of the outer wall of the push rod, and a replacement part is threadedly connected to the outer wall of the threaded groove.

[0012] The installation mechanism includes an installation shaft, which is fixedly connected to the top rear side of the mounting frame. A limit groove is formed on the inner top of the support frame. An installation bolt is threadedly connected to the top front side of the support frame, and the bottom end of the installation bolt is threadedly connected to the top end of the installation shaft.

[0013] The driving mechanism includes a second cylinder, which is fixedly connected to the bottom front side of the testing platform. A sliding groove is provided on the top of the testing platform. A mounting plate is fixedly connected to one end of the second cylinder. The top of the mounting plate passes through the inner side of the sliding groove and is fixedly connected to the bottom of the push platform.

[0014] The lifting mechanism includes a fixed plate, which is fixedly connected to the rear side of the support frame. A screw is threadedly connected to the top of the fixed plate, and the bottom end of the screw passes through the top of the fixed plate and is rotatably connected to the top of the testing platform.

[0015] 1. This utility model discloses a height detection device for air compressor parts. According to the size of the part to be tested, the mounting block is placed into the mounting frame, and the top extrusion bolt is rotated. The extrusion bolt extrudes the clamping plate, which is quickly unfolded to both sides and then quickly clamped into the slot, completing a more precise adjustment and installation, and performing detection processing on parts of different sizes.

[0016] 2. This utility model discloses a height detection device for air compressor processed parts. The test piece is placed on a push platform, and a cylinder drives a clamping plate to clamp test pieces of different sizes. The two sides of the push platform are engaged with the edge of the detection platform. By rotating the reinforcing bolts on both sides of the push platform, the pulleys on the C-shaped plate are driven to fit against the edge of the detection platform. The push platform is then moved back and forth stably by starting the cylinder, ensuring the accuracy of height detection for the test piece. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0018] Figure 1 This is a perspective view of a height detection device for air compressor processed parts according to an embodiment of this utility model.

[0019] Figure 2 This is a side view of a height detection device for air compressor processed parts according to an embodiment of this utility model.

[0020] Figure 3 This is an exploded view of a height detection device for air compressor processed parts according to an embodiment of this utility model.

[0021] Figure 4 This is a partial structural schematic diagram of a height detection device for air compressor processed parts according to an embodiment of this utility model.

[0022] Figure 5 This is a cross-sectional view of a height detection device for air compressor processed parts according to an embodiment of this utility model.

[0023] 1-Testing table; 2-Sleeve; 3-Support frame; 4-Mounting frame; 5-Adjusting mechanism; 501-Slot; 502-Mounting block; 503-Clamping plate; 504-Spring 1; 505-Crushing bolt; 6-Stabilizing mechanism; 601-Push table; 602-Mounting groove; 603-Pulley 1; 604-Reinforcing bolt; 605-C-shaped plate; 606-Pulley 2; 607-Groove; 608-Clamping assembly; 6081-Cylinder 1; 60 82-Clamping plate; 7-Detection mechanism; 701-Push rod; 702-Spring 2; 703-Pressure sensor; 704-Replacement component; 7041-Threaded groove; 7042-Replacement part; 8-Mounting mechanism; 801-Limit groove; 802-Mounting bolt; 803-Mounting shaft; 9-Drive mechanism; 901-Cylinder 2; 902-Mounting plate; 903-Slide groove; 10-Lifting mechanism; 1001-Fixing plate; 1002-Screw. Detailed Implementation

[0024] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0025] Reference Figure 1 , Figure 3 and Figure 5 An embodiment of this utility model provides a height detection device for air compressor processed parts, including a detection platform 1, multiple sleeves 2 and a mounting frame 4. A support frame 3 is slidably connected to the top rear side of the detection platform 1. An adjustment mechanism 5 is provided on the top of the mounting frame 4. The adjustment mechanism 5 is used to freely assemble the multiple sleeves 2 and make fine adjustments. A stabilizing mechanism 6 is provided on the top of the detection platform 1. The stabilizing mechanism 6 is used to ensure the stability of the detected parts when they move during the detection process and to avoid shaking. A detection mechanism 7 is provided inside the sleeves 2. An installation mechanism 8 is provided on the top front side of the support frame 3. A drive mechanism 9 is provided at the bottom of the detection platform 1. A lifting mechanism 10 is provided on the rear side of the support frame 3.

[0026] The adjusting mechanism 5 includes a mounting block 502, which is fixedly connected to the top of the sleeve 2. Multiple slots 501 are equidistantly arranged on the inner side of the mounting frame 4. After the mounting block 502 is placed into the mounting frame 4, locking plates 503 are slidably connected to the front and rear sides of the mounting block 502. Springs 504 are fixedly connected to the opposite sides of the two locking plates 503. The locking plates 503 are respectively installed on both sides of the mounting block 502 and supported by the springs 504, providing a reset mechanism. A clamping bolt 505 is threadedly connected to the top of the mounting block 502. After the mounting block 502 is fully placed into the mounting frame 4, the clamping bolt 505 clamps the inner sides of the mounting block 502. The clamping plate 503 is squeezed to quickly unfold to both sides, completing the quick adjustment and installation. The detection mechanism 7 includes a push rod 701, which is slidably connected to the inner side of the sleeve 2. A spring 702 is fixedly connected to the top of the outer wall of the push rod 701. A pressure sensor 703 is fixedly connected to the top of the inner side of the sleeve 2. When the detection part comes into contact with the push rod 701, actual detection is performed. A replacement component 704 is provided at the bottom of the push rod 701. The replacement component 704 includes a threaded groove 7041, which is opened at the bottom of the outer wall of the push rod 701. A replacement part 7042 is threadedly connected to the outer wall of the threaded groove 7041. The replacement part 7042 can be replaced through the threaded groove 7041.

[0027] Specifically, the slot 501 is designed within the mounting bracket 4 to facilitate the placement of the mounting block 502 into the mounting bracket 4. After the mounting block 502 is placed into the mounting bracket 4, locking plates 503 are connected to its front and rear sides. Springs 504 are fixed to the opposite sides of the locking plates 503 to provide necessary reset. Furthermore, after the mounting block 502 is fully placed into the mounting bracket 4, rotating the top clamping bolt 505 can compress the locking plates 503 on both sides, causing them to quickly unfold to both sides, allowing the adjustment mechanism 5 to quickly engage. The device is inserted into the slot 501, enabling quick adjustment and installation. The adjustment mechanism 5 allows for more precise testing of different sized test pieces, greatly improving the accuracy and efficiency of the test. The push rod 701 is connected to the inside of the sleeve 2. When the test piece contacts the push rod 701, it pushes the compression pressure sensor 703 to perform the actual testing. The replacement part 7042 can be replaced through the threaded groove 7041. This design not only improves the accuracy of the testing mechanism 7 but also facilitates maintenance and replacement, ensuring the long-term stable operation of the testing mechanism 7.

[0028] Reference Figure 1 , Figure 2 and Figure 4The stabilizing mechanism 6 includes a push platform 601, which is slidably connected to the top of the testing platform 1. The push platform 601 adopts a C-shaped design and engages with both sides of the testing platform 1. Mounting grooves 602 are provided on both the left and right ends of the bottom of the push platform 601. Multiple pulleys 603 are rotatably connected to the inner side of the mounting grooves 602. Two reinforcing bolts 604 are threaded to both the left and right sides of the push platform 601. One adjacent end of each reinforcing bolt 604 penetrates the outer wall of the push platform 601 and is rotatably connected to a C-shaped plate 605. The C-shaped plate 605 is fixed to both sides of the inside of the push platform 601 by the reinforcing bolts 604. Simultaneously, the C-shaped plate 605 mounts pulleys 606, which are rotatably connected to the inner side of the C-shaped plate 605. The outer wall of the 06 has a groove 607. The two sides of the inspection table 1 are rounded. With the groove 607 on the surface of the pulley 2 606, a stable and firm fit is achieved. This makes the push table 601 more stable when sliding back and forth. The top of the push table 601 is provided with a clamping assembly 608. The clamping assembly 608 includes two cylinders 6081. The two cylinders 6081 are fixedly connected to the left and right ends of the top of the push table 601. One end of each cylinder 6081 is fixedly connected to a clamping plate 6082. When the test piece is placed on the push table 601, the cylinders 6081 are activated to drive the clamping plate 6082 to firmly clamp the test pieces of different sizes, thereby ensuring the accuracy of the test.

[0029] Specifically, the push platform 601 is slidably connected to the top of the inspection table 1. The push platform 601 adopts a C-shaped structure, which can fit snugly against both sides of the inspection table 1, ensuring structural stability. Dedicated mounting slots 602 are provided at both ends of the bottom of the push platform 601. Multiple pulleys 603 are installed inside these mounting slots 602, which help the push platform 601 slide more smoothly. To further enhance structural stability, a C-shaped plate 605 is fixed to both sides of the inside of the push platform 601 by reinforcing bolts 604. This not only enhances structural stability but also serves to install pulleys 606. The inner side of the C-shaped plate 605 is connected to pulleys 606, while the outer wall of pulleys 606 has grooves 607. The two sides of the testing table 1 are rounded, which, in conjunction with the groove 607 design on the surface of the pulley 606, achieves a stable and firm fit. This design makes the push table 601 more stable when sliding back and forth, greatly improving the reliability of operation. In addition, the top of the push table 601 is also equipped with a clamping assembly 608, which includes two cylinders 6081. These two cylinders 6081 are fixed at the left and right ends of the top of the push table 601. One end of each cylinder 6081 is fixedly connected to a clamping plate 6082. When testing is required, the test piece is placed on the push table 601, and the cylinders 6081 are activated to drive the clamping plates 6082 to firmly clamp the test pieces of different sizes, thereby ensuring the accuracy and reliability of the testing.

[0030] Reference Figure 1 , Figure 2 and Figure 3 The mounting mechanism 8 includes a mounting shaft 803, which is fixedly connected to the top rear side of the mounting frame 4. A limiting groove 801 is formed on the inner top of the support frame 3. A mounting bolt 802 is threadedly connected to the top front side of the support frame 3. The bottom end of the mounting bolt 802 is threadedly connected to the top end of the mounting shaft 803. The mounting shaft 803 and the mounting frame 4 are welded together and fixed. The edge is designed with protrusions that interlock with the limiting groove 801 to achieve limiting. With the connection of the mounting bolt 802, a secure installation is ensured, facilitating disassembly. The driving mechanism 9 includes a second cylinder 901, which is fixedly connected to the bottom front side of the testing table 1. The top of the testing table 1... The support frame 3 is provided with a slide groove 903. One end of the cylinder 2 901 is fixedly connected to a mounting plate 902. The top of the mounting plate 902 passes through the inner side of the slide groove 903 and is fixedly connected to the bottom of the push table 601. The push table 601 is driven to move back and forth stably by starting the cylinder 2 901. The lifting mechanism 10 includes a fixing plate 1001, which is fixedly connected to the rear side of the support frame 3. The top of the fixing plate 1001 is threadedly connected to a screw 1002. The bottom end of the screw 1002 passes through the top of the fixing plate 1001 and is rotatably connected to the top of the testing table 1. The height of the support frame 3 can be adjusted by rotating the screw 1002.

[0031] Specifically, the mounting shaft 803 and the mounting bracket 4 are welded together and fixed. The edge of the mounting shaft 803 is designed with a raised structure. These raised structures can be inserted into the limiting groove 801 to achieve a precise limiting function. With the connection of the mounting bolt 802, the entire mounting mechanism 8 can be firmly installed and is easy to disassemble. The second cylinder 901 is fixed to the bottom front side of the test table 1. The top of the test table 1 is specially provided with a sliding groove 903 so that the second cylinder 901 can work smoothly. One end of the second cylinder 901 is fixed with a mounting plate 902. The top of the mounting plate 902 passes through the inner side of the sliding groove 903 and is fixed to the bottom of the push table 601. By starting the second cylinder 901, the push table 601 can be driven to move back and forth stably, thereby achieving precise control. By rotating the screw 1002, the height of the support frame 3 can be adjusted to meet different height requirements.

[0032] Working principle: First, according to the size of the test piece, the mounting block 502 is placed into the mounting frame 4. Then, the top compression bolt 505 is rotated. The compression bolt 505 compresses the locking plates 503 on both sides inside, causing them to quickly unfold to both sides and quickly engage into the slot 501, completing the quick adjustment and installation. This allows for more precise testing of test pieces of different sizes. When the test piece contacts the push rod 701, it pushes the compression pressure sensor 703 to perform actual testing. The replacement part 7042 can be replaced through the threaded groove 7041, improving accuracy.

[0033] Furthermore, the test piece is placed on the push table 601, and the cylinder 6081 is activated to drive the clamping plate 6082 to clamp test pieces of different sizes. The two sides of the push table 601 are engaged with the edge of the test table 1. By rotating the reinforcing bolts 604 on both sides of the push table 601, the pulley 606 on the inner side of the C-shaped plate 605 is driven to fit against the two sides of the test table 1. By activating the cylinder 901, the push table 601 is driven to move back and forth stably, ensuring the test piece is at the correct height during testing and reducing shaking.

[0034] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A height detection device for air compressor processed parts, comprising a detection platform, multiple sleeves, and a mounting bracket, characterized in that: A support frame is slidably connected to the top rear side of the testing platform. An adjustment mechanism is provided on the top of the mounting frame. A stabilizing mechanism is provided on the top of the testing platform. A testing mechanism is provided inside the sleeve. An installation mechanism is provided on the top front side of the support frame. A driving mechanism is provided at the bottom of the testing platform. A lifting mechanism is provided on the rear side of the support frame. The adjustment mechanism includes a mounting block, which is fixedly connected to the top of the sleeve. The inner side of the mounting frame has multiple slots. The front and rear sides of the mounting block are slidably connected to locking plates. Two locking plates are fixedly connected to the opposite sides of each other. The top of the mounting block is threaded with a compression bolt.

2. The height detection device for air compressor processed parts as described in claim 1, characterized in that: The stabilizing mechanism includes a push platform, which is slidably connected to the top of the testing platform. The bottom left and right ends of the push platform are provided with mounting grooves. Multiple pulleys are rotatably connected to the inner side of the mounting grooves. Two reinforcing bolts are threaded to the left and right sides of the push platform. One adjacent end of each of the multiple reinforcing bolts passes through the outer wall of the push platform and is rotatably connected to a C-shaped plate. A pulley is rotatably connected to the inner side of the C-shaped plate. The outer wall of the pulley is provided with a groove. A clamping assembly is provided on the top of the push platform.

3. The height detection device for air compressor processed parts as described in claim 2, characterized in that: The clamping assembly includes two cylinders, which are fixedly connected to the top left and right ends of the push table, and each cylinder is fixedly connected to a clamping plate at one end.

4. The height detection device for air compressor processed parts as described in claim 1, characterized in that: The detection mechanism includes a push rod, which is slidably connected to the inner side of the sleeve. A spring is fixedly connected to the top of the outer wall of the push rod, and a pressure sensor is fixedly connected to the top of the inner side of the sleeve. A replacement component is provided at the bottom of the push rod.

5. The height detection device for air compressor processed parts as described in claim 4, characterized in that: The replacement component includes a threaded groove formed at the bottom of the outer wall of the push rod, and a replacement part is threadedly connected to the outer wall of the threaded groove.

6. The height detection device for air compressor processed parts as described in claim 1, characterized in that: The mounting mechanism includes a mounting shaft, which is fixedly connected to the top rear side of the mounting frame. A limiting groove is formed on the inner top of the support frame. A mounting bolt is threadedly connected to the top front side of the support frame, and the bottom end of the mounting bolt is threadedly connected to the top end of the mounting shaft.

7. The height detection device for air compressor processed parts as described in claim 1, characterized in that: The driving mechanism includes a second cylinder, which is fixedly connected to the bottom front side of the testing platform. A sliding groove is provided on the top of the testing platform. A mounting plate is fixedly connected to one end of the second cylinder. The top of the mounting plate passes through the inner side of the sliding groove and is fixedly connected to the bottom of the push platform.

8. The height detection device for air compressor processed parts as described in claim 1, characterized in that: The lifting mechanism includes a fixed plate, which is fixedly connected to the rear side of the support frame. A screw is threadedly connected to the top of the fixed plate, and the bottom end of the screw passes through the top of the fixed plate and is rotatably connected to the top of the testing table.