Bearing ring machining equipment with outer diameter detection function

By introducing detection components and adjustment brackets into the bearing ring processing equipment, the outer diameter can be detected in real time and the grinding process can be automatically adjusted, which solves the problem of insufficient outer diameter detection in existing equipment and improves product quality and efficiency.

CN223558000UActive Publication Date: 2025-11-18宁波环诚汽车轴承有限公司
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Patent Information

Application Number
CN202423167462.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-18
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing bearing ring processing equipment lacks real-time outer diameter detection capabilities during processing, resulting in high defect rates and low work efficiency.

Method used

A detection component, including a detection module and an adjustment bracket, is installed in the bearing ring processing equipment. The outer diameter is detected in real time by the abutting detection block on the detection arm, and precise adjustment is achieved by combining the adjustment block of the adjustment bracket to ensure that grinding automatically stops after the outer diameter reaches the target value.

Benefits of technology

Precision machining of the bearing ring outer diameter was achieved, significantly improving product qualification rate and processing efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223558000U_ABST
Patent Text Reader

Abstract

The utility model discloses bearing ring processing equipment with an outer diameter detection function, which comprises a machine table and a processing seat movably arranged on the machine table, the processing seat is provided with a clamping assembly used for clamping and driving a bearing ring to rotate, and a conveying assembly used for conveying the bearing ring to the clamping assembly. A grinding assembly used for grinding the outer diameter of the bearing ring is arranged on the machine table. A detection assembly for detecting the outer diameter of the bearing ring is further arranged on the machine table, the detection assembly comprises a detection module and an adjusting support used for adjusting the position of the detection module, and the detection module comprises a detection body, detection arms arranged on the two sides of the detection module and abutting detection blocks arranged on the detection arms; the abutting detection block abuts against the periphery of the bearing ring.
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Description

TECHNICAL FIELD

[0001] The utility model relates to bearing processing equipment technical field, concretely relates to a bearing ring machining equipment with outer diameter detection function. BACKGROUND

[0002] Bearing is an important spare part in contemporary mechanical equipment, and its main function is to support mechanical rotary body, reduce the friction coefficient in its movement process, and ensure its rotation precision.

[0003] The existing bearing is mainly composed of the following parts: inner ring, outer ring, rolling body and retainer, and the inner diameter and outer diameter of the inner ring and the outer ring need to be polished during the machining process of the inner and outer rings of the bearing to ensure the machining precision, but the existing bearing ring machining equipment only relies on setting data for machining, which leads to high defective rate, and equipment failure is prone to large quantities of defective products, and detection needs to be carried out after machining, which leads to low work efficiency. UTILITY MODEL CONTENT

[0004] To solve the technical problems in the background art, the utility model provides a bearing ring machining equipment with outer diameter detection function.

[0005] The technical scheme adopted by the utility model to solve the technical problems is as follows:

[0006] A bearing ring machining equipment with outer diameter detection function, comprising a machine table, a machining seat movably arranged on the machine table, a clamping assembly for clamping and driving the bearing ring to rotate is arranged on the machining seat, and a conveying assembly for conveying the bearing ring to the clamping assembly is arranged on the machine table, and a grinding assembly for grinding the outer diameter of the bearing ring is arranged on the machine table.

[0007] A detection assembly for detecting the outer diameter of the bearing ring is further arranged on the machine table, the detection assembly comprises a detection module and an adjusting support for adjusting the position of the detection module, and the detection module comprises a detection main body, detection arms arranged on both sides of the detection module, and abutting detection blocks arranged on the detection arms, the abutting detection blocks abut against the outer periphery of the bearing ring.

[0008] Preferably, the adjusting support comprises a fixing plate fixed on the machine table, a Y-axis adjusting block arranged on the fixing plate, an X-axis adjusting block arranged on the Y-axis adjusting block, and a Z-axis adjusting block arranged on the Y-axis adjusting block, the detection module is fixed on the Z-axis adjusting block, through the above improvement, the X-axis adjusting block, the Y-axis adjusting block and the Z-axis adjusting block are used for cooperation to adjust the position of the detection module, so as to cooperate with bearing rings of different sizes, and the testing accuracy and the convenience of the operator in the debugging process are improved.

[0009] Preferably, a first adjusting groove extending towards the Y-axis direction of the fixed plate is formed on the Y-axis adjusting block, and a first connecting hole connecting the first adjusting groove is formed on the fixed plate, so that the preliminary adjustment of the Y-axis direction of the detection module is realized by the cooperation of the first adjusting groove and the first connecting hole.

[0010] Preferably, a second adjusting groove extending towards the X-axis direction of the fixed plate is formed on the X-axis adjusting block, and a second connecting hole connecting the second adjusting groove is formed on the Y-axis adjusting block, so that the preliminary adjustment of the X-axis direction of the detection module is realized by the cooperation of the second adjusting groove and the second connecting hole.

[0011] Preferably, an adjusting protrusion is formed on the Y-axis adjusting block and the X-axis adjusting block, and an adjusting screw is arranged on the adjusting protrusion, the adjusting screw on the Y-axis adjusting block is threadedly connected with the fixed plate, and the adjusting screw on the X-axis adjusting block is threadedly connected with the Y-axis adjusting block, so that after the preliminary adjustment of the X-axis direction and the Y-axis direction of the detection module is completed, the Y-axis adjusting block and the X-axis adjusting block can be moved by rotating the adjusting screw for fine adjustment, thereby greatly improving the accuracy of the adjustment and ensuring the test accuracy.

[0012] Preferably, a connecting plate extending along the Z-axis and the X-axis of the fixed plate is formed on the X-axis adjusting block, and a third adjusting groove is formed on the connecting plate, and a third connecting hole connecting the third adjusting groove is formed on the Z-axis adjusting block, so that the third adjusting groove and the third connecting hole are cooperated by the inclination of the connecting plate on the X-axis adjusting block, thereby realizing the rapid adjustment of the X-axis and the Z-axis of the detection module.

[0013] Preferably, a first sliding block slidable along the Y-axis direction of the fixed plate is arranged on the Z-axis adjusting block, a second sliding block slidable along the Z-axis direction of the fixed plate is arranged on the first sliding block, and the detection module is fixed on the second sliding block, so that the Y-axis and the Z-axis positions of the detection module can be adjusted by the first sliding block and the second sliding block, thereby further increasing the adjustment mode and being more convenient for the operator to use.

[0014] Preferably, a sliding protrusion is formed on the Z-axis adjusting block and the first sliding block, and a sliding groove matched with the sliding protrusion is formed on the first sliding block and the second sliding block, so that the stability of the first sliding block and the second sliding block in the sliding process is improved by the cooperation of the sliding protrusion and the sliding groove.

[0015] Preferably, the first slider and the second slider are provided with fixing blocks, and fixing screws are inserted into the fixing blocks and are in threaded connection with the first slider and the second slider, and the fixing screws are rotated to press the sliding convex parts and force the first slider and the second slider to remain in the current positions.

[0016] Preferably, the second slider is provided with a plurality of fixed holes arranged at intervals, and the fixed holes are connected with the detection module, and through the above improvement, the detection module is connected with the fixed holes to adjust the position of the detection module, and the convenience of adjusting the detection module is improved.

[0017] Compared with the prior art, the utility model has the advantages and beneficial effects that:

[0018] Through the detection assembly for detecting the outer diameter of the bearing ring on the machine table, the detection assembly comprises a detection module and an adjusting support for adjusting the position of the detection module, and the detection module comprises a detection main body, detection arms arranged on both sides of the detection module and abutting detection blocks arranged on the detection arms, the abutting detection blocks abut against the outer periphery of the bearing ring to perform real-time detection, the abutting detection blocks actively detect the outer diameter during the outer diameter grinding process, the grinding is not fed until the outer diameter reaches the target value, the product is automatically returned and discharged, and therefore the precision of the outer diameter processing is ensured, and the product qualified rate is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a whole structural schematic view of the utility model;

[0020] Figure 2 It is a structural schematic view of the front of the detection assembly of the utility model;

[0021] Figure 3 It is a structural schematic view of the back of the detection assembly of the utility model;

[0022] Figure 4 It is a structural schematic view of the top of the detection assembly of the utility model;

[0023] In the diagram: 1. Machine base; 2. Machining base; 3. Clamping assembly; 4. Conveying assembly; 5. Grinding assembly; 6. Detection assembly; 1.1 Detection module; 1.2 Adjusting bracket; 2.1 Detection body; 2.2 Detection arm; 2.3 Abutting detection block; 3.1 Fixing plate; 3.2 Y-axis adjusting block; 3.3 X-axis adjusting block; 3.4 Z-axis adjusting block; 4.1 First adjusting groove; 4.2 First connecting hole; 4.3 Second adjusting groove; 4.4 Second connecting hole; 4.5 Connecting plate; 4.6 Third adjusting groove; 4.7 Third connecting hole; 5.1 Adjusting protrusion; 5.2 Adjusting screw; 5.3 First slider; 5.4 Second slider; 5.5 Sliding protrusion; 5.6 Sliding groove; 6.1 Fixing block; 6.2 Fixing screw; 6.3 Fixing hole; Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] It should be understood that although the terms upper, middle, lower, top, one end, etc., appear in this document to describe various elements, these elements are not limited by these terms. These terms are only used to distinguish the elements from each other for ease of understanding, and are not used to define any directional or sequential restrictions.

[0026] like Figures 1-4 As shown, a bearing ring processing equipment with outer diameter detection function includes a machine base 1, a processing seat 2 movably disposed on the machine base 1, a clamping assembly 3 for clamping and driving the bearing ring to rotate on the processing seat 2, and a conveying assembly 4 for conveying the bearing ring to the clamping assembly 3. The machine base 1 is also provided with a grinding assembly 5 for grinding the outer diameter of the bearing ring.

[0027] Specifically, the machine tool 1 is also equipped with a detection component 6 for detecting the outer diameter of the bearing ring. The detection component 6 includes a detection module 1.1 and an adjustment bracket 1.2 for adjusting the position of the detection module 1.1. The detection module 1.1 includes a detection body 2.1, detection arms 2.2 set on both sides of the detection module 1.1, and abutment detection blocks 2.3 set on the detection arms 2.2. During the grinding process, the abutment detection blocks 2.3 are always abutted against the outer circumference of the bearing ring for detection. The outer diameter is actively detected so that the grinding does not feed when the outer diameter reaches the target value, and the product is automatically returned and discharged, thereby ensuring the accuracy of the outer diameter machining and greatly improving the product qualification rate.

[0028] The detection main body 2.1 is provided with a lever mechanism connected with the detection arm 2.2, the end of the lever mechanism away from the detection arm 2.2 is provided with an electromagnetic mechanism, the electromagnetic mechanism includes an iron core shaft and a coil, the electromagnetic mechanism is used for converting the displacement signal detected by the abutting detection block 2.3 into an electric signal, the abutting detection block 2.3 is arranged at the end of the detection arm 2.2, the contact type measurement of the machined part is realized, the size change of the part is converted into the relative displacement of the magnetic core and the coil in the measuring device through the abutting detection block 2.3, the lever and other parts, so as to convert the displacement into inductance, and the precise control of the size in the grinding process is realized, and the processing quality is greatly improved.

[0029] Further explanation of the adjustment support 1.2, the adjustment support 1.2 includes a fixed plate 3.1 fixed on the machine table 1, a Y-axis adjustment block 3.2 arranged on the fixed plate 3.1, an X-axis adjustment block 3.3 arranged on the Y-axis adjustment block 3.2, and a Z-axis adjustment block 3.4 arranged on the Y-axis adjustment block 3.2, and the detection module 1.1 is fixed on the Z-axis adjustment block 3.4.

[0030] When producing different models of products, the position of the detection module 1.1 needs to be adjusted, the X-axis adjustment block 3.3, the Y-axis adjustment block 3.2 and the Z-axis adjustment block 3.4 are used for cooperation to adjust the position of the detection module 1.1 in the X-axis, Y-axis and Z-axis directions, so as to cooperate with different size bearing rings, and improve the precision of the test and the convenience of the operator in the debugging process.

[0031] Specifically, the Y-axis adjustment block 3.2 is formed with a first adjusting groove 4.1 extending in the Y-axis direction of the fixed plate 3.1, and the fixed plate 3.1 is formed with a first connecting hole 4.2 connected with the first adjusting groove 4.1, the first adjusting groove 4.1 and the first connecting hole 4.2 are used for cooperation to realize the preliminary adjustment of the detection module 1.1 in the Y-axis direction.

[0032] Further, the X-axis adjustment block 3.3 is formed with a second adjusting groove 4.3 extending in the X-axis direction of the fixed plate 3.1, and the Y-axis adjustment block 3.2 is formed with a second connecting hole 4.4 connected with the second adjusting groove 4.3, the second adjusting groove 4.3 and the second connecting hole 4.4 are used for cooperation to realize the preliminary adjustment of the detection module 1.1 in the X-axis direction.

[0033] As preferred, the Y-axis adjustment block 3.2 and the X-axis adjustment block 3.3 are formed with an adjusting protrusion 5.1, and the adjusting protrusion 5.1 is arranged with an adjusting screw 5.2, the adjusting screw 5.2 on the Y-axis adjustment block 3.2 is threadedly connected with the fixed plate 3.1, and the adjusting screw 5.2 on the X-axis adjustment block 3.3 is threadedly connected with the Y-axis adjustment block 3.2.

[0034] When the preliminary adjustment of the detection module 1.1 in the X-axis and Y-axis directions is completed, the Y-axis adjusting block 3.2 and the X-axis adjusting block 3.3 can be moved by rotating the adjusting screw 5.2 to make fine adjustment, which greatly improves the accuracy of the adjustment and ensures the test accuracy.

[0035] In addition, the X-axis adjusting block 3.3 is provided with a connecting plate 4.5 extending along the Z-axis and the X-axis of the fixed plate 3.1, and the connecting plate 4.5 is provided with a third adjusting groove 4.6, and the Z-axis adjusting block 3.4 is provided with a third connecting hole 4.7 connected with the third adjusting block, and the connecting plate 4.5 is obliquely arranged on the X-axis adjusting block 3.3, so that the third adjusting groove 4.6 cooperates with the third connecting hole 4.7 to realize the rapid adjustment of the X-axis and the Z-axis of the detection module 1.1.

[0036] As preferred, the fixed plate 3.1 is also provided with an adjusting groove, which further increases the adjustment mode.

[0037] In some other embodiments, the Z-axis adjusting block 3.4 is provided with a first sliding block 5.3 which can slide along the Y-axis of the fixed plate 3.1, and the first sliding block 5.3 is provided with a second sliding block 5.4 which can slide along the Z-axis of the fixed plate 3.1, and the detection module 1.1 is fixed on the second sliding block 5.4, and the Y-axis and Z-axis positions of the detection module 1.1 can be adjusted by the first sliding block 5.3 and the second sliding block 5.4, which further increases the adjustment mode and is more convenient for operators to use.

[0038] Specifically, the Z-axis adjusting block 3.4 and the first sliding block 5.3 are provided with sliding protrusions 5.5, and the first sliding block 5.3 and the second sliding block 5.4 are provided with sliding grooves 5.6 cooperating with the sliding protrusions 5.5, and the sliding protrusions 5.5 cooperate with the sliding grooves 5.6 to improve the stability of the first sliding block 5.3 and the second sliding block 5.4 during sliding.

[0039] Further, the first sliding block 5.3 and the second sliding block 5.4 are provided with fixing blocks 6.1 on the side portions, and the fixing blocks 6.1 are inserted with fixing screws 6.2, and the fixing screws 6.2 are threadedly connected with the first sliding block 5.3 and the second sliding block 5.4, and the fixing screws 6.2 are rotated to press the sliding protrusions 5.5 and force the first sliding block 5.3 and the second sliding block 5.4 to remain at the current position.

[0040] During the adjustment of the position of the detection module 1.1, when the first sliding block 5.3 or the second sliding block 5.4 slides to the required position, the fixing screws 6.2 can be rotated to press the sliding protrusions 5.5 with the fixing blocks 6.1, so that the first sliding block 5.3 or the second sliding block 5.4 remains at the current position, thereby realizing the rapid adjustment of the position of the detection module 1.1.

[0041] As preferred, a plurality of fixed holes 6.3 are arranged on the second sliding block 5.4, and the detection module 1.1 is connected with the different fixed holes 6.3 to adjust the position of the detection module 1.1, which further improves the convenience of adjusting the detection module 1.1.

[0042] The specific embodiment is only an explanation of the utility model, and is not a limitation of the utility model, and a person skilled in the art can make a modification without creative contribution according to the need after reading the specification, but as long as it is within the scope of the claims of the utility model, it is protected by the patent law.

Claims

1. A bearing ring machining device with outer diameter detection function, comprising a machine table (1), characterized in that, The utility model provides a bearing ring grinding machine, including activity setting on the machine table (1) processing seat (2), be provided with the clamping assembly (3) for clamping and driving bearing ring rotation on processing seat (2), and the conveying assembly (4) for conveying bearing ring for clamping assembly (3), and be provided with the grinding assembly (5) for grinding bearing ring outer diameter on machine table (1), The machine table (1) is further provided with a detection assembly (6) for detecting the outer diameter of the bearing ring, the detection assembly (6) comprises a detection module (1.1) and an adjusting support (1.2) for adjusting the position of the detection module (1.1), and the detection module (1.1) comprises a detection main body (2.1), detection arms (2.2) arranged on both sides of the detection module (1.1), and abutting detection blocks (2.3) arranged on the detection arms (2.2), the abutting detection blocks (2.3) abut on the outer periphery of the bearing ring.

2. The bearing ring machining apparatus with an outer diameter detection function according to claim 1, characterized in that, The adjusting support (1.2) comprises a fixed plate (3.1) fixed on the machine table (1), a Y-axis adjusting block (3.2) arranged on the fixed plate (3.1), an X-axis adjusting block (3.3) arranged on the Y-axis adjusting block (3.2), and a Z-axis adjusting block (3.4) arranged on the Y-axis adjusting block (3.2), and the detection module (1.1) is fixed on the Z-axis adjusting block (3.4).

3. The bearing ring machining apparatus with an outer diameter detection function according to claim 2, characterized in that, A first adjusting groove (4.1) extending in the Y-axis direction of the fixed plate (3.1) is formed on the Y-axis adjusting block (3.2), and a first connecting hole (4.2) connecting the first adjusting groove (4.1) is formed on the fixed plate (3.1).

4. The bearing ring machining apparatus with an outer diameter detection function according to claim 2, characterized in that, A second adjusting groove (4.3) extending in the X-axis direction of the fixed plate (3.1) is formed on the X-axis adjusting block (3.3), and a second connecting hole (4.4) connecting the second adjusting groove (4.3) is formed on the Y-axis adjusting block (3.2).

5. The bearing ring machining apparatus with an outer diameter detection function according to claim 2, characterized in that, Adjusting protrusions (5.1) are formed on the Y-axis adjusting block (3.2) and the X-axis adjusting block (3.3), and adjusting screws (5.2) are arranged on the adjusting protrusions (5.1), the adjusting screws (5.2) on the Y-axis adjusting block (3.2) are threadedly connected with the fixed plate (3.1), and the adjusting screws (5.2) on the X-axis adjusting block (3.3) are threadedly connected with the Y-axis adjusting block (3.2).

6. The bearing ring machining apparatus with an outer diameter detection function according to claim 2, characterized in that, A connecting plate (4.5) extending along the Z-axis and the X-axis of the fixed plate (3.1) is formed on the X-axis adjusting block (3.3), and a third adjusting groove (4.6) is formed on the connecting plate (4.5), and a third connecting hole (4.7) connecting the third adjusting groove is formed on the Z-axis adjusting block (3.4).

7. The bearing ring machining apparatus with an outer diameter detection function according to claim 2, characterized in that, A first sliding block (5.3) slidable in the Y-axis direction of the fixed plate (3.1) is arranged on the Z-axis adjusting block (3.4), a second sliding block (5.4) slidable in the Z-axis direction of the fixed plate (3.1) is arranged on the first sliding block (5.3), and the detection module (1.1) is fixed on the second sliding block (5.4).

8. The bearing ring machining apparatus with an outer diameter detection function according to claim 7, characterized in that, The Z-axis adjusting block (3.4) and the first sliding block (5.3) are formed with sliding convex parts (5.5), and the first sliding block (5.3) and the second sliding block (5.4) are formed with sliding grooves (5.6) matched with the sliding convex parts (5.5).

9. The bearing ring machining apparatus with an outer diameter detection function according to claim 8, characterized in that, The first sliding block (5.3) and the second sliding block (5.4) are provided with fixed blocks (6.1) on the sides, and the fixed blocks (6.1) are inserted with fixed screws (6.2), which are threadedly connected with the first sliding block (5.3) and the second sliding block (5.4). The fixed screws (6.2) are rotated to make the fixed screws (6.2) press the sliding convex parts (5.5) and force the first sliding block (5.3) and the second sliding block (5.4) to remain at the current positions.

10. The bearing ring machining apparatus with an outer diameter detection function according to claim 7, characterized in that, The second sliding block (5.4) is provided with a plurality of fixed holes (6.3) arranged at intervals, which are connected with the detection module (1.1).