Auxiliary device for taper machining of magnesium alloy pipe

By designing an auxiliary device for taper machining of magnesium alloy tubes, automated taper machining is achieved using support and adjustment components, solving the problem of dimensional inconsistency caused by traditional manual operation and improving product qualification rate and production efficiency.

CN223916685UActive Publication Date: 2026-02-17山西银光华盛镁业股份有限公司
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Patent Information

Application Number
CN202520905153.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-02-17
Estimated Expiration
2035-05-09

AI Technical Summary

Technical Problem

Traditional tapering of magnesium alloy tubes relies on manual operation, resulting in poor dimensional consistency, low product qualification rate, and difficulty in meeting high precision requirements.

Method used

Design an auxiliary device for taper machining of magnesium alloy tubes, including a lathe body, a lathe tool post and auxiliary components. Automated taper machining is achieved by using support components, slide rails, sliders, connecting frames and adjustment components, and machining accuracy is ensured by a dial and locking bolts.

Benefits of technology

This improved the dimensional consistency and product qualification rate of magnesium alloy tubes, reduced operational difficulty and production costs, and increased production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of magnesium alloy pipe machining, in particular to a magnesium alloy pipe taper machining auxiliary device which comprises a lathe body, a lathe tool rest and an auxiliary assembly, the auxiliary assembly comprises a supporting component, a sliding rail, a sliding block, a connecting frame and an adjusting component, the supporting component is connected with the lathe body, and the sliding rail is located above the supporting component. One end of the connecting frame is connected with the sliding block, the other end of the connecting frame is fixedly connected with a lathe tool rest, and the adjusting component is connected with the supporting component and the sliding rail. When the lathe automatically feeds, the lathe tool rest can move along the sliding rail with the taper adjusted in advance, so that the needed taper is machined, operation is simple, machining can be completed by common lathe operators, production efficiency is improved, the product percent of pass is increased, labor intensity of workers is reduced, and production cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of magnesium alloy tube processing technology, and in particular to an auxiliary device for processing the taper of magnesium alloy tubes. Background Technology

[0002] Traditional tapering of magnesium alloy tubes is usually performed on a conventional lathe, requiring operators with extensive experience and manual skills. Specifically, the operator must manually adjust the feed direction and speed of the tool according to the taper specified in the drawing to gradually machine the required taper.

[0003] However, due to the instability of manual operation, the dimensional consistency of the processed magnesium alloy tubes is poor, resulting in a low product qualification rate. This is especially true for larger magnesium alloy tapered tubes with high precision requirements, where traditional processing methods are insufficient to meet production demands. Utility Model Content

[0004] The purpose of this utility model is to provide an auxiliary device for taper processing of magnesium alloy tubes, which solves the problems of instability of manual operation, poor dimensional consistency of processed magnesium alloy tubes, and low product qualification rate.

[0005] To achieve the above objectives, this utility model provides an auxiliary device for machining the taper of magnesium alloy tubes, including a lathe body and a lathe tool post, wherein the lathe tool post is mounted on the lathe body, and also includes auxiliary components;

[0006] The auxiliary components include a support member, a slide rail, a slider, a connecting frame, and an adjusting member. The support member is connected to the lathe body, the slide rail is located above the support member, the slider is slidably connected to the slide rail, one end of the connecting frame is connected to the slider, and the other end is fixedly connected to the lathe tool post. The adjusting member is connected to both the support member and the slide rail.

[0007] The supporting component includes a support plate and a bracket. The bracket is fixedly connected to the lathe body, and the support plate is fixedly connected to the bracket and located below the slide rail.

[0008] The adjusting component includes a guide rail and a guide block. The guide rail is fixedly connected to the support plate and is located on the side of the support plate near the slide rail. The guide block is slidably connected to the guide rail and fixedly connected to the slide rail, and is located at the bottom of the slide rail.

[0009] The adjusting component further includes two dials, which are fixedly connected to the support plate and are respectively located at opposite ends of the slide rail.

[0010] The adjusting component further includes an auxiliary block, which is fixedly connected to the slide rail and located on the side wall of the slide rail.

[0011] The adjusting component further includes a locking bolt, which is threadedly connected to the auxiliary block and passes through the auxiliary block.

[0012] This utility model discloses an auxiliary device for machining the taper of magnesium alloy tubes. A slide rail is mounted on the lathe body via a supporting component. An adjusting component adjusts the shape of the slide rail to match the desired taper. A slider moves along the slide rail and is connected to the lathe tool post via a connecting bracket. During machining, when the lathe automatically feeds the tool, the lathe tool post moves along the pre-adjusted slide rail to achieve the required taper. The device is simple to operate and can be completed by a typical lathe operator, improving production efficiency, increasing product qualification rate, reducing labor intensity, and lowering production costs. Attached Figure Description

[0013] 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.

[0014] Figure 1 This is a schematic diagram of the overall structure of the magnesium alloy tube taper machining auxiliary device according to the first embodiment of this utility model.

[0015] Figure 2 This is the utility model Figure 1 Enlarged view of point A.

[0016] Figure 3 This is a cross-sectional structural schematic diagram of the auxiliary device for taper processing of magnesium alloy tubes according to the first embodiment of this utility model.

[0017] Figure 4 This is the utility model Figure 3 Enlarged view of point B.

[0018] In the diagram: 101-Lathe body, 102-Lathe tool post, 103-Slide rail, 104-Slider, 105-Connecting frame, 106-Support plate, 107-Bracket, 108-Guide rail, 109-Guide block, 110-Digital dial, 111-Auxiliary block, 112-Locking bolt. Detailed Implementation

[0019] 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.

[0020] The first embodiment of this application is as follows:

[0021] Please see Figures 1 to 4 ,in, Figure 1 This is a schematic diagram of the overall structure of the magnesium alloy tube taper machining auxiliary device according to the first embodiment of this utility model. Figure 2 This is the utility model Figure 1 Enlarged view of point A. Figure 3 This is a cross-sectional structural schematic diagram of the auxiliary device for taper processing of magnesium alloy tubes according to the first embodiment of this utility model. Figure 4 This is the utility model Figure 3 Enlarged view of point B.

[0022] This utility model provides an auxiliary device for taper machining of magnesium alloy tubes, including a lathe body 101, a lathe tool post 102, and auxiliary components. The auxiliary components include a support component, a slide rail 103, a slider 104, a connecting frame 105, and an adjusting component. The support component includes a support plate 106 and a bracket 107. The adjusting component includes a guide rail 108, a guide block 109, a dial 110, an auxiliary block 111, and a locking bolt 112. The aforementioned solution solves the problems of instability in manual operation, poor dimensional consistency of the machined magnesium alloy tubes, and low product qualification rate. It is understood that the aforementioned solution can also be used to solve the problem of stable support.

[0023] In this specific embodiment, the lathe tool post 102 is mounted on the lathe body 101. The support member is connected to the lathe body 101. The slide rail 103 is located above the support member. The slider 104 is slidably connected to the slide rail 103. One end of the connecting bracket 105 is connected to the slider 104, and the other end is fixedly connected to the lathe tool post 102. The adjusting member is connected to both the support member and the slide rail 103. The support member mounts the slide rail 103 on one side of the lathe body 101. The slide rail 103 cooperates with the slider 104 and slides along the slide rail 103. The connecting bracket 105 is mounted on the top of the slider 104. The other end of the connecting bracket 105 is bolted to the lathe tool post 102. The adjusting member is disposed between the support member and the slide rail 103 and is used to adjust the taper shape of the slide rail 103.

[0024] The bracket 107 is fixedly connected to the lathe body 101, and the support plate 106 is fixedly connected to the bracket 107 and located below the slide rail 103. The support plate 106 is disposed at the bottom of the slide rail 103 to support the slide rail 103, and the bracket 107 fixes the support plate 106 and the lathe body 101 respectively, thus providing a stable connection.

[0025] Secondly, the guide rail 108 is fixedly connected to the support plate 106 and is located on the side of the support plate 106 near the slide rail 103. The guide block 109 is slidably connected to the guide rail 108 and fixedly connected to the slide rail 103, and is located at the bottom of the slide rail 103. There are two guide rails 108, which are arranged opposite each other on both sides of the bottom of the slide rail 103 and have a certain curvature to facilitate adjustment of the tapered shape of the slide rail 103. The guide block 109 is slidably arranged on each guide rail 108, and the top of the guide block 109 is fixedly connected to the slide rail 103 to guide the adjustment of the slide rail 103.

[0026] Meanwhile, there are two dials 110, which are fixedly connected to the support plate 106 and are respectively located at both ends of the slide rail 103. The dials 110 have scales to facilitate observation of the tapered shape of the slide rail 103, thereby making its adjustment more precise.

[0027] In addition, the auxiliary block 111 is fixedly connected to the slide rail 103 and is located on the side wall of the slide rail 103. The locking bolt 112 is threadedly connected to the auxiliary block 111 and passes through the auxiliary block 111. The auxiliary block 111 moves with the slide rail 103. After the locking bolt 112 passes through the auxiliary block 111, it abuts against the support plate 106, thereby limiting the auxiliary block 111 on the support plate 106. Thus, the position of the slide rail 103 is fixed, and its tapered shape meets the requirements. There are multiple auxiliary blocks 111 and multiple locking bolts 112 to enhance the stability of the slide rail 103.

[0028] Using an auxiliary device for machining the taper of a magnesium alloy tube according to this embodiment, the bracket 107 mounts the support plate 106 on one side of the lathe body 101. A guide rail 108 is provided on the top of the support plate 106, and a guide block 109 is slidably mounted on the guide rail 108. A slide rail 103 is fixed to the top of the guide block 109, thereby mounting the slide rail 103 on the support plate 106. A slider 104 is slidably mounted on the slide rail 103, and the slider 104 is connected to the lathe tool post 102 via the connecting frame 105. Before machining, the guide rail... The guide block 108 and the guide block 109 adjust the taper shape of the slide rail 103. The rotation angle is observed according to the scale 110 to ensure that the taper shape meets the requirements. Then, the locking bolt 112 is screwed onto the auxiliary block 111 to fix the position of the slide rail 103. During processing, the lathe automatically feeds the tool, and the lathe tool post 102 moves along the slide rail 103 with the taper adjusted in advance to process the required taper. The operation is simple, and most lathe operators can complete the processing, which improves production efficiency, increases product qualification rate, reduces labor intensity of employees, and reduces production costs.

[0029] 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 magnesium alloy pipe taper processing auxiliary device, comprising a lathe body and a lathe tool rest, characterized in that, It also includes an auxiliary assembly; The auxiliary assembly includes a support member, a sliding rail, a sliding block, a connecting frame and an adjusting member, the support member is connected with the lathe body, the sliding rail is located above the support member, the sliding block is connected with the sliding rail, one end of the connecting frame is connected with the sliding block, the other end is fixedly connected with the lathe tool rest, and the adjusting member is connected with the support member and the sliding rail respectively.

2. The magnesium alloy pipe taper processing auxiliary device according to claim 1, characterized in that, The support member includes a support plate and a support frame, the support frame is fixedly connected with the lathe body, and the support plate is fixedly connected with the support frame and located below the sliding rail.

3. The magnesium alloy pipe taper processing auxiliary device according to claim 2, characterized in that, The adjusting member includes a guide rail and a guide block, the guide rail is fixedly connected with the support plate and located on one side of the support plate close to the sliding rail, the guide block is connected with the guide rail and fixedly connected with the sliding rail, and located at the bottom of the sliding rail.

4. The magnesium alloy pipe taper processing auxiliary device according to claim 3, characterized in that, The adjusting member further includes a scale disc, the number of the scale disc is two, and the two scale discs are fixedly connected with the support plate and respectively located at the two ends of the sliding rail.

5. The magnesium alloy pipe taper processing auxiliary device according to claim 3, characterized in that, The adjusting member further includes an auxiliary block, the auxiliary block is fixedly connected with the sliding rail and located on the side wall of the sliding rail.

6. The magnesium alloy pipe taper processing auxiliary device according to claim 5, characterized in that, The adjusting member further includes a locking bolt, the locking bolt is threadedly connected with the auxiliary block and penetrates through the auxiliary block.