一种双头筒体坡口车床

By designing a double-head cylinder beveling lathe, and utilizing the cooperation of the feeding mechanism and the limit chuck, the automated beveling process of both ends of the cylinder body was realized, solving the problems of low efficiency and inconsistent precision of existing equipment, and improving production efficiency and quality.

CN224508469UActive Publication Date: 2026-07-17FOSHAN SHUNDE LINGTAI PRESSURE VESSEL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN SHUNDE LINGTAI PRESSURE VESSEL CO LTD
Filing Date
2025-08-14
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing beveling equipment is unable to automate the processing of both ends of the cylinder body, resulting in low production efficiency and inconsistent precision.

Method used

A double-head cylinder beveling lathe was designed, which includes a feeding mechanism, a support plate, a cutting tool assembly and a drive motor. Through the cooperation of linear transmission of the lead screw and the limit chuck, the automated clamping and processing of both ends of the cylinder is realized.

Benefits of technology

The automated beveling process at both ends of the cylinder body has been achieved, which improves production efficiency and ensures the consistency of processing accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及筒体加工设备技术领域,尤其公开了一种双头筒体坡口车床,包括:用于上下料的送料机构,支撑平板,车刀组件,以及驱动电机;支撑平板的两端均滑动设置有滑动平板,支撑平板的底部设置有转动丝杆,驱动电机的动力输出端与转动丝杆的一端传动连接,转动丝杆的外部套设有与滑动平板底部固定连接的移动块,滑动平板上设置有轴承座,车刀组件设在轴承座的外部,轴承座的中部穿设有转动轴件,转动轴件的一端设置有用于固定筒体端部的限位卡盘,任一块滑动平板的外部设置有转动电机,转动电机的动力输出端与其中一根转动轴件的一端传动连接,有效地实现了自动化地对筒体进行上下料,并对筒体两端依次进行坡口加工,提高了工作效率。
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Claims

1. A double-end barrel grooving lathe characterized by, include: The feeding mechanism, support plate, cutting tool assembly, and drive motor; Both ends of the support plate are slidably provided with sliding plates, and the bottom of the support plate is provided with a rotating screw. The power output end of the drive motor is connected to one end of the rotating screw, and a moving block is sleeved on the outside of the rotating screw and fixedly connected to the bottom of the sliding plate. The sliding plate is provided with a bearing seat, the cutting tool assembly is located outside the bearing seat, and a rotating shaft is passed through the middle of the bearing seat. One end of the rotating shaft is provided with a limiting chuck for fixing the end of the cylinder. A rotating motor is provided outside any of the sliding plates, and the power output end of the rotating motor is connected to one end of one of the rotating shafts. The feeding mechanism is located in the middle of the support plate. The feeding mechanism includes a moving plate and a pushing cylinder. The moving plate is slidably mounted on the support plate and is located between two sliding plates. The power output end of the pushing cylinder is connected to the outside of the moving plate. A lifting cylinder is provided on the moving plate. A lifting plate is provided on the power output end of the lifting cylinder. Both ends of the lifting plate are provided with bearing plates.

2. A double-end barrel grooving lathe according to claim 1, wherein A centering mechanism is provided at the bottom of one end of the lifting plate. The centering mechanism includes a fixed plate and a telescopic cylinder. The telescopic cylinder is located outside the fixed plate. Two moving racks are slidably arranged on the fixed plate. A transmission guide wheel is rotatably arranged at the center of the fixed plate. The power output end of the telescopic cylinder is connected to one end of one of the moving racks. Both moving racks are tangent to the transmission guide wheel. A limit plate is provided at the other end of both moving racks.

3. A double-end barrel grooving lathe according to claim 1, wherein The cutting tool assembly is mounted on the sliding plate. The cutting tool assembly includes a tool holder and a connecting plate. The connecting plate is fixed on the sliding plate, and a translation plate is slidably mounted on the connecting plate. The tool holder is located on the translation plate, and the cutting tool tip on the tool holder is close to the limiting chuck. The connecting plate is also provided with an electric cylinder for pushing the translation plate.

4. A double-end barrel grooving lathe according to claim 2, wherein When one end of the lifting plate is located at the top of the limiting plate, the transmission guide wheel is located directly below the bearing support plate, and one side of the limiting plate faces one end of the lifting plate.

5. A double-end barrel grooving lathe according to claim 1 wherein, The support plate is arranged in an arc shape, and the inner arc surface of the support plate is adapted to the outside of the cylinder.

6. A double-end barrel grooving lathe according to claim 1 wherein, The sliding plate is slidably disposed along the length direction of the supporting plate, and the movable plate is slidably disposed along the width direction of the supporting plate.

7. A double-end barrel grooving lathe according to claim 1 wherein, The bearing housing is also equipped with a limit cylinder on its top, and a push plate is provided on the power output end of the limit cylinder.