一种用于加工电磁阀铜套的车床
By designing a lathe for machining copper sleeves of solenoid valves, and adopting automated storage and supply of bar stock storage and feeding components, the problems of low efficiency of manual feeding and high cost of robotic arms are solved, realizing low-cost, high-efficiency automated feeding and processing, and adapting to the needs of high-speed production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO FENGHUA JUNTENG MASCH MFG CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-07-17
AI Technical Summary
In the current processing of copper sleeves for solenoid valves, manual loading is labor-intensive and inefficient, while robotic loading is costly and difficult to maintain, making it difficult to meet the needs of high-speed production.
Design a lathe for machining copper sleeves of solenoid valves, including a bar stock storage assembly and a feeding assembly to achieve automated storage and supply. Through the coordinated work of the clamping assembly, tool post assembly and feeding assembly, the automatic feeding and machining of bar stock can be achieved.
It achieves a low-cost, simple-to-operate automated feeding process, improves production efficiency, reduces equipment failure rate and maintenance difficulty, and adapts to the needs of high-speed production.
Smart Images

Figure CN224509136U_ABST
Abstract
Claims
1. A lathe for machining a copper sleeve of a solenoid valve, characterized by comprising: include: Lathe body (1), used to process bar stock into sleeves; A clamping assembly (2) is disposed on one side of the top of the lathe body (1) and is used to fix the bar stock and drive the bar stock to rotate. The clamping assembly (2) includes a chuck (21) rotatably disposed on the lathe body (1). The tool post assembly (3) is located on the side of the lathe body (1) away from the clamping assembly (2) for mounting the cutting tool and machining the bar stock; The bar stock storage assembly (4) is located on the top of the lathe body (1) near the tool post assembly (3) to store the bar stock to be processed; The loading assembly (5) is located at the bottom of the lathe body (1) and can transport the bar stock into the chuck (21); The bar stock storage assembly (4) includes a bar stock storage box (41) for storing bar stock, which is fixed to the top of the lathe body (1) by a fixing frame. The loading assembly (5) includes a lifting plate (51) that can move up and down and transport the bar stock to the chuck (21). The lifting plate (51) is also provided with a guide groove (511) for limiting the bar stock. The loading assembly (5) also includes a pusher plate (54) that can move back and forth along the guide groove (511) and push the bar stock to the chuck (21). The bar stock storage assembly (4) also includes a distribution wheel (42) that is rotatably disposed at the bottom inside the bar stock storage box (41) and transports the bar stock one by one to the guide groove (511).
2. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 1, characterized in that, The material distribution wheel (42) has a number of bar storage slots (421) evenly distributed on it for storing bar stock. The bar stock storage assembly (4) also includes a drive mechanism set on the bar stock storage box (41) for driving the material distribution wheel (42) to rotate.
3. A lathe for machining copper sleeves of solenoid valves according to claim 2, characterized in that, The driving mechanism includes a third rotary drive (43) fixed on the bar storage box (41), and the output end of the third rotary drive (43) is also connected to a third pulley (431). The driving mechanism also includes a fourth pulley (432) coaxially connected to the material distribution wheel (42). The third pulley (431) and the fourth pulley (432) are connected by a belt.
4. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 3, characterized in that, The bar stock storage assembly (4) further includes an adjustment plate (411) disposed inside the bar stock storage box (41) for adjusting the effective space inside the bar stock storage box (41). The bar stock storage assembly (4) includes a first telescopic drive member (412) installed on the upper side of the bar stock storage box (41) for driving the adjustment plate (411) to move back and forth. The output end of the first telescopic drive member (412) is connected to the adjustment plate (411). The adjustment plate (411) is also provided with a first slide rod (413) that is slidably connected to the bar stock storage box (41).
5. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 1, characterized in that, The feeding assembly (5) includes a third telescopic drive (55) that reciprocates along the length of the lifting plate (51) and is used to drive the pusher plate (54) to reciprocate.
6. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 5, characterized in that, The loading assembly (5) also includes a fixed plate (52) fixed inside the lathe body (1) near the bottom, and a second telescopic drive member (53) that can drive the lifting plate (51) to move up and down is also provided at the bottom of the fixed plate (52). The loading assembly (5) also includes a second slide rod (56) that is vertically arranged on the lifting plate (51) and slidably connected to the fixed plate (52).
7. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 1, characterized in that, The clamping assembly (2) further includes a first rotary drive (22) mounted on the lathe body (1), and the output end of the first rotary drive (22) is connected to a second pulley (221). One end of the chuck (21) passes through the lathe body (1) and is connected to a first pulley (211). The first pulley (211) and the second pulley (221) are connected by a belt.
8. The lathe for machining the copper sleeve of the electromagnetic valve according to claim 1, characterized in that, The tool post assembly (3) also includes a tool post body (31) that reciprocates along the length of the lathe body (1). The tool post assembly (3) also includes a lead screw (32) that is rotatably mounted on the lathe body (1) for driving the tool post body (31) to reciprocate. The tool post assembly (3) also includes a second rotary drive (33) that is fixed on the lathe body (1) and is used to drive the lead screw (32) to rotate.