Effect of Process Parameters on Spinning Force and Forming Quality of Deep Cylinder Parts in Multi-Pass Spinning Process

Author:

Li Libo12,Chen Siyuan34,Lu Qinying34,Shu Xuedao34ORCID,Zhang Jun12,Shen Weiwei12

Affiliation:

1. Healthy & Intelligent Kitchen Engineering Research Center of Zhejiang Province, Ningbo 315336, China

2. Ningbo Fotile Kitchen Ware Company, Ningbo 315336, China

3. Faculty of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China

4. Zhejiang Provincial Key Laboratory of Part Rolling Technology, Ningbo 315211, China

Abstract

In this paper, based on MSC Simufact.Forming v16.0 simulation software, the process parameters in the multi-pass spinning production of deep cylinders with a large diameter–thickness ratio are optimized, and the ten-pass spinning process of a deep cylinder with a diameter of 500 mm, thickness of 2 mm and depth of 700 mm is realized. By controlling the four process parameters of mandrel speed, feed rate, spinning wheel fillet radius and spinning wheel angle of attack, the influence of the four process parameters on the spinning force and the wall thickness deviation of the formed workpiece is studied. The results show that the radial spinning force and tangential spinning force are at their minimum when the mandrel speed, feed rate, spinning wheel fillet radius and spinning wheel angle of attack are 500 rpm, 1 mm/rev, 6 mm and 35°, respectively. At these setup conditions, the spinning efficiency is the highest and the workpiece is not prone to defects. The wall thickness deviation of the workpiece will decrease with the increase in the mandrel speed; with the increase in the feed rate, the radius of the round corner and spinning wheel angle of attack, the wall thickness deviation increases first and then decreases.

Funder

the Natural Science Foundation of Zhejiang, China

the National Natural Science Foundation of China

the Major Project of Science and Technology Innovation 2025 in Ningbo City, China

the Scientific Research Foundation of Graduate School of Ningbo University

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference27 articles.

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4. Wang, X.X., Zhan, M., Guo, J., and Zhao, B. (2016). Evaluating the Applicability of GTN Damage Model in Forward Tube Spinning of Aluminum Alloy. Metals, 6.

5. Shi, L., Xiao, H., and Xia, Q.X. (2017, January 21–22). Study on Forming Mechanism of DP600 High Strength Steel Multi-pass Deep Drawing Spinning. Proceedings of the 11th China Iron and Steel Annual Conference, Beijing, China.

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