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Experimental study and finite element analysis on the frame of multi-directional forging press

机译:多向锻造压力机框架的实验研究与有限元分析

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摘要

With the development of multi-directional forging technology, heavy multi-directional forging press has been widely used in manufacturing industry. However, there is a contradiction between the independence of structure and the independence of mechanics, which becomes a bottleneck and limits the development of heavy multi-directional forging press tonnage. For the contradiction, a novel pre-stressed wire-wound orthogonal preload frame structure is proposed in this article to solve the problem, and the stiffness and deformation characteristic of pre-stressed wire-wound orthogonal preload frame structure under three loading states (vertical-horizontal loading, vertical loading and horizontal loading) are analyzed by finite element analysis and the 1:10 model experiment of 400-MN multi-directional forging press whose loading tonnage in the horizontal direction is the largest tonnage in the world. The results show that pre-stressed wirewound orthogonal preload frame structure has advantages in large stiffness, high strength and excellent integrity under a reasonable preload coefficient. Furthermore, pre-stressed wire-wound orthogonal preload frame structure can satisfy the design requirement for carrying frame of heavy multi-directional forging press and may promote the development of multi-directional forging technology and related equipment industry.
机译:随着多向锻造技术的发展,重型多向锻造压力机已广泛用于制造业。然而,在机械结构的独立性和独立性之间存在矛盾,这成为瓶颈并限制了重型多向锻造压力机吨位的发展。为了矛盾,在本文中提出了一种新的预应力线缠绕正交预加载框架结构,以解决三个加载状态下预应力的线缠绕正交预加载框架结构的问题,以及垂直 - 通过有限元分析分析水平装载,垂直装载和水平装载)和400 MN多向锻造压机的1:10模型实验,其水平方向的装载吨位是世界上最大的吨位。结果表明,在合理的预载系数下,预应力的线绕正交预加载框架结构具有大的刚度,高强度和优异的完整性。此外,预应力的线缠绕正交预载框架结构可以满足重型多向锻造压力机框架的设计要求,可以促进多向锻造技术和相关设备行业的发展。

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