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医疗器械部件钛板成型的数值与实验分析

Numerical and Experimental Analysis of Titanium Sheet Forming for Medical Instrument Parts.

作者信息

Więckowski Wojciech, Motyka Maciej, Adamus Janina, Lacki Piotr, Dyner Marcin

机构信息

Faculty of Mechanical Engineering and Computer Science, Czestochowa University of Technology, 69 Dabrowskiego St., 42-201 Czestochowa, Poland.

Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, 12 Powstancow Warszawy Ave., 35-959 Rzeszow, Poland.

出版信息

Materials (Basel). 2022 Feb 25;15(5):1735. doi: 10.3390/ma15051735.

Abstract

The paper analyses the forming of the surgical instrument handles made of Grade 2 titanium sheets. Sheet metal forming is a technology ensuring high strength and light weight of products. Replacing stainless steels with titanium further reduces instrument weight and additionally provides the required resistance to corrosive environments typical for surgeries. The low instrument weight is important to prevent fatigue of surgeons and allow them to maintain high operational accuracy during long term surgeries. The numerical analysis of the technological process was performed in order to adapt it to forming tool handles using titanium sheets instead of steel sheets. The numerical calculations were experimentally verified. It was found that, in the case of titanium handles, it is necessary to use a blank holder in the first forming operation to eliminate sheet wrinkling in the flange area. The shape and dimensional accuracy of the drawn part after trimming were high enough and the 4th forming operation became unnecessary. Moreover, the process modification included lubrication using rapeseed oil with the addition of boric acid, which effectively prevents the galling of titanium on the working surfaces of the steel tools and ensures a more uniform distribution of plastic strains in the drawn part.

摘要

本文分析了由2级钛板制成的手术器械手柄的成型过程。金属板成型是一种确保产品高强度和轻量化的技术。用钛替代不锈钢进一步减轻了器械重量,并额外提供了手术中典型的耐腐蚀环境所需的抵抗力。器械重量轻对于防止外科医生疲劳以及使他们在长期手术中保持高操作精度很重要。进行了工艺过程的数值分析,以便使其适用于使用钛板而非钢板来成型工具手柄。数值计算经过了实验验证。结果发现,对于钛制手柄,在第一次成型操作中需要使用压边圈以消除法兰区域的板材起皱。修边后拉伸件的形状和尺寸精度足够高,因此第四次成型操作变得不必要。此外,工艺改进包括使用添加了硼酸的菜籽油进行润滑,这有效地防止了钛在钢制工具工作表面上的擦伤,并确保了拉伸件中塑性应变更均匀的分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a8b/8911491/a9720f425023/materials-15-01735-g001.jpg

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