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增材复合材料技术在生产过程中用于紧和操纵装置的应用
Richard Joch1, Michal Šajgalík1, Mário Drbúl1
1Department of Machining and Manufacturing Technology, Faculty of Mechanical Engineering, University of Žilina, Univerzitná 1, 010 26 Žilina, Slovakia.
Materials (Basel, Switzerland)
|May 27, 2023
概括
增材制造为金属部件提供了有希望的替代品. 这项研究表明,使用添加剂技术制造的欧尼克斯复合有效地抓住材料而不会造成变形,与传统的金属不同.
科学领域:
- 材料科学 材料科学 材料科学
- 制造业 工程 制造工程
- 增材制造 增材制造 增材制造
背景情况:
- 添加技术越来越多地在各个行业中使用,材料选择对组件功能至关重要.
- 具有增强机械性能的材料的进步推动了人们对用增材制造的替代品取代金属零件的兴趣.
- 奥尼克斯是一种充满碳纤维的短纤维材料,在增材制造中显示出提高机械性能的潜力.
研究的目的:
- 通过实验验证尼龙和复合材料的使用,以取代金属接元件.
- 为了评估CNC加工中心三式机中增材制造的的性能.
- 为了评估压紧聚二甲 (PTFE) 聚合物材料上的变形效应.
主要方法:
- 定制的下巴设计为一个三的查克数控加工中心.
- 实验测试金属,尼龙和奥尼克斯复合.
- 在不同压力下监测紧PTFE材料的功能和变形.
主要成果:
- 金属造成了PTFE显著的变形,包括裂和永久的形状变化,随着紧固压力而变化.
- 尼龙和奥尼克斯复合,通过增材制造生产,在所有测试压力中有效运行.
- 附加制造的下巴防止了紧的PTFE材料的永久变形,与金属下巴不同.
结论:
- 奥尼克斯材料适用于通过添加技术制造抓地元件.
- 增材制造提供了一种可行的方法来减少敏感材料的紧诱导的变形.
- 尼龙和复合机为特定应用提供了比金属更好的替代品,最大限度地减少了材料损坏.
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