使用多参数理想身体模型,对3D打印的烯二丁烯和烯材料的3D打印元件进行风湿学分析
1Department of Metrology and Unconventional Manufacturing Methods, Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, Kielce, Poland.
3D printing and additive manufacturing
|May 1, 2024
概括
这项研究使用多参数模型研究了烯二丁烯和烯 (ABS) 的风湿性质. 层高度显著影响ABS形学,模型准确预测3D打印部件的实验数据.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 添加剂制造 添加剂制造 添加剂制造
背景情况:
- 增材制造 (三维打印) 越来越多地用于工业应用,需要对印刷材料的机械性能进行研究.
- 烯二甲和烯 (ABS) 是一种常见的3D打印材料,以其硬度和耐热性而闻名.
- 了解ABS的质性质对于其在功能部件中的应用至关重要.
研究的目的:
- 在不同的3D打印参数下研究ABS材料的质性质.
- 评估层高度和打印方向对弹性模块和动态粘度的影响.
- 评估多参数理想人体模型的预测准确性,以评估ABS的风湿学.
主要方法:
- 使用多参数理想身体模型 (马克斯韦尔-维赫特和凯尔文-沃伊特) 来分析ABS.
- 评估了包括压力放松和爬行在内的质现象.
- 评估了层高度和打印方向对材料性能的影响.
主要成果:
- 证明了层高度对ABS的质性质有明显的影响.
- 计算了弹性模块和动态粘度系数,使用已建立的风湿学模型.
- 在多参数风湿学模型和实验数据之间实现了非常好的匹配.
结论:
- 这项研究证实了层高度对3D打印ABS的风湿性行为的显著影响.
- 多参数风学模型为ABS材料属性提供了准确的预测.
- 这些发现支持在设计汽车和航空航天行业的机械零件时使用3D打印的ABS.
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