一种动态拉伸方法,使用一个修改的M型样本,由Split Hopkinson压力杆加载
Yuan Lin1,2, Jitang Fan3, Xinlu Yu4
1Key Laboratory of Impact and Safety Engineering (Ningbo University), Ministry of Education, Ningbo 315211, China.
本研究提出了一种新的动态拉伸方法,使用修改的M型样品和分裂的霍普金森压力杆 (SHPB) 来测试3D打印的不钢. 该方法准确地测量了超高拉伸率和大变形的材料特性.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 实验力学 实验力学 实验力学
背景情况:
- 可靠的动态机械性能对于材料选择和结构设计至关重要.
- 构成模型需要在动态负载条件下进行实验验证.
研究的目的:
- 引入和验证一种新的动态抗拉试验方法.
- 评估3D打印不钢在高拉变速率下的动态拉伸行为.
主要方法:
- 使用了一种经过修改的M型标本,带有分裂的霍普金森压力杆 (SHPB).
- 采用有限元模拟和实验验证的样品设计.
- 使用17-4PH不钢粉末的3D精选激光化 (SLM) 制造的样品.
- 在广泛的拉伸率范围内进行了拉伸试验 (近静态到5900s-1).
主要成果:
- 验证了M型样本设计的力量平衡和均变形.
- 成功评估了不钢在高拉变速率下的动态拉伸行为.
- 实现了超高的拉伸率和大型塑料变形测量.
结论:
- 开发的动态拉伸方法在极端条件下对材料进行表征是有效的.
- 这种技术可以准确评估3D打印不钢的动态机械性能.
- 该研究有助于开发高级构成模型,用于高应变率的应用.
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