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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A fabrication methodology for dual-material engineering structures using ultrasonic additive manufacturing
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A fabrication methodology for dual-material engineering structures using ultrasonic additive manufacturing

机译:使用超声增材制造的双材料工程结构的制造方法

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摘要

The capabilities of additive manufacturing technologies to fabricate multi-material structures have been investigated in many studies. However, only a few of the technologies have been used to fabricate products for direct application. The full development of the capability will enable the fabrication of innovative engineering structures consisting of function-specific material members that cannot be realized using conventional methods. In this work, a methodology for fabricating dual-material engineering structures using ultrasonic additive manufacturing (UAM) was developed. An example structure consisting of members designed to carry tension and compression loads were fabricated using composite materials and Al 3003 matrix material respectively. MetPreg/Al 3003 and Ti/Al 3003 composite materials were respectively used as tension members in two different structure samples. Single-material copies of the dual-material structures were fabricated using Al 3003 for load-carrying capability comparison. The results of the load tests carried out shows that the dual-material structures could withstand much higher loads than similar structures entirely made of the matrix Al 3003 material. This is an indication that UAM can be effectively used to fabricate multi-material engineering structures.
机译:在许多研究中已经研究了增材制造技术制造多材料结构的能力。但是,只有少数技术用于制造直接应用的产品。功能的全面开发将使制造创新的工程结构成为可能,而这些工程结构是由功能特定的材料成员组成的,而这些材料是使用传统方法无法实现的。在这项工作中,开发了一种使用超声增材制造(UAM)制造双材料工程结构的方法。分别使用复合材料和Al 3003基体材料制造了一个示例结构,该结构由设计用来承受拉力和压缩载荷的构件组成。 MetPreg / Al 3003和Ti / Al 3003复合材料分别用作两个不同结构样品中的受拉构件。使用Al 3003制作了双材料结构的单材料副本,用于比较承载能力。进行的载荷测试结果表明,与完全由基体Al 3003材料制成的类似结构相比,双材料结构可以承受更高的载荷。这表明UAM可以有效地用于制造多材料工程结构。

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