Acquisition of a Laser Engineered Net Shaping (LENS) System for Research and Education in Nanostructured Materials Manufacturing
Acquisition of a Laser Engineered Net Shaping (LENS) System for Research and Education in Nanostructured Materials Manufacturing
批准号:
0076498
负责人:
Enrique Lavernia
金额:
$30.15万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-10-01 至 2002-09-30
中文摘要
0076498拉维尼亚该奖项授予加州大学欧文分校,以表彰其收购激光工程净成形(LENSTM750型)工艺的设备,用于直接制造纳米结构涂层/层压复合材料。透镜过程利用计算机辅助设计实体模型来自动控制功能性、近净形状、全致密涂层、具有合理复杂特征的金属部件的制造。此外,LENSTM技术的独特之处在于,与传统工艺和快速成型(RP)技术相比,LENSTM技术具有直接制造部件的灵活性,包括创建“嵌入式”结构的能力、类似锻造材料的优异材料性能以及最小的浪费。这项研究将建立在对相关基本现象的一个坚实和详细的理解的基础上,制造纳米结构涂层/层压复合材料的基本问题。一个例子是某些类型的纳米结构材料固有的不同寻常的热稳定性。将讨论由LENSTM技术制造的纳米结构涂层和/或层状结构材料中的关键问题。通过改变粉末混合物和使用多个送粉器,LENSTM设备将用于制造由各种材料制成的功能梯度涂层和层压复合材料。Pi‘S将制作功能梯度纳米结构涂层/层压板,并研究相关的基本现象(即界面结合、热应力、颗粒尺寸和生长)以及机械性能。%这是授予加州大学欧文分校的仪器采集奖。Lavernia教授和合作者将购买一台LENSTM型号750,用于激光工程净成型工艺,用于直接制造纳米结构涂层/层压复合材料。最近在纳米结构(也被描述为纳米晶、纳米相或纳米级)材料领域引起了极大的兴趣,其中颗粒尺寸通常在1-100纳米的范围内。当纳米晶材料中的原子尺寸足够小时,超过50%的原子可能与晶界或界面界共生。因此,与晶界相关的相邻原子之间的大量界面成分对纳米材料的物理性质有贡献。对这类或材料的兴趣是由它们不同寻常的物理性质所驱动的,例如非常高的强度和热稳定性。在纳米结构涂层的情况下,潜在的应用跨越了整个技术范围,从涡轮叶片的热障涂层到耐磨的旋转部件。新工具将加强UCI本科生和研究生的学科间培训。
英文摘要
0076498 LaverniaThis award to the University of California at Irvine is for the acquisition an equipment for Laser Engineered Net Shaping (LENSTM model 750) process, for the direct fabrication of nanostructured coatings/laminate composites. The LENS process utilizes computer-aided design solid models to automatically control the manufacture of functional, near-net shape, fully dense coatings metallic parts with reasonably complex features. Moreover, the LENSTM technique is unique in its flexibility for the direct fabrication of a component over conventional processing as well as Rapid Prototyping (RP) technologies, including the ability to create an "embedded" structure, superior material properties for a comparable wrought material, and minimum waste. The research will establish the fundamental issues underlying the fabrication of nanostructured coatings/laminate composites based one firm and detailed understanding of the relevant fundamental phenomena. One example is the unusual thermal stability inherent to certain types of nanostructured materials. Critical issues in nanostructured coating and/or layered structural materials fabricated by LENSTM technology will be addressed. By varying powder mixture and using multiple powder feeders, the LENSTM facility will be used to fabricate a functionally gradient coating and laminate composites from a variety of materials. The PI 's will fabricate functionally gradient nanostructured coatings/laminates, and investigate the related fundamental phenomena (i.e., interfacial bonding, thermal stress, and grain size and growth) as well as mechanical properties will be investigated.%%%This is an instrument acquisition award to the University of California at Irvine. Professor Lavernia and collaborators will purchase a LENSTM model 750 for Laser Engineered Net Shaping process, for the direct fabrication of nanostructured coatings/laminate composites. Significant interest has been generated recently in the field of nanostructured (also described as nanocrystalline, nanophase, or nanoscale) materials, in which the grain size is usually in the range of 1-100 nanometers. More than 50 volume percent of atoms in nanocrystalline materials may be associated with grain boundaries or interfacial boundaries when the grain size is small enough. Thus, a significant amount of interfacial component between neighboring atoms associated with grain boundaries contributes to the physical properties of nanocrystalline materials. Interest in this class or materials is driven by their unusual physical properties, such as a very high strength and thermal stability. In the case of nanostructured coatings, the potential applications span the entire spectrum of technology, from thermal barrier coatings for turbine blades to wear resistant rotating parts. The new instrument will strengthen the interdiciplinary training of undergraduate and graduate students at UCI.
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