Student Support: 2022 Solid State Studies in Ceramics Gordon Research Conference: Coupled Phenomena in Ceramics Across Length Scales; South Hadley, Massachusetts; 7-12 August 2022
Student Support: 2022 Solid State Studies in Ceramics Gordon Research Conference: Coupled Phenomena in Ceramics Across Length Scales; South Hadley, Massachusetts; 7-12 August 2022
批准号:
2223283
负责人:
Ivar Reimanis
金额:
$1.04万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2022
资助国家:
美国
项目状态:
已结题
起止时间:
2022-05-01 至 2022-10-31
中文摘要
该补助金将支持研究生参加2022年陶瓷戈登研究会议的固态研究的注册费,该会议的副标题为陶瓷长度尺度上的耦合现象。副标题反映了基础科学主题,这些主题抓住了陶瓷的关键挑战,特别是包括下一代工程材料制造的进步,应用于能源,航空航天,汽车和微电子等广泛领域。会议将于2022年8月7日至12日在Mt.霍利奥克学院,南哈德利,MA。该会议的目的是将世界专家聚集在一起,讨论陶瓷研究的前沿,以推进美国的研究和工程,并使研究生和早期职业专业人士接触陶瓷科学的最新发现,使他们成为明天的领导者。这笔资金旨在鼓励研究生,特别是那些来自代表性不足的群体的研究生,参与加强他们的工程和科学教育。陶瓷的许多最有趣和技术相关的特性来自于耦合现象(机械,热,化学,电,磁,光),这些现象起源于原子和纳米长度尺度,但在所有尺度上都表现出来。陶瓷在极端条件下和/或远离平衡的复杂行为一方面导致了破译行为机制的挑战,另一方面也带来了创造具有前所未有性能的陶瓷的机会。先进制造业依赖于这些类型的科学进步。最近出现了各种各样的实验和理论工具,以揭示多物理,多尺度机制,在加工和服务过程中管理材料的行为。这些具体包括数据驱动的原子和介连续计算建模方法的出现,新颖的原位实验和极端条件下的测量。先进制造是陶瓷未来的重要组成部分,将嵌入整个会议的会议中。会议将明确解决先进制造包括实现结构陶瓷和复杂结构的加工的特殊响应。该会议旨在推动陶瓷领域的发展,将不同学科的专家聚集在一起,讨论最新的发现和进展,并确定该领域的发展方向。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This grant will support the registration fee costs for graduate students to attend the 2022 Solid State Studies in Ceramics Gordon Research Conference, subtitled Coupled Phenomena in Ceramics Across Length Scales. The subtitle reflects basic science topics that capture the key challenges in ceramics, including in particular the advancement of manufacturing for the next generation of engineering materials, with applications in a wide variety of sectors from energy, aerospace, automotive and microelectronics. The conference will be held August 7 - 12, 2022 at Mt. Holyoke College, South Hadley, MA. The purpose of the conference is to bring world experts together to discuss the forefront of ceramics research to advance research and engineering in the United States and to expose graduate students and early career professionals to the latest findings in the science of ceramics so that they may become the leaders of tomorrow. The funding is meant to encourage graduate students, particularly those from underrepresented groups, to participate to enhance their engineering and science education. Many of the most interesting and technologically relevant properties of ceramics derive from coupled phenomena (mechanical, thermal, chemical, electrical, magnetic, optical) that originate at the atomistic and nanometer length scales, but manifest across all scales. The complex behavior of ceramics under extreme conditions and/or away from equilibrium leads, on the one hand, to challenges in deciphering behavioral mechanisms, and on the other, to opportunities to create ceramics with unprecedented properties. Advanced manufacturing depends on these types of scientific advances. A wide variety of experimental and theoretical tools have recently emerged to reveal multiphysical, multiscale mechanisms that govern material behavior during processing and service. These specifically include the emergence of data driven atomistic and mesocontinuum computational modeling approaches, novel in situ experiments, and measurements under extreme conditions. Advanced manufacturing is a critical part of the future of ceramics and will be embedded in sessions for the entire conference. Sessions that will explicitly address advanced manufacturing include Achieving Exceptional Responses in Structural Ceramics and Processing of Complex Structures. The conference is designed to advance the field of ceramics by bringing together experts across various disciplines to discuss the latest discoveries and advancements and define where the field will go.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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