课题基金 / 基金详情

EPSRC supported EngD project: Thermo-Mechanical Modelling for Structural Ceramics

EPSRC supported EngD project: Thermo-Mechanical Modelling for Structural Ceramics
EPSRC 支持的工程项目:结构陶瓷的热机械建模
批准号:
2351147
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --

项目摘要

项目成果

相似基金

相关文献

中文摘要
翻译
疲劳断裂是工程陶瓷材料在循环热载荷作用下裂纹萌生、扩展并最终失效的失效模式之一。疲劳裂纹扩展的有效预测有助于对产品耐久性做出工程决策。传统的巴黎定律或J积分不足以预测复杂的3D几何形状(例如来自增材层制造的3D周期结构)中的裂纹生长。作为一种替代方法,相场模型受到越来越多的关注。在这种方法中,它是可能的模型与时间在微裂纹陶瓷的塑性和弹性变形。模型预测还可用于跟踪结构中的较弱区域以及施加的载荷条件对产品耐久性的严重程度。在扩展弹塑性陶瓷的相场模型和测量诸如蜂窝等复杂结构的模型输入参数(如断裂韧性、分离能、内聚强度、疲劳参数)方面存在知识差距。在这项工作中,将开发相场模型,以了解微裂纹系统的耐久性和新的实验技术将开发用于测量模型参数,利用设施,如高温弯曲试验,动态力学分析仪,高温脉冲激励,和纳米压痕。将在热冲击载荷条件下对模型材料进行模型预测验证。同样,这些模型将用于解释微裂纹陶瓷弹性性能中的可逆晶粒生长和滞后现象。该项目将专门解决JM的一些产品开发和质量控制需求。EngD学生将作为热处理组和质量控制团队的一个组成部分。JM正在这一领域建立增强的能力,实现模型驱动的制造和设计。EngD研究员将在该团队中发挥关键作用;开发定制的测量方法,给定产品配方的断裂模型。EngD的重点将是集团的基本研发需求,同时也参与商业环境中模型的试验和实施,并支持欧洲的不同制造基地。对于任何与英国脱欧的关注,这个位置是完全支付和赞助。
英文摘要
Fatigue fracture is one of the failure modes in engineering ceramics where crack initiates, propagates, and finally results in failure under cyclic thermal loading. The efficient prediction of fatigue crack growth helps make engineering decisions on product durability. The conventional Paris law or J-integrals are not enough to predict crack growth in complex 3D geometries such as 3D perioidic structures from additive layer manufacturing. As an alternative method, the Phase Field models have been receiving increasing attention. In this approach it is possible to model both plastic and elastic deformations with a time in microcracked ceramics. The model predictions can also be used to track weaker zones in the structure and the severity of the applied loading conditions on the product durability. There is a knowledge gap in extending the Phase Fieldd models for elasto-plastic ceramics and measuring model input parameters such as fracture toughness, separation energy, cohesive strength, fatigue parameters for such complex structures such as honeycombs. In this work, Phase Field models will be developed to understand the durability of the microcracked systems and novel experimental techniques will be developed for measuring model parameters by utilizing facilities like high temperature bending test, Dynamic Mechanical Analyser, high-temperature impulse excitation, and nanoindentation. The model predictions will be validated on model materials under thermal shock load conditions. Similarly, these models will be used to explain the revesible grain growth and hysteresis in the elastic properties of microcracked ceramics.This project will specifically address some of the product development and quality control needs of JM. The EngD student will work as an integral part of thermal processing group and quality control teams. JM is building an enhanced capability in this area, enabling the model driven manufacturing & design. The EngD researcher will play a key role within this team; developing bespoke measurement methods, fracture model for a given product formulations. The focus of the EngD will be the fundamental R&D needs of the group, but also being involved in trials and implementation of models in commercial environment and support different manufacturing sites in Europe. For any concern with Brexit, this position is fully paid and sponsored.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金