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Microstructural Design And Mechanical Properties Of Porous Silicon Nitride Ceramics

机译:多孔氮化硅陶瓷的显微组织设计和力学性能

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摘要

In structural materials, pores are generally believed to deteriorate the mechanical reliability. This paper, however, shows that pores can cause improved or unique performance when the sizes, shapes, and orientation of pores as well as grains are controlled in porous silicon nitrides. Two types of porous materials are dealt with; one is isotropic porous silicon nitrides, where fibrous grains are randomly oriented, and the other is for anisotropic porous silicon nitrides, where fibrous grains are substantially aligned in one direction. Particular emphasis is placed in substantially improved properties including fracture energy, fracture toughness, strain tolerance, and thermal shock resistance of the porous materials, even compared with those of the dense materials.
机译:在结构材料中,通常认为孔会降低机械可靠性。然而,本文表明,在多孔氮化硅中控制孔的尺寸,形状和方向以及晶粒时,孔可以导致改善的性能或独特的性能。处理两种类型的多孔材料。一种是各向同性的多孔氮化硅,其中纤维晶粒是无规取向的,另一种是用于各向异性的多孔氮化硅,其中纤维晶粒基本上沿一个方向排列。甚至与致密材料相比,尤其要强调的是实质上改善的性能,包括多孔材料的断裂能,断裂韧性,应变耐受性和耐热冲击性。

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