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利用放电等离子烧结(SPS)设备对TRIP钢/Al₂O₃-(3Y)-四方相氧化锆多晶体复合材料与(3Y)-四方相氧化锆多晶体陶瓷进行连接。

Bonding of TRIP-Steel/Al₂O₃-(3Y)-TZP Composites and (3Y)-TZP Ceramic by a Spark Plasma Sintering (SPS) Apparatus.

作者信息

Miriyev Aslan, Grützner Steffen, Krüger Lutz, Kalabukhov Sergey, Frage Nachum

机构信息

Department of Mechanical Engineering, Columbia University, New York, NY 10027, USA.

Institute of Materials Engineering, TU Bergakademie Freiberg, Freiberg 09599, Germany.

出版信息

Materials (Basel). 2016 Jul 9;9(7):558. doi: 10.3390/ma9070558.

Abstract

A combination of the high damage tolerance of TRIP-steel and the extremely low thermal conductivity of partially stabilized zirconia (PSZ) can provide controlled thermal-mechanical properties to sandwich-shaped composite specimens comprising these materials. Sintering the (TRIP-steel-PSZ)/PSZ sandwich in a single step is very difficult due to differences in the sintering temperature and densification kinetics of the composite and the ceramic powders. In the present study, we successfully applied a two-step approach involving separate SPS consolidation of pure (3Y)-TZP and composites containing 20 vol % TRIP-steel, 40 vol % Al₂O₃ and 40 vol % (3Y)-TZP ceramic phase, and subsequent diffusion joining of both sintered components in an SPS apparatus. The microstructure and properties of the sintered and bonded specimens were characterized. No defects at the interface between the TZP and the composite after joining in the 1050-1150 °C temperature range were observed. Only limited grain growth occurred during joining, while crystallite size, hardness, shear strength and the fraction of the monoclinic phase in the TZP ceramic virtually did not change. The slight increase of the TZP layer's fracture toughness with the joining temperature was attributed to the effect of grain size on transformation toughening.

摘要

相变诱发塑性钢(TRIP-钢)的高损伤容限与部分稳定氧化锆(PSZ)的极低热导率相结合,可为包含这些材料的三明治形状复合试样提供可控的热机械性能。由于复合材料和陶瓷粉末的烧结温度及致密化动力学存在差异,一步烧结(TRIP-钢-PSZ)/PSZ三明治非常困难。在本研究中,我们成功应用了两步法,即先分别对纯(3Y)-四方相氧化锆多晶体(TZP)以及含有20体积%TRIP-钢、40体积%氧化铝(Al₂O₃)和40体积%(3Y)-TZP陶瓷相的复合材料进行放电等离子烧结(SPS)固结,然后在SPS设备中将两个烧结部件进行后续扩散连接。对烧结和连接后的试样的微观结构及性能进行了表征。在1050 - 1150℃温度范围内连接后,未观察到TZP与复合材料之间的界面存在缺陷。连接过程中仅发生了有限的晶粒生长现象,而TZP陶瓷中的微晶尺寸、硬度、剪切强度以及单斜相比例实际上并未改变。TZP层的断裂韧性随连接温度的轻微增加归因于晶粒尺寸对相变增韧的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b971/5456850/3b6ef84a7a2d/materials-09-00558-g001.jpg

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