Study on the preparation and mechanical properties of purple ceramics

Author:

Wang Lihe,Wang Yonghui,Wang Qingchun,Ma Yuwei,Ruan Fei,Zhang Yonghe,Lv Haodong,Jing Qiang,Bao Jinxiao

Abstract

AbstractThis paper aims at preparing a smart wearable purple ceramic that meet the color requirements of purple smart wear in the market after using zirconate neodymium as a chromogenic agent. However, the mechanical performance of zirconate neodymium purple ceramic is not satisfactory, especially it has an extremely low fracture toughness. To solve this, a 3 mol% yttria-stabilized zirconia (3YSZ) is added to zirconate neodymium in the preparation of multiphase ceramics to improve its mechanical properties. In this experiment, a series of ceramic samples with addition of increasing amount of 3YSZ 0, 20, 40, 50, 60, 70 and 80% were prepared in the 1400–1500 °C sintering temperature range. It was found that at the same temperature, the mechanical properties of the ceramic samples gradually improved with the increase in the 3YSZ content. Moreover, with the same content, the mechanical properties of the ceramic samples gradually improved with the decrease in temperature. The results show that when 3YSZ has a mass fraction of 80% and is sintered at 1400 °C, the fracture toughness of the prepared ceramic samples reaches 8.15 MPa‧m1/2, which is nearly two times higher than that of the monolithic neodymium zirconate 2.57 MPa‧m1/2. The Vickers hardness of the prepared ceramic samples reached 12.93 GPa, which is nearly 88% higher than the undoped neodymium zirconate. This indicates that the samples can be applied in smart wearables, such as mobile phone backplane, with a certain practical significance for engineering toughening of zirconate ceramics.

Funder

Research Initiation Fund of Inner Mongolia University of Science and Technology

Basic Scientific Research Business Fund Project of Universities Directly Under the Inner Mongolia Autonomous Region

Inner Mongolia Higher Education Science and Technology Research Project

the Natural Science Foundation of Inner Mongolia

the Scientific Research Fund of Higher Education in Inner Mongolia Autonomous Region

National Natural Science Foundation of China

Program for Innovative Research Team in Universities of Inner Mongolia Autonomous Region

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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