• Microwave sintering is a very complex process.

    微波烧结一个非常复杂过程

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  • The technology and property of nanometer cermet is studied with new microwave sintering technology.

    采用微波烧结技术研究了纳米金属陶瓷材料烧结工艺性能

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  • As a new method of ceramic material sintering, microwave sintering has been improved rapidly in recent years.

    微波烧结作为一种陶瓷材料烧结方法近年得到飞速发展

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  • Microwave energy is a clean energy, and microwave sintering of magnetite concentrates is a new subject by microwave heating effect.

    微波清洁新型能源,利用微波的热效应进行磁铁精矿微波烧结是一项全新课题

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  • In experiment, microwave oven is used to simulate microwave sintering cavity, then temperature data are gained and model is established.

    通过试验,微波炉模拟微波烧结体测得温度数据,建立模型

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  • Microwave Sintering, as a new aspect on the study of ZTA ceramics, improves the bending strength and the fracture toughness KIC of ZTA and the micro structure.

    选用微波烧结工艺,对ZTA陶瓷力学性能进行研究,获得了较传统烧结工艺优良陶瓷力学强度断裂韧性。同时,新工艺改善了陶瓷体显微结构

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  • Principles, characteristics and equipment of microwave sintering are introduced for ceramics. This paper introduced the coefficient of microwave sintering and its application technic.

    介绍微波烧结原理特点、微波烧结设备工艺参数以及微波烧结技术陶瓷材料领域中的应用所取得研究成果。

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  • After analyzing the feature of microwave sintering and the specialty of this system, we propose the computer two-stage structure to realize the reliable control of microwave sintering temperature.

    本文在分析微波烧结温度工作过程特性系统特殊之处后,提出计算机两级控制系统的结构微波烧结温度进行了有效的控制。

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  • It was found that simultaneous sintering and joining could be completed successfully by microwave.

    结果表明,利用微波加热可以顺利实现陶瓷材料之间的同时烧结连接

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  • To lower temperature sintering is desired for the fabrication of multiplayer microwave ceramics.

    满足多层微波元件低温烧结需求,必须降低微波介质陶瓷的烧结温度。

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  • The result indicates that the microwave plasma sintering can short the sintering time and improve the properties of CaZrO3 ceramics as compared with the routine methods.

    结果表明微波等离子体烧结技术常规相比烧结时间明显缩短,性能有所改善

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  • The result indicates that the microwave plasma sintering can short the sintering time and improve the properties of CaZrO3 ceramics as compared with the routine methods.

    结果表明微波等离子体烧结技术常规相比烧结时间明显缩短,性能有所改善

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