thermal sintering

[ˈθə:məl ˈsintəriŋ]
  • 释义

    热烧结,烧结成形

数据更新时间:2026-04-19 14:42:42
1、

In this paper, the non synchronous phenomenon of temperature distribution in space and time in compact metal power sintering are discussed, it indicate that the gradient design for thermal spray coating sintering is necessary.

讨论了均匀粉末压坯烧结时因热传导而产生的温度分布存在时间和空间上的异步现象,阐明了涂层烧结时梯度设计的必要性。

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2、

The development of thermal state model based on side-plate temperature measurement and the application of this software system provide a new way in the research of thermal state of sintering process. And it has a bright prospect of application.

基于侧板测温的热状态模型的开发及系统软件的应用为烧结过程热状态的研究提供了一条新的途径,具有广阔的应用前景。

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3、

Some conclusions related to the simulation results are made: maximum thermal stress lessens with sintering going on owing to effect of sintered region;

模拟结果显示,随着烧结过程的进行,由于已烧结部分的影响,最大热应力有减小的趋势;

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4、

It indicated that mutual diffusion of Ni2+, Nb5+ ions in B-site will increase with thermal energy and sintering time.

这种趋势说明了Ni2+和Nb5+离子的相互扩散会随着热能和时间的增长而增长。

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5、

Influence of Thermal Sintering and Annealing Technics on Field Emission of Screen-printed Carbon Nanotube Films on Glass Substrate

热烧结及其退火工艺对玻璃衬底印刷碳纳米管薄膜场发射的影响

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6、

There are a minimum value of the porosity and a maximum value of the thermal conductivity in the sintering temperature range.

在烧结温度范围内随着气孔率出现最小值时,导热系数出现最大值。

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7、

And dynamic oxidation and hot pressed thermal sintering of wear particle are formation mechanisms of the protective oxide layers.

氧化物保护层形成的机制是磨屑的动态氧化和微区热压烧结。

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8、

Reasonable distribution of the thermal state in the sintering process is an important indicator.

烧结过程热状态的合理分布是生产优质烧结矿的重要标志。

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9、

Conventional techniques of frits fabrication, such as thermal sintering, pulling and in situ formation, have many disadvantages including time consuming, easy to generate bubble and bringing the fragility at the frit sections.

传统的柱塞制备方法包括烧结法、拉伸法及原位生成法,它们均存在很多缺陷如制备复杂、易产生气泡、毛细管易折断等。

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10、

The formula is very useful for thermal balance calculation of sintering process.

这个公式对进行烧结热平衡计算是十分有用的。

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11、

Research Progress in Thermal Conductivity and Sintering Additives of AlN Packaging Material

AlN陶瓷基板材料热导率与烧结助剂的研究进展

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12、

Ceramics were sintered at 950 ℃ by adding ZnO as sintering assistant in CZP powder, and the relative density, average thermal expansion coefficients, strength resistance, and microstructure of the ceramics were measured and observed.

添加ZnO为烧结助剂,将CZP粉体在950℃下烧结成陶瓷,测定和观察所制备陶瓷的相对密度、平均热膨胀系数、抗压强度和显微结构。

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13、

This research made a deep study of the characteristics of thermal state in sintering process directing at the change of thickness distribution of each zone and migration rate, considering the result of mechanism model.

针对料层各带厚度的分布和迁移速度的变化,结合机理模型计算的结果,深入研究了烧结过程热状态特性。

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14、

In this paper, side-plate temperature is measured continuously, and software system of thermal state model in sintering process is developed.

本研究通过连续测量烧结机台车侧板温度,开发烧结过程热状态模型系统软件,对烧结过程热状态进行实时判断与分析,在线指导烧结生产,具有重要的理论意义和实用价值。

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