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1.
SHORT-TERM HIGH-TEMPERATURE THERMAL SHOCK FRACTURE OF 12 CrlMoVg STEEL AND FINITE ELEMENT ANALYSIS THEREOF
12Cr1MoVg短期高温冲击断裂有限元分析
2.
Influence of nitrogen loading and high temperature shock for running of UASB-ANAMMOX reactor
氮素负荷及高温冲击对UASB-ANAMMOX反应器的运行影响
3.
Impact Characteristics at Elevated Temperature and Fracture Analysis of TiC Particle Reinforced Fe Matrix Composites
TiC颗粒增强铁基复合材料高温冲击特性及断口分析
4.
Research on Improving the Low Temperature Impact Toughness of 09CuPCrNi-A H-beam;
提高09CuPCrNi-A耐候H型钢低温冲击韧性研究
5.
Study on Improving the Low-temperature Impact Toughness of 3.5% Nickel Heavy Plate
提高3.5Ni厚钢板低温冲击韧性的研究
6.
Elimination of Looseness and Impact of the Converter Supporting Equipment under High-Temperatureure
梅钢转炉支撑装置高温松动冲击控制
7.
A fast pyrometer with wide dynamic linearity for shock temperature measurements
用于冲击波温度测量的宽动态线性光学高温计
8.
Research on Improving Impact Property at Low Temperature of Hot Rolled High Strength Section Steel
提高热轧高强度型材低温冲击性能的研究
9.
Extreme resistance to heat shock, heat shock temperature240℃. The windings can work for a long time at hightemperature ambient condition220℃.
具有极高的耐热冲击性,耐热冲击温度在240℃上。可长期工作于220℃以下的高温环境。
10.
Our opal stone products have the excellent performances to resist the acid, alkali, fire, shock and penetration.
澳宝石具有耐酸、碱、高温、冲击、渗透等功能。
11.
Residual stress of high temperature alloy GH2036 by laser shock strengthening
GH2036高温合金激光冲击强化后的残余应力
12.
Upper incipient lethal temperature of short term thermal shock of two species of copepods
两种桡足类短期热冲击的高起始致死温度值
13.
Analytical Solution of Temperature Field of Solid Rocket Motor Laminated Structure with High-Temperature Thermal Shock
高温热冲击下固体火箭发动机层合结构温度场解析解
14.
It is thick at the top where it takes the brunt of the heat and the expansion force.
活塞顶部厚,承受着高温燃气的带有冲击性的高压力。
15.
Three-Body Interactions and Shock Compression Properties of Condensed Nitrogen
高温高密度条件下氮分子三体关联效应与冲击压缩特性
16.
Study of Copper-matrix Friction Materials by Powder Metallurgy and Its High Temperature Fatique Wear Properties and Dynamic Behaviors;
铜基粉末冶金摩擦材料研制及其高温疲劳磨损和冲击性能研究
17.
Effects of laser shock processing on fatigue property of GH742 Ni-based superalloy
激光冲击工艺对GH742镍基高温合金疲劳性能的影响
18.
This kind of steel is an excellent shock aBsorBer.
这种钢材抗冲击强度高。