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1)  AZ61-1 Si alloy
AZ61-1Si合金
2)  AZ61 magnesium alloy
AZ61镁合金
1.
Microstructural Evolution Behaviors of AZ61 Magnesium Alloy during Continuous Rheo-extrusion;
AZ61镁合金连续流变成形过程的组织演化行为
2.
Effect of heat treatment on mechanical properties of extruded AZ61 magnesium alloy;
热处理对挤压变形AZ61镁合金力学性能的影响
3.
Microstructure and properties of AZ61 magnesium alloy joints produced by laser welding method;
AZ61镁合金激光焊接接头的组织与性能
3)  Al-1Si Alloy
Al-1Si合金
1.
Effects of High Intensity Ultrasonic on the Solidification Structure of Al-1Si Alloy;
高能超声处理Al-1Si合金凝固组织分析
2.
Effects of Electromagnetic Field on Microstructure and Properties of Al-1Si Alloy Wire in Horizontal Continuous Casting;
电磁场对水平连铸Al-1Si合金线材组织和性能的影响
3.
Effect of Outfield Treatment on Structure Refinement of Horizontal Continuous Casting Al-1Si Alloy;
外场对水平连铸Al-1Si合金组织细化的影响
4)  AZ61 alloy
AZ61合金
1.
The result shows that dynamic recrystallization(DRX)of AZ61 alloy operated under compression.
相比之下,变形温度对AZ61合金力学行为的影响要大于应变速率的影响。
2.
The relationship between the stress and stain was analyzed,the numerical relationships among processing parameters(strain rate ε·_z,strain ε_z,temperature θ,liquid fraction F_L)with stress were studied,and the constitutive relationship was established for semi-solid AZ61 alloy by using multiple nonlinea.
z、应变εz、变形温度θ、液相率fL)与AZ61半固态镁合金应力之间数值关系,应用多元非线性回归方法建立半固态AZ61合金的本构关系,为AZ61半固态镁合金加工过程的数值模拟和热力参数的合理制订与控制提供了基础。
3.
The relationship between the stress and stain was analyzed, The numerical relationships among processing parameters (strain rate εz , strain εz, temperature T, liquid fraction fL )with stress were studied, and the constitutive relationship was established for semi- solid AZ61 alloy using multiple nonlinear r.
采用Gleeble1500热模拟试验机,对用应变诱发熔体激活法(STMA)制备的AZ61半固态镁合金坯料进行了半固态单向压缩实验,分析它们的应力-应变关系,研究了主要热力参数(应变速率εZ,应变εZ,温度 T,液相率fL)与AZ61半固态镁合金应力之间数值关系,应用多元非线性回归方法建立半圆态AZ61合金的本构关系,为AZ61半固态镁合金加工过程的数值模拟和热力参数的合理制订与控制提供了基础。
5)  AZ61-0.7Si alloy
AZ61-0.7Si合金
6)  magnesium alloys AZ61
镁合金AZ61
1.
Based on the analysis of surface modification in the past, two kind of new technologies on surface treatment to magnesium alloys AZ61 are introduced in the paper.
本文在对以往表面改性工艺分析的基础上,采用两种新工艺技术对镁合金AZ61实施表面改性处理:1)热浸镀通过控制基材与镀材的体积比、浸镀温度、浸镀时间等工艺参数获得性能最佳的镀层;利用SEM、EDS、XRD等测试技术,分析了镀层的组织、结构、成分;测定镀层的显微硬度;通过界面扩散热力学分析,初步阐明镀层产生冶金结合的原因。
补充资料:silane 32-61
CAS:15188-09-7
分子式:C14H30O6Si
中文名称:三[(1,1-二甲基乙基)二氧]乙烯基硅烷
英文名称:tris[(1,1-dimethylethyl)dioxy] ethenyl-Silane;Vinyltris(t-butylperoxy)silane;tris((1,1-dimethylethyl)dioxy)ethenyl-silan;(vinylsilylidyne)tris(tert-butyl-peroxid;silane 32-61
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