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1.
A2017半固态合金二次加热组织演化   总被引:3,自引:0,他引:3  
对SCR技术制备的A2017半固态坯料进行二次加热,利用光学显微镜,电镜,图像分析仪等手段,对坯料二次加热微观组织的演化进行了研究·实验结果表明,在相同加热温度条件下,随着保温时间的延长,晶粒平均等积圆直径增大,晶粒越来越圆整,液相率增加;提高二次加热温度,晶粒长大和球化速度加快·二次加热最佳工艺条件为加热温度580℃,保温时间40~60min或者加热温度600℃,保温20~40min,晶粒平均等积圆直径为70~90μm,固相率在70%左右,适合于半固态加工·组织演化机制分析表明,加热初期阶段,液相少,晶粒主要通过碰撞熔合快速长大;随着保温时间延长,液相增加,晶粒主要通过原子扩散慢速长大并发生...  相似文献   
2.
混凝土细观结构断裂的分形分析   总被引:9,自引:0,他引:9  
混凝土材料的细观断裂分析是现今科学的前沿课题之一.采用分形原理模拟了混凝土材料的内部结构分布,并用其同有限元网格结合分析了混凝土的细观断裂行为.可以看出,它为更方便准确地描述混凝土细观结构的非均质性,分析其细观断裂行为提供了新的方法  相似文献   
3.
Mg-Zn-Al合金的组织稳定性与力学性能   总被引:4,自引:0,他引:4  
采用金相分析、DSC分析和拉伸测试等手段研究了铝含量对Mg-6Zn合金显微组织、凝固特性和力学性能的影响.结果表明,Mg-6Zn-2Al合金晶粒相对细小,具有最佳的强度与塑性组合;Mg-6Zn-6Al合金中晶界处存在接近连续分布的粗大鱼骨状金属间化合物Mg17Al12相,导致合金抗拉强度和塑性下降.长时间退火试验表明,Mg-6Zn-2Al具有较高的组织稳定性.因此,Mg-6Zn-2Al合金是Mg-Zn-Al系合金的一个较佳成分组合.  相似文献   
4.
利用粉煤灰与石英砂制备微晶玻璃,并对其进行不同工艺的热处理.通过对热处理后的试样研究发现:当粉煤灰质量分数为30%,未加TiO2时,试样在780℃加热时首先析出过渡相Ca2SiO。,在随后的高温晶化过程中,过渡相溶解消失,析出更稳定的平衡相钙长石;当TiO2质量分数为0—15%时,随着TiO2含量的增加,在780℃加热时由析出梭形的Ca2SiO。微晶转变为析出粒状的钙长石微晶;当粉煤灰质量分数增加到40%,TiO2质量分数为3.5%时试样中出现网状微晶组织,而加入的形核剂TiO2质量分数达到5%时试样中无网状微晶组织出现,说明TiO2对网状组织的析出具有明显抑制作用.  相似文献   
5.
ZL201合金半固态二次加热时的组织演变   总被引:5,自引:1,他引:5  
利用理论计算与实际观测等手段,研究了采用近液相线方法铸造的ZL201合金坯料在进行二次加热时,α晶粒形貌演变和长大的规律.结果表明,半固态二次加热时,α晶粒形态的整个演变过程可以分为三个阶段:第一阶段为共晶组织的熔化阶段;第二阶段为α晶粒的球化阶段;第三阶段为理论液固成分的平衡阶段.在第一、二阶段α晶粒以合并方式长大;第三阶段α晶粒按Ostwald模型长大.二次加热温度影响组织演化进程,而保温时间决定α晶粒球化效果.在较高的温度下进行二次加热,能够在较短的保温时间内得到适合于触变成形的均匀细小的近球形组织.  相似文献   
6.
采用 Gleeble-1500热模拟试验机对 FGH96合金进行双道次真应变量为0.6+0.6和0.3+0.9的等温间断热压缩试验,研究了变形温度为1050~1125℃、变形速率为0.001~0.1 s -1时合金的热变形行为和组织演变.热变形过程中合金发生了再结晶,第一道次较小的真应变量减轻了合金的开裂.当第一道次真应变量小时,随着温度和变形速率的上升,合金道次间再结晶软化率增加.不同应变量以及不同道次真应变量均对合金热加工图产生明显影响.在相同变形条件下,当能量耗散率随应变量的增加而下降时,合金中组织由细晶向粗晶转变,反之则由粗晶向细晶转变;当能量耗散率不随应变量的变化而变化时,能量耗散率低于20%的合金中出现大量的不完全再结晶组织,能量耗散率高于35%的合金中出现细小完全再结晶组织.  相似文献   
7.
根据30CrMo钢的热模拟实验数据,建立了基于动态再结晶物理机制的位错密度、形核率及晶粒长大模型,并采用元胞自动机(CA)方法模拟了30CrMo钢在不同温度及应变速率下的微观组织演变规律。结果显示,通过CA方法模拟得到30CrMo钢的流变应力曲线及平均晶粒尺寸均与实验值吻合较好,所建模型的有效性和准确性得到验证。当应变速率一定时,变形温度越高越利于动态再结晶的充分进行,稳态下晶粒尺寸相对较大;而当变形温度一定时,高应变速率条件下材料的形核率较大,再结晶晶粒较细小。  相似文献   
8.
In the present research, aluminum metal matrix composites were processed by the stir casting technique. The effects of TiB2 rein-forcement particles, severe plastic deformation through accumulative roll bonding (ARB), and aging treatment on the microstructural charac-teristics and mechanical properties were also evaluated. Uniaxial tensile tests and microhardness measurements were conducted, and the micro-structural characteristics were investigated. Notably, the important problems associated with cast samples, including nonuniformity of the rein-forcement particles and high porosity content, were solved through the ARB process. At the initial stage, particle-free zones, as well as particle clusters, were observed on the microstructure of the composite. However, after the ARB process, fracturing phenomena occurred in brittle ceramic particles, followed by breaking down of the fragments into fine particles as the number of rolling cycles increased. Subsequently, com-posites with a uniform distribution of particles were produced. Moreover, the tensile strength and microhardness of the ARB-processed com-posites increased with the increase in the reinforcement mass fraction. However, their ductility exhibited a different trend. With post-deforma-tion aging treatment (T6), the mechanical properties of composites were improved because of the formation of fine Mg2Si precipitates.  相似文献   
9.
The morphology and growth kinetics of discontinuous precipitation (DP) in a Cu–20Ni–20Mn alloy were investigated in the temperature range of 523–673 K by optical microscopy, scanning electron microscopy, and transmission electron microscopy. A lamellar mixed structure consisting of alternating lamellae of a matrix and NiMn phase was observed in DP colonies. The volume fraction of regions formed by a DP reaction was determined by quantitative metallographic measurements. The kinetics of DP was evaluated on the basis of the Johnson–Mehl–Avrami–Kolmogorov equation, which resulted in a time exponent of approximately 1.5. We confirmed that the nucleation of the discontinuous precipitate was confined to grain edges or boundaries at an early stage of the reaction. The activation energy of DP process was determined to be approximately (72.7 ±7.2) kJ/mol based on the Arrhenius equation; this result suggests that DP is controlled by grain boundary diffusion. The hardness values exhibited good correlation with the volume fraction of DP; this correlation was attributed to the presence of the ordered NiMn phase.  相似文献   
10.
The effects of isothermal treatments on the microstructural evolution and coarsening rate of semi-solid 7075 aluminum alloy produced via the recrystallization and partial remelting (RAP) process were investigated. Samples of 7075 aluminum alloy were subjected to cold extrusion, and semi-solid treatment was carried out for 5–30 min at temperatures ranging from 580 to 605°C. A backward-extrusion experiment was conducted to investigate liquid segregation during the thixoforming process. The results revealed that obvious grain coarsening and spheroidization occurred during prolonged isothermal treatments. In addition, higher soaking temperatures promoted the spheroidization and coarsening process because of the increased liquid fraction and the melting of second phases. Segregation of the liquid phase caused by the difference in fluidity between the liquid and the solid phases was observed in different regions of the thixoformed specimens.  相似文献   
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