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At this moment,that the change of neutral plane position plays a main role in the course of interface bonding,the grain refinement degree heightens whenεincreases. When e is higher than 4.8,the copper with big grains is made up of two kinds of structure regions in the course of deforming,namely fine sub-grains region and high density dislocation region.

此时,异步叠轧中性面位置的改变对界面的复合起到主要作用,变形等效应变的增大使晶粒细化程度变大;变形等效应变ε≥4.8时,粗晶铜在变形过程中有两种组织区域组成,分别为细小亚晶区和高密度位错区。

It is shown that Mn and Ti had refined the microstructure,and formed to precipitation affluent of Mn or Ti ,which approved the performance of the Shape Memory Alloy.For a certain strain,the shape memory effect vayied functionly together with the aging time:alloy performance the best coorperative status that the martensite lathing was close and ordered,the precipitation rich of Mn and Ti dispersed orderly in the microstructure and little or even no eutectoid phase had precipited in the alloy ,in a special aging temperature and time. With the prolonger of the aging time,the different aging time affects the microstructure rulely.

结果表明:Cu-Al-X系形状记忆合金中,Mn和Ti的加入细化了组织,并且形成了富Mn和富Ti相,起到沉淀强化和弥散强化的作用;对于同一种变形量,合金在母相时效时,形状记忆效应随时效保温时间呈现规律性变化,不同时效温度下,合金对应一个不同的时效时间,此时合金的显微组织呈现最佳自协作状态,马氏体板条细密有序,富Ti和Al相均匀的弥散在组织中,合金中没有或很少有共析相出现,且随着时效时间的延长,在不同的特定温度下,Cu-24Al-3Mn-2Ti合金的组织会有规律性的变化。

It is shown that Mn and Ti had refined the microstructure, and formed to precipitation affluent of Mn or Ti, which approved the performance of the shape memory alloy. For a certain strain, the shape memory effect varyied functionly together with the aging time: alloy performance the best coorperative status that the martensite lathing was close and ordered, the precipitation rich of Mn and Ti dispersed orderly in the microstructure and little or even no eutectoid phase had precipited in the alloy, in a special aging temperature and time. With the prolonger of the aging time, the different aging time affects the microstructure rulely.

结果表明:Cu-Al-X系形状记忆合金中,Mn和Ti的加入细化了组织,并且形成了富Mn和富Ti相,起到沉淀强化和弥散强化的作用;对于同一种变形量,合金在母相时效时,形状记忆效应随时效保温时间呈现规律性变化,不同时效温度下,合金对应一个不同的时效时间,此时合金的显微组织呈现最佳自协作状态,马氏体板条细密有序,富Ti和Al相均匀的弥散在组织中,合金中没有或很少有共析相出现,且随着时效时间的延长,在不同的特定温度下,Cu-24Al-3Mn-2Ti合金的组织会有规律性的变化。

The result shows that the additional shearing strain which is different from the normal compressive deformation was generated during asymmetric rolling. This additional shearing strain is beneficial to grain refinement.

结果表明:在摩擦系数比不同的非对称轧制条件下,会产生不同于普通压缩变形的附加剪切变形,而且这种附加剪切变形为组织细化提供了有利条件。

Moreover, the hot compressive deformation behavior of the RS/PM AZ91 magnesium alloy and AZ91 alloy matrix composite were also investigated, the conclusions are drawn as follows:1. The processing parameters of the atomization-twin rolls quenching technology were optimized as follows: the diameter of the nozzle 1mm, the wheel velocity 25m/s, the pressure of atomization gas 0.3MPa and Ar gas for melt injection 0.1MPa. The RS AZ91 alloy flakes exhibited fine and uniform microstructures. When the flakes were extruded at 673K, extruded velocity of 0.1mm/min and extrusion ratio of 25:1,the magnesium alloy rods with clean surface, uniform dimension and excellent mechanical properties were obtained.2. The RS AZ91 magnesium alloy powders prepared by atomization-twin rolls quenched technology exhibited fine equiaxed grains with the grain size of 1-3μm, the phase constituent included supersaturate solid solution phaseα-Mg and miner fineβ-Mg_(17)Al_(12) phase. The as-extruded materials also exhibited equiaxed grains with the size of 5-7μm and a large number of fineβ-Al_(12)Mg_(17) and fewer AlMg_2Zn phases were detected in the alloy.

本文还研究了快速凝固/粉末冶金AZ91镁合金热压缩变形流变应力行为,快速凝固/粉末冶金法原位生成Mg_2Si增强AZ91镁基复合材料,经过系统的研究,获得如下结论:1、雾化-双辊急冷法在下列工艺参数组合下:双辊线速度25m/s;喷嘴直径1mm;熔体压射压力0.1MPa;雾化气体压力0.3MPa。,可获得宏观尺寸细小、微观组织均匀细小、综合性能优良的的快速凝固AZ91镁合金细碎箔带,快速凝固箔带在挤压温度为673K、挤压速度为0.1mm/min,挤压比为25:1时,可获得的外表光洁、尺寸均匀、组织性能优异的镁合金棒材。2、雾化-双辊急冷法制备的AZ91镁合金粉末态为细小等轴晶组织,晶粒尺寸1-3μm,组织为α-Mg过饱和固溶体和微量的细小β-Mg_(17)Al_(12)相组成;粉末挤压棒材为等轴晶组织,晶粒尺寸5-7μm,组织中含有大量细小的β-Al_(12)Mg_(17)以及AlMg_2Zn析出相,室温力学性能,抗拉强度383MPa,屈服强度275MPa,断后伸长率7.5%。

As the deformation temperature decreases and strain value increases, the microstructure after cooled to room temperature inclined to be equiaxed ferrite and pearlite.

随着变形温度的降低和变形量的增大,变形后冷却过程倾向于得到等轴状的铁素体加珠光体的组织。

The microstructure of the magnesium alloy before and after ECAP were examined by means of OM and TEM. The hardness of the as-extruded and unextruded Mg-6Zn-1Gd-0.6Zr magnesium alloy was examined by vickers hardness tester. The rolling of the crystal plane in the process of ECAP was analyzed by X-ray diffraction.

采用光学显微镜和透射电子显微镜分析了试样ECAP变形前后的显微组织变化,采用显维硬度计对Mg-6Zn-1Gd-0.6Zr合金ECAP变形前后进行了硬度测试,采用X-射线分析法分析了ECAP变形过程中晶面的转动。

Based on analyzing and summing up the study results on deformation and fracture mechanisms of materials and member under repeated impact load,this paper shows that material defomation is characterized by plastic deformation concentrating on impact point,multi-systemes sliping difficult to perform and strain more unhomogeneous.

本文综合归纳了材料和构件在循环冲击载荷下的变形、断裂规律及机理研究成果,指出材料的变形具有多系滑移难于进行、应变不均匀性大和塑性变形集中在冲击接触点的特点;材料断裂过程为裂纹萌生、扩展和最后断裂过程,组织及实验条件对材料断裂有较大影响。

Two different signals, whichwere brown and blue, reacted with the substrate (DAB and NBT/BCIP) separately, could be observed in the WSSV infected haemocyte. The result showed that in the lightly infected tissues infected haemocytes predominated in all infected cells. However in the heavily infected tissues the number of normal haemocyte decreased obviously and infected cell with strong positive intensity increased, and cell debris and tissue necrosis were observed.

应用这种双重免疫组化方法观察了被WSSV感染的血细胞在几种组织中的分布情况,发现在轻度感染组织中被侵染的血细胞在所有被感染细胞中占绝大多数,而在高度感染组中血细胞数目明显减少,细胞变形,出现许多的细胞碎片,同时被病毒感染的细胞数目增多,染色强度增强,组织坏死严重。

Microstructure analysis shows that rough crystals of hot-forged or cast TiNi or TiPdNi alloys can be refined to about 10micrometer in size after one pass high temperature ECAE process and static recrystallization annealing.

微观组织分析结果表明:原始组织粗大的热锻态、铸态TiNi、TiPdNi合金经过一次高温ECAE变形过程(应变量~1%)及适当再结晶退火处理,可获得10um左右的均匀细晶组织。

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