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The results showed that plastic deformation at both -70℃ and 180℃ made the dislocation density of AISI304 stainless steel increase with the increase of deformation. Martensite phase transformation was induced for deformation at -70℃, whereas it was not at 180℃. As the dislocation density increased, the breakdown potential of AISI304 stainless steel's passive film became a little more positive. As martensite phase content increased, it became more negative and pitting corrosion resistance decreased.

结果表明:加热180℃和低温-70℃条件下塑性变形均使AISI304不锈钢中位错密度随变形量增大而增加,AISI304不锈钢在-70℃条件下塑性变形时部分奥氏体相转变为马氏体相,而在180℃条件下塑性变形时不发生马氏体相变;位错密度的增加使AISI304不锈钢钝化膜的击穿电位略微正移,而马氏体相的增加使击穿电位呈负移趋势,材料耐孔蚀性能降低。

With the development of processing industries and key lines from the original needle into a needle-shaped by the water with floating needle into a thimble, so that measurement accuracy of the compass a qualitative change.

随着加工业的发展,磁针由原来的匙行转变为针形,并由水浮磁针转变为用顶针,使指南针的测量精度发生了质的变化。

The phase transition temperature increases and the transition ranges tends to be broad when PNIPA brushes were substituted with P or P(NIPA-co-NVP) brushes obtained by the copolymerization of NIPA with AA and NVP, respectively. However, the phase transition is not obvious if adding excessive hydrophilic comonomer.

结果表明,纯PNIPA刷的相变温度在29℃~33℃之间,通过共聚所得的单一P或P(NIPA-co-NVP)刷均使相转变温度提高,转变区域拓宽,当亲水性共单体的量过多时会导致相变过程不明显。

The study method of the so-called change student, is to direct the student from the study of passive one method direction study process that diversify that study method change, make the student passively absorb the ready-made conclusion this ascend of lesson not, but is a student personally vivid thought activity of plentifulness, experience a fulfillment with the creative process.

所谓转变学生的学习方式,就是指使学生从单一被动的学习方式向多样化的学习方式转变,使学生的学习过程不是被动地吸收课本上的现成结论,而是一个学生亲身参与丰富生动的思维活动,经历一个实践和创新的过程。

This thesis presents a review of Schopenhauerism from the subjectivity point of view. By assigning the irrational will as the subject, Schopenhauerism changes the nature of subjectivity, and transfers the rational subjectivity guided by rational factors to the will subjectivity guided by the irrational factors. That makes for the harmonious development of subjectivity under both rational and irrational effect, therefore effectively keeps the subjectivity from swelling as might result from the mounting of the power of reason, thus illuminates a new way for the development of the thought of subjectivity.

本文从主体性思想的角度,考察了叔本华哲学,认为叔本华通过把非理性的意志确立为主体,转变了主体性的性质,把原本以理性为主导因素的理性主体性转变成了以非理性因素为主导的意志主体性,使主体性在理性和非理性的共同作用下协调发展,有效地避免了因理性力量的增长而导致的主体性膨胀,从而为已濒临绝境的主体性思想指出了新的发展方向。

The frequency of spontaneous UP/DOWN transitions could be entrained to a regular interval by repetitive sound stimuli with intervals ranging 3-12 sec, in which each sound stimulus effectively induced a UP-to-DOWN transition.

外界声音刺激(白噪声,0.1-35 KHz)能调制神经元自发的高电、低电位期的传递节律:当声音刺激落在高电位期时,每一次声音刺激都会使细胞膜电位由高电位期向低电位期转变,并当声音刺激间隔在3-12秒范围内时,自发的高、低电位期的转变节律就同步于声音刺激的重复率,即跟随效应。

A study of phase morphology of PBT/POE-g-MAH/nano-CaCO3 composite by means of scanning electron microscopy showed that the domains size of nano-CaCO3 capsulated by POE-g-MAH elastomer in composite when PBT was mixed directly with POE-g-MAH and nano-CaCO3 together or with nano-CaCO3 capsulated by POE-g-MAH elastomer is large.

采用熔体流动速率较低的EPS30R与纯POE-g-MAH共混制备的增韧改性剂,在PBT基体中的分散相变得粗大且不均匀,共混物的脆韧转变推迟。SEM显示,纯POE-g-MAH增韧剂使PBT共混物发生脆韧转变时,弹性体分散相颗粒产生塑性变形,诱发基体屈服而吸收能量。

The results show that although both Ni substitution and Mg vacancies are effective in desorbing hydrogen at lower temperatures, the substitution of Ni at the Mg site is energetically more favorable than the formation of Mg vacancies. The Ni atoms of NiF2 can replace some Mg atoms of MgH2 systems, the reaction of NiF2+3MgH2=MgF2+Mg2NiH4 during mill process is accelerated, thus, MgH2 with the higher stability can be changed into Mg2NiH4. Because of a ternary hydride Mg2NiH4 with lower stability forming, the dehydrogenating properties on Ni doped MgH2 systems are improved.

结果表明:Ni替代Mg和创造Mg空位对MgH2体系解氢而言,均发挥有益作用,而形成Mg空位所需能量(6.51 eV)高于Ni替代Mg所需能量(2.12 eV),表明低温下Ni替代Mg对MgH2体系解氢而言更有利,至此NiF2中的Ni替代MgH2中的Mg,有利于加速化学反应NiF2+3MgH2=MgF2+Mg2NiH4向右进行,使结构稳定的MgH2发生转变,生成结构不稳定的Mg2NiH4,这样体系解氢过程不是通过MgH2,而是转变为通过Mg2NiH4进行,因此,Ni掺杂提高了MgH2体系的解氢性能。

This paper deals with the preparation of synthetic diamond single crystal with boron at high temperature and high pressure from Fe-Ni-C-B system.

1前言石墨转变为金刚石是碳的同素异构体转变,由于触媒的参与使之合成压力与温度大幅度降低。

In the experiment the SmBaCuO single crystals were used as seeds to induce YBCO growth in MTG method.

改进热处理工艺,使〓的超导转变温度T〓达到了90K,并研究了热处理温度与超导转变温度的关系。

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