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拉伸断裂

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It has been found that there are some texture flaws such as large grain、badly distorted twin and streaky structure. But recrystallization grains ofaround 19μm in diameter on average are obtainable through heat treatment at300℃for 30min by air-cooling, meanwhile the twin and streaky structurethat would weaken the plasticity of alloy are eliminated; significant elementsare holding temperature、holding time、cool-down methods. Mechanicalproperties of tube are obtained, simple tension elongation ratio of arc testsample increases from 10.8% to 20.1%, elongation ratio with elastic internaldie of tube increases from 8.0% to 14.9%.

研究结果表明:挤压成型的AZ31镁合金管材组织中存在变形程度很大的孪晶、大尺寸晶粒、丧失了进一步变形能力的条带状组织等易导致后续塑性加工时变形不均,引起断裂的组织缺陷;采用最佳等温热处理工艺以20℃/min加热至300℃保温30min后空冷处理可以使试样平均晶粒直径从挤压态的50μm细化为19μm,同时基本消除上述组织缺陷;明显影响热处理效果的因素为保温温度、保温时间、冷却方式;室温下,采用最佳工艺热处理前后管材弧形试样的单向拉伸伸长率由10.8%提高至20.1%,管件的自由胀形极限伸长率由8.0%提高至14.9%。

B. Load the parts to 80% of the ultimate torque or tensile stress.

在零件上加载极限扭矩或断裂拉伸应力的80%。

Determination of ultimate tensile stress parallel to grain using small clear specimens.

无缺陷木材细木条的小试样纵向拉伸抗断裂强度的测定

Avrami and Ozawa equations were used to analyze the experiment data in this study. Because the melting point of PBS is high and the mechanical properties are worse. In addition, the PTS is uncrystallized. Therefore, PBS and PTS were mixed to improve their properties. PBS containing 5wt% PTS can be able to reduce the crystallization performance, and make the polymer strength to enhance. Furthermore, the brittle fracture situation of PBS is also improved simultaneously.

本研究运用等温结晶分析使用的Avrami 方程式以及Ozawa 方程式,分析实验所得的数据,因为PBS 的熔点较高,机械性能较差,加上PTS 几乎不结晶的特性,因此将PBS 及PTS 以不同比例混掺的方式,对PBS 进行分析研究,结果发现,加入5wt% PTS的共聚酯能够明显的降低结晶性能,进而使聚合物的拉伸强度提高,同时脆性断裂的情况也得到改善。

In this research, we choose core material of paragliding cord barding, and this shows typical diffraction patterns for the PBO fiber and Kevlar fiber by synchrotron diffraction patterns.

本研究以PBO纤维为主要材料,同时经由20、40、60和80小时的碳弧光连续照射对PBO纤维的断裂拉伸强力影响做探討。

So, PBO fiber has high modulus under paragliding cord barding, it's the best choice.

因此,利用4束PBO纤维作为芯材,搭配8束高强力聚酯纤维作为包覆材,所呈现的断裂拉伸强力、延伸率、丹尼数皆是最佳的。

As the caprylic aldehyde content increased,train at break,tensile strength,crosslink density were decreased.

拉伸强度、断裂伸长率和交联密度基本上均随辛醛含量的增加而降低。

Four main formations of loop bedding in Jiyang sub-basin were upper layers fall down in the process of earthquake, tautening distortion due to earthquake, the frication of earthquake-related surface of fault and the effect of redox and diffuse other formations of loop bedding comprise the effect of earthquake wave, the effect coming from circumrotate of globosity rotation, snowball function, cementation intermittent, the effect of biology, and so on.

综合分析认为震动塌落、震动拉伸变形、地震断裂面的摩擦作用、氧化还原反应和扩散作用是环状层理的主要成因,前三种成因的环状层理往往与其他震成构造伴生,可作为震积岩的良好标志。环状层理的其他成因还包括:地震波传播方式的影响、地球自转产生的涡旋的影响、&滚雪球&效应、间歇胶结作用以及生物成因等。

By applying electromagnetic vibration on solidification front of Sn-10Pb alloy,creation of equiaxed grain zone in ...

在低强度电磁振荡条件下,凝固组织细化和等轴晶化的原因是:电磁振荡力对金属初生晶的周期性拉伸、压缩、剪切、折弯、扭转等机械作用,使其出现断裂和剥落,增加形核数量;电磁振荡的局部搅拌作用使固/液界面前沿的温度和成分趋于均匀化,导致梯度降低,抑制了柱状晶的生长。

The Solidification temperature range was defined as 110-200℃ by DSC analysis. More accelerant used can increase the casing samples dynamic performance, but more than enough accelerant can induce a severe solidified reaction that result in a smaller polymeric meshwork and reducing the sample's performance. Normally the Accelerant dosage can be 2 portions; The Epoxy resin CFRP has a obvious better performances than the Vinyl-ester Resin CFRP, i.e. had a Bend Strength of 1516MPa, LSS of 85MPa, also Tg raised to 195~C~ When used the end-carboxyl polyether to reinforce the epoxy resin, the casing sample's SS, BS and Crack Elongation all increased geminately. The CFRP performance also increased a little, that is because the performance of the CFRP mainly contributed by the CF. The reinforced resin improved the interface between the CF and resin that contribute to the little increasing.

通过DSC分析确定了该环氧树脂的固化温度范围为110~200℃,促进剂增加会提高浇注体力学性能,但过多的促进剂会使固化反应剧烈,聚合网络减小,使浇注体性能下降,一般用量为2份左右;以环氧树脂为基体的复合材料性能明显比以乙烯基酯树脂的性能提高,弯曲强度达到1516MPa,层间剪切强度达到85MPa,同时Tg也上升到195℃;用端羧基聚醚增韧环氧树脂后,其浇注体的拉伸强度、弯曲强度及断裂伸长都成倍增加,复合材料的性能也有所提高,但提高幅度不大,因为复合材料的力学性能主要由碳纤维承担,树脂增韧后改善了复合材料的界面性能。

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客人们在卡罗利娜·埃凯家里,举止就文雅一些,因为卡罗利娜的母亲治家很严厉。

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