复合试验
- 与 复合试验 相关的网络例句 [注:此内容来源于网络,仅供参考]
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In this experiment,the abrasion resistance of concrete mixed with expansive compound mineral admixture is studied.
试验研究了添加膨胀组分的复合矿物掺合料的混凝土耐磨性能。
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In pot test, the absorption law of tobacco in the soil with compound pollution to heavy metal Cd, the improvement effects of 5 kinds of remediators on heavy metals and the interrelationships between Cd in tobacco and fresh weight, o...
方法采用盆栽试验,研究了在复合污染的土壤中烟草对重金属镉的吸收规律,5种改良剂对重金属的改良效果以及烟草体内镉与鲜重和其他重金属的相互关系。
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In this paper, poplar wood injected with unsaturated alkene monomers was used as testing materials to prepare WPC.
以速生杨木为试材,并通过向试材中注入不饱和烯烃类单体;用正交试验的方法,分析了真空度、真空时间、浸注压力和加压时间4因素对木材留存率的影响来初步判断实现速生杨木的木塑复合材的有效工艺。
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Experimental results show that,when calcined gypsum and calcined alunite were added by 5% alone or synchronously,the setting time of cement decreases remarkably and 3d compressive strength at different temperatures increases remarkably.
试验结果表明,烧石膏和烧明矾石单掺和复合双掺的掺入量为5%时,水泥的凝结时间明显缩短,3d耐压强度在各温度下均有显著提高。
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Multistep deposition process has been adopted in the preparation of superfine inorganic composite antibacterial powder, Ag~+ as crystal nucleus, packed outside by the hydroxid and phosphate precipitate of Ti and Zr elements etc., The optimal process conditions have been found from one-factor influence tests and multi-factor orthogonal test,and the optimal process conditions were: Ag iron was imported by silver ammine, and then 100ml Titanyl sulphate solution mixing with zirconium sulfate keep hot at 90 ℃ for 30 mins, and the Zr/Ti ratio is 0.15,and Na_2HPO_4 was added in the end.
超细无机复合抗菌粉体的制备采用以Ag~+沉淀物作为晶核,外包裹Ti、Zr等金属的氢氧化物沉淀和磷酸盐沉淀物的多步沉淀工艺,并利用单因素和正交试验法对制备工艺进行了优化,其最佳工艺条件是:Ag~+以银氨络合物引入,沉淀钛锆的反应时间为0.5h,反应温度为90℃,水解反应时体系总液量为100ml、Zr/Ti为0.15,沉淀物经水洗、干燥,于700℃煅烧4.0h;即得最终产品。
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Test method and pressure to be applied: metal packagings and composite packagings, including their closure s shall be subjected to the test pressure for 5 minutes.
试验方法和施加的压力:金属容器和复合容器包括其封闭装置,必须经受5分钟的试验压力。
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Experimental study of its macroscopical mechanics behavior and analysis of asymptotic homogenization of cement- soil and Cement Mixing Pile are the main work of this dissertation.
本文的主要工作是对水泥土的力学性能进行试验研究,并用均匀化方法分析水泥土的相关力学性能,同时用把相关的结论运用到水泥土复合地基的计算中,总结了水泥土试验及其运用均匀化方法的有关规律。
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To reveal the complicated stress state of masonry structure in project and the effect of normal stress on shearing behavior,failure form and shearing strength,the shearing strength was obtained through experiments on 54 pieces of minitype sand-lime autoclaved aerated concrete masonry subjected to different normal stress.
为了解砌体结构在实际工程中所处的剪压复合的复杂受力状态,作用在砌体上的正应力对砌体的抗剪性能、砌体的剪切破坏形态及其对砌体抗剪强度的影响,对54个小型灰砂蒸压加气混凝土砌体进行静力抗剪试验,通过施加不同的正应力得到相应的抗剪强度;分析其破坏机理,归纳得出剪摩、剪压、斜压等破坏形态,并与砖砌体的破坏形态进行比较;根据试验结果回归分析得到灰砂蒸压加气混凝土砌体的静力剪压相关性曲线,与砖砌体的剪压相关性曲线进行对比分析,得到两者的异同;在静力剪压相关性曲线的基础上,依据变摩擦系数的剪摩理论,提出灰砂蒸压加气混凝土砌体静力抗剪强度的建议公式,并对摩擦系数进行了简化
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Results: lResult of TLC: the granules compositions stability by TLC is stable and there is not any difference between the experiment result and stability control standard. 2Result of quantity control① Stress test make it certain that this granules ingredients have certain moisture stability, photo stability and temperature stability, this experiment also indicate that the medical using complex bag can improve the granules moisture stability.
结果:1、定性指标结果:在以上稳定性试验中,不同时间各定性鉴别指标TLC结果与0天TLC结果无差别。2、定量指标结果:①影响因素试验:该颗粒剂对湿度、光线、温度都具一定稳定性,药用复合膜包装能提高该制剂吸湿稳定性。
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A total of 14 CFRP (carbon fiber reinforced plastics) reinforced EWC beams were tested to failure to investigate the failure modes, failure mechanism and the flexural behaviors of them.
二、进行了14根 CFRP 增强复合木梁的结构性能试验,研究其破坏形态、破坏机理及受弯性能等,并与未增强木梁的试验结果进行对比。
- 推荐网络例句
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This one mode pays close attention to network credence foundation of the businessman very much.
这一模式非常关注商人的网络信用基础。
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Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.
扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。
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There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.
双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。