弹性体
- 名elastomer
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聚氨酯弹性体/Mg(OH)2纳米复合材料的制备与表征
Study on preparation and property of PU elastomer / Mg ( OH ) _2 nano-composite
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短纤维-弹性体复合材料的注射充模I.数学物理模型的建立
Injection molding of short fiber - elastomer composites I.Establishment of mathematical and physical model
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用CAD技术设计传感器弹性体
Using CAD technique to design sensor elastic body
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N层半无限弹性体在刚性圆板压缩下的力学计算
Calculation of stresses , strains and Displacements in a N-layered Semi-Infinite Elastic System Compressed by Rigid Circular plate
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热塑性聚氨酯弹性体主要由含OH的低聚物多元醇、小分子扩链剂和异氰酸酯等原料聚合而成。
Thermoplastic polyurethane elastomers are prepared with polyol ester containing OH , isocyanate and a chain extender .
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TEM表明纳米二氧化硅在聚氨酯弹性体中有很好的分散性。
TEM result indicates that nano-silica is well dispersed in polyurethane matrix .
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PU微孔弹性体模塑用硅油型脱模剂研制
A Study on Silicone Oil Release Agent of PU Elastomer Mould
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采用不同相对分子质量的聚丁烯热塑性弹性体,对聚丙烯(PP)进行共混改性,并研究了共混物的力学性能和热性能。
Polypropylene was modified by thermoplastic elastomer poly-1-butylene ( PBt-TPE ) of various molecular mass .
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剑麻纤维和聚乙烯改性SBS热塑性弹性体的性能研究
Properties of SBS Thermoplastic Elastomer Modified by Sisal Fiber and Polyethylene
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本文研究了以PVC树脂为基质,通过橡塑共混改性PVC的方法制备热塑性弹性体。
In this paper , PVC-TPE was studied by means of modifying PVC and rubber-plastic blending .
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酚醛树脂与CPE弹性体共混增韧的研究
Study on Toughening of PF Resin by Blending with CPE Elastomer
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RIM聚氨酯弹性体预聚物的反应动力学研究
Reaction Kinetics of RIM Pu Prepolymer
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共混方法和设备对聚酯短纤维增强动态硫化EPDM/PP共混型热塑性弹性体性能的影响
Effects of blending methods and equipment on properties of short fiber reinforced epdm / pp blending thermoplastic elastomer
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通过硅烷交联方法对聚烯烃弹性体(POE)进行了改性研究;
POE was modified through silane crosslinking .
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采用分为4层的地球模型,各层的介质被看作Maxwell粘弹性体。
A four-layered earth model is employed . The media of layers are treated as Maxwell viscoelastic ones .
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介绍了新型聚烯烃弹性体(POE)的优异特性,综述了POE与通用塑料聚丙烯共混改性的研究进展。
The characteristics of polyolefin elastomer ( POE ) and its applications in general purpose plastics-polypropylene are introduced .
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PA用量为35份的EPDM/PA热塑性弹性体具有良好的力学性能、耐溶剂性能和耐热老化性能;
The EPDM / PA thermoplastic elastomer with PA 35 phr had good mechanical properties , resistance to solvent and thermal ageing properties .
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热塑弹性体SEBS中溶剂影响的正电子谱学研究
Study of the positron annihilation on solvent influence of thermoplastic elastomer SEBS
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HTPB/液化改性MDI型聚氨酯弹性体的合成、结构与性能的研究
Study on Synthesis , Structure and Properties of Polybutadiene / Liquefication Modified MDI-Based Polyurethane Elastomer
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纳米CaCO3对聚烯烃聚氨酯弹性体性能影响
The Effect of Nanometer CaCO_3 on the Properties of PU Elastomer Based on HTPB
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星形SIS嵌段共聚物的动态力学性能聚氨酯热塑弹性体的热性能及动态力学性能研究
The Study on Dynamic Mechanical Properties of SIS Star-Shaped Block Copolymer THERMAL AND DYNAMIC MECHANICAL PROPERTIES IN SEGMENTED POLYURETHANES
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短Kevlar纤维增强的热塑性聚氨酯弹性体
Thermoplastic polyurethane elastomers reinforcing with short Kevlar fibre
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PP/HDPE/SBS三元共混物的研究基体韧性和弹性体分散相对PP三元共混物脆韧转变的影响
STUDY ON PP / HDPE / SBS TERNARY BLEND The Effect of Matrix Toughness and Elastomer Dispersed Phase on the Brittle - ductile transition in PP ternary blend
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制备胶粉/高密度聚乙烯(HDPE)热塑性弹性体(TPE),并研究其性能。
A crumb rubber / HDPE thermoplastic elastomer ( TPE ) was prepared and its properties were investigated .
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因此又出现了非弹性体增韧方法,这种方法不仅可以增韧PVC,并且可以使体系其它力学性能保持不变或是提高。
Yet , this problem can be solved by the non-elastomer toughening , which can not only toughening the PVC system , but also remain or promote other properties .
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非弹性体增韧拓展了PS增韧改性研究的新领域,纳米粒子增韧开辟了PS增韧改性研究的新方向。
It was pointed out that toughening by non-elastomer materials broadened the research field and toughening by nano-particle created a new direction for study on modification of PS.
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用GPC测定了苯乙烯类热塑性弹性体(SBS)合成过程中生成的二嵌段SB质量分数,讨论了其对SBS力学性能和加工性能的影响。
The effect of the mass fraction of diblock SB on the mechanical properties and processability of linear SBS and star SBS was discussed .
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本文采用多步乳液聚合法合成了一类新型的聚氯乙烯抗冲击改性剂&丙烯酸酯弹性体(ACR)。
A new series acrylic impact modifiers ( ACR ) for PVC were synthesized by multistage emulsion polymerization .
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采用吸氧量法和热烘箱老化法对新型抗氧剂HD在热塑性弹性体SBS加工中的应用进行了研究。
A study was made on the application of new antioxidant HD to the SBS processing by oxygen adsorption and heat oven aging method .
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热分析研究结果发现,弹性体POE和无机纳米SiO2粒子对PLA的玻璃化转变温度和熔点的影响不大。
Thermal analysis results showed that there was no influence of POE and SiO2 on the glass transition temperature and melting point of PLA .