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991.
以乙烯⁃醋酸乙烯酯共聚物(EVA)为原料,过氧化2⁃乙基己基叔丁酯(TBPE)为交联剂,合成了交联EVA双向形状记忆聚合物(SMP),并且考察了TBPE含量对于交联EVA性能的影响。结果表明,交联EVA的TmTc随着TBPE含量的上升呈现下降的趋势,可以通过交联剂比例调节材料的驱动温度;交联EVA的形状固定率会随着TBPE含量的增加呈现下降趋势,最低达到88.83 %,而样品的形状恢复率均超过99 %,并且都具有单向和双向形状记忆功能;交联EVA也具有双向记忆性能,Ra,2W随着TBEC的含量增大而减小,Rr,2W则相反;因此,通过改变交联剂EVA的量,对于双向交联EVA的性能有较大影响。  相似文献   
992.
The emerging trends in the development of advanced smart materials with better unique properties under different environments for a particular application fascinate the researchers and industrialists. Nickel-Titanium based shape memory alloys are exotic materials due to their unique properties such as SME, SE, high damping characteristics, high corrosion and wear resistance and biocompatibility. This article presents an overview of machining processes that can be used to machine the NiTi and its surface induced characteristics such as microhardness, surface roughness, topography, induced layer, residual stress, fatigue and phase transformation. The surface integrity characteristics are discussed for machining of NiTi-SMAs under the category of traditional, non-traditional and micro-machining with the effect of input parameters such as cutting speed, feed, depth of cut, type of lubricant and type of coating material on cutting tool. The conventional machining of NiTi alloys are quite complicated due to high toughness, severe strain hardening, fatigue hardening and distinctive property of NiTi-SMAs such as pseudoelastic and shape memory effect. From this study, non-traditional process is significantly used to machine the NiTi-SMAs due to its better results on surface integrity characteristics. Consequently, future trends are also identified for machining the NiTi-SMAs and to improve the surface integrity characteristics.  相似文献   
993.
针对液膜密封中空化问题,建立基于质量守恒JFO边界条件的螺旋槽液膜密封数学模型,采用流线迎风有限元法求解考虑液膜离心项的Reynolds控制方程,获得端面膜压分布,进而分析了操作参数对空化特性的影响。结果表明:不同操作参数下,空化发生时的液膜破裂位置均位于螺旋槽边界线上;转速的增大、膜厚及介质压力的减小促进空化的生成,反之,抑制空化发生。计算结果为液膜密封在不同操作条件下的设计和应用提供理论指导。  相似文献   
994.
煤矿中厚煤层经长期开采已近枯竭,薄煤层的开采凸显重要,以云驾岭煤矿薄煤开采初次探索为例,分析了目前薄煤层开采主要机械化设备的技术特点,指出了薄煤层开采的发展趋势,延长矿井服务年限和实现高效开采都具有可行性。  相似文献   
995.
热带假丝酵母发酵生产长链二元酸在菌体、空气、烃类(油)和水的四相发酵体系中完成,发酵过程需氧量大、放热量高,提纯过程多处存在升温、降温过程,生产成本高。采用"倒推法"分析了装置公用工程消耗的主要影响因素,通过节能改造,余热、废汽与废水回收,正常生产每年可节省生产成本390余万元。  相似文献   
996.
In this article, we design a new thermal curing method: two‐stage curing. The purpose of using this approach is to maintain the excellent shape‐memory property of epoxy resin system after first stage curing, and the material can be folded in small size to storage or transportation and recovery its original shape commodiously by heating temperature. Then, after second stage curing, the stability, glass transition temperature(Tg), and tensile strength of material can be improved effectively. For this aim, a series of mixtures have been prepared. Differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), tensile test, scanning electron microscope (SEM), dynamic mechanical analysis (DMA), and fold‐deploy shape‐memory test have been used to characterize the feasibility of two‐stage curing process, curing degree, tensile strength, morphology, thermodynamic properties, and shape‐memory performance of these polymers. DSC results show that two independent curing stages can be achieved successfully. Tensile tests and DMA results suggest that tensile strength and heat resistance have been improved after the second curing stage. SEM results reveal that the addition of latent curing agent do not change the fracture mechanism. Furthermore, the fold‐deploy shape‐memory tests prove that the composites after first stage curing possess eximious shape‐memory property. © 2013 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014 , 131, 39882.  相似文献   
997.
Shape memory epoxy resins are derived on reacting E51 with triethylenetetramine in presence of the toughening agent polypropylene glycol diglycidyl ether (PPGDGE). The curing behaviors are studied with differential scanning calorimetry. The toughening system shows a decrease in activation energy. ?esták–Berggren model is utilized to establish the kinetic equations. The fitting results prove that the equations can well describe the reactions. Tensile tests and dynamic mechanical analysis are used to analyze mechanical performances and thermodynamics. Shape memory properties are characterized by fold‐deploy tests. The elongation at break increases as the concentration of PPGDGE increases. The toughening materials have lower glass transition temperature (Tg). The fixable ratios of all systems are greater than 99.5%. The shape recovery time decreases with increasing the PPGDGE concentration. The optimal system can fully recover its original shape in about 2 min at Tg + 30°C, and exhibit the maximum fold‐deploy cycles as 13 cycles. © 2014 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2014 , 131, 40853.  相似文献   
998.
The formation of polymer networks polymerized with the Copper (I) – catalyzed azide – alkyne cycloaddition (CuAAC) click reaction is described along with their accompanying utilization as shape memory polymers. Due to the click nature of the reaction and the synthetic accessibility of azide and alkyne functional-monomers, the polymer architecture was readily controlled through monomer design to manipulate crosslink density, ability for further functionalization, and the glass transition temperature (55–114 °C). Free strain recovery is used to quantify the shape memory properties of a model CuAAC network resulting in excellent shape fixity and recovery of 99%. The step growth nature of this polymerization results in homogenous network formation with narrow glass transitions ranges having half widths of the transition close to 15 °C for these materials resulting in shape recovery sharpness of 3.9%/°C in a model system comparable to similarly crosslinked chain growth polymers. Utilization of the CuAAC reaction to form shape memory materials opens a range of possibilities and behaviors that are not readily achieved in other shape memory materials such as (meth) acrylates, thiol-ene, thiol-Michael, and poly(caprolactone) based shape memory materials.  相似文献   
999.
采用十溴二苯乙烷(DBDPE)协同三氧化二锑(Sb2O3)组成复合阻燃剂DBDPE–Sb2O3(D–S)阻燃长玻纤增强聚丙烯(LGFPP),并采用热烘箱老化法研究了140℃条件下不同热氧老化时间对复合材料热氧老化性能的影响。结果表明,随着热氧老化时间的延长,LGFPP/D–S阻燃体系的氧指数值呈现出先升高后下降的趋势,垂直燃烧等级始终保持FV–0级的阻燃级别,复合材料的结晶度减小,力学性能逐渐下降。PP基体分子链的断裂以及玻纤与PP基体间发生界面脱粘是导致LGFPP/D–S复合材料宏观力学性能下降的主要原因。红外光谱表明,随着热氧老化时间的延长,试样表面会产生更多的生色基团使材料发生黄变,说明PP基体分子链的断裂加剧。  相似文献   
1000.
埃塞俄比亚DMC项目5600t/d熟料项目是目前非洲单条线生产能力最大的,也是建设难度最大的生产线。简要介绍了该线的主要设备;重点就矿山长皮带、原料磨系统、煤磨系统和窑系统这四个系统生产调试中出现的问题及解决措施进行了分析介绍。经过一系列的生产调试和技术改造,现生产线各项指标均达到并超过了设计要求。  相似文献   
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