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排序方式: 共有2513条查询结果,搜索用时 171 毫秒
51.
本文分析了塑料瓶的表面结构特性及其对贴标胶的要求,简介乳液胶的合成过程,讨论了聚会温度、搅拌速度、增粘剂和改性剂对贴标胶的影响。  相似文献   
52.
塑料模具材料选用原则及应用   总被引:1,自引:0,他引:1  
郭俊卿  陈渍霞 《塑料工业》2007,35(B06):233-234,240
对塑料模具材料的选用原则和新型模具材料进行了简要的介绍,在此基础上,以成型手机外壳塑料模具为例,对其关键零部件的选材应用进行了主要说明。  相似文献   
53.
Energy windowing is an algorithmic alarm method that can be applied to plastic scintillator-based radiation portal monitor (RPM) systems to improve operational sensitivity to certain threat sources while reducing the alarm rates from naturally occurring radioactive material. Various implementations of energy windowing have been tested and documented by industry and at Pacific Northwest National Laboratory, and are available in commercial RPMs built by several manufacturers. Moreover, energy windowing is being used in many deployed RPMs to reduce nuisance alarms and improve operational sensitivity during the screening of cargo. This paper describes energy windowing algorithms and demonstrates how these algorithms succeed when applied to “controlled” experimental measurements and “real world” vehicle traffic data.  相似文献   
54.
The primary aim of this paper is to provide an insight on the effect of the location of organoclay on the micro- and nano-scale deformation processes in melt-compounded nylon 66/organoclay/SEBS-g-MA ternary nanocomposites prepared by different blending sequences. In addition, the deformation processes of the ternary nanocomposites were compared to the binary nanocomposites (nylon 66/organoclay and nylon 66/SEBS-g-MA) and neat nylon 66. The incorporation of SEBS-g-MA particles toughened nylon 66 markedly; but the flexural modulus and strength were both reduced. Conversely, the use of organoclay increased the modulus but decreased the fracture toughness of nylon 66. Nylon 66/SEBS-g-MA/organoclay ternary nanocomposites exhibited balanced elastic stiffness and toughness. Stress-whitening studies of the fracture surfaces in terms of gray level were also performed and an attempt was made to correlate the optical reflectivity characteristics with fracture toughness. It was concluded that the capability of SEBS-g-MA particles to cavitate was decreased by the presence of organoclay in the SEBS-g-MA phase, resulting in reduced toughening efficiency. The best micro-structure for toughness and other mechanical properties is thus to maximize the amount of exfoliated organoclay in the nylon 66 matrix rather than to have it embedded in the finely dispersed SEBS-g-MA particles.  相似文献   
55.
针对生产过程中塑胶制品质量稳定性存在的问题,分析了塑胶硫化过程的特性,研究了硫化成形过程的智能控制策略和控制算法。在控制策略上可采用融合仿人智能控制和专家控制技术的智能控制系统策略。过程控制采用经改进的仿人智能控制算法,该法抗干扰能力强,动态和稳定性好,有效地抑制和消除控制系统中的混浊现象。采用融合智能控制策略,控制系统的鲁棒性强、稳定性好、控制精度高。  相似文献   
56.
57.
Plastic strain-controlled short crack growth and fatigue life   总被引:2,自引:0,他引:2  
Constant plastic strain-controlled and constant stress-controlled tests were performed on smooth and lightly notched specimens machined from a massive forging of 42CrMo4 steel. Comparison of the fatigue life curves plotted as function of the plastic strain amplitude and stress amplitude shows a decisive role of plastic strain amplitude. Crack initiation and the kinetics of short crack growth were studied in constant plastic strain amplitude loading and the relation between the crack growth coefficient and plastic strain amplitude was established. This is equivalent to the Coffin–Manson law and shows that the Coffin–Manson law can be interpreted in terms of short crack growth.  相似文献   
58.
对钢结构体系进行了分析,并以钢结构设计方法为依据,提出适用于多层住宅钢结构的节点型式。  相似文献   
59.
通过对一起有载调压变压器直流电阻不平衡故障分析,总结经验,提出解决措施以便更好地做好有载调压变压器的检修工作。  相似文献   
60.
Stents are very commonly used in the treatment of coronary heart disease. They are permanent vascular support structures that offer a preferred alternative to bypass surgery in certain situations. The purpose of this work is to examine the mechanical behaviour of a stainless steel balloon expandable stent design using computational micromechanics in the context of the finite element method. Deployment and cardiac pulsing loading conditions are considered. Classical phenomenological plasticity theory (J2 flow theory) and physically based crystal plasticity theory are used to describe the stent material behaviour. Parametric studies are carried out using both constitutive theories with a view to determining important stent deployment characteristics such as recoil and foreshortening. Comparisons of the results obtained using both theories illustrate differences, with the crystal plasticity theory models showing closer agreement to published performance data. The implications of this for stent design are discussed.  相似文献   
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