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1)  partial body-weight support(BWS) system
减重支撑系统
1.
Aiming at realizing a self-control partial body-weight support(BWS) system,a Cable-driven BWS system was designed,the dynamic model was accomplished,and the force control system was developed to keep the weight force constant.
为了在减重步行训练中实现自主控制的减重支撑,设计了一种绳牵引式的减重支撑系统,完成了动力学建模,并采用力控制方式实现了减重力的恒定,通过Simulink对控制系统进行了仿真。
2)  Gravity support system
重力支撑系统
3)  International Thermonuclear Experimental Reactor gravity support system
ITER重力支撑系统
4)  supporting system
支撑系统
1.
Checking calculation of formwork-supporting system of central hall roof in Lianda commercial square;
联达商业广场卖场中庭屋面模板支撑系统验算
2.
The Research and Implementation of Standardized Remote Courseware Supporting System;
标准化远程课件支撑系统研究和实现
3.
Study On Supporting System Of Standardized Distance Courseware;
标准化远程课件支撑系统研究
5)  Bracing system
支撑系统
1.
Ensure the stability of bracing system to prevent collapse accident of form;
保证支撑系统稳定 防止模板坍塌事故
2.
Researches on bracing system of foundation pit using simplified space analytical method;
深基坑支护结构支撑系统简化空间分析方法的研究
3.
Combined wtih practical work the design of transition beam formwork and its bracing system of high-rise building are briefly introduced.
结合工程实例,简要的介绍了高层建筑转换梁模板及支撑系统的设计过程,并提出设计时应注意的几个问题,以使模板及支撑达到足够的承载能力、刚度及整体稳定性,以供技术人员参考。
6)  support system
支撑系统
1.
This paper discusses the following three aspects: the construction load calculation of shuttering and support system; the structure requirement to shuttering support system; the check and acceptance, puts forward a calculating method by Excel, in order to insure the high support shuttering construction economical and safe.
本文从模板及支撑系统的施工荷载计算、构造要求和检查验收三个方面进行探讨,提出了用Excel电子表格的计算方法,以确保高支撑模板施工经济合理、安全可靠。
2.
This paper introduces the design of the support system for the construction of the underground chamber with large-span and high-side-wall and the impervious and anti-crack techniques for the concrete structure.
介绍了大跨度高边墙地下洞室被复混凝土施工支撑系统的设计以及混凝土结构的抗渗、抗裂技术,这些技术在海南某工地进行了现场应用,整个工程全部符合设计和规范要求。
补充资料:多孔陶瓷支撑体膜
分子式:
CAS号:

性质:在多孔陶瓷体上附着的微孔陶瓷膜层。膜层厚度一般在几微米到几十微米,外径孔径一般为0.1~0.5μm,个别也有厚度达3~5μm、孔径10μm的。多采用氧化铝、二氧化钛和二氧化锆等作膜材料。制法是:用电机带动陶瓷支撑体旋转,当溶胶液(膜材料)滴落在支撑体上,就会迅速地敷覆到支撑体表面,待溶剂蒸发、凝胶化和干燥成膜后,经热处理而制成氧化物薄膜。现已为食品(含饮料)、医药、生物技术和环境保护等领域开发利用。

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