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1)  Deceleration effectiveness
减速效果
2)  damping effect
减震效果
1.
Computer program for dynamic analysis of a structure including a Maxwell damping unit in itself as well was developed with Fortran and the damping effect of the damper on the anti-seismic performance of continuous girder bridges was investigated.
用Fortran语言编制可以包含Maxwell阻尼单元的结构动力分析程序,研究阻尼器对连续梁桥的减震效果。
2.
The analyses conclusions indicate that a good damping effect and a better earthquake resistant behavior of continuous girder bridges could be obtained with the help of metallic dampers.
通过抗震性能对比分析,研究了设置钢阻尼器对连续梁桥的减震效果。
3)  reducing vibration effects
减振效果
1.
Test results show that, on one hand, combined energy dissipation system has favorable reducing vibration effects on structural displacement and acceleration.
在一座三层单跨的钢结构模型中安装了铅芯橡胶耗能器及其和油阻尼器并联组合,对这两种耗能体系进行了振动台试验,以研究组合耗能体系的动力特性,检验其减振效果。
4)  peeling process result
减量效果
1.
In this paper, some orderliness through researching the offect of the peeling process rate as well as peeling process result of polyester fabric by peeling process parameter in the LMV092 continuous alkali peeling process machine (alkali concentration, steaming temperature, steaming time, assistants, mangle expressions) were attained.
结合LMV 0 92型平幅连续碱减量机通过对连续碱减量工艺生产中的工艺参数 (烧碱浓度、汽蒸温度、汽蒸时间、助剂、携液率 )对涤纶织物的减量率及减量效果影响的研究 ,找到了一定的规律 ,另外 ,还讨论了在连续碱减量工艺生产前后的预处理工序、预定形工序、水洗工
5)  friction reducing
减摩效果
6)  vibration-suppressing effect
减震效果
1.
The vibration-suppressing effect is much better when yielding displacement of the dissipater is from 0.
摩擦耗能支撑减震技术是一种行之有效的减震措施,本文利用ANSYS分析了耗能器屈服位移对结构减震效果的影响,得出对于本文算例耗能器屈服位移取为结构层屈服位移的0。
2.
The vibration-suppressing effect is much better when the ratio of bracing stiffness to structure stiffness is 2~6.
摩擦耗能支撑减震技术是一种行之有效的减震措施,本文利用ANSYS分析了斜撑刚度对结构减震效果的影响,得出对于本文算例斜撑刚度与结构刚度的比值为2-6时,减震效果最好。
3.
The results show that the friction energy dissipating brace has obviously vibration-suppressing effect,and decreases dynamical respons.
结果表明:摩擦耗能支撑具有明显的减震效果,它大大降低了地震作用下结构的动力反应。
补充资料:6JX防冲击橡胶减震器
分子式:
CAS号:

性质:属非线性大变形隔震防冲橡胶元件。由于其固有频率低、隔振效果好、承载范围宽、等频性好,特别适应于变负荷条件下的防冲击设备。为封闭结构,即使橡胶破裂,设备与基础也不脱开,可保证正常工作。适合于船舶、车辆等随机震动和冲击隔离要求较高的动力机械及电子设备等。

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