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1)  storage life distribution
贮存寿命分布
2)  shelf-life analysis
贮存寿命分析
1.
This paper proposes a modified model from shelf-life analysis and makes statistical inference on it.
从贮存寿命分析中提出了一种改进模型,考虑了模型的参数估计问题。
3)  shelf life
贮存寿命
1.
A dual initiator system for rapid cure SMC processing was developed and an optimum recipe of the dual initiator system was obtained by investigating the effects of initiator types and their proportions on the cure and shelf life of SMC paste,with the balance of curing time and shelf life of SMC paste achieved.
通过对不同类型的引发剂以及不同复合比例的引发体系对树脂糊固化特性及贮存寿命影响的研究,得到了复合引发体系的最佳比例,实现了树脂糊贮存寿命与固化时间的平衡。
2.
By statistical analysis of the test data, the shelf life distribution rule is studied, an estimate model for the shelf life is established, and the average value and the low confidence limits of the shelf life at storage temperature is predicted.
通过高温加速老化试验和统计分析,研究了某导弹战斗部中炸药装药的贮存寿命分布规律,在此基础上,建立了贮存寿命的可靠性评估模型,并对贮存温度下的平均贮存寿命及贮存寿命置信下限进行了评估。
4)  Storage life
贮存寿命
1.
Storage Life Evaluation of Rigid PU Foam by WLF Equation;
基于WLF方程的硬质聚氨酯泡沫塑料贮存寿命评估
2.
Storage life prediction for HTPB propellant under constant strain;
定应变下丁羟推进剂贮存寿命预估
3.
Study on the storage life of Li_x (M)/FeS_2 thermal battery;
锂合金-硫化铁热电池贮存寿命研究
5)  storage life
存贮寿命
1.
We introduce the experiment about accelerated ageing and mechanical capability of O shape ring Silicon-rubber in the engine,and calculate its storage life in terms of experimental data.
介绍发动机O形圈胶料加速老化试验及机械性能试验 ,根据试验数据估算出存贮寿
6)  life distribution
寿命分布
1.
Class of life distribution {IFRA t 0}and property;
{IFRAt_0}寿命分布类及其性质
2.
Research on Very High Fatigue Life Distribution and High Reliability of Structural Components;
金属材料超高周疲劳寿命分布和元件高可靠性研究
3.
Very high cycle fatigue(VHCF)test of 66 specimens of aluminum alloy LC4CS was done by piezo-electric fatigue testing machine,and the fatigue life data showed that the fatigue life distribution of the alloy under VHCF has a characteristic of duplex peak,which is related to the locations of fatigue crack initiation.
寿命分布的双峰特征使得传统的升降法不能用于确定材料的超高周疲劳的条件疲劳极限,超高周疲劳寿命的分散性远大于低周和高周疲劳寿命的分散性。
补充资料:贮存寿命
分子式:
CAS号:

性质:又称贮存寿命。在规定的条件下,预计性能会变化的材料(树脂、涂料、粘接剂等)可保持其基本性能,如操作性能、规定强度、可使用性等的存放时间。  

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