| 1. | Optical fiber strength test equipment 光纤强度测试器 |
| 2. | Effect of exogenous materials on cotton fiber strength development in low temperature conditions 低温条件下外源物质对棉纤维比强度的影响 |
| 3. | Experiment study on the abrasion and impact performance of fiber strength latex mortar 纤维增强聚合物水泥砂浆耐磨损及抗冲击性能的试验研究 |
| 4. | This paper probes into the effects of process conditions on precursor fiber strength , elongation and chemical residual 摘要本文探讨了工艺条件对粘胶原丝强度、伸长及化学物残留量的影响。 |
| 5. | This article discuss several effecting factors about pan - base carbon fiber strength . we make emphasis on annlysis the influencing factors of polymerization pro - oxygen carbonization process 摘要本文分析了碳纤维研发过程中对强度的影响因素。著重对原丝生产、预氧化过程、碳化过程中的主要影响因素分别进行了分析。 |
| 6. | Our company constantly enlarges study and devotion , keep the close connection with domestic and oversea graduate school , we have explored aramid fiber strength materials kfrp and carbon fiber strength materials cfrp successfully 公司在不断加大研发投入,现国外知名科研所有着广泛的联系,并成功开发出芳纶纤维增强材料kfrp ,碳素纤维增强材料cfrp |
| 7. | The carbon fiber damage mainly occurs in the first cycle of pip , in which carbon fiber strength lose is greater than the total strength lose in following cycles , and the main form of damage is physical damage of thermal stress Pip工艺第一周期对碳纤维损伤最大,第一周期中碳纤维的强度损失率远大于后续多个周期浸渍裂解中碳纤维强度损失的总和。碳纤维损伤的主要形式是热应力物理损伤。 |
| 8. | Simultaneity , various single fiber strength tests ( sft ) and the single fiber fragmentation techniques were discussed , and the influence of fiber surface treatment on the single fiber strength and the interface load - transfer were discussed in detail . the two parameters weibull statistic theory was used to evaluate the scattering of the tensile strength test results of three types of single fibers with different surface treatments . the following conclusions can be drawn based on the analysis of the results 同时,文中详细讨论了单纤维强度测试实验( sft )和单纤维复合材料断裂实验( sfc ) ,重点讨论了纤维表面处理对单纤维拉伸强度和界面载荷传递能力的影响;采用两参数weibull统计理论对经过三种不同表面处理的单纤维拉伸强度的测试结果的分散性进行了评价,获得了理想的实验结果;分析实验结果可得到如下结论, sft实验与sfc实验获得的界面剪切强度吻合良好;经过表面处理的玻璃纤维的界面粘结情况较未经处理的玻璃纤维好;经过表面处理的玻璃纤维的界面粘结强度和单纤维拉伸强度均高于未经表面处理的玻璃纤维。 |