| 1. | The concrete flexural fatigue property by adding polypropylene fiber 聚丙烯纤维混凝土弯曲疲劳性能 |
| 2. | Testing method of flexural fatigue of rigid plastics by plane bending 硬质塑料板平面弯曲疲劳的测试方法 |
| 3. | Test method for flexural fatigue of plastics by constant - amplitude - of - force 采用等幅强振动方法测定塑料挠性疲劳强度的方法 |
| 4. | Experimental investigation on flexural fatigue behavior of plain weave glassfiber reinforced laminates 玻璃纤维织物复合材料弯曲疲劳行为的试验研究 |
| 5. | Tests relating to pavements . determination of fatigue resistance on material bound with hydraulic binders . part 1 : flexural fatigue test with constant stress 路面试验.水硬性粘结剂材料疲劳性能测定.第1部分:恒定应力挠性疲劳试验 |
| 6. | As the study was performed successfully in the previous stage concerning the fold strength , the flexural fatigue behavior was to be examined for this concrete 本研究的前期成果已圆满结束,本文主要是针对这种混凝土的弯曲疲劳性能进行研究。 |
| 7. | 3 , the flexural fatigue equation was contrasted between lsfrc and lhfrc in the same quantity of steel fibers . the influence extent to flexural fatigue behavior of hybrid - fibers was studied 3 、比较了相同钢纤维掺量的层布式钢纤维混凝土与层布式混杂纤维混凝土的抗折疲劳方程,研究了混杂纤维对混凝土疲劳性能的影响程度。 |
| 8. | 4 , the flexural fatigue behavior of concrete is improved effectively though mixed steel fibers and polypropylene fibers . 5 , flexural fatigue mechanism was analyzed . the improving and damaging mechanism were studied 5 、对层布式混杂纤维混凝土的抗折疲劳机理进行了分析,初步探讨了混杂纤维混凝土的纤维增强机理及破坏机理。 |
| 9. | By analyzing the indoor flexural fatigue tests of small beams , the paper concludes that the fatigue life of lean concrete follows the two - parameter weibull distribution , and establishes two types of fatigue equation under different stress level and equivalent stress level 通过分析室内小梁弯拉疲劳试验结果,得出贫混凝土的疲劳寿命服从双参数威布尔分布,据此建立了不同应力水平和等效应力水平下两种形式的疲劳方程。 |
| 10. | This type of new composite material pavement well utilizes the different mechanical behavior of steel fibers and polypropylene fibers . lhfrc has outstanding comprehensive mechanical behavior and cuts the cost . the flexural fatigue behavior of lhfrc was to be examined in this text 这种复合材料路面型式充分地利用了钢纤维与聚丙烯纤维的不同力学性能互补的特性,使得层布式混杂纤维混凝土具有了优异的综合力学性能及良好的经济效益。 |