| 1. | Testing of wood ; determination of ultimate shearing stress parallel to grain 木材的检验.顺纤维方向的极限剪切强度的测定 |
| 2. | Carbon fibre reinforced plastics - unidirectional laminates - flexural test parallel to the fibre direction 碳素纤维增强塑料.单向层压塑料.与纤维方向平行的弯曲试验 |
| 3. | Carbon fibre reinforced plastics - unidirectional laminates - tensile test perpendicular to the fibre direction 碳纤维层压板材.单向层压板材.垂直于纤维方向的拉伸试验 |
| 4. | Carbon fibre reinforced plastics - undirectional laminates - tensile test parallel to the fibre direction 碳素纤维增强的塑料.无向的塑料层压制品.平行与纤维方向的抗拉试验 |
| 5. | Aerospace series . carbon fibre reinforced plastics . unidirectional laminates . flexural test parallel to the fibre direction 航天航空系列.碳纤维增强塑料.单向层压板.平行于纤维方向的弯曲试验 |
| 6. | Aerospace series . carbon fibre reinforced plastics . unidirectioneal laminates . tensile test parallel to the fibre direction 航空航天系列.碳纤维增强塑料.单向层压板.平行于纤维方向的拉伸试验 |
| 7. | Aerospace series . carbon fibre reinforced plastics . unidirectional laminates . tensile test perpendicular to the fibre direction 航空航天系列.碳素纤维增强塑料.单向层压板.垂直于纤维方向的拉伸试验 |
| 8. | Divide the vastus lateralis and vastus intermedius muscles in the direction of their fibers and open and reflect the periosteum for the proper distance 按纤维方向劈开股外侧肌和股中间肌;切开适当长度的骨膜并向两侧牵开。 |
| 9. | Along the fiber direction , the parallel model is used to describe the mechanical and electrical capability of pfc , and in the transverse direction , the combined model is used to catch the mechanical and electrical capability of pfc 在沿着纤维方向,采用并联模型来描述1 - 3型压电纤维复合材料的力学和电学特性,因为在这个方向上压电纤维和基体连续并联分布;在垂直纤维方向,模型既含有串联部分又含有并联部分,从而对整体而言形成了混合串并联模型。 |
| 10. | Fiber enlaced composite materials is widely used in engineering project . the mechanics property of the shell is rather complicated when analyzing the affect of composite materials shell ' s interlaminar stresses . the result shows that the interlaminar stresses of composite materials shell will be changed much according to the change of the fiber direction , not only the distribution style , but also the interface which the maxinal interlaminar shearing stresses belongs to 纤维缠绕复合材料壳体在工程实际中得到广泛应用,其壳体力学性能相当复杂,本文在分析复合材料壳体层间应力的影响时,提出了复合材料壳体层间应力随纤维方向的改变有较大的不同,不仅分布形式不同,其最大层间剪应力所在的界面也各不相同。 |