| 1. | Elastic limit yeung ' s module of elasticity to yield point 弹性限度阳氏弹性系数及屈服点 |
| 2. | Stresses beyond the elastic limit 超过弹性极限的应力 |
| 3. | Strsses within the elastic limit 弹性范围内应力 |
| 4. | Elastic limit for compression 压缩弹性极限 |
| 5. | Elastic limit for tension 拉伸弹性极限 |
| 6. | High - elastic limit steel 高弹性极限钢 |
| 7. | Apparent elastic limit 视弹性限度 |
| 8. | Elastic theory and plastic theory are adopted in the analysis of the two section composite beam . elastic theory suggests , on the condition of the same steel beam section size , the composite beam for the floorslab is suited lower flanges convertion section stiffness cuts down by 75 . 1 % , elastic limit bending resistant capability cuts down by 47 . 9 % , than the composite beam for the floorslab is suited on the top flange . it s conversion section stiffness is lifted 8 . 0 % , elastic limit bending resistant capability is lifted 0 . 20 % , than the steel beam 弹性理论分析的结果表明,在钢梁截面大小相同的条件下,楼板位于钢梁下翼缘的组合梁和楼板位于钢梁上翼缘的组合梁相比,其换算截面刚度降低75 . 1 ,梁的弹性极限抗弯承载力降低47 . 9 ,楼板位于钢梁下翼缘的组合梁和纯钢梁相比,其换算截面刚度提高8 . 0 ,梁的弹性极限抗弯承载力提高0 . 2 。 |