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6.4 矩形截面正截面承载力计算 6.5 工形截面正截面承载力计算(自学) 6.6 双向偏心受压构件的正截面承载力计算
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6.1 轴心受压构件的承载力计算 6.2 压力和弯矩共同作用下的截面受力性能 6.3 附加偏心距和偏心距增大系数
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bias components are the mechanical characteristics of cross sections and two failure modes, Boundaries and determine the size of bias conditions; Familiar with eccentric compression of the second-order effect and calculation; Eccentric rectangular cross-section bearing capacity of compression members is calculated, Including the formula, the formula of the applicable conditions of reinforcement and non-symmetrical Design and reinforcement of the cross-section symmetrical cross section for review; I-shaped, T shaped eccentric compression AND CIVIL ENGINEERING Calculation method; Circular section eccentric compression member cross section design and review; Eccentric compression reinforcement of the structure and reasonable layout requirements
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§7.1 概述 §7.2 纯扭构件的试验研究 §7.3 纯扭构件的扭曲截面承载力 §7.4 弯剪扭构件的扭曲截面承载力
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3.1 梁、的一般构造板 3.2 受弯构件证截面的受弯性能 3.3 正截面受弯承载力计算原理 3.4 单筋矩形截面受弯正截面承载力计算 3.5 双筋矩形截面受弯正截面承载力计算 3.6 T形截面受弯正截面承载力计算
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Computation of Stress, Crack width and Reflection of RC Flexural Members  Characteristics of use of reinforced concrete beam during the calculation.  The concept of transformed section and the geometric characteristics.  The stress state of reinforced concrete short-term checking.  Flexural members of the cracks and the maximum width of crack.  Deformation of flexural members.  Durability of concrete structures
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Oblique cross-section flexural members of the mechanical characteristics and failure modes. Oblique section of bending members the main factor for shear strength. Flexural oblique shear strength formula for conditions. Such a high degree of web reinforcement beams of the preliminary design steps. Resisting moment mapping. Check all of bearing capacity and structural requirements. Construction oblique shear strength calculations
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2.1 砌体材料及其强度等级 2.2 砌体的种类 2.3 砌体的受压性能 2.4 砌体的受拉、受弯和受剪性能 2.5 砌体的变形和其他性能
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通过单因素试验对改性生土的工程特性进行试验研究,从而确定草筋、粉煤灰、水泥、生石灰的合理取值区间。利用正交试验方法考察各因素对改性生土抗压强度、抗折强度的影响,并对试验结果进行了极差、方差和因素指标分析。结果表明,各因素对改性生土砌块28d抗压强度的影响顺序为:水泥C>草筋A>粉煤灰B>生石灰D。各因素对改性生土砌块28d抗折强度的影响顺序为:草筋A>水泥C>生石灰D>粉煤灰B。综合分析各因素对改性生土砌块抗压强度、抗折强度的影响,最终确定改性生土砌块的最优配合比
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为充分利用当地工业固废研制新型生态墙体材料,在前期试验研究的配合比基础上,设计不同砂率、不同微硅粉掺量、不同脱硫石膏掺量、不同脱硫灰掺量、不同水泥掺量、不同水胶比这6种单因素,主要进行了45组135块新型陶粒混凝土立方体试件的抗压强度和表观密度的试验研究。研究结果表明,各因素对材料的抗压强度和表观密度均有较大影响,几种工业废料可以作为陶粒混凝土的掺合料使用
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