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Creep characteristics of austenitic stainless steel foil at elevated temperature

机译:奥氏体不锈钢箔在高温下的蠕变特性

摘要

High efficiency and compact recuperator with thin foil corrugated air cell as the primary surface is employed in clean and efficient microturbine system (100 kW). Current primary surface recuperators are made of AISI 347 austenitic stainless steel foils that operate at gas inlet temperature of less than 650 °C and attain approximately 30 percent of efficiency. Efficiency of greater than 40 percent is possible with the increase in turbine inlet temperature to 1230 °C, and as a result recuperator inlet temperature increase to 843 °C. This study establishes base line creep rupture behaviour of AISI 347 austenitic stainless steel foils at operating temperature of 700 °C and applied stress of 100 MPa. Creep behaviour of the foil shows that the primary creep stage is short and creep life of the foil is dominated by tertiary creep deformation. The time to rupture for the foil specimen is 184 hours with the corresponding rupture strain of 8.6 percent. Creep curves for AISI 347 austenitic stainless steel foil at 700 °C, 100 MPa are represented by the modified Theta-Projection concept model with hardening and softening terms. The creep coefficients, ?1 and ?3, and the exponent a are -0.6849, 0.6726 and 0.0038 respectively. Theta-Projection parameters values of experimental creep at temperature of 700 °C and applied stress of range 54-221 MPa shows a sudden gradient change at applied stress of 150 MPa possibly due to different mechanism of dislocation movements and microstructure changes. Two different creep failure mechanisms for austenitic stainless steel foils are possible since the creep failure data falls very close to the boundary of dislocation and diffusion creep regions in the creep mechanism map for bulk material
机译:清洁高效的微型涡轮系统(100 kW)采用了以薄箔波纹气室为主要表面的高效紧凑型换热器。当前的主表面换热器由AISI 347奥氏体不锈钢箔制成,可在进气温度低于650°C的条件下工作,并达到约30%的效率。涡轮进口温度升至1230°C时,效率可能超过40%,因此,换热器入口温度升至843°C。这项研究建立了AISI 347奥氏体不锈钢箔在700°C的工作温度和100 MPa的施加应力下的基线蠕变断裂行为。箔片的蠕变行为表明初级蠕变阶段很短,而箔片的蠕变寿命主要由三次蠕变变形决定。箔样品的破裂时间为184小时,相应的破裂应变为8.6%。 AISI 347奥氏体不锈钢箔在700°C,100 MPa时的蠕变曲线由修正的Theta-Projection概念模型(带有硬化和软化术语)表示。蠕变系数α1和α3以及指数a分别为-0.6849、0.6726和0.0038。在700°C的温度和54-221 MPa的施加应力下的实验蠕变的Theta-Projection参数值显示,在150 MPa的施加应力下,突然的梯度变化可能是由于位错运动和微观结构变化的机理不同。奥氏体不锈钢箔的两种不同的蠕变破坏机制是可能的,因为蠕变破坏数据非常接近散装材料蠕变机制图中的位错和扩散蠕变区域的边界。

著录项

  • 作者

    Shahrul Azhar Ilya Izyan;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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