首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Creep, creep-rupture tests of Al-surface-alloyed T91 steel in liquid lead bismuth at 500 and 550 °c
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Creep, creep-rupture tests of Al-surface-alloyed T91 steel in liquid lead bismuth at 500 and 550 °c

机译:Al表面合金T91钢在500和550°C的液态铅铋中的蠕变蠕变断裂试验

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Surface layers made of FeCrAl alloys on T91 steel have shown their capability as corrosion protection barriers in lead bismuth. Pulsed electron beam treatment improves the density and more over the adherence of such layers. After the treatment of previously deposited coatings a surface graded material is achieved with a metallic bonded interface. Creep-rupture tests of T91 in lead-alloy at 550 °C reveal significant reduced creep strength of non-modified T91 test specimens. Oxide scales protecting the steels from attacks of the liquid metal will crack at a certain strain leading to a direct contact between the steel and the liquid metal. The negative influence of the lead-alloy on the creep behavior of non-modified T91 is stress dependent, but below a threshold stress value of 120 MPa at 550 °C this influence becomes almost negligible. At 500 °C and stress values of 200 MPa and 220 MPa the creep rates are comparable between them and significantly lower than creep rates at 180 MPa of original T91 in air at 550 °C. No signs of LBE influence are detected. The surface modified specimens tested at high stress levels instead had creep-rupture times similar to T91 (original state) tested in air. The thin oxide layers formed on the surface modified steel samples are less susceptible to crack formation and therefore to lead-alloy enhanced creep.
机译:T91钢上由FeCrAl合金制成的表面层已显示出它们作为铅铋中的腐蚀防护层的功能。脉冲电子束处理提高了密度,并进一步提高了此类层的附着力。在对先前沉积的涂层进行处理之后,可获得具有金属粘合界面的表面渐变材料。 550°C的铅合金中T91的蠕变断裂测试表明,未经修饰的T91测试样品的蠕变强度明显降低。保护钢免受液态金属侵蚀的氧化皮会在一定应变下破裂,从而导致钢与液态金属之间直接接触。铅合金对未改性T91蠕变行为的负面影响取决于应力,但是在550°C下低于120 MPa的极限应力值时,这种影响几乎可以忽略不计。在500°C和200 MPa和220 MPa的应力值之间,它们之间的蠕变速率相当,并且显着低于原始T91在550°C的空气中180 MPa时的蠕变速率。没有检测到LBE影响的迹象。在高应力水平下测试的表面改性试样的蠕变断裂时间与在空气中测试的T91(原始状态)相似。在表面改性钢样品上形成的薄氧化层较不易形成裂纹,因此不易产生铅合金蠕变。

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