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Optimization of JK2LB chemical composition for ITER Central Solenoid conduit material

机译:ITER中央电磁导管材料JK2LB化学成分的优化

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The Japan Atomic Energy Agency (JAEA) has developed a cryogenic structural steel to be used in large superconducting magnets for a fusion machine, and the results of this development will be utilized in the International Thermonuclear Experimental Reactor (ITER). Low carbon and low boron JK2 (JK2LB), which has high strength and fracture toughness at 4 K and thermal contraction from room temperature to 4K which is lower than that of conventional 316LN steel has been developed as the conduit material for the ITER Central Solenoid (CS) conductor. In order to achieve the ITER requirements (0.2 percent yield strength > = 1000 MPa, fracture toughness K_(IC) (J) > = 130 MPa m) for CS conduit material, chemical components such as carbon, nitrogen and boron, were optimized. In addition, since the CS is to undergo 6 x 10~4 load cycles during its lifetime with a maximum principal stress of 490 MPa, fatigue crack growth assessment of the CS conduit was performed. As the result, JK2LB containing nitrogen of 0.2 percent, boron 15-40 ppm, and low carbon was found to achieve the strength and fracture toughness requirements. For the welding of JK2LB, a filler wire of JK2LB with a low nitrogen content of 0.13 percent was developed and fracture toughness of more than 130 MPa m was confirmed in the weld metal. Measured fatigue crack growth rates of the base and weld metal at 4 K are low enough to achieve the required CS coil operation cycle lifetime.
机译:日本原子能机构(JAEA)已开发出一种低温结构钢,用于聚变机的大型超导磁体中,这种开发的结果将用于国际热核实验堆(ITER)。低碳低硼JK2(JK2LB)具有较高的强度和4K的断裂韧性,并且从室温到4K的热收缩比传统的316LN钢低,已被开发为ITER中央电磁阀的导管材料( CS)导体。为达到CS导管材料的ITER要求(0.2%的屈服强度> = 1000 MPa,断裂韧性K_(IC)(J)> = 130 MPa m),对化学成分(例如碳,氮和硼)进行了优化。另外,由于CS在其使用寿命期间要承受6 x 10〜4个负载循环,最大主应力为490 MPa,因此对CS导管进行了疲劳裂纹扩展评估。结果,发现含有0.2%的氮,15-40ppm的硼和低碳的JK2LB达到强度和断裂韧性要求。对于JK2LB的焊接,开发了氮含量为0.13%的JK2LB填充焊丝,并确认了焊接金属的断裂韧性大于130 MPa m。在4 K下测得的母材和焊缝金属的疲劳裂纹扩展率足够低,无法达到所需的CS线圈工作循环寿命。

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