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Study on transient liquid-phase bonding technology of steel TP304

Xingeng Li

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Abstract

TP304 and T91 steel pipes were joined by transient liquid-phase bonding process using BNi2, Fe~SigBI3 and FeNiCrSiB filler in argon atmosphere. The mierostructures, properties, as well as the element distribution of the joints have been examined, and TLP bonding parameter is determined. The test results showed that the tensile strength and bencl strength at room temperature of the joint of TP304 with BNi2 and FeNiCrSiB filler was equal to or greater than that of the base metal, and so was Tgl with FeNiCrSiB filler.

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What this paper is about

TP304 and T91 steel pipes were joined by transient liquid-phase bonding process using BNi2, Fe~SigBI3 and FeNiCrSiB filler in argon atmosphere. The mierostructures, properties, as well as the element distribution of the joints have been examined, and TLP bonding parameter is determined. The test results showed that the tensile strength and bencl strength at room temperature of the joint of TP304 with BNi2 and FeNiCrSiB filler was equal to or greater than that of the base metal, and so was Tgl with FeNiCrSiB filler.

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Available abstract

TP304 and T91 steel pipes were joined by transient liquid-phase bonding process using BNi2, Fe~SigBI3 and FeNiCrSiB filler in argon atmosphere. The mierostructures, properties, as well as the element distribution of the joints have been examined, and TLP bonding parameter is determined. The test results showed that the tensile strength and bencl strength at room temperature of the joint of TP304 with BNi2 and FeNiCrSiB filler was equal to or greater than that of the base metal, and so was Tgl with FeNiCrSiB filler.

Key concepts: Materials science, Transient (computer programming), Filler (materials), Composite material, Ultimate tensile strength, Base metal, Joint (building), Liquid phase

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