In 2022,Feng, X.; Feng, B.; Qin, X.; Wang, J. published an article in Materialwissenschaft und Werkstofftechnik. The title of the article was 《Properties and microstructure of copper/graphite composites with copper-coated graphite fabricated by electroless plating and spark plasma sintering》.Recommanded Product: 6381-59-5 The author mentioned the following in the article:
In order to improve the interfacial bonding between copper and graphite, copper was coated on the graphite by electroless plating. Copper/graphite composites with copper-coated graphite were fabricated by spark plasma sintering. The effects of copper-coated graphite on the d., elec. conductivity, mech. properties, friction and wear properties of copper/graphite composites were studied. The results show that: copper plating on the graphite surface can improve the wettability of graphite and copper, and the interface between them is well bonded. Compared with pure copper, the microstructure of the composites was significantly refined after adding copper-coated graphite. The mech. properties of the composites were significantly improved, with yield compressive strength and elastic modulus increasing by 220% and 240%, resp. With the increase of copper-coated graphite contents, the d. and the conductivity of the composites gradually decreased. The friction coefficient and wear rate of the composites were significantly reduced. The friction and wear mechanisms of the composites are mainly oxidation wear, fatigue wear and adhesive wear.Potassium sodium (2R,3R)-2,3-dihydroxysuccinate tetrahydrate(cas: 6381-59-5Recommanded Product: 6381-59-5) was used in this study.
Potassium sodium (2R,3R)-2,3-dihydroxysuccinate tetrahydrate(cas: 6381-59-5) is a ferroelectric crystal with a high piezoelectric effect and electromechanical coupling coefficient. Recommanded Product: 6381-59-5 It is utilized to break up emulsion in organic synthesis as well as a common precipitant in protein crystallography.
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