化学成分对Fe-C-Si-Mn - Cr-W-V合金沉积金属显微硬度参数影响的研究

N.V. Kibko, A.V. Zhukov, N.A. Kozyrev, R.E. Kryukov
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摘要

在Fe-C-Si-Mn-Cr-W-V系焊丝中引入钛和含碳氟物质制备沉积层的研究——铝生产气体净化粉尘,wt %: 21…46氧化铝;18…27F;8…15Na2O;0.4……6K2O;0.7曹…2.3;0.5……2.5二氧化硅;2.1, 3.3 Fe2O3;12.5, 30.2 CTotal;0.07……0.9 MnO;0.06……0.9分别;0.09……0.19秒;采用化学成分为质量的硅锰渣制成的药芯焊丝,在ASAW-1250焊接拖拉机上采用埋弧堆焊获得了堆焊层。%: 0.50 FeO;15.16 MnO;29.13曹;42.40二氧化硅;6.80 Al2O3;1.39 MgO;0.18 Na2O;0.59 K2O;0.28年代;0.022便士;0.004氧化锌;0.024摄氏度;0.32 F;0.17二氧化钛;0.033 Cr2O3。所进行的研究使人们能够确定所沉积的药芯焊丝的化学成分与所沉积金属的结构和性能之间的关系。结果表明,钛的加入提高了合金的硬度和显微硬度。含碳氟添加剂的使用导致微观组织变化,表现为获得组织-铁素体、珍珠岩和贝氏体,而不是组织-马氏体、δ-铁素体和残余奥氏体,并使沉积层组织中的马氏体针状体尺寸增加。微观结构的变化是由于在药芯焊丝的成分中加入了含氟碳的添加剂,并伴随着显微硬度和硬度的变化。随着药芯焊丝成分中含碳氟添加剂含量的增加,观察到沉积金属的显微硬度和硬度增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of effect of chemical composition on microhardness parameters of deposited metal by Fe—C—Si—Mn— Cr—W—V alloy
Studies of the deposited layer obtained using flux-cored wires of the Fe—C—Si—Mn—Cr—W—V system by introducing titanium and carbon-fluorine-containing material into their composition — gas cleaning dust of aluminum production, wt.%: 21...46 Al2O3; 18...27 F; 8...15 Na2O; 0.4...6 K2O; 0.7...2.3 CaO; 0.5...2.5 SiO2; 2.1...3.3 Fe2O3; 12.5...30.2 CTotal; 0.07...0.9 MnO; 0.06...0.9 MgO; 0.09...0.19 S; 0.10...0.18 P. The deposited layer was obtained using submerged arc surfacing by the ASAW-1250 welding tractor using a fabricated flux-cored wire made from slag produced by silicomanganese with a chemical composition, mass. %: 0.50 FeO; 15.16 MnO; 29.13 CaO; 42.40 SiO2; 6.80 Al2O3;1.39 MgO; 0.18 Na2O; 0.59 K2O; 0.28 S; 0.022 P; 0.004 ZnO; 0.024 C; 0.32 F; 0.17 TiO2; 0.033 Cr2O3. The studies carried out made it possible to establish the relationship between the chemical composition of the deposited flux-cored wire and the structure and properties of the deposited metal. It has been established that the introduction of titanium increases the values of hardness and microhardness. The use of a carbon-fluorine-containing additive leads to microstructural changes expressed in obtaining the structure — ferrite, perlite and bainite, in contras t to the structure — martensite, δ-ferrite and residual austenite, as well as to an increase in the size of martensite needles in the structure of the deposited layer. Microstructural changes are due to the introduction of a carbon fluorine-containing additive into the composition of flux-cored wire and are accompanied by a change in microhardness and hardness. With an increase in the content of the carbon-fluorine-containing additive in the composition of flux-cored wire, an increase in the microhardness and hardness of the deposited metal is observed.
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