The effects of carbon content (0.078-0.100 wt.%) on the microstructure and properties of 1000 MPa grade deposited metal produced by gas metal arc welding have been investigated. Experimental results show that the micr...The effects of carbon content (0.078-0.100 wt.%) on the microstructure and properties of 1000 MPa grade deposited metal produced by gas metal arc welding have been investigated. Experimental results show that the microstructure of the deposited metal was mainly composed of martensite, bainite and retained austenite. With increasing carbon content, the proportion of martensite increased, and the amount of bainite was reduced. High carbon content is beneficial to strength, but harmful to impact toughness, and thus, carbon reductions lead to the increase in impact toughness. When the carbon content was 0.100 wt.%, the lowest Charpy absorbed energy of 47 J at — 40℃ for the deposited metal was achieved, the highest yield strength of 1038 MPa was attained, and the yield-to-tensile ratio was more than 0.88, while the highest Charpy absorbed energy of 55.7 J at — 40℃ and the lowest yield strength of 915 MPa were obtained when the deposited metal contains 0.078 wt.% C, and the yield-to-tensile ratio was less than 0.85. It is concluded that bainite fraction and fine effective grain size were the dominant factors to achieve good comprehensive mechanical properties (the required strength and an acceptable toughness) of deposited metals with various carbon contents.展开更多
Electrode ENiFe-C1 and E4303 were selected to join the cemented carbide WC-20Co and carbon steel 45 by shielded metal arc welding process. Microstructure and bending property of the corresponding joints were analyzed....Electrode ENiFe-C1 and E4303 were selected to join the cemented carbide WC-20Co and carbon steel 45 by shielded metal arc welding process. Microstructure and bending property of the corresponding joints were analyzed. The results showed that the carbon steel electrode E4303 had no proper metallurgy condition for the arc welding of cemented carbide and carbon steel. The C and Ni content of the cast iron electrode ENiFe-C1 could meet the condition of preventing the formation ofη carbide,which was suit to the arc welding of cemented carbide and carbon steel,but the operation parameters needed to be optimized to minimize the slag inclusion. The alloy WC-20Co which did not fit for cold arc welding,by adopting the measure of being preheated at 723 K for 1 h before welding,and being kept at 723 K for 3 h after welding then followed furnace cooling could avoid the happening of crack in the WC-20Co base metal.展开更多
采用自动埋弧焊机对超低碳贝氏体钢(ULCB钢)进行直缝双面焊双面成型焊接试验,分析了焊接热输入对其焊接接头组织及性能的影响。结果表明:焊缝显微组织主要是针状铁素体和粒状贝氏体,这两种相组成和相比例,极大地影响了接头的强韧性。随...采用自动埋弧焊机对超低碳贝氏体钢(ULCB钢)进行直缝双面焊双面成型焊接试验,分析了焊接热输入对其焊接接头组织及性能的影响。结果表明:焊缝显微组织主要是针状铁素体和粒状贝氏体,这两种相组成和相比例,极大地影响了接头的强韧性。随着焊接热输入增大,焊缝区针状铁素体含量先减少后增加,粒状贝氏体含量先增大后减少,热影响区晶粒变得粗大,ULCB钢接头强韧性呈现一定规律的变化。在较小的焊接线能量(24.81 k J/cm)下,焊接接头具有优良的强韧性,抗拉强度达到803.63 MPa,为母材抗拉强度的94.3%,焊缝和热影响区冲击韧性分别为193、232 J。展开更多
In this work, the effect of heat input on the mechanical properties of low-carbon steel was studied using two welding processes: Oxy-Acetylene Welding (OAW) and Shielded Metal Arc Welding (SMAW). Two different edge pr...In this work, the effect of heat input on the mechanical properties of low-carbon steel was studied using two welding processes: Oxy-Acetylene Welding (OAW) and Shielded Metal Arc Welding (SMAW). Two different edge preparations on a specific size, 10-mm thick low-carbon steel, with the following welding parameters: dual welding voltage of 100 V and 220 V, various welding currents at 100, 120, and 150 Amperes and different mild steel electrode gauges of 10 and 12 were investigated. The tensile strength, hardness and impact strength of the welded joint were carried out and it was discovered that the tensile strength and hardness reduce with the increase in heat input into the weld. However, the impact strength of the weldment increases with the increase in heat input. Besides it was also discovered that V-grooved edge preparation has better mechanical properties as compared with straight edge preparation under the same conditions. Microstructural examinations conducted revealed that the cooling rate in different media has significant effect on the microstructure of the weldment. Pearlite and ferrite were observed in the microstructure, but the proportion of ferrite to pearlite varied under different conditions.展开更多
Welded joint impact performances of low-alloy carbon steel plates welded by full-automatic gas metal arc welding (GMAW) were evaluated. To clarity the effect of impact temperature on impact properties of weld metal ...Welded joint impact performances of low-alloy carbon steel plates welded by full-automatic gas metal arc welding (GMAW) were evaluated. To clarity the effect of impact temperature on impact properties of weld metal (WM) and heat- affected zone ( HAZ), Charpy V impact tests at different temperatures and fracture surface analysis were carried out. The Charpy V impact energy decreases with the decreasing test temperature both for the WM and HAZ, while the proportion of crystal zone on WM and HAZ impact fracture surface increases with the decreasing test temperature. Research results indicate that the welding defects (void and slag) make the impact energy of WM more scattered and lower than that of HAZ.展开更多
利用金相显微镜、冲击试验等研究了Nb、Ti微合金元素对连铸10MnNiCr钢埋弧焊焊接接头组织与韧性的影响。结果表明,Nb V Ti钢的焊缝和焊接热影响区比Nb V钢的具有更高的冲击韧性。其中Nb元素易促进侧板条铁素体形成,对韧性不利;Ti元素易...利用金相显微镜、冲击试验等研究了Nb、Ti微合金元素对连铸10MnNiCr钢埋弧焊焊接接头组织与韧性的影响。结果表明,Nb V Ti钢的焊缝和焊接热影响区比Nb V钢的具有更高的冲击韧性。其中Nb元素易促进侧板条铁素体形成,对韧性不利;Ti元素易使焊缝金属产生针状铁素体,并抑制CG HAZ晶粒粗化,对改善埋弧焊接头韧性有显著作用。展开更多
文摘The effects of carbon content (0.078-0.100 wt.%) on the microstructure and properties of 1000 MPa grade deposited metal produced by gas metal arc welding have been investigated. Experimental results show that the microstructure of the deposited metal was mainly composed of martensite, bainite and retained austenite. With increasing carbon content, the proportion of martensite increased, and the amount of bainite was reduced. High carbon content is beneficial to strength, but harmful to impact toughness, and thus, carbon reductions lead to the increase in impact toughness. When the carbon content was 0.100 wt.%, the lowest Charpy absorbed energy of 47 J at — 40℃ for the deposited metal was achieved, the highest yield strength of 1038 MPa was attained, and the yield-to-tensile ratio was more than 0.88, while the highest Charpy absorbed energy of 55.7 J at — 40℃ and the lowest yield strength of 915 MPa were obtained when the deposited metal contains 0.078 wt.% C, and the yield-to-tensile ratio was less than 0.85. It is concluded that bainite fraction and fine effective grain size were the dominant factors to achieve good comprehensive mechanical properties (the required strength and an acceptable toughness) of deposited metals with various carbon contents.
基金supported by the Natural Science Foundation of Liaoning Provence(Grant No.2014028023)
文摘Electrode ENiFe-C1 and E4303 were selected to join the cemented carbide WC-20Co and carbon steel 45 by shielded metal arc welding process. Microstructure and bending property of the corresponding joints were analyzed. The results showed that the carbon steel electrode E4303 had no proper metallurgy condition for the arc welding of cemented carbide and carbon steel. The C and Ni content of the cast iron electrode ENiFe-C1 could meet the condition of preventing the formation ofη carbide,which was suit to the arc welding of cemented carbide and carbon steel,but the operation parameters needed to be optimized to minimize the slag inclusion. The alloy WC-20Co which did not fit for cold arc welding,by adopting the measure of being preheated at 723 K for 1 h before welding,and being kept at 723 K for 3 h after welding then followed furnace cooling could avoid the happening of crack in the WC-20Co base metal.
文摘采用自动埋弧焊机对超低碳贝氏体钢(ULCB钢)进行直缝双面焊双面成型焊接试验,分析了焊接热输入对其焊接接头组织及性能的影响。结果表明:焊缝显微组织主要是针状铁素体和粒状贝氏体,这两种相组成和相比例,极大地影响了接头的强韧性。随着焊接热输入增大,焊缝区针状铁素体含量先减少后增加,粒状贝氏体含量先增大后减少,热影响区晶粒变得粗大,ULCB钢接头强韧性呈现一定规律的变化。在较小的焊接线能量(24.81 k J/cm)下,焊接接头具有优良的强韧性,抗拉强度达到803.63 MPa,为母材抗拉强度的94.3%,焊缝和热影响区冲击韧性分别为193、232 J。
文摘In this work, the effect of heat input on the mechanical properties of low-carbon steel was studied using two welding processes: Oxy-Acetylene Welding (OAW) and Shielded Metal Arc Welding (SMAW). Two different edge preparations on a specific size, 10-mm thick low-carbon steel, with the following welding parameters: dual welding voltage of 100 V and 220 V, various welding currents at 100, 120, and 150 Amperes and different mild steel electrode gauges of 10 and 12 were investigated. The tensile strength, hardness and impact strength of the welded joint were carried out and it was discovered that the tensile strength and hardness reduce with the increase in heat input into the weld. However, the impact strength of the weldment increases with the increase in heat input. Besides it was also discovered that V-grooved edge preparation has better mechanical properties as compared with straight edge preparation under the same conditions. Microstructural examinations conducted revealed that the cooling rate in different media has significant effect on the microstructure of the weldment. Pearlite and ferrite were observed in the microstructure, but the proportion of ferrite to pearlite varied under different conditions.
文摘Welded joint impact performances of low-alloy carbon steel plates welded by full-automatic gas metal arc welding (GMAW) were evaluated. To clarity the effect of impact temperature on impact properties of weld metal (WM) and heat- affected zone ( HAZ), Charpy V impact tests at different temperatures and fracture surface analysis were carried out. The Charpy V impact energy decreases with the decreasing test temperature both for the WM and HAZ, while the proportion of crystal zone on WM and HAZ impact fracture surface increases with the decreasing test temperature. Research results indicate that the welding defects (void and slag) make the impact energy of WM more scattered and lower than that of HAZ.
文摘利用金相显微镜、冲击试验等研究了Nb、Ti微合金元素对连铸10MnNiCr钢埋弧焊焊接接头组织与韧性的影响。结果表明,Nb V Ti钢的焊缝和焊接热影响区比Nb V钢的具有更高的冲击韧性。其中Nb元素易促进侧板条铁素体形成,对韧性不利;Ti元素易使焊缝金属产生针状铁素体,并抑制CG HAZ晶粒粗化,对改善埋弧焊接头韧性有显著作用。