共查询到17条相似文献,搜索用时 234 毫秒
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采用CO2激光对抗拉强度为600MPa,厚度1.4mm的DP钢进行焊接.研究焊接速度对焊缝外观和截面成形的影响、接头的组织特点、硬度、强度和成形能力.结果表明,激光功率相同,焊接速度较低时焊缝易产生气孔,焊接速度较高时易发生飞溅;焊接速度对焊缝熔深及熔宽也有影响.焊缝区组织主要由马氏体构成,从焊缝、焊接热影响区到母材,组织中马氏体含量下降,接头的最高硬度出现在焊缝或热影响区.在平行于焊缝方向,焊接接头的抗拉强度高于母材,垂直于焊缝方向,接头的抗拉强度与母材相当.由于焊缝出现马氏体组织,接头的塑性和韧性降低,板材的冲压成形能力下降. 相似文献
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采用Nd:YAG激光对强度为800MPa,厚度为1.2mm的TRIP钢板进行焊接.研究焊接速度对焊缝外观和截面成形的影响及接头的组织特点、硬度、强度和成形能力.激光功率相同,焊接速度较低时焊缝易产生气孔,速度较高时易发生飞溅;焊接速度对焊缝熔深及熔宽也有影响.焊缝组织主要由马氏体构成,从焊缝、热影响区到母材,组织中马氏体含量下降,接头的最高硬度出现在焊缝或热影响区.在平行于焊缝方向,焊接接头的抗拉强度高于母材,垂直于焊缝方向,接头的抗拉强度与母材相当.由于焊缝中出现马氏体,接头的塑性和韧性降低,板材的冲压成形能力下降. 相似文献
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在HWI-IFW-130型轴/径向多功能惯性摩擦焊机上,成功实现热轧态与热轧态AMS6308钢、淬火+回火态与淬火+回火态AMS6308钢惯性摩擦焊接. 对两种不同热处理状态的焊接接头进行检测分析. 结果表明,母材为热轧态的焊接接头,焊缝区为马氏体组织,热力影响区和热影响区为马氏体+贝氏体组织;母材为淬火+回火态的焊接接头,焊缝区为马氏体组织,热力影响区和热影响区为马氏体回火组织. 以焊缝为中心,显微维氏硬度呈对称分布,焊缝区显微维氏硬度最高;两种不同热处理状态母材获得的焊接接头,拉伸均断于母材. 相似文献
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研究了三种不同的激光焊接速度对Q420钢焊接接头成形、显微组织、硬度和常温拉伸性能的影响。结果表明,不同焊接速度下钢板都已经焊透,焊接接头中未发现焊接气孔、夹杂等缺陷,焊接接头的界面结合性较好;随着焊接速度的增加,焊接接头上表面和下表面宽度都逐渐减小,且在焊接速度为2.0 cm/s时形成了深度约为0.8 mm的下塌;不同焊接速度下,激光焊接头粗晶区显微组织都为板条马氏体,且随着焊接速度的增大平均晶粒尺寸逐渐减小;细晶区组织都为铁素体和M-A组元,铁素体晶粒尺寸主要为3~5μm;焊缝区组织都主要为板条马氏体,在焊接速度为2.0 cm/s时,组织中还出现了少量粒状贝氏体和铁素体;三种焊接速度下焊接接头显微硬度都高于母材,峰值硬度都出现在粗晶区附近;三种焊接接头拉伸断口都出现在母材处,抗拉强度和屈服强度高于Q420母材,而断后伸长率与母材相当或者略低于母材。 相似文献
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对薄板TC4钛合金进行TIG电弧和激光焊接技术研究,重点分析了TIG焊接电流、焊接速度和激光输出功率对TC4钛合金焊接接头晶粒尺寸、微观组织和显微硬度的影响规律. 试验结果表明,在实现薄板TC4钛合金完全熔透的条件下,激光焊接具有更小热输入,接头焊缝区和热影响区宽度也显著降低. TIG焊接接头晶粒尺寸随热输入增加,呈现增加趋势. 随距焊缝中心位置增加,焊接接头晶粒尺寸均逐渐降低. TC4钛合金激光焊接接头焊缝区呈现魏氏组织特征,针状α'马氏体细小. 近缝热影响区组织为网篮状α'马氏体,而近母材热影响区为未转变α相和针状α'马氏体的双相组织. 随距焊缝中心位置增加,马氏体生成量逐渐减少,焊缝显微硬度值呈现降低趋势;同时相比于TIG焊接,TC4激光焊接接头具有更高的显微硬度. 相似文献
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Microstructure and mechanical properties of E36 steel joint welded by underwater wet welding 下载免费PDF全文
The microstructure and mechanical properties of E36 steel joint welded by underwater welding using flux-cored wire are comprehensively investigated. The welding depth, welding current and welding voltage is 4 m, 130 A and 32 V, respectively. The weld metal is ferrite which varies in size, with carbide particles distributed on it, while the microstructure of HAZ is mixture of martensite of different size and some tempered structure. The microhardness of the weld metal is 190 HV. Almost all the tensile specimens fracture in weld metal and the average tensile strength of joint is 390 MPa, which is equal to 80% that of base metal. The tensile fracture morphology of joint presents obviously the characterization of brittle fracture, which displays the features of cleavage fracture and intergranular fracture. 相似文献
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Chaojie Xie Shanglei Yang Haobo Liu Qi Zhang Yaming Cao Yuan Wang 《Journal of Materials Engineering and Performance》2017,26(8):3794-3801
In this paper, cold-rolled DP590 dual-phase steel sheets with 1.5 mm thickness were butt-welded by a fiber laser, and the evolution and effect on microhardness, tensile property and fatigue property of the welded joint microstructure were studied. The results showed that the base metal is composed of ferrite and martensite, with the martensite dispersed in the ferrite matrix in an island manner. The microstructure of the weld zone was lath-shaped martensite that can be refined further by increasing the welding speed, while the heat-affected zone was composed of ferrite and tempered martensite. The microhardness increased with increasing welding speed, and the hardness reached its highest value—393.8 HV—when the welding speed was 5 m/min. Static tensile fracture of the welded joints always occurred in the base metal, and the elongation at break was more than 16%. The conditional fatigue limits of the base metal and the weld joints were 354.2 and 233.6 MPa, respectively, under tension–tension fatigue tests with a stress rate of 0.1. After observation of the fatigue fracture morphology, it was evident that the fatigue crack of the base metal had sprouted into the surface pits and that its expansion would be accelerated under the action of a secondary crack. The fatigue source of the welded joint was generated in the weld zone and expanded along the martensite, forming a large number of fatigue striations. Transient breaking, which occurred in the heat-affected zone of the joint as a result of the formation of a large number of dimples, reflected the obvious characteristics of ductile fracture. 相似文献
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采用光纤激光器对汽车工业中常用的双相钢HC450/780DPD+Z和低合金高强钢HC420LA进行激光搭接焊试验,探索焊缝附近微观组织和显微硬度转变,并研究不同焊接速度对焊缝显微硬度的影响。结果表明,焊缝附近微观组织主要包括熔化区、热影响区和母材三部分。焊接速度一定时,从母材到焊缝,HC420LA的显微硬度变化趋势为先增加后保持不变,HC450/780DPD+Z的显微硬度变化趋势为先增加后减小再保持不变。而随着焊接速度的增加,HC420LA焊缝显微硬度先增加后保持不变,HC450/780DPD+Z焊缝显微硬度先增加后减小。 相似文献
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针对30CrMnSiNi2A超高强度钢结构件真空电子束焊后消除应力回火工艺,开展了重复回火对锁底焊接接头最终热处理状态的组织与力学性能影响研究。试验结果表明,焊接零件分别经过一次、三次消除应力回火,其最终态拉伸性能与直接最终热处理30CrMnSiNi2A原材料相比有少量提升,同时焊缝的拉伸性能略高于母材;原材料、一次消除应力焊件、三次消除应力回火焊件终态显微组织均为板条状马氏体,除组织均匀性和马氏体形貌略微变化外,无显著的组织及成分差异;相比于母材的疲劳极限,一次消除应力回火接头疲劳极限降低了11%,三次消除应力回火接头疲劳极限降低了18%。 相似文献
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针对核聚变反应堆试验包层模块(TBM)中使用的CLF-1低活化铁素体/马氏体钢进行焊接试验,采用15 kW光纤激光,实现了17.5 mm厚CLF-1钢的穿透焊接,得到了正反表面成形良好、无明显缺陷的焊接接头,并对接头显微组织及力学性能进行了分析研究. 结果表明,焊缝区主要为粗大的板条马氏体;熔合线附近热影响区为细小的板条马氏体和少量贝氏体;不完全淬火区为经焊接热循环作用下二次回火的回火索氏体及马氏体双相组织;接头室温及550 ℃高温抗拉强度较高,均断裂于母材;焊缝显微硬度高于母材,且热影响区无明显软化;接头冲击韧性良好. 接头综合力学性能良好. 相似文献
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对一种Al-Mg-Mn-Er合金薄板进行TIG填丝焊接,并研究接头的微观组织以及力学性能. 结果表明,焊缝中心为等轴树枝晶,熔合线附近未出现典型的联生结晶形貌,而是存在着一个宽度约为100 μm的细晶带,热影响区出现再结晶组织. 焊缝中的析出相主要以初生Al3Er的形式存在,与母材相比,焊缝中初生Al3Er的尺寸更加细小,分布更加均匀,焊缝中次生Al3Er的数量相对较少,而且这些次生Al3Er是焊接时母材中未熔化而保留下来的. 焊接区和热影响区的硬度均低于母材,其中焊缝区的硬度最低. 随着焊接热输入的增加,接头的抗拉强度先增加后减小,当焊接热输入为218 J/mm时,接头的抗拉强度最高,达到母材的71.4%,试样的断裂位置均位于焊缝区,断口形貌呈现韧性断裂特征. 相似文献