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71.
目的 加入AlN提高铁基合金的摩擦磨损性能。方法 采用PTA-400E3-HB等离子喷焊设备在Q235钢表面制备添加AlN的铁基合金喷焊层。通过光学显微镜、扫描电镜(SEM)和X射线衍射仪(XRD)研究喷焊层的组织和相结构。利用显微硬度计、摩擦磨损试验机和台阶仪对喷焊层的硬度和摩擦磨损性能进行测试。结果 添加AlN的喷焊层主要物相为α-Fe、γ-Fe和(Fe,Cr)7C3。未添加AlN的喷焊层由等轴晶组成,添加AlN的喷焊层呈现柱状树枝晶,且随AlN量增加,树枝晶组织愈加粗大。添加1%AlN喷焊层的平均显微硬度最高,为(890.1±46.8)HV0.3,比铁基喷焊层的显微硬度高131.6HV0.3;当AlN含量增加,未转变奥氏体量增加,导致喷焊层的硬度降低。加入AlN的喷焊层的摩擦系数均降低,摩擦系数稳定在0.40~0.57之间。当AlN添加量为3%时,喷焊层的磨损形貌最光滑,磨损率为1.15×10-14 m3/(N?m)。添加AlN后,喷焊层的磨损机理从之前的粘着磨损变为磨粒磨损。结论 添加AlN能提高铁基喷焊层的摩擦磨损性能。 相似文献
72.
目的 针对低碳钢零件的破损失效采用TIG焊电弧熔覆增材制造工艺,研究低碳钢电弧熔覆修复使其达到再制造零件性能要求的可行性,为实现TIG焊修复应用提供保证。方法 通过TIG焊熔覆在低碳钢坡口处,对熔覆接头的显微组织进行分析,并测试修复后的增材层表面硬度性能。使用Nanovea Tribometer摩擦磨损仪和NanoveaPS50表面轮廓仪,对基体和增材层进行摩擦性能测试,并表征摩擦磨损后的表面形貌,探究磨损机理。采用电化学工作站对基体和增材层的腐蚀性能进行分析。结果 修复后的增材层显微硬度(220.17HV)高于基体且其摩擦性能和腐蚀性能优于基体,随着磨损载荷的增加,增材层的摩擦系数逐渐降低,磨损机制主要为磨粒磨损和粘着磨损。增材层表面组织均匀细小,在NaCl溶液中点蚀坑小且分散,增材层的腐蚀电流密度(1.8349×10-6 A/cm2)小于基体的腐蚀电流密度(6.5251×10-5 A/cm2),增材层表面的抗腐蚀能力明显提高。结论 电弧熔覆低碳钢可满足低碳钢零部件现场电弧快速修复对再制造性能的要求,实现了低碳钢破损零部件的表面修复与强化。 相似文献
73.
《中国有色金属学会会刊》2020,30(3):678-687
The effects of microstructure inhomogeneity on the mechanical properties of different zones in TA15 electron beam welded joints were investigated using a micromechanics-based finite element method. Considering the indentation size effect, the mechanical properties for constituent phases of the base metal (BM) and heat affected zone (HAZ) were determined by the instrumented nano-indentation test. The macroscopic mechanical properties of BM and HAZ obtained from the tensile test agree well with the numerical results. The incompatible deformation between the constituent phases tends to localize along the softer primary phase α where failure usually initiates in form of localized plastic strain. Compared with the BM, the mechanical properties of constituent phases in the HAZ differ substantially, leading to more serious strain localization behavior. 相似文献
74.
《International Journal of Hydrogen Energy》2020,45(56):32311-32319
This work reviews the further development of the Italian–Russian bilateral project IGNITOR. One of the primary tasks for the execution of the project is the determination of the different types of engineering systems that will be required to support the engineering infrastructure of the IGNITOR tokamak. The tritium fuel cycle and detritiation systems, which provide tritium reprocessing and confinement during the operation of the scientific program, will be the most important systems. For the location of the IGNITOR, Russia proposed the Troitskii Institute and Thermonuclear Research (TRINITI) site near Moscow. The scope of this work is the investigation of the engineering concept of the tritium fuel cycle and detritiation systems for air and water with regard to the operation of the IGNITOR with tritium plasma at the TRINITI site. 相似文献
75.
《International Journal of Hydrogen Energy》2020,45(1):80-93
Highly hydrophilic separators for alkaline water electrolysis were prepared by plasma-initiated grafting of acrylic acid on porous polypropylene (PP) membranes. The membranes were activated in a low-pressure radio-frequency discharge in oxygen and subsequently graft polymerization of acrylic acid was performed in aqueous solution. The membranes were characterized by gravimetric grafting degree (GD), SEM, FTIR, critical wetting surface tension (CWST) test, mechanical strength, and electrolytic conductivity. Moreover, the membranes were applied as separators in alkaline electrolysis cell, and content of hydrogen in the produced oxygen was measured to determine membrane permeability to hydrogen dissolved in the electrolyte. It was observed that increasing GD improves performance of membranes as separators in alkaline electrolysis, although the particular effects on the electrolytic conductivity and hydrogen permeability strongly depend on structure the of initial PP substrate. Ageing test conducted in 30 wt% KOH at 60 °C revealed that although considerable degrafting took place at beginning of the test, the remaining polyacrylic acid provided highly hydrophilic character to membrane for 7000 h of the test. 相似文献
76.
转速对2524铝合金搅拌摩擦点焊组织与性能的影响 总被引:1,自引:0,他引:1
对2524铝合金薄板进行搭接搅拌摩擦点焊试验, 研究了搅拌头转速对其组织与性能的影响。结果表明, 随转速增加, 焊点外侧飞边越加严重, 组织畸变程度增加, 焊核区宽度增大, 有效连接宽度先增大后减小。母材区硬度最大, 热影响区硬度最低;在焊核区内, 显微硬度随转速增加而增大, 当转速为1 100 r/min时达到最大133.9HV, 而热影响区在300 r/min时硬度最大。在单向拉伸试验中, 接头剪切强度随转速增加先增大后减小, 在700 r/min时达到最大值3 510 N;接头呈现出两种断裂模式: 即低转速下平行于两板面断裂和高转速下沿倾斜方向断裂;断口呈现明显的剪切韧窝形态, 韧窝小而浅, 焊接接头为韧性断裂。 相似文献
77.
主要介绍了等离子冷床炉单次熔炼制备Ti-2Al-1.5Mn钛合金铸锭在化学成分、组织、内部品质等方面的情况。结果表明,首次使用PAM炉单次熔炼法制备出航空领域工业级厚330mm、宽750mm、长1 000~2 500mm的钛合金扁锭,其化学成分可控且均匀性较好,纵横向组织均匀细小。此外,获得PAM炉单次熔炼法制备的钛合金扁锭全截面低倍组织图谱特征。铸锭经加工变形后获得的板材产品理化性能满足技术要求。 相似文献
78.
《中国有色金属学会会刊》2020,30(1):76-89
The distribution of temperature and then the distribution of residual stress and distortion in the stiffened aluminum alloy Al6061-T6 plates under the metal inert gas (MIG) welding process were investigated by three dimensional thermo-mechanical coupled finite element model using Ansys software. The properties of materials were considered temperature-dependent and the filler metal was added to the workpiece by the element birth and death technique. In three modes of current, two different speeds and two various sequences, the distribution of residual stress and distortion were calculated and analyzed. The results showed that increase in welding speed decreased the vertical deflection in the plate, transverse shrinkage and angular distortion of plate and the lateral deflection of stiffener, but increased the maximum longitudinal tensile stress in the plate and stiffener. Furthermore, increase in current increased the residual stress and deformation in the plate and stiffener, and the change in the welding sequence changed the distribution of the distortion in the plate and the stiffener without significant change in the distribution of the longitudinal residual stress. 相似文献
79.
《中国有色金属学会会刊》2020,30(12):3254-3262
Rapid-cooling friction-stir-welding (FSW) was used to join AZ31B magnesium alloy plates of 6 mm in thickness. The microstructure and mechanical properties in thickness direction were carefully investigated with electron backscattered diffractometer, and transmission electron microscope. The obtained results showed that ultrafine grains with high dislocation density were obtained in the top region of the weld due to liquid CO2 cooling. A large number of twins and second-phase particles were also induced in these refined grains. The basal texture intensity was significantly reduced due to the appearance of twins. The top region showed the higher strength and elongation compared with the bottom region, and the welding efficiency reached 93%. This work provided a simple and efficient strategy for manufacturing a gradient structure in the FSW Mg alloy joint. 相似文献
80.
摘要:
本文以5wt%Al3Zr/铝基复合材料为研究对象,以Ar气体为离子气体,Al-Ti-B为丝材进行等离子焊接。用电化学综合测试仪测定了焊接区在3.5%NaCl溶液中的腐蚀极化曲线。采用扫描电子显微镜(SEM)、X射线衍射仪(XRD)对复合材料及其焊缝的组织和相组成进行了分析和表征,研究了Al3Zr/Al基复合材料等离子焊接后在3.5%NaCl溶液中的腐蚀行为和腐蚀机理。SEM分析结果表明,等离子弧焊接可获得较好的焊缝组织,焊缝组织主要由Al3Ti相和Al基体组成,Al3Ti相呈条状和球形。电化学极化曲线表明,材料在熔核处的耐蚀性略低于母材,焊缝处浸泡腐蚀机理为Al3Ti相和基体相的电极电位不同形成原电池反应造成。 相似文献