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1.
L.J. Espinoza-Pérez S. Esquivel-Medina E. López-Honorato 《Ceramics International》2021,47(11):15527-15532
The influence of the microstructure on the corrosion rate of three monolithic SiC samples in FLiNaK salt at 900 °C for 250 h was studied. The SiC samples, labeled as SiC-1, SiC-2, and SiC-3, had corrosion rates of 0.137, 0.020, and 0.043 mg/cm2h, respectively. Compared with grain size and the presence of special grain boundaries (i.e., Σ3), the content of high-angle grain boundaries (HAGBs) appeared to have the strongest influence on the corrosion rate of SiC in FLiNaK salt, since the corrosion rate increased six times as the concentration of high-angle grain boundaries increased from 19 to 32% for SiC-2 and SiC-1, respectively. These results stress the importance of controlling the content of HAGBs during the production process of SiC. 相似文献
2.
《Ceramics International》2021,47(21):29949-29959
High carbon footprint of cement production is the major drawback of plain cement concrete resulting in environmental pollution. Geopolymer composites paste can be effectively used as an alternative to Portland cement in the construction industry for a sustainable environment. The demand for high-performance composites and sustainable construction is increasing day by day. Therefore, the present experimental program has endeavored to investigate the mechanical performance of basalt fiber-reinforced fly ash-based geopolymer pastes with various contents of nano CaCO3. The content of basalt fibers was fixed at 2% by weight for all specimens while the studied contents of nano CaCO3 were 0%, 1%, 2%, and 3%, respectively. The compressive strength, compressive stress-strain response, flexural strength, bending stress-strain response, elastic modulus, toughness modulus, toughness indices, fracture toughness, impact strength, hardness, and microstructural analysis of all four geopolymer composite pastes with varying contents of nano CaCO3 using scanning electron microscopy (SEM) were evaluated. The results revealed that the use of 3% nano CaCO3 in basalt fiber-reinforced geopolymer paste presented the highest values of compressive strength and hardness while the use of 2% nano CaCO3 showed the highest values of flexural strength, impact strength, and fracture toughness of composite paste. The SEM results indicated that the addition of nano CaCO3 improved the microstructure and provided a denser geopolymer paste by refining the interfacial zones and accelerating the geopolymerization reaction. 相似文献
3.
Spindle speed variation (SSV) is one of the effective methods which suppresses regenerative chatter. However, regenerative chatter can grow even if SSV is applied. In the previous work, the chatter growth characteristics in SSV were clarified. The chatter frequency changes proportionally to the varying spindle speed, and it causes the change of the magnitude of the dynamic compliance. Hence, chatter can be suppressed through SSV since the dynamic compliance usually reduces as the chatter frequency changes. A greater compliance reduction can be obtained by a higher rate of spindle speeds in two consecutive revolutions at the same angular position, i.e., acceleration rate. From the investigations in the previous work, limitation of the conventionally utilized SSV profiles is found as follows: the acceleration rate always fluctuates with speed variation and the chatter vibration grows where the acceleration rate is insufficient for suppression, and hence suppressing chatter in all sections of SSV is difficult. In this paper, a new SSV profile with a constant acceleration rate, namely CAR-SSV, is proposed to overcome the limitation of chatter stability improvement by utilizing conventional SSV profiles. The magnitude of the acceleration rate is kept constant to realize the chatter suppression effect throughout the cutting process. Through time-domain simulation and cutting experiments, the chatter stability of CAR-SSV is investigated based on the previously introduced chatter stability evaluation indices. Influence of the parameters of CAR-SSV on the stability is investigated, and an appropriate strategy for setting SSV parameters to achieve higher stability is discussed. In addition, in order to verify the effectiveness of the proposed profile, the stabilities of conventional SSV profiles and CAR-SSV are compared through time-domain simulations and cutting experiments. 相似文献
4.
以某铝合金厢式半挂车为分析对象,采用有限元法对厢式半挂车的车架强度和厢体刚度进行分析。结果表明:在水平弯曲和扭转工况下,车架应力低于材料的屈服极限,具有较强抵抗破坏的能力。使得厢体的永久变形满足法规要求,刚度满足设计需求,保证半挂车结构的使用可靠性。 相似文献
5.
Ling-Yang Yuan Pan-Wen Han Ghulam Asghar Bao-Liang Liu Jin-Ping Li Bin Hu Peng-Huai Fu Li-Ming Peng 《金属学报(英文版)》2021,34(6):845-860
Based on the 3 factors and 3 levels orthogonal experiment method, compositional effects of Mg, Si, and Ti addition on the microstructures, tensile properties, and fracture behaviors of the high-pressure die-casting Al-x Mg-y Si-z Ti alloys have been investigated. The analysis of variance shows that both Mg and Si apparently infl uence the tensile properties of the alloys, while Ti does not. The tensile mechanical properties are comprehensively infl uenced by the amount of eutectic phase(α-Al + Mg_2Si), the average grain size, and the content of Mg dissolved into α-Al matrix. The optimized alloy is Al-7.49 Mg-3.08 Si-0.01 Ti(wt%), which exhibits tensile yield strength of 219 MPa, ultimate tensile strength of 401 MPa, and elongation of 10.5%. Furthermore, contour maps, showing the relationship among compositions, microstructure characteristics, and the tensile properties are constructed, which provide guidelines for developing high strength and toughness Al–Mg–Si–Ti alloys for high-pressure die-casting. 相似文献
6.
对航天用紧固件TC4钛合金棒材进行固溶时效处理,对棒材不同位置进行显微组织观察、硬度和室温拉伸性能检测。结果表明:TC4钛合金棒材经固溶时效后表面至心部的组织与性能受冷却速度的影响呈现显著差异。固溶时效后的显微组织由稳定的等轴α相、弥散的马氏体α′相和亚稳定β相组成,试样端面上因冷却速度相差不大,次生α相的形态和含量没有明显差异;中部截面上边部至心部的次生α相含量逐渐增多,同时次生α相片层厚度逐渐增大并趋于等轴化。端面上不同位置显微硬度值没有明显差异,但中部截面上由边部至心部的显微硬度值呈总体降低趋势,且中部截面上边部的显微硬度值与端面相差不大。试样心部因固溶过程中冷却缓慢,整体试样的室温拉伸性能明显低于去除心部的试样。 相似文献
7.
在GB/T 228征求意见稿中规定了方法A和方法B速率控制模式,主要分为基于引伸计反馈的应变速率控制,以及根据平行长度估计的应变速率,即通过控制平行长度与需要的应变速率相乘得到的横梁分离速率。采用GB/T 228新标准中规定的不同速率控制模式对连续屈服和不连续屈服试样材料屈服强度(规定塑性延伸强度)进行试验,探讨了不同速率控制模式对于材料屈服强度的影响。结果发现,对于连续屈服试样采用应变速率控制和估计的平行长度应变速率控制,其性能指标未见明显差异。不连续屈服试样当无需ReH时,可以采用应变速率控制或估计的平行长度应变速率控制。当需要ReH时,应采用估计的平行长度应变速率控制。 相似文献
8.
为了获取TC11钛合金拉伸性能随应变率的变化规律,对该材料开展了宽应变率范围下的单轴拉伸试验。结果表明,随着应变率从准静态增加到动态,TC11钛合金的屈服强度略有上升,而应变硬化模量下降。此外,在准静态和动态拉伸下,TC11钛合金均发生了剪切断裂,但动态断裂面上韧窝尺寸小于准静态断面上韧窝尺寸。进一步对材料在变形过程中的温升进行了分析,结果发现,高应变率下材料断裂面上更小尺寸的韧窝和材料更容易发生应变软化归因于动态加载情况下材料中产生了更高的温升。 相似文献
9.
透明超疏水性表面可以阻挡大气尘埃附着,减少表面反射率,提高透光率。超疏水增透膜与传统增透膜相比,具有自清洁性、低反射率和高透光性等优势。本文对增透膜和超疏水表面的基本原理进行了介绍,对比了近年来超疏水增透膜的4种制备方法(沉积法、刻蚀法、自组装法和溶胶-凝胶法)的优缺点,说明了高透光性和低反射率的超疏水表面研究进展。最后对超疏水性增透涂料的潜在应用前景进行了展望,改善超疏水增透膜的耐久性和开发适用于各种应用场合的超疏水增透膜将是未来研究的重点。 相似文献
10.
无干燥塔就无串酸,只产w(H2SO4)98%产品酸,开停车时干气来自吸收塔。比较了无干燥塔的带酸热回收硫磺制酸装置在亚热带湿润气候下的4种工况,副产蒸汽量与空气中水分相关,气温越高、湿度越大,蒸汽产量越多,且中压蒸汽产率更高。采用空冷增湿酸冷却器,可实现无循环水,将干吸余热全部回收,蒸汽产率可达2 t/t。若用部分冷凝省煤器,还可再提高蒸汽有效能,使部分低压蒸汽转变成中压蒸汽。该装置可直接掺烧废酸、酸性废水及含硫废气,成为含硫废弃物协同处理装置,不仅增加能量回收率,且低成本地处置含硫废物。 相似文献