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1.
摩擦和磨损制约着机械系统的高可靠、长寿命服役,随着科学技术的快速发展,单一的固体或液体润滑系统已经无法满足工业应用中对机械部件的摩擦学性能要求.因此,研究人员对固液相复合润滑体系展开了大量研究,碳基薄膜因具有优异的摩擦学性能而常被用于组成固液复合润滑体系.对碳基薄膜固液复合润滑体系的研究进行了回顾,从碳基薄膜/油复合润滑、碳基薄膜/离子液体复合润滑、碳基薄膜/水复合润滑、碳基薄膜/润滑剂/纳米添加剂复合润滑,以及表面织构碳基薄膜和摩擦过程中生成碳材料的特殊碳基材料复合润滑六个体系对碳基薄膜固液复合润滑进行了综述.碳基薄膜/润滑油复合润滑无论是在大气还是在真空中都表现出优异的摩擦学性能,碳基薄膜/离子液体复合润滑对于提高在苛刻条件下服役的机械运动部件的摩擦学性能具有指导意义和广泛的应用前景.润滑添加剂的使用,可以在碳基薄膜/润滑油复合润滑体系的基础上进一步提高摩擦学性能,过渡金属氮化物/润滑油摩擦催化生成碳材料为进一步发现和发展不同的先进润滑和保护材料提供了前景.最后总结了目前研究领域中存在的一些问题,并对未来发展方向进行了展望. 相似文献
2.
Xiao Xue Rongkun Jiang Chengmin Xie Guozhi Qian Minjing Shang Weiping Zhu Yuanhai Su 《American Institute of Chemical Engineers》2022,68(11):e17820
Multi-step reaction processes are frequently encountered in the synthesis of pharmaceuticals, separate study on each step however is easily neglected. Herein, we separately investigated two reaction steps for the synthesis of an intermediate (DTG-6) of an anti-HIV drug dolutegravir (DTG) in microreactors. The first step (i.e., deprotection of DTG-4) was optimized to achieve a high DTG-5 yield (i.e., 96.7%) in the microreactor after the parametric screening on the DTG-4 concentration, methanesulfonic acid loading, molar ratio of reaction components, and so forth. Reaction kinetics was revealed based on substantial experimental data and mechanism cognition. Validation experiments showed the accuracy of this reaction kinetics. After thoroughly understanding this deprotection step, we combined it with the following annelation step in a cascade microreactor system for the two-step synthesis of DTG-6 with a much higher yield even at a remarkably shorter residence time compared with literature reports, thus indicating efficient process intensification. 相似文献
3.
为评估玉米芯作为生物滞留设施中填料土添加剂的可行性,通过理化性质测试、摇床淋出试验、等温吸附试验,与现有添加剂柳木屑、陶粒、稻壳生物炭进行对比,研究玉米芯的理化性质和营养素的淋出及吸附特性。结果表明:玉米芯轻质多孔,具有较大的比表面积和阳离子交换量,其氮磷含量低,有丰富的含氧官能团;以玉米芯作为添加剂,在去离子水的淋洗作用下,氮磷营养素淋出量低、淋出速度快,在降雨径流中氮磷营养素淋出量降低,淋出速度减缓;在营养素质量浓度为2mg/L的典型降雨径流中,玉米芯可吸附25mg/kg的NH+4和79mg/kg的PO3-4,相较于其他材料,玉米芯吸附效果突出。玉米芯可作为填料土添加剂用于生物滞留设施中,施用玉米芯可降低填料土营养素淋出风险,提升生物滞留设施对降雨径流中污染物的吸附和去除效果。 相似文献
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《Journal of dairy science》2022,105(7):5747-5760
This study evaluated the effects of duration of high-concentrate feeding on ruminal and fecal fermentation profile, as well as selected systemic health biomarkers in nonlactating cows supplemented with or without a phytogenic feed additive (PHY). In addition, ruminal degradation kinetics and total-tract nutrient digestibility were evaluated when feeding either only forage or a high-concentrate diet. Nine nonlactating, cannulated Holstein cows were used in a crossover design. Each period included 1 wk of forage feeding (wk 0), diet transition, and 4 wk on the high-concentrate diet (1, 2, 3 and wk 4; 65% dry matter basis). Cows received PHY or not (control). Compared with wk 0, from wk 1 onward, cows on high concentrate showed greater reticular, ruminal, and fecal total volatile fatty acids (VFA), with a greater level of VFA in the rumen than in the hindgut. However, ruminal fermentation was modulated differently by PHY, which showed increased total VFA in wk 1 and increased butyrate in wk 2 in the particle-associated fluid of rumen. In the hindgut, PHY increased propionate in wk 3. Cows fed a high-concentrate diet from wk 1 and onward also showed greater ruminal lactate, as well as lower ruminal and fecal pH, independent of PHY. In addition, compared with cows in wk 1 on a high-concentrate diet, cows in wk 4 had a greater total VFA in free fluid of the rumen and lower fecal pH. Compared with cows at wk 0, cows at wk 1 on high concentrate onward showed greater serum amyloid A and greater activity of glutamate dehydrogenase. In contrast, the high-concentrate diet decreased in situ ruminal degradability of grass silage but increased degradability of corn grain as well as total-tract nutrient digestibility, with total-tract neutral detergent fiber digestibility being greater for cows on the PHY treatment. Overall, from the start of high-concentrate feeding, gut fermentation increased, but differently according to location or PHY, with a stronger build-up of VFA in the rumen compared with the hindgut. In addition, a longer duration on high concentrate exacerbated gut acidification. The enhancing effects of PHY on total VFA and butyrate in particle-associated fluid of the rumen suggest beneficial effects of PHY on particle-associated bacteria, likely contributing to the increased neutral detergent fiber digestibility. The greater production of ruminal butyrate with PHY may be beneficial for the host, given the health benefits of this acid, but more research is needed to elucidate the effects on gut microbiota and the effects of increased butyrate in nonlactating dairy cows. 相似文献
7.
Cognitive and metabolic workload assessment techniques: A review in automotive manufacturing context
Ergonomics assessment in the automotive industry has, to date, focused mainly on physical ergonomics, for example, manual handling and posture. However, workload and, in particular, metabolic and cognitive workload, contributes to worker efficiency but has not received sufficient attention to yield practical guidance for industry. Successful workload assessment requires in-depth understanding of the context in which it will be conducted and of the various assessment techniques which will be applied, with consideration given to factors such as feasibility, resources, and skill of the assessor. These requirements are met with challenges within large and complex organizations and are often dealt with in a piecemeal and isolated matter (i.e., reactive workload assessment). The present paper explores these challenges within the automotive manufacturing industry and aims to develop a decision matrix to guide effective selection of workload assessment techniques focused on metabolic and cognitive demands. It also presents the requirements for time, equipment, and knowledge to implement these techniques as part of a participatory ergonomics approach. Early findings suggest that most assessment techniques reviewed require further development, for example, to establish the acceptance criteria for the specific workload scenario. However, five methods (Garg, Borg RPE, IPAQ, SWAT, and NASA-TLX) are ready to use in certain applications. Ultimately, the findings suggest that it is possible to implement a participatory workload evaluation program within large and complex manufacturing plants. 相似文献
8.
氢能作为二次能源在可再生能源和化石能源发展中将发挥重要的桥梁和纽带作用,但其推广应用受限于氢气储存成本高和运输效率低等因素。采用氨作为储氢载体,其储氢密度高、运输技术成熟,方便分布式现场制氢就地供应,避免氢气储运带来的困扰。氨载氢技术推广应用关键在于氨分解催化剂的发展水平。对近年来用于氨分解的Ru基催化剂、非贵金属催化剂、双金属催化剂和氮化物/碳化物催化剂研究进展进行总结,分析了各种催化剂上氨分解的反应机理以及活性金属、载体、助剂和制备方法对催化剂物化性质和催化性能的影响,指出了不同类型催化剂的优势和不足,并对其未来研究方向进行了展望。 相似文献
9.
《Current Opinion in Solid State & Materials Science》2022,26(6):101024
One of the main challenges in the laser powder bed fusion (LPBF) process is making dense and defect-free components. These porosity defects are dependent upon the melt pool geometry and the processing conditions. Power-velocity (PV) processing maps can aid in visualizing the effects of LPBF processing variables and mapping different defect regimes such as lack-of-fusion, under-melting, balling, and keyholing. This work presents an assessment of existing analytical equations and models that provide an estimate of the melt pool geometry as a function of material properties. The melt pool equations are then combined with defect criteria to provide a quick approximation of the PV processing maps for a variety of materials. Finally, the predictions of these processing maps are compared with experimental data from the literature. The predictive processing maps can be computed quickly and can be coupled with dimensionless numbers and high-throughput (HT) experiments for validation. The present work provides a boundary framework for designing the optimal processing parameters for new metals and alloys based on existing analytical solutions. 相似文献
10.
以不同钇含量的2319铝合金丝材为原材料,采用基于冷金属过渡的电弧增材制造工艺(wire arc addictive manufacturing,WAAM)制备2319铝合金,研究了钇含量对WAAM 2139铝合金的显微组织及力学性能的影响. 结果表明,添加Y元素可明显细化直接沉积态WAAM 2319铝合金的晶粒,细晶强化及第二相强化作用显著,间接影响了时效过程析出的二次析出相θ′的数量,同时,未对直接沉积态WAAM 2319铝合金中气孔缺陷的大小、分布产生显著影响. 随着钇含量的增加,合金凝固过程含钇化合物在晶粒交汇处偏析程度增大,使得合金成分过冷度减小,导致WAAM 2319铝合金的晶粒尺寸呈现先减小后增大的趋势,抗拉强度和屈服强度呈现出先上升后下降趋势,断后伸长率逐渐下降. 当钇含量为0.15%时,WAAM 2319铝合金表现出最优的力学性能,即抗拉强度484 MPa、屈服强度348 MPa和断后伸长率10.5%. 相似文献