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81.
研究了在铁素体区轧制条件下热轧带钢边部翘皮的宏观分布规律和微观缺陷形貌,分析了该工艺下缺陷形成的原因,粗轧段板坯边角部进入两相区,同时生产线的立辊和侧导板等接触设备的表面质量不良,造成了边角部变形不均,在精轧过程中最终形成边部翘皮。结合现场工艺,探讨了缺陷的改善措施,通过优化粗轧立辊辊型,提升轧制过程中坯料边角部温度,以及通过设备功能精度管理提升粗轧、精轧的侧导板和立辊辊面质量,最终消除了铁素体轧制超低碳钢的边部质量问题。  相似文献   
82.
研究了采用新型Al-5Ti-1B-1RE中间合金和Al-10Sr中间合金对A356铝合金进行单一或复合细化变质处理后的组织、力学性能和共晶硅生长机制的影响。结果表明:单一细化变质处理中Al-5Ti-1B-1RE中间合金对A356铝合金中α-Al相有明显的细化作用,合金的强度和维氏硬度显著提高;Al-10Sr 中间合金对共晶硅有强的变质作用,合金的伸长率明显提高;而经复合细化变质处理后α-Al相形状和尺寸变得更均匀细小,晶界更清晰,共晶硅相几乎都转变成更弥散、更细小的纤维状,片层状共晶硅也几乎完全消失,共晶硅长度由铸态40-60 μm降低到1-2 μm之间,达到完全变质效果,其力学性能显著高于铸态、单一细化变质剂处理的A356铝合金。未细化变质的A356铝合金中的共晶Si的生长方式为典型的小平面台阶生长,复合细化变质处理的共晶硅以孪晶凹槽机制生长为主,小平面生长特征逐渐减弱直至消失。  相似文献   
83.
84.
In the process of urinary system disease diagnosis, a complete kidney contour is crucial to estimate its size, area, volume and other properties. These properties can effectively help doctors diagnosis and prepare treatment plans. However, ultrasound images suffer from low signal-to-noise ratio, speckle, missing boundaries and other artefacts. Traditional contour detection algorithms can hardly extract a continuous and accurate kidney contour. To solve the problem, we propose a collaborative contour detector by gradient and active contour. It not only can make sure that the extracted contour is continuous and accurate but also is simple and suitable to use in practice. Both the simulated experiments and clinical experiments show that the proposed algorithm achieves a good performance in ultrasound kidney images and can effectively assist doctors in diagnosis.  相似文献   
85.
随着边缘计算的快速发展,边缘计算在各行业中的应用也越来越广泛.分析了云边协同在典型场景下的应用需求和业务模式,对云边协同在不同行业场景下的重要作用进行了介绍,最后给出了云边协同未来的发展趋势.  相似文献   
86.
利用有限元软件对空冷后具有一定温度梯度的板坯的轧制过程进行数值模拟计算,研究分析两种不同高温力学特性的钢种在轧制时边角部金属的位移、应变及应力情况,分析边部线状缺陷起源的褶皱的形成过程并通过轧制试验予以验证。分析结果表明,边线形成与变形温度范围内变形抗力的不连续变化具有明显相关性,变形抗力随温度连续变化的钢种轧制过程角部金属不会形成褶皱;变形抗力随变形温度不连续变化的钢种,当板坯角部金属进入两相区时,由于轧制过程两相区变形抗力出现谷值,易出现褶皱并最终演变为边部线状缺陷。  相似文献   
87.
Accident data have shown that in pedestrian accidents with high-fronted vehicles (SUVs and vans) the risk of pedestrian head injuries from the contact with the ground is higher than with low-fronted vehicles (passenger cars). However, the reasons for this remain poorly understood. This paper addresses this question using multibody modelling to investigate the influence of vehicle front height and shape in pedestrian accidents on the mechanism of impact with the ground and on head ground impact speed. To this end, a set of 648 pedestrian/vehicle crash simulations was carried out using the MADYMO multibody simulation software. Impacts were simulated with six vehicle types at three impact speeds (20, 30, 40 km/h) and three pedestrian types (50th % male, 5th % female, and 6-year-old child) at six different initial stance configurations, stationary and walking at 1.4 m/s.  相似文献   
88.
In accordance with the extended Huygens–Fresnel principle, the evolution of linear edge dislocation propagating through atmospheric turbulence is studied, and the effects of waist width and the slope of linear edge dislocation are investigated. It is shown that when linear edge dislocation beams propagate through atmospheric turbulence, if the waist width is not equal and the slope is not zero, then the linear edge dislocation vanishes and transforms into an optical vortex with a topological charge of ?1 or +1. The optical vortex and an optical vortex that is created annihilate when the transmission distance is far enough. The linear edge dislocation vanishes when the slope is zero. If the waist width is equal, then the linear edge dislocation will vanish regardless of the slope value. For linear edge dislocation beams in free space, when selecting specific parameters, linear edge dislocation always exists.  相似文献   
89.
90.
Scanning probe lithography is used to directly pattern monolayer transition metal dichalcogenides (TMDs) without the use of a sacrificial resist. Using an atomic‐force microscope, a negatively biased tip is brought close to the TMD surface. By inducing a water bridge between the tip and the TMD surface, controllable oxidation is achieved at the sub‐100 nm resolution. The oxidized flake is then submerged into water for selective oxide removal which leads to controllable patterning. In addition, by changing the oxidation time, thickness tunable patterning of multilayer TMDs is demonstrated. This resist‐less process results in exposed edges, overcoming a barrier in traditional resist‐based lithography and dry etch where polymeric byproduct layers are often formed at the edges. By patterning monolayers into geometric patterns of different dimensions and measuring the effective carrier lifetime, the non‐radiative recombination velocity due to edge defects is extracted. Using this patterning technique, it is shown that selenide TMDs exhibit lower edge recombination velocity as compared to sulfide TMDs. The utility of scanning probe lithography towards understanding material‐dependent edge recombination losses without significantly normalizing edge behaviors due to heavy defect generation, while allowing for eventual exploration of edge passivation schemes is highlighted, which is of profound interest for nanoscale electronics and optoelectronics.  相似文献   
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