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61.
沥青混凝土路面的病害与防治   总被引:1,自引:0,他引:1  
分析了沥青混凝土路面经常出现的一些病害(如路面裂缝、松散、坑槽、沉陷、车辙等)产生的原因,并提出了相应的处治方法和防治措施。  相似文献   
62.
结合水泥砼桥面铺装的施工实践,分析了影响水泥砼桥面铺装平整度的因素,介绍了采用传统施工工艺控制平整度的措施,以提高桥面铺装平整度的施工水平。  相似文献   
63.
采用自回归谱分析结合改进周期图检验的方法,建立表面粗糙度的混合谱模型,以分离其中表现为离散谱的确定性谐波成分和表现为连续谱的随机性成分,并在此基础上提出综合评定表面粗糙度各种参数的方法,同时对AR模型的阶数与谐波成分识别给出较有效的经验判定方法.  相似文献   
64.
The impacts of different groove shapes, numbers, and angle of friction dish on transmitting torque, speed, push pressure in wet speeding clutch are discussed in this paper. Since the wet speeed governing clutch works within hydrodynamic lubrication mixture lubrication. boundary, lubrication and contact situation, the oils combining with a-hydrocarbon or polyester are getting widely used as lubricant.The power-law fluid model with Patir-Cheng average flow model, GT asperity contact model and oil film inertia are applied for average Reynolds equation setting, In order to investigate the relationship between average push pressure within hydrodynamic lubrication and mixture lubrication, average transmitting torque and output speed, the numeral calculation and analysis are presented. According to calculation, it is found that the groove shape, groove angle and groove numbers affect the average transfer torque and push pressure with the speed rate.  相似文献   
65.
超密齿面铣刀的铣削力波动特性及其影响   总被引:1,自引:0,他引:1  
提出了一种超密齿面铣刀概念,并推导了x和y方向的铣削力计算模型,分析了超密齿刀具铣削力及其波动规律.结果显示:随刀具的转动铣削力呈锯齿状变化,x向铣削力波动呈现两个山峰状,在三齿同时参与切削时波动最小.y向铣削力波动随初始切入角的增大先增大后减小,对比发现超密齿刀具铣削力波动远小于疏齿刀具.提出用单位体积材料所需切向铣削力大小来评价超密齿刀具和疏齿刀具性能.通过超密齿面铣刀的铣削实验验证了铣削力计算模型,并发现铣削力波动是影响工件表面粗糙度的因素之一,同时也反映出超密齿刀具的加工优越性.  相似文献   
66.
针对高温合金钻削困难、钻削过程中摩擦力大等问题,采用超声振动技术加工.首先,分析了超声振动减摩机理,构建了平均摩擦力与振动参数之间的关系,并得出了平均摩擦力与振幅之间的变化趋势.建立轴向超声振动钻削系统,利用该系统对高温合金进行钻削加工.结果表明:振动振幅对孔壁表面质量的影响符合超声振动钻削的减摩特性.利用优化后的振幅超声振动钻削,与普通钻削相比,切屑形态更加规整,孔壁表面粗糙度值更小,表面质量更好.  相似文献   
67.
Pollutants release is highly consistent with suspended sediment concentration (SSC) in water column, especially during re-suspension and transport events. The present research focuses on pollutant dynamic release from re-suspended sediment, especially the vertical distribution relationship between them. The sediment erosion experiments on a series of uniform flow are conducted in a circulate flume. Reactive tracer (phosphorus) is used as the contaminant in fine-grained sediments to identify the release characteristic length and time. Experimental results show that the flow condition near-bed depends on the sediment surface roughness. The region with high turbulent intensities corresponds to a high concentration sediment layer. In addition, the SSC decreases with the distance, water depth, and particle grain size. The sediment in a smaller grain size takes much more time to reach equilibrium concentration. Total phosphorus (TP) concentration changes along the water depth as SSC in the initial re-suspension stage, appearing in two obvious concentration regimes: the upper low-concentration layer and the high-concentration near-bottom layer. This layered phenomenon remains for about 3 hours until SSC distri- bution tends to be uniform. Longitudinal desorption plays an important role in long-way transport to reduce the amount of suspended sediment in water column.  相似文献   
68.
Fabrication of polymer‐carbon composite nanostructure with good dispersion of each other is critical for the desired application due to the nanostructure flaws, agglomeration, and poor absorption between the 2 materials. Fabrication of superhydrophobic surface coating composites of polytetrafluoroethylene (PTFE) with multiwalled carbon nanotubes (MWCNTs) through supercritical fluid processing was explored in this study. Homogeneity of the composite was characterized by X‐ray diffraction and Raman spectroscopy studies, which reveal that the PTFE and MWCNT are uniform in the composite. Microstructural surface evaluation of field‐emission scanning electron microscope and high‐resolution transmission electron microscope studies display that the coating composite possesses roughness structures and fibrillation of the superhydrophobic surface coating. Superhydrophobic character was evaluated on fiber‐reinforced plastic (FRP) sheets, which showed that the prepared coating composite surface showed self‐cleaning properties with a high water contact angle of 162.7°. The surface wettability was studied by increasing different temperatures (30°C to 300°C) in PTFE‐MWCNT composite, which reveals that the FRP sheets were thermally stable up to 200°C and afterward; they transformed from superhydrophobic to hydrophilic state at 250°C. The superhydrophobic surfaces are thermally stable in extreme environmental conditions, and this technique may be used and extendable for large‐scale applications.  相似文献   
69.
基于路用性能设计正交试验,研究了影响石灰-钢渣稳定土抗压强度的4种因素.结果表明,对于石灰-钢渣稳定土初期抗压强度,石灰含量影响最大,钢渣影响较小;但对于其后期抗压强度,钢渣掺量的影响明显增强,且钢渣粒径大小对后期强度增长速率的影响较大.试验结果对比发现,石灰-钢渣稳定土具有较高的无侧限抗压强度和加州承载比,满足《公路路基设计规范》(JTG D30-2015)和《公路路面基层施工技术细则》(JTG/T F20-2015)的要求,表明可以使用钢渣代替部分石灰或水泥应用于高速公路路床填料.  相似文献   
70.
Surface welding effect of covalent adaptable network (CAN) polymers enables self‐healing, reprocessing and recycling of thermosets, but little is known about their welding behaviors during repeated welding‐peeling cycles. In this article, we study the cyclic welding effect of an epoxy based thermal‐sensitive CAN. Surface roughness is generated by rubbing the sample on sandpapers with different grid sizes. The welding‐peeling cycles are repeated on the same pair of samples for five times, with roughness amplitude and interfacial fracture energy measured in each cycle. It is shown that the roughness gradually decreases during the repeated welding cycles, especially when a long welding time or high welding pressure is applied. Even though lower roughness amplitude promotes the contact area, the interfacial fracture energy reduces due to the increased BER activation energy after long‐time heating. A multiscale constitutive model is adopted, where we incorporate an explicit expression of interfacial contact area as a function of root‐mean‐square roughness parameter. The model is able to capture the evolving interfacial fracture energy during repeated welding cycles by using the measured roughness parameter, network modulus and BER activation energy. The study provides theoretical basis for the design and applications of CANs involving cyclic welding‐peeling operations. © 2017 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2018 , 56, 402–413.  相似文献   
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