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中国公路学报论文格式模板下载安装

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关于对高等级公路中小跨径桥梁设计分析论文关键词:墩台;设计;耐久性;结构; 斜交桥 论文摘要: 一般公路中的桥梁常以正交布设为主,但为了满足公路技术标准,应使路线线形流畅、连续,部分桥梁须服从路线走向,不可避免会出现一些斜交桥梁,因此在公路桥梁设计中,斜交桥梁的桥型布置、结构形式的选择是否合理将对桥梁施工难度、结构耐久性及工程造价有较大影响。本文根据多年从事公路桥梁设计工作的经验,总结了中小跨径斜交桥的布设方法,并且指出应根据桥梁所处位置的路线线形、斜交角度、河流情况等因素,通过方案比较,选择合适的桥型布置,从而使斜交桥设计合理、施工方便、经济美观。 一、斜弯桥梁的一般布设 处于弯道中的斜交桥梁设计,一方面,应使桥梁结构简单,构件类型少,尺寸统一,便于机械化生产装配,便于施工,桥型布置应与路线线形协调一致,偏差小。另一方面,应达到经济、适用、美观,与周围环境相协调。桥梁布置孔数为1 孔~2 孔时,墩台一般采用平行布置,上部预制构件采用平行布置,主要优点是同一孔上部预制构件尺寸统一,可减少模板型号,施工方便。当桥梁处于曲线半径较小的弯道上时,采用平行布置会出现少许偏差,对2 孔桥梁墩台宜按折线形平行布置。但前后桥台的轴线与路线的斜交角不同,构造尺寸及斜角也不一致,前后孔墩台尺寸、支座位置、柱距均有差别,设计上相对繁琐,施工也不方便。桥梁布置孔数多于3 孔时,墩台一般采用法向布置,上部预制构件采用径向布置,即各片梁板轴线的端部分别位于同一半径上,此时,同一孔的各片梁板布置不平行,须由铰缝宽度进行调整;主要优点是下部构造尺寸统一,即桥墩帽梁尺寸、支座位置、柱距均相同,上部预制构件尺寸型号一般为单孔桥面布置梁板的片数,因此,桥梁布置孔数较多时,墩台宜采用法向布置,既方便设计,又便于施工。对左右幅分离式斜弯桥的设计,左右幅桥墩台一般应分别进行设计,特别是斜交角度大、曲线半径相对较小时,左右幅桥墩台的尺寸将相差较大,只能以不同的参数控制进行尺寸计算,可推算左右幅桥各自的斜交角后,进行简化设计,才能使左右幅桥墩台布设的误差相应减小,更接近路线线形。 二、斜交桥梁的特殊布设 错台布置:适用于左右幅为分离式斜交桥梁,跨越河道有通航要求。如珠邵高速公路第八合同段中K32 + 5大桥,横断面布置为分离式左右幅桥,位于弯道半径R = 1600 m 的曲线上,本桥跨越河流宽度约20 m ,路线与河流的斜交角为150°。本桥设计:限于本工程大、中桥梁采用统一跨径,上部预制构件尽量要求统一,本桥上部构造采用7 孔20 m 预制空心板,下部构造采用钻孔灌注桩基础,如果按河流方向布置桥墩、桥台,可满足河道通航要求,但桥梁构件出现30°锐角构造,其受力极不利,质量难以保证,也不符合规范要求,经多方案比较,最后墩台以斜交角度135°布置,而左右幅桥须采用错台7 m 布设,这样可改善构件的受力条件,也能满足河道通航及河岸上设置机耕路的要求。 设置异形梁板过渡孔:适用于斜跨河流及跨过正交通道的桥梁。如珠邵高速公路第六合同段中K23 + 25 大桥,位于弯道半径R = 1 600 m 的曲线上,本桥跨越河流宽度约72 m ,机耕路、通道多处,路线与河流的斜交角为120°。该桥设计:上部构造采用20 m预制空心板,1 号~7 号孔为斜交110°布置,9 号~38 号孔为正交布置,8 号孔为过渡孔,采用异形板过渡,下部构造采用钻孔灌注桩基础,采用这种方法布设,主要考虑旱桥相对较长,仅在跨越河流部分采用斜交布置,达到降低工程造价的目的。可满足河道通航及河岸上设置机耕路、通道的要求。路线与河流的斜交角较大时采用正交布置:适用于路线与河流的斜交角大于150°且河流不通航的桥梁。如汕遮公路改建工程(左幅为已建成公路,在右侧拓宽,形成上下行公路) 中K15 + 15 中桥,本桥跨越河流宽度约25 m ,路线与河流的斜交角为150°,原左幅桥上部构造为4 孔13 m 空心板斜交150°布置,下部构造为四柱式墩台;右幅加宽,如果参照左幅桥布置设计,斜交角度太大,不够合理,因此,设计时做深入、细致的研究,基于本桥跨越河道不通航,上部构造采用5 孔13 m 空心板正交布置,下部构造采用二柱式墩台,钻孔灌注桩基础,设计控制右幅桥墩柱位与左幅桥墩沿水流方向一致,避免上部构造空心板、下部构造帽梁出现30°锐角构造,提高结构的性能,施工方便,保证工程质量,且可减少桥梁下部构造工程数量,降低工程造价。 结语 中小跨径斜交桥梁的设计,应根据桥梁所处位置的路线线形、斜交角度、河流情况及工程总体设计要求等诸方面综合考虑,做深入、细致的研究,通过方案比较,选择合适的桥型布置,使斜交桥设计合理,符合规范要求,施工方便,耐久适用,经济美观。 参考文献: 吴香国; 不完整结构屈曲及其可靠性评定方法研究 [D];哈尔滨工程大学; 2006年 张小庆; 结构体系可靠度分析方法研究 [D];大连理工大学; 2003年 沈照伟; 基于可靠度的海洋工程随机荷载组合及设计方法研究 [D];浙江大学; 2004年 孙晓燕; 服役期及加固后的钢筋混凝土桥梁可靠性研究 [D];大连理工大学; 2004年 仲伟秋; 既有钢筋混凝土结构的耐久性评估方法研究 [D];大连理工大学; 2003年 杨则英; 既有钢筋混凝土桥梁安全性耐久性综合评估法研究 [D];大连理工大学; 2004年 禹智涛; 既有钢筋混凝土桥梁可靠性评估的若干问题研究 [D];华南理工大学; 2003年 孙晓燕,黄承逵,孙保沭; 既有桥梁外贴纤维布加固后可靠度分析[J]; 东南大学学报(自然科学版); 2005年03期; 109-114

中国公路学报论文格式模板下载安装

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491649849

沥青玛蹄脂碎石混合料是一种由沥青、纤维稳定剂、矿粉及少量的细集料组成的沥青玛蹄脂,填充间断级配的粗集料骨架间隙而形成的眼挤型密实结构混合料。SMA改性沥青及SMA路面是一种新型的路面结构,改性沥青及SMA混合料冷却后非常坚硬,强度高。本文结合上海城市外环线(浦东段)环南一大道工程的施工,谈谈如何对改性沥青及SMA路面的施工进行控制。  一、工程综述  本工程北起张扬路立交东至环东一大道,路幅红线宽度100米,为城市Ⅰ级主干道,双向8车道,总长2387米。车行道结构形式为沥青柔性路面,结构层组成为路基+15厘米砂砾垫层+40厘米二灰碎石基层+15厘米三层式沥青混凝土面层。面层组合如下:表面层为改性沥青玛蹄脂碎石混合料(SMA-16)4厘米;中面层为中粒式改性沥青砼(LH-25)6厘米;底面层为粗粒式改性沥青砼(CLH-35)6厘米;下封层1厘米。  二、改性沥青施工质量控制的难点  改性沥青混合料粘度较高,各工序的施工温度均比普通沥青混合料的施工温度要求高,贮存、运输期间的降温不应超过10℃,生产厂至施工现场的距离较长,上海交通繁忙,气候变化大,混合料贮藏温度控制难。  沥青路面施工质量与摊铺机械的性能密切相关,沥青摊铺机械型号多种,性能不一。如何选择性能良好的施工机械,是工程质量控制的重点。  沥青摊铺时,必须均匀、连续,工人素质必须高,要能正确判断摊铺界面。  三、SMA沥青的拌合及施工  沥青混合料拌合。由于SMA与普通密级配沥青砼最大不同之处是SMA为间断级配,粗集料粒径单一、量多、细集料很少,矿粉用量多。细集料包括石屑和砂一共只需15%左右,给混合料的供料拌和带来不少困难。为此,料斗、料仓要重新安排,增加粒径为5~10毫米的骨料仓,以保证冷料数量,而细集料用量很少,冷料仓门开启很少,供料过程中要保持细集料干燥,以保证细集料顺利供料。主皮带把粗配料送入滚洞,通过燃烧器对骨料加热,有热电偶检测料温,自动调节燃烧器的风油比,使骨料温度达到190℃~200℃。热料经提升机进入振动筛,把热料按目标配合比的规格要求分筛到不同的热料仓(筛网尺寸可根据要求更换),有计算机控制各热料仓拉门,按输入的生产配合比自动配料、计量,由于SMA粗料粒径单一,细料很少,热料可能会发生粗集料仓经常不足(亏料),而细集料仓经常溢仓的不正常情况,控制室的操作人员不可调整放料的数量,使SMA的配合比不准。然后将木质素纤维加入到搅拌锅与骨料共同进行干拌,再添加经计算机控配比控制计量的石粉及沥青,拌和后,完成成品料的生产。SMA的干拌时间为4秒~5秒,湿拌30秒~45秒。  各种材料加热温度控制:沥青加热温度160℃~165℃,现场制作温度165℃~170℃,加工最高温度175℃,集料加热温度190℃~200℃,混合料出场温度175℃~185℃,混合料最高温度(废弃温度)195℃,摊铺温度不低于160℃,初始开始温度不低于150℃,复压最低温度不低于130℃,碾压终了温度不低于130℃,开放交通温度不高于60℃。  运输。由于SMA沥青混合料的沥青玛蹄脂的粘性较大,运输车的车厢底部要涂较多的油水混合物,而且为了防止运输车表面混合料结成硬壳,运输车运输过程中必须加盖油布,同时车量要适当增加。  摊铺。沥青必须缓慢、均匀连续不间断地摊铺。摊铺过程中,不得随意变换速度或中途停顿,摊铺速度应根据拌和机产量,施工机械配套情况及摊铺层厚度、宽度确定。摊铺速度为5米/分钟。  碾压。碾压过程是面层施工中的重要环节,碾压SMA的八字方针为“紧跟、碾压、高频、低幅”,并合理地选择压路机组合方式及碾压步骤。  接缝。  (1)纵缝:根据本工程特点,我单位在沥青混合料摊铺过程中采用一台德国产ABG423摊铺机并排摊铺,采用此方式可以一次整幅摊铺,纵缝热接提高了路面的平整度,美化了路面的视觉效果。  (2)横缝:SMA路面的接缝处理要比普通混合料困难一些,因此,摊铺时在边部设置挡板,也可以在沥青SMA层每天施工完工后,在其尚未冷却之前,即切割好,并利用水将接缝冲洗干净。第二天涂刷粘层油,即进行摊铺新混合料。  SMA沥青混合料施工中容易产生的问题:  (1)过碾压:由于SMA路面的集料嵌挤作用,压实程度不大,压实度较易达到,但是随着碾压遍数的增加,集料不断地往下走,玛蹄脂一点点地向上浮,造成构造深度减小。在碾压过程中,特别注意表面构造保持在1~5毫米,以便有适宜的构造深度。  (2)出现油斑:SMA路面通车后出现油斑也是常见的一种病害,这是由于SMA的纤维拌合不均匀造成的。因此在拌合时,要严格控制纤维的投放数量和投放时间,并延长干拌时间,确保纤维拌合均匀。还要注意储藏期间纤维干燥,防止纤维受潮成团。  (3)碾压成型温度不够高是常见的毛病。SMA在130℃碾压的效果就很差了。在低温时碾压,容易出现不平整。在行车过程中出现车辙,是因为碾压不足造成的。  Asphalt of Stone Mastic is a mixture of asphalt from the fiber stabilizing agent, slag and a small amount of the fine aggregate composed of lipid Mastic Asphalt, filled with intermittent level of coarse aggregate skeleton space formed by squeezing eye-density Structure SMA modified asphalt road and SMA is a new type of pavement, and SMA modified asphalt mixture cooled very hard, high Based in Shanghai, Link (Pudong), a South Central Avenue construction project, talk about how the modified asphalt road construction and SMA   I Review of projects  The project has publicized the North Road interchange east to Central Avenue East a road width of 100 meters pieces of red, as cities Ⅰ-level main road, two-way lane 8, the chief of 2,387 Carriageway of the form of flexible asphalt pavement, structural layer of gravel for the roadbed +15 cm layer of grey rubble +40 cm grassroots +15 cm three asphalt concrete Surface composition is as follows: for the modified asphalt surface layer of Stone Mastic mixture (SMA-16) 4 centimeters of the surface of tablets for-modified asphalt concrete (LH-25) 6 centimeters for the bottom layer Coarse-modified asphalt concrete (CLH-35) 6 centimeters under the closure of one   Second, the modified asphalt construction quality control difficult   Modified asphalt mixture viscosity higher, the process of construction than the general temperature of the asphalt mixture of high-temperature requirements, storage, transportation during the cooling should not exceed 10 ℃, manufacturing plant to the construction site of the long distance Shanghai heavy traffic, climate change, mixture storage temperature control    Asphalt road paving machinery and construction quality is closely related to the performance, a variety of types of asphalt paving machinery, mixed How to choose the good performance of construction machinery, is the focus of project quality    Asphalt paving, it must uniform, continuous, workers must be of high quality, must be able to correct judgement paving   3, SMA asphalt mixing and Construction   Asphalt mixture As with the SMA Miji with ordinary asphalt concrete is the biggest difference between the SMA for intermittent graded, coarse aggregate single particle size, quantity, fine aggregate small amount of slag and Stone Chip fine aggregate and sand, including a total of only around 15 percent, to the mixture of materials for mixing brought about many To this end, the hopper, silo to re-arrangements, to increase the diameter of 5 to 10 mm aggregate positions, to ensure that the expected number of cold, fine aggregate amount of very few, very few cold silo door open for materials to maintain the course of Fine Aggregate drying, to ensure smooth for fine aggregate The main ingredients into the thick belt of the roll-through on aggregate heating burner, a thermocouple detection feed temperature and automatically adjust the oil burner than the wind so that the aggregate temperature reaches 190 ℃ ~ 200 ℃ Heat expected to enter the elevator shaker, thermal materials on target to meet the specifications than the sub-screen to a different thermal bin (screen size can be replaced upon request), a computer control of the Silo flamenco, according to enter the Auto production mix ingredients, measuring, as a single SMA rough material particle size, small little material, thermal materials may be rough sets in less than regular hopper (deficit expected), while small-hopper often overflow warehouse is not the normal situation, control Room operators can not adjust the amount of discharge, the SMA not allowed to Lignin fiber and then added to stir the pot with the aggregate common dry mix, then add the computer-control measures the ratio of powder and asphalt, mixing, the expected completion of the finished SMA mix the dry time of four seconds to five seconds, 30 seconds wet mix to 45   Heating temperature control of various materials: asphalt temperature 160 ℃ ~ 165 ℃, the temperature at the scene produced 165 ℃ ~ 170 ℃, the highest temperature of processing 175 ℃, aggregate heating temperature 190 ℃ ~ 200 ℃, the temperature mixture out 175 ℃ ~ 185 ℃ , The highest temperature mixture (abandoned temperature) 195 ℃, paving the temperature of not less than 160 ℃, the initial starting temperature of not less than 150 ℃, repressing the lowest temperature of not less than 130 ℃, RCC ended temperature of not less than 130 ℃ Open transport temperature no higher than 60 ℃   T As SMA asphalt mixture of asphalt Mastic more viscous resin, the carrier at the bottom of the compartment to the oil-water mixture Tu more, and in order to prevent the carrier surface mixture form a hard shell, the carrier during transport to be decked Tarpaulin, it is necessary to appropriately increase the volume of    P Asphalt must be slow, even for uninterrupted Paving process, not free to transform the speed or stop half-way, paving the speed of production should be based on mixing, matching and construction machinery paving thickness, width Paving a speed of 5 m /    RCC RCC is the process of construction of an important link in the RCC SMA eight-character principle for the "keeping up, rolling, high-frequency, low-rate" and a reasonable choice roller composition and RCC    J  (1) longitudinal seam: According to the engineering features, I unit in the asphalt paving mixture used in the course of a Germany-ABG423 paver paving side-by-side, this method can be a whole paver, longitudinal seam to increase the heat The smoothness of the road and beautify the road of visual   (2) Joints: SMA road handling the joints than ordinary mixture difficult, therefore, paving set at the edge of the baffle, can also SMA layer of asphalt a day after the completion of construction, not yet in its cooling, That is, cutting good, and joint use of water will be The next day Tushua viscosity of the oil, that is paving the new   SMA asphalt mixture construction of the easy questions:  (1) the RCC: As the road aggregate SMA embedded crowded, not degree of compaction, the degree of compaction easier to achieve, but with the RCC to increase the number of times, the aggregate continue to go down, Mastic A little bit of fat to the floating, resulting in reduced structural RCC in the process, with particular attention to the surface structure remained at 1 to 5 millimeters in order to have appropriate structural   (2) in the oil spot: SMA opening of the road after the oil spot is a common disease, which is due to the SMA fiber caused by uneven Therefore, in mixing, it is necessary to strictly control the number of fibers running and running time and extended dry mix, to ensure uniform mixing We must pay attention to storage during the dry fiber to prevent the fibers exposed to moisture into   (3) RCC forming a high enough temperature is a common SMA in the 130 ℃ RCC effect on the In the low temperature at RCC, is not prone to the In the lane in the process of rutting, is inadequate because of the RCC  你可以试下这个《road and bridge》——美刊  可以看一些行内的核心期刊,比如《中国公路学报》《力学》等,也可以看看各个学校的学报,比如《同济大学学报》《哈工大学报》《长安大学学报》等,或者有些教材也可以作为参考文献。
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ljf3411

你看你们的政治书是怎么编排的,你就按照上面的差不多写呀,至于字体多大,还有其他什么格式,这个不同的学校有不同的格式,也有不同的要求,问你们老师去吧,这个问题问你老师最合适啦
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