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arc-boutant相关的网络例句

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Based on the analysis of three-dimensional power conductor for DC arc furnace, the electric arc deflection model was set up and the control system of the arc direction was configured. According to the bus bar distribution at the bottom electrodes cooled by water, the arc direction control principle and its configuration were described, The simulation results show that the control system can restrain the electric arc deflection and control the arc direction.

在分析直流电弧炉三维导体布置的基础上,建立了直流电弧的偏工以此作为电弧位置控制的依据,针对水冷钢棒式底电极型的直流电弧炉,阐述了其电弧位置控制的原理和系统组成,并进行了仿真研究,结果表明控制系统可以有效地纠正电弧的偏向总是并可控设定点自由控制电弧以位置。

Himalaya, which formed on the basement of the Pan-African orogenic event at about 550 Ma BP and experienced Ordovician to Devonian platform sedimentation, was transformed into to a back-arc extensional-rifted zone at the end of the Carboniferous. The Yarlung Zangbo ophiolitic mélange zone is a Mesozoic back-arc spreading basin corresponding to the Gangdise paleo-island arc zone on the south side of the Tethyan Ocean. The Gangdise zone experienced island-arc orogeny in the Late Paleozoic. The very significant differences in geology on both sides of the Bangong Co-Nujiang suture zone suggest that the suture zone is not only the northern boundary of Gondwanaland and the boundary between the Indian (Yunnan-Tibet) stratigraphic realm and the South China (Qiangtang-Sanjiang) stratigraphic realm, but also the relics of subductional collision and final extinction of the Phanerozoic Tethyan Ocean after the breakup of the Neoproterozoic supercontinent Rodinia. The basic point of study of the collisional orogenic processes of the plateau is the structure and composition of the archipelagic arc-basin tectonic realm of three different stages bounded by three rigid paleocontinental blocks (Gondwanaland, Laurasia and Pan-Cathaysian) and the mutual constraining, transformation and coupling of various material movement forms.

喜马拉雅奠基于5.5亿年左右的泛非造山事件基底上,历经奥陶纪至泥盆纪台地沉积,并于石炭纪末转化为印度板块北缘的弧后伸展裂陷带;雅鲁藏布江蛇绿混杂岩带曾是特提斯大洋南侧与冈底斯古岛弧带相对应的中生代弧后扩张盆地;冈底斯带曾经历了晚古生代岛弧造山作用;班公湖-怒江带两侧大量地质特征重大差异表明,班公湖-怒江带是冈瓦纳大陆北界,是印度地层区和华南地层区的分界,是新元古代Rodinia超大陆解体后显生宙特提斯大洋俯冲,消减,碰撞,最后消亡的遗迹。

Main recognition bases of the Gangdisê multiple island arc-basin system are:① tectonic pattern of collisional zones and island arc or landmass as strips alternating with blocks;②development of multiple arc volcanic-intrusive zones due to consumption of back-arc basin and arc-arc collision;③complicated paleogeographic and paleotectonic patterns shown by numerous sedimentary basin types and sedimentary facies association.

冈底斯构造带多岛弧—盆系统识别的主要依据有:①构造带中发育碰撞结合带与岛弧或陆块呈条块相间的大地构造基本格局;②发育多条由弧后盆地衰亡和弧—弧碰撞作用而形成的弧火山—侵入岩带;③众多的沉积盆地类型和沉积相组合,反映出冈底斯构造带具有复杂的古地理和古构造格局。

To solve the problem of interference between main arc and pilot arc and improve the stability of main arc, all possible ways such as adopting noncontinuous or alternating pilot arc or making main arc and pilot arc have different current passages and detailed measures are proposed.

论述了等离子弧焊中维弧的存在形式及其对主弧的稳定机理,提出了解决主、维弧相互干涉的各种可能途径如采用断续维弧、交流维弧或使主、维弧具有不同通道及从维弧形态等方面提高主弧稳定性的具体措施。

In this paper, it bas been studied by the slope-controlled SCR rectifier that external characteristic of welder relate to arc digging action and the strong arc force of arc the strong arc force of arc welding power source in manual arc welding formed.

利用一种特制的变结构可控硅整流焊机,研究不同焊机外特性对电弧穿透力的影响;探讨了手工电弧焊强电弧力形成机理;并且指出正确设计电源外特性,是获得较强电弧穿透力的途径。

In this dissertation, first, based on theory of cutting tooth about the gleason spiral bevel gear, the equation of meshing in the process of cutting tooth, the surface equation of generating gear as well as the general tooth surface equation of the double circular arc spiral bevel gear, using GB12759-1991 type of double circular arc gear as a basic gear profile, a three-dimension solid model of double circular arc spiral bevel gear which has the good adaptability was carried out by used of Unigraphics software;Second, by researching of the algorithm about contact and collision as well as various contact types based upon Contacting Finite Element Method, a foundation was laid for selecting the contact type in analyzing contact stress of double circular arc spiral bevel gearing;Finally, through the connection port of PARASOLID between UG software and ANSYS/LS-DYNA software, the three-dimension solid model of double circular arc spiral bevel gearing obtained above in UG was imported into ANSYS/LS-DYNA, a finite element analyzing about contact stress of double circular arc spiral bevel gearing was carried out by applying new loading method.

本文首先基于格利森弧齿锥齿轮加工原理及切齿啮合过程中的啮合方程、产形轮齿面方程以及双圆弧弧齿锥齿轮的齿面方程,选用GB12759-1991型双圆弧齿轮基本齿廓为基准齿形,利用Unigraphics软件的建模功能,绘制了有较好适应性的双圆弧弧齿锥齿轮传动三维实体模型。其次,描述了应用有限单元法进行实体接触与碰撞问题算法的公式,研究了有限元分析中的各种接触类型以及双圆弧弧齿锥齿轮接触应力分析中所选择接触类型的依据。最后,通过UG软件和ANSYS/LS-DYNA之间的PARASOLID接口工具包,将UG软件中得到的啮合齿轮模型导入ANSYS/LS-DYNA有限元分析软件,给出一种新的加载方法,进行了双圆弧弧齿锥齿轮传动的接触应力的有限元分析。

Flat Welding : choice of welding technology, electrode diameter, welding current, welding speed, the length of arc welding, weld process verification; Welding : welding inspection clearance groove, assembly space whether it meets the requirements, positioning it firmly welding, weld around is not oil, rust; Electrode temperature and baking time should be required, the rod removed from the oven. tempreture-constant drum on the electrode, then used as admission; Latin America : welding supply welding thickness, welding levels and electrode type and diameter, skilled welders and other factors, and to select appropriate welding current; fillet weld arc : fluctuations in the point arc weld end, they are advised more than 10 mm, is not hard arc, sparking arc weld zone from the electrode should be started immediately. Component integration and maintaining so-rod pieces have 2-4 mm gap arc.

1.1.2.1平焊:选择合适的焊接工艺,焊条直径,焊接电流,焊接速度,焊接电弧长度等,通过焊接工艺验证;清理焊口:焊前检查坡口、组装间隙是否符合要求,定位焊是否牢固,焊缝周围不得有油污、锈物;烘焙焊条应符合规定温度与时间,从烘箱中取出的焊条,放在焊条保温桶内,随用随取;焊拉电源:根据焊件厚度、焊接层次、焊条型号、直径、焊工熟练程度等因素,选择适宜的焊接电流;引弧:角焊缝起落弧点应在焊缝端部,宜大于10㎜,不应随便打弧,打火引弧后应立即将焊条从焊缝区拉开,使焊条块结合与构件间保持2~4㎜间隙产生电弧。

Flat Welding : choice of welding technology, electrode diameter, welding current, welding speed, the length of arc welding, weld process verification; Welding : welding inspection clearance groove, assembly space whether it meets the requirements, positioning it firmly welding, weld around is not oil, rust; Electrode temperature and baking time should be required, the rod removed from the oven. tempreture-constant drum on the electrode, then used as admission; Latin America : welding supply welding thickness, welding levels and electrode type and diameter, skil led welders and other factors, and to select appropriate welding current; fillet weld arc : fluctuations in the point arc weld end, they are advised more than 10 mm, is not hard arc, sparking arc weld zone from the electrode should be started immediately. Component integration and maintaining so-rod pieces have 2-4 mm gap arc.

1.1.2.1平焊:选择合适的焊接工艺,焊条直径,焊接电流,焊接速度,焊接电弧长度等,通过焊接工艺验证;清理焊口:焊前检查坡口、组装间隙是否符合要求,定位焊是否牢固,焊缝周围不得有油污、锈物;烘焙焊条应符合规定温度与时间,从烘箱中取出的焊条,放在焊条保温桶内,随用随取;焊拉电源:根据焊件厚度、焊接层次、焊条型号、直径、焊工熟练程度等因素,选择适宜的焊接电流;引弧:角焊缝起落弧点应在焊缝端部,宜大于10㎜,不应随便打弧,打火引弧后应立即将焊条从焊缝区拉开,使焊条块结合与构件间保持2~4㎜间隙产生电弧。

Arc cutting;Arc welding;Arc-welding equipment;Blowpipes;Burners;Construction requirements;Contact safety devices;Cutoff device;Cutting;Definition;Definitions;Dimensioning;Electric contact protection;Electrical engineering;Electrical safety;Equipment;Impact strength;Insulating resistance;MAG welding;Manual arc welding;Manual operation;Marking;MIG welding;Operating instructions;Plasma arc cutting;Plasma-arc welding;Protection against electric shocks;Protective measures;Safety engineering;Safety requirements;Specification;Temperature-rise tests;Test value;Testing;Testing conditions;Thermal;Thermal stress;TIG welding;Welding;Welding engineering;Welding equipment;Welding power supply

中文标题电弧焊接设备。焊炬中文主题词电弧切割;电弧焊接;电弧焊接设备;焊枪;燃烧器;结构要求;接触安全装置;切割装置;切削;定义;尺寸选定;电接触保护;电气工程;电气安全;设备;冲击强度;绝缘电阻;MAG 焊接;电弧焊操作手册;手控;作标记;金属极惰气保护焊;操作说明书;等离子体电弧切割;等离子电弧焊;防电击;保护措施;安全工程;安全要求;规范;温升试验;试验值;测试;测试条件;热的;热应力;钨极惰性气体保护焊;焊接;焊接工程;焊接设备;焊接电源

Arc cutting;Arc welding;Arc welding cables;Arc-welding equipment;Blowpipes;Connectored joints;Construction requirements;Definition;Definitions;Degrees of protection;Dimensioning;Electric contact protection;Electrical engineering;Electrical safety;Environmental condition;Equipment;Feed;Feeder units;Feeding devices;Filler wire;MAG welding;Manual arc welding;Marking;MIG welding;Operating instructions;Performance requirements;Plasma arc cutting;Plasma-arc welding;Protection against electric shocks;Protective measures;Safety;Safety devices;Safety requirements;Specification;Temperature range;Test conditions;Testing;Testing conditions;Welding;Welding engineering;Welding equipment;Welding power supply;Wire guiding;Wires

中文标题电弧焊设备。第5部分:焊丝进料装置中文主题词弧切割;弧焊;电弧焊接电揽;电弧焊接设备;下流管;接头;施工要求;定义;保护程度;标注;电气接触保护;电气工程;电气保护;环境条件;设备;进料;进料单元;进料设备;填丝;MAG 焊接;手工电弧焊;做标记;MIG 焊接;操作说明;性能要求;等离子弧切割;等离子弧焊接;电击防护;保护措施;安全;安全仪;安全要求;规范;温度范围;试验条件;试验;焊接;焊接工程;焊接设备;焊接电源;线材指示;线

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