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    • 2. 发明授权
    • Method for producing polypyridinium
    • 生产聚吡啶的方法
    • US07985829B2
    • 2011-07-26
    • US10593176
    • 2005-03-23
    • Tomokazu IyodaKaori KamataYukimitsu Suzuki
    • Tomokazu IyodaKaori KamataYukimitsu Suzuki
    • C08G73/06C08G73/00
    • C08G73/0627
    • A production method for polypyridinium having a narrow molecular weight distribution and a desired molecular weight is provided. Polypyridinium 3 having a narrow molecular weight distribution and a desired molecular weight is synthesized by allowing a pyridine derivative monomer 2 to polymerize on a polymerization initiator 1 such as a specially designed 4-halopyridinium and the like in the presence of a dissolution accelerating agent, such as tetrabutyl ammonium tetrafluoroborate, that dissolves the polymer formed in a solvent as in the chemical below. where Y represents an anion that dissolves in an organic solvent, X and Z represent halogen atoms, R represents hydrocarbon groups and the like and o is about 1 to 300.
    • 提供了具有窄分子量分布和所需分子量的聚吡啶鎓的制备方法。 通过使吡啶衍生物单体2在诸如特殊设计的4-卤代吡啶鎓等的聚合引发剂1上聚合,在溶解促进剂存在下合成具有窄分子量分布和所需分子量的聚吡啶鎓3, 作为四氟丁基铵四氟硼酸盐,其溶解如在下面的化学品中在溶剂中形成的聚合物。 其中Y表示在有机溶剂中溶解的阴离子,X和Z表示卤素原子,R表示烃基等,o为约1至300。
    • 4. 发明申请
    • Wire aiming position control method and position control apparatus
    • 线瞄准位置控制方法和位置控制装置
    • US20060208029A1
    • 2006-09-21
    • US11371361
    • 2006-03-09
    • Yukimitsu SuzukiIchiro AritaSatoru YamasumiTakahisa Iizuka
    • Yukimitsu SuzukiIchiro AritaSatoru YamasumiTakahisa Iizuka
    • B23K13/08
    • B23K9/1274B23K9/126
    • To provide a wire aiming position control method and position control apparatus capable of accurately feeding a welding wire to an aiming position of a welded member regardless of a change in an amount of twisting the wire and to provide a wire aiming position control method and position control apparatus capable of accurately ensuring an aiming position of a torch and capable of ensuring stable welding quality even in thin plate welding, an intersection K1 of a linear line L1 connecting a center of a tip 10 and a wire front end and an extension plane L2 including an imaginary aiming position K disposed at a predetermined position is calculated. A wire displacement C constituting a distance between the intersection K1 and the imaginary aiming position K is calculated. At least either one of a welding wire W and a welded member 14 is corrected along the extension plane L2 by an amount of the wire displacement C. The imaginary aiming position K is determined at a front end position of a calibrating needle mounted to a torch 9.
    • 为了提供能够将焊丝精确地供给到焊接部件的瞄准位置的线对准位置控制方法和位置控制装置,而不管线的扭转量的变化,并且提供线对准位置控制方法和位置控制 能够精确地确保割炬的瞄准位置并且即使在薄板焊接中也能够确保稳定的焊接质量的装置,连接尖端10的中心和线前端的线性线L 1的交点K 1和延伸平面 计算包括设置在预定位置的假想瞄准位置K的L 2。 计算构成交点K 1与虚拟目标位置K之间的距离的线移位C. 焊丝W和焊接部件14中的至少任一个沿着延伸面L 2被修正一定量的钢丝移动量C.假想的瞄准位置K是在安装到 火炬9。
    • 5. 发明授权
    • Arc welding quality evaluation apparatus
    • 电弧焊质量评估仪
    • US06703585B2
    • 2004-03-09
    • US10064953
    • 2002-09-04
    • Yukimitsu Suzuki
    • Yukimitsu Suzuki
    • B23K910
    • B23K9/0953
    • An arc welding quality evaluation apparatus for consumable electrode gas shielded arc welding comprises a heat input detection means 8 for detecting heat input applied to a workpiece to be welded; a welding time detection means 11 for detecting the welding time of the workpiece; a spatter weight detection means 16 for detecting the weight of spatter produced during the welding time of the workpiece; a heat compensation means 17 for compensating for heat loss due to spatter occurring during the welding time of the workpiece; an effective heat input computation means 12 for computing effective heat input per unit welding time, based on detected values of the detection means 8 and 11, and a compensation value of the heat compensation means 17; and a weld quality assessment means 22 for comparing an output of the effective heat input computation means 12 to a reference standard value, and assessing weld quality acceptability based on the degree of separation of the computation means output from the reference standard value.
    • 用于消耗电极气体保护电弧焊的电弧焊接质量评估装置包括用于检测施加到待焊接工件的热输入的热输入检测装置8; 用于检测工件的焊接时间的焊接时间检测装置11; 用于检测在工件的焊接时间期间产生的飞溅物的重量的飞溅物重量检测装置16; 用于补偿在工件的焊接时间期间发生飞溅的热损失的热补偿装置17; 一个有效的热量输入计算装置12,用于根据检测装置8和11的检测值和热补偿装置17的补偿值计算每单位焊接时间的有效热量输入; 以及用于将有效热输入计算装置12的输出与参考标准值进行比较的焊接质量评估装置22,并且基于从参考标准值输出的计算装置的分离程度来评估焊接质量可接受性。
    • 9. 发明授权
    • Method and apparatus for determining stability of arc welding
    • 确定电弧焊接稳定性的方法和装置
    • US6031203A
    • 2000-02-29
    • US175564
    • 1998-10-20
    • Yukimitsu SuzukiKatsunori MiyazakiTaro Kamiya
    • Yukimitsu SuzukiKatsunori MiyazakiTaro Kamiya
    • B23K9/073B23K9/095
    • B23K9/073
    • A method and apparatus for determining the stability of arc welding between a base metal and a welding electrode. A welding current for the arc period and a welding current for the short-circuit period fed from a welding power source are sampled every cycle of the repetition of arc and short-circuit, in accordance with a predetermined sampling frequency. The welding current for the arc period is integrated, and a standard deviation of the integrated welding current for the arc period is calculated. The standard deviation of the integrated welding current for the short-circuit period is calculated, as well. These standard deviations are multiplied together to produce a product, so that a welding stability parameter is calculated on the basis of the product. Then, the welding stability parameter is compared with a predetermined reference value. In response to the result of comparison, the welding stability between the base metal and the welding electrode is determined. A time ratio of the arc period and the short-circuit period may be calculated every cycle of the repetition of arc and short-circuit, and a standard deviation of the time ratio may be calculated. Then, the product may be multiplied by the standard deviation of the time ratio to calculate the welding stability parameter.
    • 用于确定贱金属和焊接电极之间的电弧焊接的稳定性的方法和装置。 根据预定的采样频率,对电弧周期的焊接电流和从焊接电源馈送的短路时段的焊接电流进行采样,每个周期的电弧和短路重复。 电弧期的焊接电流积分,计算出电弧周期的整体焊接电流的标准偏差。 也计算了短路时段内集成焊接电流的标准偏差。 将这些标准偏差相乘以产生产品,从而基于产品计算焊接稳定性参数。 然后,将焊接稳定性参数与预定的参考值进行比较。 响应于比较的结果,确定了母材和焊接电极之间的焊接稳定性。 可以在电弧和短路的重复循环中计算电弧周期和短路周期的时间比,并且可以计算时间比的标准偏差。 然后,乘积乘以时间比的标准偏差,计算焊接稳定性参数。