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    • 17. 发明授权
    • Method for supplying powder into a coating tank and its apparatus
    • 将粉末供应到涂料罐中的方法及其装置
    • US4192728A
    • 1980-03-11
    • US941456
    • 1978-09-12
    • Kunio EnomotoUhee KikuchiMasanori KoboriSuguru KimuraSatoru KamiyamaNobuaki TodorokiJun-ichi Yasukawa
    • Kunio EnomotoUhee KikuchiMasanori KoboriSuguru KimuraSatoru KamiyamaNobuaki TodorokiJun-ichi Yasukawa
    • C25D13/24C25D15/00C25D17/00
    • C25D13/24
    • A method for supplying powder into a coating tank for electrophoretic powder coating comprises a first step for taking out a specified amount of plating bath of which the powder contained therein is reduced as a result of coating work, a second step in which the powder of much the same amount as the reduced amount of the powder is supplied to the plating bath taken out while the plating bath is being agitated to disperse the powder in the plating bath (the first dispersion) to form supplementary plating bath, a third step including the step for second dispersion of the powder in which the powder contained in the supplementary plating bath is further uniformly dispersed and a step for aging the supplementary plating bath with the dispersed powder, and a fourth step for supplying to the coating tank sufficiently aged supplementary plating bath which is obtained from the third step and has a high density of powder which is substantially uniformly dispersed in the supplementary plating bath, and an apparatus is one for executing that method.
    • 将粉末供给到用于电泳粉末涂料的涂布罐中的方法包括:第一步骤,用于取出指定量的电镀浴,其中包含的粉末由于涂布而减少,第二步骤,其中粉末多 与搅拌电镀浴时取出的电镀液相同量的粉末供给到电镀浴中以将粉末分散在电镀浴(第一分散体)中以形成补充电镀浴,第三步骤包括步骤 用于辅助电镀浴中包含的粉末进一步均匀分散的粉末的第二分散和用分散粉末使补充电镀槽老化的步骤,以及向涂料槽供给充分老化的辅助电镀浴的第四步骤 从第三步获得,并且具有高密度的粉末,其基本均匀地分散在补充镀覆棒中 h,设备是用于执行该方法的设备。
    • 20. 发明授权
    • Method for strengthening pressure resistance of a hollowed metallic
structure and a pressure resistant structure made thereby
    • 用于加强中空金属结构的耐压性和由此制成的耐压结构的方法
    • US5215829A
    • 1993-06-01
    • US645489
    • 1991-01-24
    • Takashi MatsunobuKenzi AizawaKazumi AnazawaKunio Enomoto
    • Takashi MatsunobuKenzi AizawaKazumi AnazawaKunio Enomoto
    • G21D1/00C21D7/12C21D9/08C21D9/14
    • C21D7/12C21D9/14C21D2221/10C21D2281/02Y10S148/909Y10T428/12292
    • A method for strengthening a pressure resistant property of a hollowed structure made of a metallic material and a pressure resistant hollowed structure made by such method. The method includes providing a temperature differential in a thickness direction between an outer side and an inner side of the metallic material with an arranged sufficient to generate a stress not exceeding a yielding stress of the metallic material. The outer side and inner side are pressurized so as to superimposed a stress generated by the pressurizing and the stress caused by the temperature differential reaching the yielding stress of the metallic material. The pressure is released subsequent to the superimposed stress reaching a level of the yielding stress of the metallic material. The compressive residual stress has a larger absolute value than a tensile stress caused in the inner side of the hollowed structure by the internal pressure, with the tensile residual stress in an outer side of the hollowed structure having a value of less than the tensile yielding stress of the metallic material even though the tensile stress is superimposed in the outer side of the hollowed structure by the internal pressure.
    • 一种用于加强由金属材料制成的中空结构的耐压特性的方法和通过这种方法制成的耐压中空结构。 该方法包括在金属材料的外侧和内侧之间沿厚度方向提供温度差,其布置足以产生不超过金属材料的屈服应力的应力。 外侧和内侧被加压,以叠加由加压产生的应力和由温差导致的应力达到金属材料的屈服应力。 在叠加的应力达到金属材料的屈服应力的水平之后释放压力。 压缩残余应力的绝对值比通过内部压力在中空结构的内侧产生的拉伸应力大,中空结构的外侧的拉伸残余应力小于拉伸屈服应力 即使拉伸应力通过内部压力叠加在中空结构体的外侧。