RESISTANCE SPOT WELDING METHOD
To provide a resistance spot welding method capable of efficiently molding a weld nugget while suppressing occurrence of spatters.SOLUTION: A constant current period for energizing constant current between electrodes is provided between initial energization and main energization. During the constant...
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Zusammenfassung: | To provide a resistance spot welding method capable of efficiently molding a weld nugget while suppressing occurrence of spatters.SOLUTION: A constant current period for energizing constant current between electrodes is provided between initial energization and main energization. During the constant current period, the constant current period is finished to transfer to main energization in a status of "1.2≤an external dimension of an alloy layer/an external dimension of a welding nugget≤1.5". Thereby, during the constant current period, a heating value is suppressed, temperature distribution in a set of sheets can be made uniform by heat conduction, and the initial energization is shifted to the main energization in a status that the ratio of the exterior dimension of the alloy layer A to the exterior dimension of the welding nugget N is properly acquired. Consequently, the welding nugget can be efficiently molded while suppressing generation of spatters in the main energization.SELECTED DRAWING: Figure 5
【課題】スパッタの発生を抑制しながらも効率良く溶接ナゲットを成形することが可能な抵抗スポット溶接方法を提供する。【解決手段】初期通電と本通電との間に、電極間に一定の電流を通電させる定電流期間を設け、この定電流期間中に、「1.2≦合金層の外形寸法/溶接ナゲットの外形寸法≦1.5」となった状態で、定電流期間を終了して本通電に移行する。これにより、定電流期間中において、発熱量を抑えると共に、熱伝導によって板組における温度分布を一様にすることが可能となり、合金層Aの外形寸法と溶接ナゲットNの外形寸法との比が適正に得られた状態で本通電に移行させることができる。このため、本通電でのスパッタの発生を抑制しながらも効率良く溶接ナゲットを成形することが可能になる。【選択図】図5 |
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