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鉛酸蓄電池的真正殺手?

        中(zhong)國是(shi)(shi)鉛酸(suan)(suan)蓄(xu)電(dian)(dian)池的(de)產銷大國。鉛酸(suan)(suan)蓄(xu)電(dian)(dian)池已有(you)(you)200多(duo)年的(de)歷史,是(shi)(shi)一種應用(yong)廣(guang)泛的(de)動力電(dian)(dian)源(yuan)。具有(you)(you)材料易得,價格低廉,放電(dian)(dian)量大,可靠性(xing)高等優點。目前(qian)市場占有(you)(you)率很高,且今后很長一段時間內不可完(wan)全替(ti)代。

       鉛酸蓄電(dian)池(chi)的設計壽命(ming)在(zai)5年左右,但(dan)在(zai)實(shi)際使用過程(cheng)中,通常在(zai)6――12個月(yue)容量便逐漸下(xia)降,實(shi)際使用壽命(ming)只有(you)一年左右。經過剖析大量失(shi)效(xiao)電(dian)池(chi)發(fa)現,失(shi)效(xiao)的狀(zhuang)況有(you)以下(xia)幾種:硫化,失(shi)水,配組不(bu)平衡(heng),軟(ruan)化,短(duan)路,開路。其中“硫化”(硫酸鉛結(jie)晶)占(zhan)失(shi)效(xiao)電(dian)池(chi)的90%以上(shang),它引起蓄電(dian)池(chi)容量下(xia)降,成為(wei)蓄電(dian)池(chi)壽命(ming)終(zhong)止(zhi)的主(zhu)要原(yuan)因(yin)。

      鉛(qian)(qian)酸(suan)蓄(xu)電(dian)(dian)池(chi)充(chong)放(fang)電(dian)(dian)過程是(shi)電(dian)(dian)化(hua)(hua)學(xue)反應(ying)的(de)過程,充(chong)電(dian)(dian)時(shi)硫(liu)酸(suan)鉛(qian)(qian)形(xing)成(cheng)氧(yang)化(hua)(hua)鉛(qian)(qian),放(fang)電(dian)(dian)時(shi)氧(yang)化(hua)(hua)鉛(qian)(qian)又還(huan)(huan)原(yuan)成(cheng)硫(liu)酸(suan)鉛(qian)(qian)。而(er)硫(liu)酸(suan)鉛(qian)(qian)是(shi)一(yi)種(zhong)容易結(jie)(jie)(jie)晶(jing)(jing)的(de)物質。如果(guo)經常(chang)充(chong)電(dian)(dian)不足,不及(ji)時(shi)充(chong)電(dian)(dian)、長期過放(fang)電(dian)(dian)或者電(dian)(dian)池(chi)中(zhong)電(dian)(dian)解液硫(liu)酸(suan)濃度過高、電(dian)(dian)池(chi)靜態閑(xian)置(zhi)時(shi)間過長時(shi),會(hui)結(jie)(jie)(jie)成(cheng)小(xiao)晶(jing)(jing)體(ti)。這(zhe)些小(xiao)晶(jing)(jing)體(ti)再(zai)吸附(fu)周(zhou)圍的(de)硫(liu)酸(suan)鉛(qian)(qian),就像滾雪(xue)球(qiu)一(yi)樣形(xing)成(cheng)大的(de)惰性(xing)結(jie)(jie)(jie)晶(jing)(jing)。結(jie)(jie)(jie)晶(jing)(jing)后的(de)硫(liu)酸(suan)鉛(qian)(qian)充(chong)電(dian)(dian)時(shi)不但不能再(zai)還(huan)(huan)原(yuan)成(cheng)氧(yang)化(hua)(hua)鉛(qian)(qian),還(huan)(huan)會(hui)沉淀(dian)附(fu)著在電(dian)(dian)極(ji)板上(shang),造成(cheng)極(ji)板工(gong)作面(mian)下降(jiang),這(zhe)一(yi)現象叫“硫(liu)化(hua)(hua)”,也就是(shi)常(chang)說的(de)老化(hua)(hua)。

      硫(liu)(liu)酸(suan)鉛晶體是一種絕緣體,它的(de)形(xing)成必將對蓄電(dian)(dian)(dian)池(chi)的(de)充放電(dian)(dian)(dian)性能產生很(hen)大的(de)負(fu)面影響。在負(fu)極板上形(xing)成的(de)硫(liu)(liu)酸(suan)鉛結晶越(yue)(yue)(yue)(yue)多,蓄電(dian)(dian)(dian)池(chi)的(de)內阻越(yue)(yue)(yue)(yue)大,電(dian)(dian)(dian)池(chi)充放電(dian)(dian)(dian)的(de)性能越(yue)(yue)(yue)(yue)差(cha),蓄電(dian)(dian)(dian)池(chi)的(de)使用(yong)壽(shou)命(ming)就越(yue)(yue)(yue)(yue)短。

      另外,當硫酸鉛結晶大量堆積時,還會吸引鉛微粒形成鉛枝,正負極板間的鉛枝搭橋就造成電池的短路。如果極板表面或密封塑殼有縫隙,硫酸鉛結晶就會在這些縫隙內堆積,并產生膨脹力,最終使極板斷裂脫落或外殼破裂,造成蓄電池不可修復的物(wu)理損(sun)壞。

      綜上所述可(ke)以(yi)(yi)看(kan)出,導致鉛酸蓄(xu)電(dian)池(chi)(chi)損(sun)壞的(de)(de)主要機理是蓄(xu)電(dian)池(chi)(chi)本身無法避免(mian)的(de)(de)“硫(liu)(liu)化(hua)”,可(ke)以(yi)(yi)說(shuo)“硫(liu)(liu)化(hua)”是鉛酸蓄(xu)電(dian)池(chi)(chi)的(de)(de)致命(ming)殺手。如能及時(shi)有(you)效地(di)抑制(zhi)電(dian)池(chi)(chi)極板的(de)(de)“硫(liu)(liu)化(hua)”現(xian)象(xiang),就可(ke)以(yi)(yi)大大延長(chang)電(dian)池(chi)(chi)的(de)(de)實際使用壽命(ming)。

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