CN113652691A - 一种vcm马达弹片增强表面耐腐蚀性焊接性的镀锡工艺 - Google Patents

一种vcm马达弹片增强表面耐腐蚀性焊接性的镀锡工艺 Download PDF

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CN113652691A
CN113652691A CN202110958237.0A CN202110958237A CN113652691A CN 113652691 A CN113652691 A CN 113652691A CN 202110958237 A CN202110958237 A CN 202110958237A CN 113652691 A CN113652691 A CN 113652691A
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谭巨华
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田书鼎
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Dongguan Jusheng Metal Technology Co ltd
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Abstract

本发明公开了一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:S1、原材料镀锡;S2、清洗;S3、覆膜;S4、曝光;S5、显影;S6、蚀刻;S7、退膜;S8、表面清洗处理;S9、成品检验;S10、包装;一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:S1、原材料清洗;S2、覆膜;S3、曝光;S4、显影;S5、蚀刻;S6、退膜;S7、表面清洗处理;S8、镀锡;S9、表面清洗处理;S10、成品检验;S11、包装。本发明的优点在于:拥有较高的焊接良率、表面盐雾、高温高湿等耐腐蚀测试可通过。

Description

一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺
技术领域
本发明涉及VCM马达弹片表面处理技术领域,具体是指一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺。
背景技术
VCM马达弹片的原材料为高强度的铜合金,其表面需要做防氧化处理,造成后道工艺的焊接良率不高,表面盐雾、高温高湿等耐腐蚀测试通不过。
发明内容
本发明要解决的技术问题是,针对上述问题,提供一种拥有较高的焊接良率、表面盐雾、高温高湿等耐腐蚀测试可通过的VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺。
为解决上述技术问题,本发明提供的技术方案为:一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:
S1、通过镀锡线对原材料进行镀锡;
S2、清洗掉原材料表面的油污,增加表面覆着力;
S3、在原材料上覆盖一层感光膜,为图形转移做准备;
S4、用紫外线照射感光膜,固化形成图形;
S5、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S6、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S7、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S8、对VCM马达弹片进行表面清洗处理;
S9、对VCM马达弹片进行成品检验;
S10、对VCM马达弹片进行包装。
进一步地,所述S1中的通过镀锡线对原材料进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,所述除油工序采用酸洗中和,直至原材料表面无油污,所述镀锡工序的镀锡温度为20~80摄氏度,所述检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米。
一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:
S1、清洗掉原材料表面的油污,增加表面覆着力;
S2、在原材料上覆盖一层感光膜,为图形转移做准备;
S3、用紫外线照射感光膜,固化形成图形;
S4、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S5、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S6、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S7、对VCM马达弹片进行表面清洗处理;
S8、通过镀锡线对VCM马达弹片进行镀锡;
S9、对VCM马达弹片进行表面清洗处理;
S10、对VCM马达弹片进行成品检验;
S11、对VCM马达弹片进行包装。
进一步地,所述S8中的通过镀锡线对VCM马达弹片进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,所述除油工序采用酸洗中和,直至VCM马达弹片表面无油污,所述镀锡工序的镀锡温度为20~80摄氏度,所述检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米。
本发明与现有技术相比的优点在于:该VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,通过原材料镀锡、清洗、覆膜、曝光、显影、蚀刻、退膜、表面清洗处理、成品检验、包装和原材料清洗、覆膜、曝光、显影、蚀刻、退膜、表面清洗处理、镀锡、表面清洗处理、成品检验、包装两套工艺流程中的一种,使得加工制得的VCM马达弹片拥有较高的焊接良率,可顺利通过表面盐雾、高温高湿等耐腐蚀测试。
具体实施方式
为了更好的解释本发明,以便于理解,通过具体实施方式,对本发明作详细描述。
实施例一
一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:
S1、通过镀锡线对原材料进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,除油工序采用酸洗中和,直至原材料表面无油污,镀锡工序的镀锡温度为20~80摄氏度,检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米;
S2、清洗掉原材料表面的油污,增加表面覆着力;
S3、在原材料上覆盖一层感光膜,为图形转移做准备;
S4、用紫外线照射感光膜,固化形成图形;
S5、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S6、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S7、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S8、对VCM马达弹片进行表面清洗处理;
S9、对VCM马达弹片进行成品检验;
S10、对VCM马达弹片进行包装。
实施例二
一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,包括以下步骤:
S1、清洗掉原材料表面的油污,增加表面覆着力;
S2、在原材料上覆盖一层感光膜,为图形转移做准备;
S3、用紫外线照射感光膜,固化形成图形;
S4、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S5、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S6、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S7、对VCM马达弹片进行表面清洗处理;
S8、通过镀锡线对VCM马达弹片进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,除油工序采用酸洗中和,直至VCM马达弹片表面无油污,镀锡工序的镀锡温度为20~80摄氏度,检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米。
S9、对VCM马达弹片进行表面清洗处理;
S10、对VCM马达弹片进行成品检验;
S11、对VCM马达弹片进行包装。
以上实施例仅用以说明而非限制本发明的技术方案,尽管参照上述实施例对本发明进行了详细说明,本领域的普通技术人员应当理解:依然可以对本发明进行修改或者等同替换,而不脱离本发明的精神和范围的任何修改或局部替换,其均应涵盖在本发明的权利要求范围当中。

Claims (4)

1.一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,其特征在于,包括以下步骤:
S1、通过镀锡线对原材料进行镀锡;
S2、清洗掉原材料表面的油污,增加表面覆着力;
S3、在原材料上覆盖一层感光膜,为图形转移做准备;
S4、用紫外线照射感光膜,固化形成图形;
S5、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S6、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S7、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S8、对VCM马达弹片进行表面清洗处理;
S9、对VCM马达弹片进行成品检验;
S10、对VCM马达弹片进行包装。
2.根据权利要求1所述的一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,其特征在于:所述S1中的通过镀锡线对原材料进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,所述除油工序采用酸洗中和,直至原材料表面无油污,所述镀锡工序的镀锡温度为20~80摄氏度,所述检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米。
3.一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,其特征在于,包括以下步骤:
S1、清洗掉原材料表面的油污,增加表面覆着力;
S2、在原材料上覆盖一层感光膜,为图形转移做准备;
S3、用紫外线照射感光膜,固化形成图形;
S4、将未固化的图形用碳酸钠清洗掉,留下需要的图形;
S5、将显影后露出来的金属层用酸性蚀刻性蚀掉,留下需要的金属图形;
S6、将需要的金属图形上面覆盖的保护膜用碱性溶液溶解掉,露出成品图形;
S7、对VCM马达弹片进行表面清洗处理;
S8、通过镀锡线对VCM马达弹片进行镀锡;
S9、对VCM马达弹片进行表面清洗处理;
S10、对VCM马达弹片进行成品检验;
S11、对VCM马达弹片进行包装。
4.根据权利要求3所述的一种VCM马达弹片增强表面耐腐蚀性焊接性的镀锡工艺,其特征在于:所述S8中的通过镀锡线对VCM马达弹片进行镀锡,具体包括除油、水洗、酸洗、水洗、镀锡、三道水洗、吹干、检测工序,所述除油工序采用酸洗中和,直至VCM马达弹片表面无油污,所述镀锡工序的镀锡温度为20~80摄氏度,所述检测工序采用膜厚仪进行检测,镀层厚度控制在0.2~3微米。
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