首页> 外文会议>SAE Conference >Prefluxed aluminum tube for brazed automotive heat exchangers
【24h】

Prefluxed aluminum tube for brazed automotive heat exchangers

机译:用于钎焊的钎焊铝管用于钎焊的汽车换热器

获取原文

摘要

Provision of a thin layer of zinc on aluminum to provide the fillets during brazing has been described previously. The process for zinc coating of the extruded aluminum multiport tubes has been further enhanced by utilization of the zinc layer to carry flux for subsequent brazing operations, thereby making it possible to produce brazed heat exchanger assemblies utilizing the thin zinc layer, without the need for a separate fluxing operation prior to brazing. The flux is applied directly onto the molten zinc coating where it becomes mechanically locked in position when the zinc freezes. Because of this action, the flux cannot be easily dislodged, unlike other techniques where powdered flux has been sprayed directly upon the aluminum tube surface or a fused flux has been applied to the tube surface. The prefluxed product can readily be handled and subjected to simple forming operations without dislodging the flux. Flux can be adhered to zinc coatings as thin as two micrometers and below, which is somewhat lower than required for the zinc-based joining process but, in this form, the flux layer is suitable for enhancement of conventional Al:Si brazing technology. In this case, the zinc is diffused into the aluminum tube wall during brazing to provide enhanced corrosion resistance. When the flux is applied to a heavier zinc coating, the need for Al:Si brazing is avoided, with the zinc providing the braze fillets through diffusion and partial melting of the diffused layer at normal braze temperatures. The technology also offers potential for brazing in normal air rather than nitrogen atmospheres and more simplified braze cycles can be used, where the need to drive off water from the flux is reduced. It also has the added advantage that the flux is carried directly into the joint area where it will melt and act in situ obviating the requirement to melt and flow into the joints to become effective during brazing. Furthermore, the need to apply extra flux to certain joint areas can be eliminated.
机译:在铝上提供薄层锌,以在钎焊期间提供圆角。通过利用锌层来携带焊剂以供随后的钎焊操作进一步增强了挤出铝多端口管的锌涂层的方法,从而可以生产利用薄锌层生产钎焊的热交换器组件,而无需a在钎焊之前单独的助焊操作。通量直接施加到熔融锌涂层上,当锌冻结时,它变得机械锁定在位置。由于这种动作,与其他技术不同,磁通量不能容易地脱落,其中粉末状焊剂直接喷射在铝管表面或熔融焊剂上已经施加到管表面上。可以容易地处理预氟化的产品,并经受简单的成型操作而不移位通量。可以将助焊剂粘附到锌涂层,如薄,如下,下面稍微低于基于锌的连接过程所需的含量,但在这种形式中,助焊剂层适用于传统的Al:Si钎焊技术。在这种情况下,锌在钎焊期间散开到铝管壁中以提供增强的耐腐蚀性。当通量施加到较重的锌涂层时,避免了对Al:Si钎焊的需求,通过在正常钎焊温度下通过扩散和偏移层的偏移来提供钎焊的锌。该技术还提供钎焊在正常空气中而不是氮气气氛,并且可以使用更简化的钎焊循环,从而减少了从焊剂中脱离水的需要。它还具有额外的优点,即通量直接携带进入接合区域,在那里它将熔化并采用原位作用,避免了在钎焊期间熔化和流入关节的要求。此外,可以消除对某些接合区域施加额外通量的需要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号