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    • 7. 发明申请
    • METHOD AND ARRANGEMENT FOR CHEMICALLY TREATING THE SURFACES OF BULK MATERIAL
    • 方法和系统对于大宗的化学表面处理
    • WO01018282A3
    • 2001-11-15
    • PCT/DE2000/003069
    • 2000-09-01
    • B01J8/02B01J8/12B08B3/04B08B3/08C23G3/00C25D17/16F27B9/14F27D1/18F27D3/00B01J8/08
    • B08B3/04B01J8/025B01J8/125B08B3/08C23G3/00C25D17/16F27B9/142F27D3/0033F27D2001/1891
    • The invention relates to a method for chemically treating the surfaces of bulk material in several treatment steps. The bulk material is successively treated in batch quantities in several reactors with different treatment liquids. The aim of the invention is to carry out said method easily. To this end, the treatment liquid is bled in a reactor (e.g. 4) respectively after a batch of the bulk material has been treated. An outlet (29) of the reactor (4) is subsequently freed. The batch of the bulk material is thus removed from the reactor (4) and supplied to an additional reactor (e.g. 5) that is arranged below the first reactor (4), whereby gravity is used. The invention also relates to an arrangement for chemically treating surfaces. Said arrangement comprises reactors that are open to the top and are provided with an outlet (29) in the lower area thereof. The outlet (29) can be closed. Said reactors are arranged one on top of the other.
    • 在多个处理步骤,其中,所述散装物料分批处理连续在多个具有不同的处理流体的反应器的化学表面处理散装材料的制造方法。 为了用最小的努力执行此过程中,在每个反应器中的处理一批松散材料的后(例如,4)被释放时,处理液,然后在反应器(4)的排放开口(29)被释放。 因此,散装材料的重心从反应器(4)的力的作用下将批料施加并且在下面进一步布置反应器被中断(例如,5)。 为化学表面处理,其中,在其下部区域中的向上开口的反应器具有一个可关闭的排料口(29)和被布置在另一个之上的布置。
    • 8. 发明申请
    • METHOD AND DEVICE FOR TEMPERING COMPONENTS, E.G. SEMI-CONDUCTOR CIRCUITS, CIRCUIT BOARDS AND THE LIKE
    • 回火组件。例如方法及装置, 半导体电路,电路板等
    • WO01027547A1
    • 2001-04-19
    • PCT/EP2000/009806
    • 2000-10-06
    • B23K1/008B23K37/047F26B15/10F27B9/14B65G1/04
    • B23K1/008B23K37/047B23K2201/40F26B15/10F27B9/142
    • The invention relates to a method for tempering components, e.g. semi-conductor circuits and the like, whereby components are conveyed on carriers through an entrance slit into a tempering housing provided with a tempering device and outwardly transported through an outlet slit positioned opposite the inlet slit. The carriers are received by a feeder in a housing which is provided with adjacent holders. After the first holder has been charged, said feeders are shoved gradually in a single from an initial position into a receiving position whereby the individual holders are subsequently charged one after the other. After all the holders have been charged, the feeder filled is pushed back rapidly from the final position thus attained in an opposite direction to return to an initial position. Inward conveyance of a carrier occurs through the inlet slit and, when the feeder is full, the transport out of the first tempered carrier in the feeder occurs through the outlet slit. Sequential outward conveyance of individual feeder pertaining to the hoppers occurs in addition to sequential transporting out of individual tempered carriers. A tempered carrier is replaced by a non-tempered carrier and the residence time of the carrier in the feeder is the same for all carriers and corresponding to the period of time between the two returns, until all the holders of the feeder have attained their final position and are re-charged. Return of the feeder to an initial position reinitiates the gradual charging of said feeders.
    • 本发明涉及一种用于控制部件的温度,例如 半导体电路,印刷电路板等,其中各组分在载体上通过一个入口槽成Temperierorganen到输出狭缝的入口狭缝设置有热调节和排出通过相反的一侧输送。 的载流子被容纳在盒,其设置有相邻配置保持器,并从一个起始位置移动到所述第一保持器的充电逐渐的方向上成其中相继杂志的单独的保持器被加载连续接收位置的情况下。 所有的保持器然后在相反方向上的,从而到达端部位置,以便填充该杂志在快速返回到其初始位置移回到装载后,其中的载体通过入口槽和在填充的杂志向内输送,第一的送出在该杂志的回火载体通过出口狭缝 并与该杂志的单独的保持器的连续装载发生依次输送出单独的温度控制的载体。 在这种情况下,温度控制的载体是由非调质支持,并且对于等于两个返回线之间的周期中的所有载流子,直到盒的所有夹持器在其到达端部位置上的刀的回报之后反馈回,于是在该杂志相当于载体的停留时间更换 起始位置再次进行该杂志的地方逐步饲料。