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    • 1. 发明授权
    • Method and apparatus for battery plate stacking
    • 电池板堆叠方法和装置
    • US4381596A
    • 1983-05-03
    • US231003
    • 1981-02-04
    • Robert D. SimontonCarl D. Schultz
    • Robert D. SimontonCarl D. Schultz
    • H01M10/14B65G47/28B65G47/91
    • H01M10/14Y10T29/49108Y10T29/53135
    • An apparatus for alternately stacking finite numbers of n positive battery plates and n+1 negative battery plates wherein a negative battery plate is provided at both the top and bottom ends of the stack. The apparatus includes a moving conveyor belt on which the positive plates are deposited having a spacing interval greater than the length of two negative plates. A negative plate is dropped onto the conveyor belt in the space between the positive plates and, in order to provide a negative plate at both the top and bottom ends of a resulting stack, two negative plates are dropped into the space between the positive plates whenever the required number of positive plates for a stack have been deposited on the conveyor belt. The negative and positive plates are then sequentially removed from the conveyor belt and dropped on top of each other thus producing a stack of alternating negative and positive plates, with a negative plate at both the bottom and top of the stack.
    • 一种用于交替堆叠有限数量的n个正极电池板和n + 1个负极电池板的装置,其中在电池堆的顶端和底端都设有负极电池板。 该装置包括移动的传送带,其上沉积有正的板,间隔间隔大于两个负极板的长度。 在正极板之间的空间中将负极板落到输送带上,为了在所得到的堆叠的顶端和底端两端提供负极板,两个负极板落在正极板之间的空间中 所需数量的堆叠的正极板已经沉积在传送带上。 然后将负极板和正极板从输送带顺序地移除并落在彼此的顶部上,从而产生交替的负极板和正极板的堆叠,在堆叠的底部和顶部都具有负极板。
    • 3. 发明授权
    • Battery post and connector strap mold
    • 电池柱和连接器带模具
    • US4108417A
    • 1978-08-22
    • US600203
    • 1975-07-30
    • Robert D. SimontonCarl D. Schultz
    • Robert D. SimontonCarl D. Schultz
    • B22D23/04B22D25/04B22D27/04B22D35/04
    • B22D23/04B22D25/04B22D27/04Y10S164/01
    • There is disclosed a mold assembly for casting posts and plate connector straps onto stacks of plates of lead acid type batteries wherein molten metal is circulated through one or more channels in the assembly and selectively damned to overflow into adjacent mold cavities. Cycle time and properties of the posts and connector straps are improved by constructions which impart a large thermal mass to the channel walls and a small thermal mass to the mold cavity walls. Thermal isolation of the mold cavity walls from the channel walls further enhances these conditions whereby the molds can be elevated in temperature prior to the casting operation and rapidly cooled during that operation. Cooling of the post mold cavities earlier and at a faster rate than the strap mold cavities increases post strength. A mold frame construction containing the molten metal flow channel and one or more inserts for the frame provide the desirable thermal properties while lending flexibility to the apparatus. Coolant circuits are provided for the inserts with flow paths which influence the sequence and speed of cooling of mold insert portions.
    • 公开了一种用于将柱和板连接器带压入铅酸型电池板的模具组件,其中熔融金属通过组件中的一个或多个通道循环并且选择性地被阻止以溢出到相邻的模腔中。 通过对通道壁赋予大的热质量的结构和对模腔壁的小的热质量的结构来改善柱和连接器带的循环时间和性质。 模具腔壁与通道壁的热隔离进一步增强了这些条件,由此模具可以在铸造操作之前升温,并在该操作期间快速冷却。 后模腔更早地以比带模腔更快的速度冷却增加了柱强度。 包含熔融金属流动通道的模具框架结构和用于框架的一个或多个插入件提供期望的热性能,同时为设备提供灵活性。 为具有影响模具插入部分的冷却顺序和速度的流动路径的插入件提供冷却剂回路。