CN116526053A - 一种便携式锂离子电池储能装置 - Google Patents

一种便携式锂离子电池储能装置 Download PDF

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CN116526053A
CN116526053A CN202310664115.XA CN202310664115A CN116526053A CN 116526053 A CN116526053 A CN 116526053A CN 202310664115 A CN202310664115 A CN 202310664115A CN 116526053 A CN116526053 A CN 116526053A
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wall
plate
groove
power
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刘启凯
李洪涛
师铁军
马桔华
蔡壮壮
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Henan Keneng New Energy Technology Co ltd
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Abstract

本发明涉及锂离子电池技术领域,且公开了一种便携式锂离子电池储能装置,包括电池外壳,所述电池外壳的一侧内壁套接有电池卡接仓,所述电池外壳的另一侧内壁套接有密封板,所述电池卡接仓远离电池外壳的一侧外壁分别设置有固定板、电量显示按键、电量显示模块、LED光源、卡接开关和螺纹连接槽。通过把手主体实现设备的携带,而利用扭转弹簧的两端分别与把手固定座和把手主体的外壁镶嵌,使得把手主体可保持与电池外壳的外壁相贴合,利用压力模块位于把手主体的底部,使得压力模块可通过扭转弹簧受到把手主体的压力,通过压力模块将信号传输至稳压板,使电池主体与DC连接座、USB连接槽、220V电源连接孔之间可通过电源开关实现导通。

Description

一种便携式锂离子电池储能装置
技术领域
本发明涉及锂离子电池技术领域,具体为一种便携式锂离子电池储能装置。
背景技术
目前,锂离子电池是一种高能量密度、长寿命和环境友好的化学电源,在数码类电子产品、医疗器械、电动车、电动工具、军事装备等领域广泛应用,凭借其轻量化和高能量密度等诸多的优良性能,在越来越多的应用领域正越来越多的替代着铅酸电池、镍氢电池和镍镉电池等其它的产品。
现有的锂离子电池储能装置可参考授权公告号为CN206364086U的中国实用新型专利,其公开了一种便携式锂离子电池储能装置,“包括箱体和密封连接在箱体上的箱盖,所述箱体内腔设有由多个单体锂离子电池串联或并联形成的锂离子电池组,在所述箱盖上设有插座、保险丝组件及电压电量显示表,所述锂离子电池组正负极通过导线依次与插座、保险丝组件串联连接,所述锂离子电池组正负极通过导线与电压电量显示表并联连接,所述锂离子电池组外包覆有环氧玻璃纤维板,在所述箱体内腔底面设有橡胶垫,此便携式锂离子电池储能装置中,锂离子电池组外包覆有环氧玻璃纤维板,避免锂离子电池组与箱体刚性接触,锂离子电池组底部的橡胶垫,进一步增强抗震能力。本实用新型体积小、结构紧凑、使用方便、安全性好,可以作为小型储能电源。”
上述设备在使用时,需要将设备放置于包装盒或袋子中,才能实现便携式移动,其实际使用时,难以便携,同时该设备锂离子电池组与电源接口之间没有设置电源连接开关,具有较大的安全隐患,因此提出一种便携式锂离子电池储能装置。
发明内容
本发明提供了一种便携式锂离子电池储能装置,解决了上述背景技术所提出的问题。
本发明提供如下技术方案:一种便携式锂离子电池储能装置,包括电池外壳,所述电池外壳的一侧内壁套接有电池卡接仓,所述电池外壳的另一侧内壁套接有密封板,所述电池卡接仓远离电池外壳的一侧外壁分别设置有固定板、电量显示按键、电量显示模块、LED光源、卡接开关和螺纹连接槽,所述电池外壳的顶部外壁固定装配有把手固定座,所述把手固定座的内壁转动连接有把手主体,所述把手固定座的顶部开设有固定座螺纹槽,所述电池外壳的顶部外壁镶嵌有压力模块,所述电池外壳的顶部外壁开设有散热孔,所述密封板远离电池外壳的一侧外壁分别设置有USB连接槽、电源开关和220V电源连接孔,所述密封板远离电池外壳的一侧外壁分别开设有USB槽、电源槽、散热槽和电源连接槽,所述密封板的一侧外壁设置有固定隔板,所述电池外壳的底部外壁开设有DC外槽,所述密封板远离电源连接槽一侧的内壁开设有电源座安装槽,所述密封板的一侧外壁开设有DC内槽,所述密封板的另一侧外壁镶嵌散热风扇,所述DC内槽的内壁镶嵌有DC连接座,所述密封板的内壁固定装配有电路板固定座,所述电路板固定座的内壁分别固定装配有高压电力板和低压电力板,所述低压电力板的底部设置有稳压板,所述电池外壳远离220V电源连接孔的一端内壁套接有电池仓,所述电池仓远离固定板的一侧外壁固定装配有电池连接座,所述电池连接座远离电池仓的一侧外壁固定装配有电池盖板,所述电池盖板靠近电池连接座的一侧外壁设置有涓流充电板,所述电池连接座远离涓流充电板的一侧外壁设置有缓冲垫,所述缓冲垫远离电池连接座的一侧外壁设置有电池主体,所述电池主体的外壁设置有外侧固定夹板,所述电池仓的内壁固定装配有中侧固定夹板,所述外侧固定夹板和中侧固定夹板的外壁皆开设有导线槽。
优选的,所述固定座螺纹槽的内壁设置有螺栓,且把手固定座通过螺栓与电池外壳固定装配,所述把手固定座的内壁设置有扭转弹簧,且扭转弹簧的两端分别与把手固定座和把手主体的外壁镶嵌,所述压力模块位于把手主体的底部。
优选的,所述USB连接槽与USB槽的位置相对应,所述电源开关与电源槽的位置相对应,所述220V电源连接孔与电源连接槽的位置相对应。
优选的,所述电路板固定座与稳压板皆位于密封板的内壁中,且高压电力板、低压电力板和稳压板电连接,所述低压电力板和高压电力板位于DC连接座和电池主体之间,所述电池主体与电池连接座通过涓流充电板电连接,所述电池连接座分别与高压电力板、低压电力板、稳压板、DC连接座、散热风扇、USB连接槽、电源开关和220V电源连接孔电连接,所述压力模块与稳压板电连接。
优选的,若干所述电池主体之间通过导线实现并连,且与电池连接座电连接,所述外侧固定夹板位于若干电池主体的四处外壁处,所述中侧固定夹板位于若干电池主体之间,用于连接若干电池主体之间的导线设置于所述导线槽的内壁中。
优选的,所述外侧固定夹板的外壁镶嵌有绝缘橡胶,所述外侧固定夹板的内腔设置有铜板。
优选的,所述电池外壳靠近电池卡接仓的一侧内壁设置有卡槽,所述卡接开关与电池卡接仓的内壁滑动套接,所述电池外壳与电池卡接仓之间通过卡接开关与电池外壳靠近电池卡接仓的一侧内壁设置的卡槽相卡接,所实现固定。
优选的,所述固定板与电池卡接仓之间通过设置于螺纹连接槽内壁的螺栓实现固定装配。
本发明具备以下有益效果:
1、该便携式锂离子电池储能装置,通过把手主体实现设备的携带,通过把手主体使设备的便携性实现增加,而利用扭转弹簧的两端分别与把手固定座和把手主体的外壁镶嵌,使得把手主体可保持与电池外壳的外壁相贴合,进而使设备在静置时,其把手主体不会增加设备的体积,同时利用压力模块位于把手主体的底部,使得压力模块可通过扭转弹簧受到把手主体的压力,通过压力模块将信号传输至稳压板,使电池主体与DC连接座、USB连接槽、220V电源连接孔之间可通过电源开关实现导通,而在把手主体没有与压力模块相压合时,其压力模块将信号传输至稳压板,其电源开关在开启状态下,其电池主体与DC连接座、USB连接槽、220V电源连接孔之间不可实现导通,进而使设备在移动状态下,其设备不会因误触电源开关,导致设备电源接通。
2、该便携式锂离子电池储能装置,通过外侧固定夹板位于若干电池主体的四处外壁处,中侧固定夹板位于若干电池主体之间,使得若干电池主体之间可通过外侧固定夹板和中侧固定夹板实现隔离,使若干电池主体之间实现固定,进而防止设备在移动时,其若干电池主体之间实现碰撞,而通过将用于连接若干电池主体之间的导线设置于导线槽的内壁中,使导线不会受设备内腔的结构挤压,从而降低导线损坏及短路的问题,同时通过外侧固定夹板的外壁镶嵌有绝缘橡胶,可使若干电池主体之间可通过绝缘橡胶实现缓震,外侧固定夹板的内腔设置有铜板,使电池主体在运转时,其热量可通过铜板实现导热作用。
附图说明
图1为本发明立体结构示意图;
图2为本发明把手固定座结构示意图;
图3为本发明展开结构示意图;
图4为本发明密封板结构示意图;
图5为本发明电池仓结构示意图;
图6为本发明电池盖板结构示意图;
图7为本发明导线槽结构示意图。
图中:1、电池外壳;2、电池卡接仓;3、固定板;4、电量显示按键;5、电量显示模块;6、LED光源;7、卡接开关;8、螺纹连接槽;9、把手固定座;10、固定座螺纹槽;11、把手主体;12、压力模块;13、散热孔;14、密封板;15、USB连接槽;16、电源开关;17、220V电源连接孔;18、USB槽;19、电源槽;20、散热槽;21、电源连接槽;22、固定隔板;23、DC外槽;24、电源座安装槽;25、DC内槽;26、DC连接座;27、散热风扇;28、电路板固定座;29、高压电力板;30、低压电力板;31、稳压板;32、电池仓;33、电池连接座;34、涓流充电板;35、电池盖板;36、缓冲垫;37、电池主体;38、外侧固定夹板;39、中侧固定夹板;40、导线槽。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-7,一种便携式锂离子电池储能装置,包括电池外壳1,电池外壳1的一侧内壁套接有电池卡接仓2,电池外壳1的另一侧内壁套接有密封板14,电池卡接仓2远离电池外壳1的一侧外壁分别设置有固定板3、电量显示按键4、电量显示模块5、LED光源6、卡接开关7和螺纹连接槽8,电池外壳1的顶部外壁固定装配有把手固定座9,把手固定座9的内壁转动连接有把手主体11,把手固定座9的顶部开设有固定座螺纹槽10,电池外壳1的顶部外壁镶嵌有压力模块12,电池外壳1的顶部外壁开设有散热孔13,密封板14远离电池外壳1的一侧外壁分别设置有USB连接槽15、电源开关16和220V电源连接孔17,密封板14远离电池外壳1的一侧外壁分别开设有USB槽18、电源槽19、散热槽20和电源连接槽21,密封板14的一侧外壁设置有固定隔板22,电池外壳1的底部外壁开设有DC外槽23,密封板14远离电源连接槽21一侧的内壁开设有电源座安装槽24,密封板14的一侧外壁开设有DC内槽25,密封板14的另一侧外壁镶嵌散热风扇27,DC内槽25的内壁镶嵌有DC连接座26,密封板14的内壁固定装配有电路板固定座28,电路板固定座28的内壁分别固定装配有高压电力板29和低压电力板30,低压电力板30的底部设置有稳压板31,电池外壳1远离220V电源连接孔17的一端内壁套接有电池仓32,电池仓32远离固定板3的一侧外壁固定装配有电池连接座33,电池连接座33远离电池仓32的一侧外壁固定装配有电池盖板35,电池盖板35靠近电池连接座33的一侧外壁设置有涓流充电板34,电池连接座33远离涓流充电板34的一侧外壁设置有缓冲垫36,缓冲垫36远离电池连接座33的一侧外壁设置有电池主体37,电池主体37的外壁设置有外侧固定夹板38,电池仓32的内壁固定装配有中侧固定夹板39,外侧固定夹板38和中侧固定夹板39的外壁皆开设有导线槽40。
其中,固定座螺纹槽10的内壁设置有螺栓,且把手固定座9通过螺栓与电池外壳1固定装配,把手固定座9的内壁设置有扭转弹簧,且扭转弹簧的两端分别与把手固定座9和把手主体11的外壁镶嵌,压力模块12位于把手主体11的底部。
需要说明的是,通过把手固定座9通过螺栓与电池外壳1固定装配,使得把手主体11可通过拆卸螺栓实现更换,利用扭转弹簧的两端分别与把手固定座9和把手主体11的外壁镶嵌,使得把手主体11可保持与电池外壳1的外壁相贴合,而利用压力模块12位于把手主体11的底部,使得压力模块12可通过扭转弹簧受到把手主体11的压力。
其中,USB连接槽15与USB槽18的位置相对应,电源开关16与电源槽19的位置相对应,220V电源连接孔17与电源连接槽21的位置相对应。
其中,电路板固定座28与稳压板31皆位于密封板14的内壁中,且高压电力板29、低压电力板30和稳压板31电连接,低压电力板30和高压电力板29位于DC连接座26和电池主体37之间,电池主体37与电池连接座33通过涓流充电板34电连接,电池连接座33分别与高压电力板29、低压电力板30、稳压板31、DC连接座26、散热风扇27、USB连接槽15、电源开关16和220V电源连接孔17电连接,压力模块12与稳压板31电连接。
需要说明的是,利用上述结构,使得电池主体37可通过DC连接座26实现充电,同时可通过220V电源连接孔17、USB连接槽15实现电源输出,而通过电源开关16可使得电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间实现导通,而利用压力模块12与稳压板31电连接,可使电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间实现的导通可通过压力模块12实现信号判断,在把手主体11通过扭转弹簧与压力模块12相压合时,其压力模块12将信号传输至稳压板31,使电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间可通过电源开关16实现导通,在压力模块12没有与压力模块12相压合时,其把手主体11将信号传输至稳压板31,其电源开关16在开启状态下,其电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间不可实现导通。
其中,若干电池主体37之间通过导线实现并连,且与电池连接座33电连接,外侧固定夹板38位于若干电池主体37的四处外壁处,中侧固定夹板39位于若干电池主体37之间,用于连接若干电池主体37之间的导线设置于导线槽40的内壁中。
需要说明的是,通过外侧固定夹板38位于若干电池主体37的四处外壁处,中侧固定夹板39位于若干电池主体37之间,使得若干电池主体37之间可通过外侧固定夹板38和中侧固定夹板39实现隔离,使若干电池主体37之间实现固定,进而防止设备在移动时,其若干电池主体37之间实现碰撞,而通过将用于连接若干电池主体37之间的导线设置于导线槽40的内壁中,使导线不会受设备内腔的结构挤压,从而降低导线损坏及短路的问题。
其中,外侧固定夹板38的外壁镶嵌有绝缘橡胶,外侧固定夹板38的内腔设置有铜板。
需要说明的是,通过外侧固定夹板38的外壁镶嵌有绝缘橡胶,可使若干电池主体37之间可通过绝缘橡胶实现缓震,外侧固定夹板38的内腔设置有铜板,使电池主体37在运转时,其热量可通过铜板实现导热作用。
其中,电池外壳1靠近电池卡接仓2的一侧内壁设置有卡槽,卡接开关7与电池卡接仓2的内壁滑动套接,电池外壳1与电池卡接仓2之间通过卡接开关7与电池外壳1靠近电池卡接仓2的一侧内壁设置的卡槽相卡接,所实现固定。
需要说明的是,利用上述结构,可使电池外壳1与电池卡接仓2之间安装与拆卸的便捷性得到增加。
其中,固定板3与电池卡接仓2之间通过设置于螺纹连接槽8内壁的螺栓实现固定装配。
工作原理,在使用该设备时,可通过把手主体11实现设备的携带,通过把手主体11使设备的便携性实现增加,而利用扭转弹簧的两端分别与把手固定座9和把手主体11的外壁镶嵌,使得把手主体11可保持与电池外壳1的外壁相贴合,进而使设备在静置时,其把手主体11不会增加设备的体积,同时利用压力模块12位于把手主体11的底部,使得压力模块12可通过扭转弹簧受到把手主体11的压力,通过压力模块12将信号传输至稳压板31,使电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间可通过电源开关16实现导通,而在把手主体11没有与压力模块12相压合时,其压力模块12将信号传输至稳压板31,其电源开关16在开启状态下,其电池主体37与DC连接座26、USB连接槽15、220V电源连接孔17之间不可实现导通,进而使设备在移动状态下,其设备不会因误触电源开关16,导致设备电源接通,在设备内部结构安装中,通过外侧固定夹板38位于若干电池主体37的四处外壁处,中侧固定夹板39位于若干电池主体37之间,使得若干电池主体37之间可通过外侧固定夹板38和中侧固定夹板39实现隔离,使若干电池主体37之间实现固定,进而防止设备在移动时,其若干电池主体37之间实现碰撞,而通过将用于连接若干电池主体37之间的导线设置于导线槽40的内壁中,使导线不会受设备内腔的结构挤压,从而降低导线损坏及短路的问题,同时通过外侧固定夹板38的外壁镶嵌有绝缘橡胶,可使若干电池主体37之间可通过绝缘橡胶实现缓震,外侧固定夹板38的内腔设置有铜板,使电池主体37在运转时,其热量可通过铜板实现导热作用。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (8)

1.一种便携式锂离子电池储能装置,包括电池外壳(1),其特征在于:所述电池外壳(1)的一侧内壁套接有电池卡接仓(2),所述电池外壳(1)的另一侧内壁套接有密封板(14),所述电池卡接仓(2)远离电池外壳(1)的一侧外壁分别设置有固定板(3)、电量显示按键(4)、电量显示模块(5)、LED光源(6)、卡接开关(7)和螺纹连接槽(8),所述电池外壳(1)的顶部外壁固定装配有把手固定座(9),所述把手固定座(9)的内壁转动连接有把手主体(11),所述把手固定座(9)的顶部开设有固定座螺纹槽(10),所述电池外壳(1)的顶部外壁镶嵌有压力模块(12),所述电池外壳(1)的顶部外壁开设有散热孔(13),所述密封板(14)远离电池外壳(1)的一侧外壁分别设置有USB连接槽(15)、电源开关(16)和220V电源连接孔(17),所述密封板(14)远离电池外壳(1)的一侧外壁分别开设有USB槽(18)、电源槽(19)、散热槽(20)和电源连接槽(21),所述密封板(14)的一侧外壁设置有固定隔板(22),所述电池外壳(1)的底部外壁开设有DC外槽(23),所述密封板(14)远离电源连接槽(21)一侧的内壁开设有电源座安装槽(24),所述密封板(14)的一侧外壁开设有DC内槽(25),所述密封板(14)的另一侧外壁镶嵌散热风扇(27),所述DC内槽(25)的内壁镶嵌有DC连接座(26),所述密封板(14)的内壁固定装配有电路板固定座(28),所述电路板固定座(28)的内壁分别固定装配有高压电力板(29)和低压电力板(30),所述低压电力板(30)的底部设置有稳压板(31),所述电池外壳(1)远离220V电源连接孔(17)的一端内壁套接有电池仓(32),所述电池仓(32)远离固定板(3)的一侧外壁固定装配有电池连接座(33),所述电池连接座(33)远离电池仓(32)的一侧外壁固定装配有电池盖板(35),所述电池盖板(35)靠近电池连接座(33)的一侧外壁设置有涓流充电板(34),所述电池连接座(33)远离涓流充电板(34)的一侧外壁设置有缓冲垫(36),所述缓冲垫(36)远离电池连接座(33)的一侧外壁设置有电池主体(37),所述电池主体(37)的外壁设置有外侧固定夹板(38),所述电池仓(32)的内壁固定装配有中侧固定夹板(39),所述外侧固定夹板(38)和中侧固定夹板(39)的外壁皆开设有导线槽(40)。
2.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述固定座螺纹槽(10)的内壁设置有螺栓,且把手固定座(9)通过螺栓与电池外壳(1)固定装配,所述把手固定座(9)的内壁设置有扭转弹簧,且扭转弹簧的两端分别与把手固定座(9)和把手主体(11)的外壁镶嵌,所述压力模块(12)位于把手主体(11)的底部。
3.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述USB连接槽(15)与USB槽(18)的位置相对应,所述电源开关(16)与电源槽(19)的位置相对应,所述220V电源连接孔(17)与电源连接槽(21)的位置相对应。
4.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述电路板固定座(28)与稳压板(31)皆位于密封板(14)的内壁中,且高压电力板(29)、低压电力板(30)和稳压板(31)电连接,所述低压电力板(30)和高压电力板(29)位于DC连接座(26)和电池主体(37)之间,所述电池主体(37)与电池连接座(33)通过涓流充电板(34)电连接,所述电池连接座(33)分别与高压电力板(29)、低压电力板(30)、稳压板(31)、DC连接座(26)、散热风扇(27)、USB连接槽(15)、电源开关(16)和220V电源连接孔(17)电连接,所述压力模块(12)与稳压板(31)电连接。
5.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:若干所述电池主体(37)之间通过导线实现并连,且与电池连接座(33)电连接,所述外侧固定夹板(38)位于若干电池主体(37)的四处外壁处,所述中侧固定夹板(39)位于若干电池主体(37)之间,用于连接若干电池主体(37)之间的导线设置于所述导线槽(40)的内壁中。
6.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述外侧固定夹板(38)的外壁镶嵌有绝缘橡胶,所述外侧固定夹板(38)的内腔设置有铜板。
7.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述电池外壳(1)靠近电池卡接仓(2)的一侧内壁设置有卡槽,所述卡接开关(7)与电池卡接仓(2)的内壁滑动套接,所述电池外壳(1)与电池卡接仓(2)之间通过卡接开关(7)与电池外壳(1)靠近电池卡接仓(2)的一侧内壁设置的卡槽相卡接,所实现固定。
8.根据权利要求1所述的一种便携式锂离子电池储能装置,其特征在于:所述固定板(3)与电池卡接仓(2)之间通过设置于螺纹连接槽(8)内壁的螺栓实现固定装配。
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CN117060017A (zh) * 2023-10-11 2023-11-14 深圳市神通天下科技有限公司 一种可充电锂离子电池装置

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117060017A (zh) * 2023-10-11 2023-11-14 深圳市神通天下科技有限公司 一种可充电锂离子电池装置
CN117060017B (zh) * 2023-10-11 2023-12-19 深圳市神通天下科技有限公司 一种可充电锂离子电池装置

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