CN109675477A - 一种石墨烯电池材料的加工工艺 - Google Patents
一种石墨烯电池材料的加工工艺 Download PDFInfo
- Publication number
- CN109675477A CN109675477A CN201811631420.4A CN201811631420A CN109675477A CN 109675477 A CN109675477 A CN 109675477A CN 201811631420 A CN201811631420 A CN 201811631420A CN 109675477 A CN109675477 A CN 109675477A
- Authority
- CN
- China
- Prior art keywords
- battery material
- mixing tank
- case
- driving motor
- pulverizing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
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- 239000000463 material Substances 0.000 title claims abstract description 80
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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Abstract
本发明涉及电池材料加工工艺技术领域,且公开了一种石墨烯电池材料的加工工艺,包括碾碎箱,所述碾碎箱的顶部设有进料斗,且碾碎箱正面一侧的中部设有转动杆,且转动杆外表面的中部设有碾碎筒,所述转动杆的另一端设有第一锥形齿轮,且碾碎箱正面的中部设有活动杆,所述活动杆的外表面设有第二锥形齿轮,所述碾碎箱正面的底部设有传动电机。该石墨烯电池材料的加工装置,通过驱动电机和搅拌头的相互配合,便于更好的对混合箱内部的电池材料进行充分的混合,通过滑槽、挡板和弹簧之间的相互配合,便于将混合箱内部混合后的电池材料排出,从而解决了将电池材料完全排出混合箱的内部需要花费较多的时间,提高了对电池材料排出的效。
Description
技术领域
本发明涉及电池材料加工工艺技术领域,具体为一种石墨烯电池材料的加工工艺。
背景技术
石墨烯电池是利用锂离子在石墨烯表面和电极之间快速大量穿梭运动的特性,开发出的一种新能源电池,石墨烯电池在进行加工的过程中需要将石墨烯材料与其他的电池材料进行粉碎混合,从而保证石墨烯材料能与石其他电池材料充分的混合在一起,因此需要用到石墨烯电池材料的混合工艺。
现如今的石墨烯电池材料加工工艺在对石墨烯材料与其他电池材料进行碾碎的过程中,需要耗费较多的时间来实现对材料的粉碎,进而导致石墨烯电池的生产效率较低,同时将石墨烯材料与其他电池材料混合搅拌完成后,无法有效的将混合颗粒充分的排出装置的内部,容易残留部分的电池材料在装置内部的问题。
发明内容
(一)解决的技术问题
针对上述背景技术提出的不足,本发明提供了一种石墨烯电池材料的加工工艺,解决了上述背景技术提出的问题。
(二)技术方案
本发明提供如下技术方案:
一种石墨烯电池材料的加工工艺,该加工工艺包括以下步骤:
S1:将传动电机打开使得传动电机上的螺旋伞式齿轮与输出轴同步转动,接着螺旋伞式齿轮带动第二锥形齿轮转动,使得第二锥形齿轮带动两个第一锥形齿轮进行同步转动,同时第一锥形齿轮在转动的同时带动转动杆和碾碎筒转动;
S2:将石墨烯与其他电池材料通过进料斗倒入碾碎箱的内部的,在两个碾碎筒转动的过程中对碾碎箱内部的电池材料进行碾碎,部分电池贴合在碾碎筒的外表面落入储料筒的内部接着碾碎后的电池材料通过碾碎箱进入混合箱的内部;
S3:将驱动电机打开,使得驱动电机带动混合箱内部的搅拌头进行同步转动并对混合箱内部的多种电池材料进行搅拌混合,当混合箱内部的电池材料混合完成后,操作人员在滑块打开使得挡板也跟着打开,同时混合箱内部的电池材料在搅拌头的带动下将电池材料通过混合箱正面的排料口排出。
优选的,该加工工艺适用于石墨烯电池材料的加工装置,该加工装置包括碾碎箱,所述碾碎箱的顶部设有进料斗,且碾碎箱正面一侧的中部设有转动杆,且转动杆外表面的中部设有碾碎筒,所述转动杆的另一端设有第一锥形齿轮,且碾碎箱正面的中部设有活动杆,所述活动杆的外表面设有第二锥形齿轮,所述碾碎箱正面的底部设有传动电机,且传动电机的顶部设有螺旋伞式齿轮,所述碾碎箱一侧的底部设有储料筒,所述碾碎箱的底部设有混合箱,所述混合箱正面的一侧开设有滑槽,且滑槽,所述滑槽的内部设有固定杆,所述固定杆的一端设有挡板,且挡板的一侧与滑槽的内壁通过位于固定杆上的弹簧传动连接,所述挡板正面的一侧设有滑块,所述混合箱底部的一侧设有支撑架,且混合箱的底部设有驱动电机,所述驱动电机输出轴的一端设有搅拌头,且驱动电机输出轴的一端设有限位块。
优选的,所述混合箱的正面开设有方形槽,且方形槽的大小与碾碎箱底部的大小相等。
优选的,所述碾碎筒的数量为两个,且两个碾碎筒的外表面均设有粗糙纹。
优选的,所述搅拌头的长度值与混合箱内腔的直径值相等,且搅拌头的两侧均开设有凹槽。
优选的,所述滑块的正面设有防滑纹,且滑块的长度值约为八厘米。
优选的,所述第一锥形齿轮的数量为两个,且两个第一锥形齿轮分别位于第二锥形齿轮正面的左右两侧。
(三)有益效果
与现有技术相比,本发明提供了一种石墨烯电池材料的加工工艺,具备以下有益效果:
1、该石墨烯电池材料的加工装置,通过驱动电机和搅拌头的相互配合,便于更好的对混合箱内部的电池材料进行充分的混合,通过滑槽、挡板和弹簧之间的相互配合,便于将混合箱内部混合后的电池材料排出,从而解决了将电池材料完全排出混合箱的内部需要花费较多的时间,提高了对电池材料排出的效率。
2、该石墨烯电池材料的加工装置,通过碾碎筒、第一锥形齿轮、传动电机和螺旋伞式齿轮之间的相互配合,便于更好的电池材料进行碾碎处理,从而解决了对电池材料进行碾碎的过程较为耗费时间,而导致电池材料加工的时间过长,提高了电池生产的效率。
附图说明
图1为本发明结构正面示意图;
图2为本发明结构搅拌头示意图;
图3为本发明结构混合箱的俯视示意图;
图4为本发明结构碾碎筒的侧视示意图。
图中:1、碾碎箱;2、进料斗;3、转动杆;4、碾碎筒;5、第一锥形齿轮;6、活动杆;7、第二锥形齿轮;8、传动电机;9、螺旋伞式齿轮;10、储料筒;11、混合箱;12、滑槽;13、固定杆;14、挡板;15、弹簧;16、滑块;17、支撑架;18、驱动电机;19、搅拌头;20、限位块。
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。
如图1所示,一种石墨烯电池材料的加工工艺,包括碾碎箱1,碾碎箱1的顶部固定套接有进料斗2,且碾碎箱1正面一侧的中部活动套接有转动杆3,转动杆3的一端贯穿至碾碎箱1的背面,且转动杆3外表面的中部固定套接有碾碎筒4,转动杆3的另一端固定套接有位于碾碎箱1正面的第一锥形齿轮5,且碾碎箱1正面的中部活动套接有活动杆6,活动杆6的外表面固定套接有第二锥形齿轮7,第二锥形齿轮7的正面与第一锥形齿轮5的背面相啮合,碾碎箱1正面的底部固定安装有传动电机8,且传动电机8的顶部固定套接有螺旋伞式齿轮9,螺旋伞式齿轮9与第二锥形齿轮7相啮合,碾碎箱1一侧的底部固定安装有储料筒10,碾碎箱1的底部固定安装有混合箱11,混合箱11正面的一侧开设有滑槽12,且滑槽12,滑槽12的内部固定安装有固定杆13,固定杆13的一端活动套接有挡板14,且挡板14的一侧与滑槽12的内壁通过位于固定杆13上的弹簧15传动连接,挡板14正面的一侧固定安装有滑块16,混合箱11底部的一侧固定安装有支撑架17,且混合箱11的底部转动连接有驱动电机18,如图2所示,驱动电机18输出轴的一端贯穿至混合箱11的内腔并固定套接有搅拌头19,且驱动电机18输出轴的一端固定安装有位于搅拌头19顶部的限位块20。
如图3所示,混合箱11的正面开设有方形槽,且方形槽的大小与碾碎箱1底部的大小相等,实现了碾碎箱1的碾碎的电池材料颗粒能顺利的进入混合箱11的内部,达到对电池材料颗粒的充分搅拌混合。
其中,碾碎筒4的数量为两个,且两个碾碎筒4的外表面均设有粗糙纹,实现了对石墨烯电池的材料进行充分的碾碎加工,提高了材料碾碎的效果。
其中,搅拌头19的长度值与混合箱11内腔的直径值相等,且搅拌头19的两侧均开设有凹槽,实现了对混合箱11内部石墨烯电池的颗粒材料进行充分的搅拌,提高了石墨烯与其他电池材料能充分的混合在一起。
其中,滑块16的正面设有防滑纹,且滑块16的长度值约为八厘米,实现了将挡板14打开时更加的便捷,达到了对混合箱11内部混合充分的电池颗粒进行排出。
其中,第一锥形齿轮5的数量为两个,且两个第一锥形齿轮5分别位于第二锥形齿轮7正面的左右两侧,实现了第一锥形齿轮5能带动碾碎筒4进行同步运动,达到对电池材料的碾碎作用。
在对石墨烯电池材料进行加工的过程中:首先将传动电机8打开使得传动电机8上的螺旋伞式齿轮9与输出轴同步转动,接着螺旋伞式齿轮9带动第二锥形齿轮7转动,使得第二锥形齿轮7带动两个第一锥形齿轮5进行同步转动,同时第一锥形齿轮5在转动的同时带动转动杆3和碾碎筒4转动,然后将石墨烯与其他电池材料通过进料斗2倒入碾碎箱1的内部的,在两个碾碎筒4转动的过程中对碾碎箱1内部的电池材料进行碾碎,部分电池贴合在碾碎筒4的外表面落入储料筒10的内部,接着碾碎后的电池材料通过碾碎箱1进入混合箱11的内部,然后将驱动电机18打开,使得驱动电机18带动混合箱11内部的搅拌头19进行同步转动并对混合箱11内部的多种电池材料进行搅拌混合,当混合箱11内部的电池材料混合完成后,操作人员在滑块16打开使得挡板14也跟着打开,同时混合箱11内部的电池材料在搅拌头19的带动下将电池材料通过混合箱11正面的排料口排出。
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 (7)
1.一种石墨烯电池材料的加工工艺,其特征在于,该加工工艺包括以下步骤:
S1:将传动电机打开使得传动电机上的螺旋伞式齿轮与输出轴同步转动,接着螺旋伞式齿轮带动第二锥形齿轮转动,使得第二锥形齿轮带动两个第一锥形齿轮进行同步转动,同时第一锥形齿轮在转动的同时带动转动杆和碾碎筒转动;
S2:将石墨烯与其他电池材料通过进料斗倒入碾碎箱的内部的,在两个碾碎筒转动的过程中对碾碎箱内部的电池材料进行碾碎,部分电池贴合在碾碎筒的外表面落入储料筒的内部接着碾碎后的电池材料通过碾碎箱进入混合箱的内部;
S3:将驱动电机打开,使得驱动电机带动混合箱内部的搅拌头进行同步转动并对混合箱内部的多种电池材料进行搅拌混合,当混合箱内部的电池材料混合完成后,操作人员在滑块打开使得挡板也跟着打开,同时混合箱内部的电池材料在搅拌头的带动下将电池材料通过混合箱正面的排料口排出。
2.根据权利要求1所述的一种石墨烯电池材料的加工工艺,该加工工艺适用于石墨烯电池材料的加工装置,该加工装置包括碾碎箱,其特征在于:所述碾碎箱的顶部设有进料斗,且碾碎箱正面一侧的中部设有转动杆,且转动杆外表面的中部设有碾碎筒,所述转动杆的另一端设有第一锥形齿轮,且碾碎箱正面的中部设有活动杆,所述活动杆的外表面设有第二锥形齿轮,所述碾碎箱正面的底部设有传动电机,且传动电机的顶部设有螺旋伞式齿轮,所述碾碎箱一侧的底部设有储料筒,所述碾碎箱的底部设有混合箱,所述混合箱正面的一侧开设有滑槽,且滑槽,所述滑槽的内部设有固定杆,所述固定杆的一端设有挡板,且挡板的一侧与滑槽的内壁通过位于固定杆上的弹簧传动连接,所述挡板正面的一侧设有滑块,所述混合箱底部的一侧设有支撑架,且混合箱的底部设有驱动电机,所述驱动电机输出轴的一端设有搅拌头,且驱动电机输出轴的一端设有限位块。
3.根据权利要求2所述的一种石墨烯电池材料的加工装置,其特征在于:所述混合箱的正面开设有方形槽,且方形槽的大小与碾碎箱底部的大小相等。
4.根据权利要求2所述的一种石墨烯电池材料的加工装置,其特征在于:所述碾碎筒的数量为两个,且两个碾碎筒的外表面均设有粗糙纹。
5.根据权利要求2所述的一种石墨烯电池材料的加工装置,其特征在于:所述搅拌头的长度值与混合箱内腔的直径值相等,且搅拌头的两侧均开设有凹槽。
6.根据权利要求2所述的一种石墨烯电池材料的加工装置,其特征在于:所述滑块的正面设有防滑纹,且滑块的长度值约为八厘米。
7.根据权利要求2所述的一种石墨烯电池材料的加工装置,其特征在于:所述第一锥形齿轮的数量为两个,且两个第一锥形齿轮分别位于第二锥形齿轮正面的左右两侧。
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