WO2019034047A1 - 电池仓输出端防水结构 - Google Patents

电池仓输出端防水结构 Download PDF

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Publication number
WO2019034047A1
WO2019034047A1 PCT/CN2018/100412 CN2018100412W WO2019034047A1 WO 2019034047 A1 WO2019034047 A1 WO 2019034047A1 CN 2018100412 W CN2018100412 W CN 2018100412W WO 2019034047 A1 WO2019034047 A1 WO 2019034047A1
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Prior art keywords
battery compartment
elastic plug
waterproof structure
metal conductor
hole
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PCT/CN2018/100412
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English (en)
French (fr)
Inventor
廖易仑
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桂林智神信息技术有限公司
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Publication of WO2019034047A1 publication Critical patent/WO2019034047A1/zh

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/233Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders characterised by physical properties of casings or racks, e.g. dimensions
    • H01M50/24Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders characterised by physical properties of casings or racks, e.g. dimensions adapted for protecting batteries from their environment, e.g. from corrosion
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • H01M50/571Methods or arrangements for affording protection against corrosion; Selection of materials therefor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the invention relates to a waterproof structure, in particular to a waterproof structure at the output end of a battery compartment.
  • the battery compartment is a cavity for storing the battery and ensuring that the battery and the device are energized.
  • the positive and negative ends of the existing battery compartment are mostly in the form of metal springs or shrapnel. The use of these will cause different degrees of rust and oxidation after encountering water or long-term use, resulting in short circuit and poor contact of components inside the machine, irreversible damage to the circuit board, and damage to machine parts.
  • Chinese patent CN106090579A designs a hand-held stable balance device, including a pan/tilt assembly, a handle assembly and a waterproof structure, and the waterproof structures are respectively disposed at the joints of the various components of the hand-held stable balance device.
  • the device is provided with a sealing ring or a sealant at each joint of the components, thereby making the hand-held stable balancing device waterproof.
  • the above prior art only provides a sealing ring or a sealant at the screw connection of the battery compartment, and does not protect the output end of the battery, that is, the positive and negative conductive terminals, and the long-term use also causes the positive and negative terminal springs or shrapnel. Corrosion and oxidation, resulting in users not working properly.
  • the present invention provides a waterproof structure at the output end of a battery compartment, which aims to solve the problems that the existing battery compartment cannot be used in rainwater for a long time, and the oxidation and rust of the positive and negative terminals of the battery compartment.
  • a battery compartment output waterproof structure of a hand held stabilizer comprising: a connection port connected to an output end of the battery compartment; an elastic plug is embedded in the connection port, the elastic plug band There is a hole penetrating therethrough; a metal conductor inserted into the hole at one end, wherein the other end of the metal conductor is provided with a latching portion.
  • the output end of the battery compartment is the positive and negative conductive terminals of the battery compartment; the elastic plug and the metal conductor can replace the traditional metal spring or metal spring, and the card portion can ensure good contact between the battery and the metal conductor, and prevent all metal conductors.
  • the metal conductor is connected to the conductive line inside the connection port, and the elasticity of the elastic plug is used to electrically connect the metal conductor to the line of the connection port after the battery is placed and the battery cover is rotated and closed.
  • the elastic plug can be subjected to the outward expansion force, so that the elastic plug is better matched with the connection port, and the waterproof and sealing performance of the output end of the battery compartment is improved.
  • a battery compartment output waterproof structure of a handheld stabilizer comprising: a connection port connected to the output end of the battery compartment; and the connection port is embedded in an interference fit manner An elastic plug with a through hole; a metal conductor inserted into the hole in an interference fit, the metal conductor extending through the elastic plug to achieve electrical conduction inside and outside the battery compartment.
  • the battery compartment output waterproof structure of the hand-held stabilizer designs the battery compartment output of the hand-held stabilizer in a form completely different from the existing spring or shrapnel, and the battery compartment output is reversibly realized.
  • the electrically conductive metal conductor between the inner side and the outer side is connected to the output end of the battery compartment in an interference fit manner to achieve waterproofing by means of an interference fit between the components having good waterproof effect, which requires external addition to the existing spring or shrapnel.
  • the sealing structure is completely different in water resistance, and further saves the number and cost of components, and has significant beneficial effects.
  • the connecting port is provided with a groove for receiving the elastic plug, and an outer surface of the elastic plug forms an interference fit with the inner peripheral surface of the groove.
  • the elastic plug further includes a bottom end of the plug having a hollow structure embedded in the connecting port, so that when the hollow structure is pressed, the outer peripheral surface of the elastic plug is expanded outward and is inside the groove. An interference fit is formed between the circumferential surfaces. Thereby, a better waterproof and sealing effect is achieved with a simple structure.
  • the elastic plug includes a top surface and a boss disposed on the top surface; the hole penetrates the boss and the top surface. Thereby, the sealing performance between the latching portion and the elastic plug is improved by pressing the boss.
  • the outer diameter of the latching portion is larger than the outer diameter of the metal conductor and the hole.
  • the material of the elastic plug is one of silica gel, rubber and resin, but is not limited to the above materials.
  • a further technical solution is that the material of the metal conductor is copper.
  • the metal conductor is one of a combination of a metal post, a metal wire, a metal post and a metal wire.
  • the latching portion is configured as a cone that is smoothly transitionally connected to the metal conductor or has a rounded corner that is smoothly transitioned to the metal conductor. Thereby, the tightness between the elastic plug and the metal conductor is ensured.
  • the present application also relates to a method for operating the above-described battery compartment output waterproof structure, comprising:
  • Step 1 Insert the elastic plug into the connection port in an interference fit manner, and pass the metal conductor through the hole of the elastic plug;
  • Step 2 Insert the battery compartment into the battery compartment of the battery compartment so that the output end of the battery is in contact with the metal conductor;
  • Step 3 Rotating the connection port, during which the battery squeezes the metal conductor to cause it to fit into the elastic plug in an interference fit and expand the elastic plug outward to make the elasticity
  • the plug is mated with the connecting port in an interference fit manner.
  • the battery compartment output waterproof structure achieves an interference fit between the metal conductor and the hole and between the elastic plug and the connection port by simply screwing the connection port and applying a pressing force to the metal conductor via the battery. Therefore, the uniform waterproofing and sealing performance of the output end of the battery compartment is effectively ensured.
  • the working principle of the invention is that the elastic plug 2 is embedded in the connecting port 5 in an interference fit manner, and the metal conductor 4 passes through the hole 3 of the elastic plug 2 in an interference fit manner, and the battery is placed in the battery compartment of the battery compartment.
  • the output end of the battery is brought into contact with the latching portion 41 of the metal conductor 4, the battery compartment is screwed, the battery presses the metal conductor 4, and the metal conductor 4 is connected to the conductive line inside the connection port 5.
  • the battery presses the metal conductor 4, and the elastic plug 2 is subjected to an outwardly expanding force, so that the elastic plug 2 and the groove 1 of the connection port 5 are better matched and connected, thereby improving the waterproofness of the output end of the battery compartment. Sealing performance.
  • the present invention replaces the positive and negative terminals of the existing spring or shrapnel by the elastic plug 2 and the metal conductor 4, and through the interference fit between the elastic plug 2 and the groove 1, the elastic plug 2 and the metal conductor 4,
  • the waterproofing of the positive, negative and control lines of the battery compartment is realized, the sealing effect is improved, and the corrosion and oxidation of the positive and negative terminals are effectively prevented. It can realize the waterproofing of the battery end and the ends of the control circuit board, and normal use under bad weather such as rain and snow. In combination with the O-shaped gasket at the thread of the battery compartment in the prior art, it can be used normally under water of 2 meters.
  • FIG. 1 is a schematic structural view of a waterproof structure at an output end of a battery compartment according to the present invention.
  • FIG. 2 is a cross-sectional view showing the waterproof structure of the output end of the battery compartment of the present invention.
  • the waterproof structure of the output end of the battery compartment includes an elastic plug 2, a metal conductor 4, and a connection port 5; the elastic plug 2 is embedded in the connection port 5; the end of the elastic plug 2 is provided with a hole 3, the hole 3 penetrates the elastic plug 2; one end of the metal conductor 4 is inserted into the hole 3, and the other end is provided with a latching portion 41; the elastic plug 2 plus the metal conductor 4 can replace the traditional metal spring or metal shrapnel, The oxidation and rust of the positive and negative terminals of the battery compartment are effectively prevented; the latching portion 41 can ensure good contact between the battery and the metal conductor 4, and the metal conductor 4 is prevented from being completely trapped in the hole 3; the metal conductor 4 is inside the connection port 5 and the conductive line
  • the connection using the elasticity of the elastic plug 2, after the battery is placed and the battery cover is closed, the metal conductor 4 is electrically connected to the line connecting the port 5, and the clamping portion can be subjected to the elastic plug
  • the latching portion 41 is rounded in such a manner that the latching portion 41 is configured to be smoothly transitioned to the metal conductor 4 in a rounded manner to allow the latching portion 41 and the resilient plugging portion.
  • the airtight fit is formed between the first ones, which further ensures the tightness between the elastic plug 41 and the metal conductor 4, thereby improving the corrosion resistance, the oxidation resistance, and the service life of the output end of the battery compartment.
  • the latching portion 41 can also be configured as a cone that is smoothly transitionally connected to the metal conductor, thereby allowing a hermetic fit between the latching portion 41 and the resilient plug to further enhance the sealing effect.
  • the connecting port 5 is provided with a groove 1 , and the elastic plug 2 is interference-fitted with the groove 1 to improve the waterproof and sealing performance of the battery compartment.
  • the metal conductor 4 and the hole 3 are interference-fitted to improve the waterproof and sealing effect between the metal conductor 4 and the elastic plug 2.
  • the elastic plug 2 includes a top surface 21 and a boss 23; the boss 23 is disposed on the top surface 21; the hole 3 penetrates the boss 23 and the top surface 21; The boss 23 is pressed to improve the sealing performance between the latching portion 41 and the elastic plug 2.
  • the elastic plug 2 further includes a plug bottom end 22 embedded in the connection port 5, and the bottom end 22 of the plug is a hollow structure; after the battery is in contact with the metal conductor 4, it is squeezed.
  • the boss 23 and the top surface 21, the outer surface of the elastic plug 2 is subjected to an outwardly expanding force to improve the waterproof effect.
  • the material of the elastic plug 2 is one of silica gel, rubber, and resin, but is not limited to the above materials.
  • the material of the metal conductor 4 is copper.
  • the outer diameter of the latching portion 41 is larger than the outer diameters of the metal conductor 4 and the hole 3.
  • the metal conductor 4 is one of a combination of a metal post, a metal wire, a metal post, and a metal wire.
  • the waterproof structure is used to photograph a hand held stabilizer.
  • the present invention replaces the positive and negative terminals of the existing spring or shrapnel by the elastic plug 2 and the metal conductor 4, and through the interference fit between the elastic plug 2 and the groove 1, the elastic plug 2 and the metal conductor 4,
  • the waterproofing of the positive, negative and control lines of the battery compartment is realized, the sealing effect is improved, and the corrosion and oxidation of the positive and negative terminals are effectively prevented. It can realize the waterproofing of the battery end and the ends of the control circuit board, and normal use under bad weather such as rain and snow. In combination with the O-ring gasket at the thread of the battery compartment in the prior art, it can be used normally under water of 2 meters.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Battery Mounting, Suspending (AREA)
  • Connection Of Batteries Or Terminals (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Abstract

本发明公开了一种电池仓输出端防水结构,包括弹性堵头、金属导体、连接端口;其中带有贯穿其的孔洞的弹性堵头嵌入该连接端口;金属导体以过盈配合方式插入该孔洞,该金属导体贯穿该弹性堵头以实现电池仓内侧和外侧件的电导通。本发明公开的电池仓输出端防水结构,解决了现有技术中正、负极端子易锈蚀、易氧化、密封性差的问题。

Description

电池仓输出端防水结构 技术领域
本发明涉及一种防水结构,尤其涉及电池仓输出端防水结构。
背景技术
电池仓是存放电池并保证电池与设备通电的腔体,现有电池仓的正负极端多采用金属弹簧或弹片的形式。使用这些都会在遇到水或长期使用后会出现不同程度的锈蚀和氧化状况,导致机器内部的元器件发生短路及接触不良现象,对线路板形成不可逆破坏,同时也会损坏机器部件。
在现有技术中,如中国专利CN106090579A设计了一种手持式稳定平衡装置,包括云台组件、手柄组件和防水结构,防水结构分别设置于手持式稳定平衡装置的各个部件的连接处。该装置在部件的各个连接处分别设置密封圈或者密封胶,从而使得手持式稳定平衡装置能够防水。上述现有技术仅通过在电池仓的螺纹连接处设置密封圈或者密封胶,未对电池的输出端,即正、负极导电端子进行防水保护,长时间使用同样会导致正、负极端子弹簧或弹片的锈蚀和氧化,导致用户无法正常使用。
发明内容
针对上述问题,本发明提供一种电池仓输出端防水结构,旨在解决现有电池仓不能长期在雨水中使用,以及电池仓正、负极端子的氧化、锈蚀等问题。
本发明采取以下技术方案实现上述目的:
一方面,提供了一种手持稳定器的电池仓输出端防水结构,其特征在于,所述防水结构包括:连接至电池仓输出端的连接端口;弹性堵头嵌入该连接端口,该弹性堵头带有贯穿其的孔洞;一端插入该孔洞的金属导体,其中所述金属导体的另一端设有卡位部。
由此,电池仓输出端为电池仓正、负极导电端子;弹性堵头加上金属导体能够替代传统的金属弹簧或金属弹片,卡位部能够保证电池与金属导体的良好接触,防止金属导体全部陷入孔洞内;金属导体在连接端口内部 与导电线路连接,利用弹性堵头的弹性,在放入电池、旋转封闭电池仓盖后,使得金属导体与连接端口的线路电连接,此时,卡位部通过电池的挤压作用能够使弹性堵头受到向外扩展的力,从而使弹性堵头与连接端口更好配合连接,提高电池仓输出端的防水、密封性能。
另一方面,还提供了一种手持稳定器的电池仓输出端防水结构,其中所述电池仓输出端防水结构包括:连接至电池仓输出端的连接端口;以过盈配合的方式嵌入该连接端口的且带有贯穿的孔洞的弹性堵头;以过盈配合的方式插入该孔洞的金属导体,该金属导体贯穿该弹性堵头以实现电池仓内侧和外侧的电导通。
由上可知,根据本发明的手持稳定器的电池仓输出端防水结构以完全不同于现有弹簧或弹片的形式来设计手持稳定器的电池仓输出端,颠覆性地由将实现电池仓输出端内侧和外侧间电导通的金属导体以过盈配合的方式与电池仓输出端进行连接从而借助于防水效果好的部件间的过盈配合来实现防水,这与现有弹簧或弹片需要外部附加的密封结构防水完全不同,且进一步节省了部件的数量和成本,具有显著的有益效果。
其进一步技术方案为,连接端口设有容置该弹性堵头的凹槽,所述弹性堵头的外周面与凹槽的内周面之间形成过盈配合。由此,提高电池仓的防水、密封性能。
其进一步技术方案为,所述弹性堵头还包括嵌入连接端口的呈中空结构的堵头底端,以使当该中空结构受压时使弹性堵头的外周面向外扩展并与凹槽的内周面之间形成过盈配合。由此,以简单的结构实现了更好的防水、密封效果。
其进一步技术方案为,所述弹性堵头包括顶面和设置在该顶面上的凸台;所述孔洞贯穿凸台和顶面。由此,通过挤压凸台,提高卡位部与弹性堵头之间的密封性能。
其进一步技术方案为,所述卡位部的外径大于金属导体和孔洞的外径。
其进一步技术方案为,弹性堵头的材料为硅胶、橡胶、树脂中的一种,但不限于上述材料。
其进一步技术方案为,金属导体的材料为铜。
其进一步技术方案为,金属导体为金属柱、金属线、金属柱和金属线的组合中的一种。
其进一步技术方案为,该卡位部被构造为呈与所述金属导体平滑过渡连接的圆锥或者带有与所述金属导体平滑过渡连接的圆角。由此,确保了弹性堵头和金属导体之间的密封性。
与此同时,本申请还涉及一种用于操作上述的电池仓输出端防水结构的方法,其包括:
步骤1.将弹性堵头以过盈配合方式嵌入连接端口内,并将金属导体穿过所述弹性堵头的孔洞;
步骤2.将电池仓放入电池仓的仓体内,使电池的输出端与金属导体的接触;
步骤3.旋合所述连接端口,在此期间,电池挤压金属导体以使其以过盈配合的方式陷入所述弹性堵头,并使所述弹性堵头向外扩展以使所述弹性堵头与所述连接端口以过盈配合的方式配合连接。
由此,根据本发明的电池仓输出端防水结构通过简单地旋合连接端口,经由电池施加给金属导体的挤压力来实现金属导体与孔洞间以及弹性堵头和连接端口间的过盈配合,从而有效地确保了电池仓输出端的一致的防水、密封性能。
本发明的工作原理为:将弹性堵头2以过盈配合方式嵌入连接端口5内,金属导体4以过盈配合方式穿过弹性堵头2的孔洞3,将电池放在电池仓的仓体内,使电池的输出端与金属导体4的卡位部41接触,旋合电池仓,电池挤压金属导体4,金属导体4在连接端口5内部与导电线路连接。在旋合过程中,电池挤压金属导体4,弹性堵头2受到向外扩展的力,从而使弹性堵头2与连接端口5的凹槽1更好配合连接,提高电池仓输出端的防水、密封性能。
本发明的有益效果是:
本发明通过弹性堵头2和金属导体4替代了现有弹簧或弹片的正、负极端子,又通过弹性堵头2和凹槽1、弹性堵头2和金属导体4之间的过盈配合,实现了电池仓正、负极和控制线路的防水,提高了密封效果,有效防止了正、负极端子的锈蚀和氧化。能够实现电池端和控制线路板端两端的防水,雨雪等恶劣天气下正常使用。配合现有技术中电池仓螺纹处的O形垫圈,可在水下2米正常使用。
附图说明
图1为:本发明所述电池仓输出端防水结构的结构示意图。
图2为:本发明所述电池仓输出端防水结构的剖面图。
图中:1、凹槽;2、弹性堵头;21、顶面;22、堵头底端;23、凸台;3、孔洞;4、金属导体;41、卡位部;5、连接端口。
具体实施方式
如图1至图2所示,电池仓输出端防水结构包括弹性堵头2、金属导体4、连接端口5;所述弹性堵头2嵌入连接端口5;所述弹性堵头2端面设有孔洞3,所述孔洞3贯穿弹性堵头2;所述金属导体4一端插入孔洞3,另一端设有卡位部41;弹性堵头2加上金属导体4能够替代传统的金属弹簧或金属弹片,有效防止了电池仓正、负极端子的氧化、锈蚀;卡位部41能够保证电池与金属导体4的良好接触,防止金属导体4全部陷入孔洞3内;金属导体4在连接端口5内部与导电线路连接,利用弹性堵头2的弹性,在放入电池、旋转封闭电池仓盖后,使得金属导体4与连接端口5的线路电连接,卡位部通过电池的挤压作用能够使弹性堵头受到向外扩展的力,从而使弹性堵头与连接端口更好配合连接,提高电池仓输出端的防水、密封性能。
进一步,为了避免卡位部41在插入孔洞3时对弹性堵头的破坏,优选地对卡位部41的外部形状倒圆角。优选地,以如下方式对卡位部41倒圆角,即,将卡位部41构造成以倒圆角的方式与金属导体4平滑过渡连接,以允许在该卡位部41与该弹性堵头1间形成气密配合,这进一步确保了弹性堵头41和金属导体4之间的密封性,从而提高了防腐性能、抗氧化性能,提高了电池仓输出端的使用寿命。替代地,也可以将卡位部41构造为呈与所述金属导体平滑过渡连接的圆锥,从而允许在该卡位部41与该弹性堵头间形成气密配合以进一步提升密封效果。
如图1、图2所示,所述连接端口5设有凹槽1,所述弹性堵头2与凹槽1过盈配合,提高电池仓的防水、密封性能。
如图1、图2所示,所述金属导体4与孔洞3过盈配合,提高金属导体4与弹性堵头2之间的防水、密封效果。
如图1、图2所示,所述弹性堵头2包括顶面21、凸台23;所述凸台23设置在顶面21上;所述孔洞3贯穿凸台23和顶面21;通过挤压凸台23,提高卡位部41与弹性堵头2之间的密封性能。
如图1、图2所示,所述弹性堵头2还包括嵌入连接端口5的堵头底端22,所述堵头底端22为中空结构;电池与金属导体4接触后,通过挤压凸台23和顶面21,弹性堵头2的外立面受到向外扩展的力,提高防水效果。
所述弹性堵头2的材料为硅胶、橡胶、树脂中的一种,但不限于上述材料。
所述金属导体4的材料为铜。
如图1、图2所示,所述卡位部41的外径大于金属导体4和孔洞3的外径。
所述金属导体4为金属柱、金属线、金属柱和金属线的组合中的一种。
所述防水结构用于拍摄手持稳定器。
本发明通过弹性堵头2和金属导体4替代了现有弹簧或弹片的正、负极端子,又通过弹性堵头2和凹槽1、弹性堵头2和金属导体4之间的过盈配合,实现了电池仓正、负极和控制线路的防水,提高了密封效果,有效防止了正、负极端子的锈蚀和氧化。能够实现电池端和控制线路板端两端的防水,雨雪等恶劣天气下正常使用。配合现有技术中电池仓螺纹处的O性垫圈,可在水下2米正常使用。
尤其需要指出的是,虽然已结合有限数量的实施例对本发明进行了详细描述,但应当容易理解本发明并不限于这样公开的实施例。相反,本发明可修改为包括此前未描述但与本发明的精神和范围相称的任何数量的变化、改变、替换或等效布置。此外,虽然已对本发明的实施例进行了描述,但应理解的是本发明的各个特征可以进行组合实施。因此,本发明不应视为限于上述说明,而是仅由权利要求书范围来限定。

Claims (11)

  1. 一种手持稳定器的电池仓输出端防水结构,其特征在于,所述防水结构包括:
    连接至电池仓输出端的连接端口(5);
    弹性堵头(2)嵌入该连接端口(5),该弹性堵头(2)带有贯穿其的孔洞(3);
    一端插入该孔洞(3)的金属导体(4),其中所述金属导体(4)的另一端设有卡位部(41)。
  2. 一种手持稳定器的电池仓输出端防水结构,其特征在于,所述防水结构包括:
    连接至电池仓输出端的连接端口(5);
    以过盈配合的方式嵌入该连接端口(5)的弹性堵头(2),该弹性堵头(2)带有贯穿其的孔洞(3);
    以过盈配合的方式插入该孔洞(3)的金属导体(4),该金属导体(4)贯穿该弹性堵头(2)以实现电池仓内侧和外侧间的电导通。
  3. 根据权利要求1或2所述的电池仓输出端防水结构,其特征在于,所述连接端口(5)设有容置该弹性堵头(2)的凹槽(1),所述弹性堵头(2)的外周面与凹槽(1)的内周面之间形成过盈配合。
  4. 根据权利要求3所述的电池仓输出端防水结构,其特征在于,所述弹性堵头(2)还包括嵌入连接端口(5)的带中空结构的堵头底端(22),以使当该中空结构受压时使弹性堵头(2)的外周面向外扩展并与凹槽(1)的内周面之间形成过盈配合。
  5. 根据权利要求4所述的电池仓输出端防水结构,其特征在于,所述弹性堵头(2)包括顶面(21)和设置在该顶面(21)上的凸台(23);所述孔洞(3)贯穿凸台(23)和顶面(21)。
  6. 根据权利要求1所述的电池仓输出端防水结构,其特征在于,所述卡位部(41)的外径大于金属导体(4)和孔洞(3)的外径。
  7. 根据权利要求1所述的电池仓输出端防水结构,其特征在于,所述弹性堵头(2)的材料为硅胶、橡胶、树脂中的一种。
  8. 根据权利要求1所述的电池仓输出端防水结构,其特征在于,所述金属导体(4)的材料为铜。
  9. 根据权利要求1所述的电池仓输出端防水结构,其特征在于,所述 金属导体(4)为金属柱、金属线、金属柱和金属线的组合中的一种。
  10. 根据权利要求1所述的电池仓输出端防水结构,其特征在于,所述卡位部(21)被构造为呈与所述金属导体(2)平滑过渡连接的圆锥或者带有与所述金属导体(2)平滑过渡连接的圆角。
  11. 一种操作如权利要求1至10中任一项所述的电池仓输出端防水结构的方法,其包括:
    步骤1.将弹性堵头以过盈配合方式嵌入连接端口内,并将金属导体穿过所述弹性堵头的孔洞;
    步骤2.将电池仓放入电池仓的仓体内,使电池的输出端与金属导体的接触;
    步骤3.旋合所述连接端口,在此期间,电池挤压金属导体以使其以过盈配合的方式陷入所述弹性堵头,并使所述弹性堵头向外扩展以使所述弹性堵头与所述连接端口以过盈配合的方式配合连接。
PCT/CN2018/100412 2017-08-18 2018-08-14 电池仓输出端防水结构 WO2019034047A1 (zh)

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