WO2020233100A1 - 一种导电塑料电极网蚊拍制作方法及其蚊拍结构 - Google Patents

一种导电塑料电极网蚊拍制作方法及其蚊拍结构 Download PDF

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Publication number
WO2020233100A1
WO2020233100A1 PCT/CN2019/123491 CN2019123491W WO2020233100A1 WO 2020233100 A1 WO2020233100 A1 WO 2020233100A1 CN 2019123491 W CN2019123491 W CN 2019123491W WO 2020233100 A1 WO2020233100 A1 WO 2020233100A1
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Prior art keywords
conductors
handle
mosquito
positive electrode
frame
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PCT/CN2019/123491
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English (en)
French (fr)
Inventor
李鉴明
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Li Jianming
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Priority to US17/607,562 priority Critical patent/US20220217964A1/en
Publication of WO2020233100A1 publication Critical patent/WO2020233100A1/zh

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M3/00Manual implements, other than sprayers or powder distributors, for catching or killing insects, e.g. butterfly nets
    • A01M3/02Fly-swatters
    • A01M3/025Fly-swatters using electrocution
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/16Making multilayered or multicoloured articles
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M2200/00Kind of animal
    • A01M2200/01Insects
    • A01M2200/012Flying insects
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29KINDEXING SCHEME ASSOCIATED WITH SUBCLASSES B29B, B29C OR B29D, RELATING TO MOULDING MATERIALS OR TO MATERIALS FOR MOULDS, REINFORCEMENTS, FILLERS OR PREFORMED PARTS, e.g. INSERTS
    • B29K2995/00Properties of moulding materials, reinforcements, fillers, preformed parts or moulds
    • B29K2995/0003Properties of moulding materials, reinforcements, fillers, preformed parts or moulds having particular electrical or magnetic properties, e.g. piezoelectric
    • B29K2995/0005Conductive

Definitions

  • the invention relates to a mosquito killing device, in particular to a manufacturing method of an electric mosquito swatter and an electric mosquito swatter structure.
  • Current electric mosquito swatters include plastic electric mosquito swatter frame bottom cover, plastic electric mosquito swatter frame cover, conductive metal wire, conductive metal wire link line, positive and negative electrode sheets, plastic handles, PCB, etc.
  • Metal wires, conductive metal wire connecting wires, positive and negative electrode sheets need to be polished, electroplated, and other processes, and then connected to each other and installed on the bottom cover of the electric mosquito racket frame, the plastic electric mosquito racket frame cover and the handle. Therefore, the existing The electric mosquito swatter has a complicated structure and various materials required, so that the manufacturing method has many and complicated processes, and at the same time the quality is difficult to control, resulting in low production efficiency and high cost.
  • the purpose of the present invention is to provide a method for manufacturing an electric mosquito swatter and an electric mosquito swatter structure in order to solve the above-mentioned technical problems in the existing electric mosquito swatter.
  • a method for manufacturing a conductive plastic electrode net mosquito swatter the steps are:
  • the mosquito racket body is made of insulating plastic pressure injection, the mosquito racket body includes a handle, a handle and a racket frame, and the handle is provided with an inner cavity for installing a power control circuit and a battery;
  • the power grid component is composed of a positive electrode part and a negative electrode part
  • the positive electrode part includes several positive electrodes A conductive body and a positive electrode conductive connection body
  • the negative electrode part includes a plurality of negative electrode conductors and a negative electrode conductive connection body, the plurality of positive electrode conductors and a plurality of negative electrode conductors are staggered and distributed in the frame to form an electrode that intercepts and adsorbs the electrostatic field of mosquitoes Net; one end of the positive conductive connector is butted with all the positive conductors, the other end is connected to the positive terminal of the power control circuit in the cavity of the handle, one end of the negative conductive connector is butted with all the negative conductors, and the other end is connected to the handle At the negative end of the power control circuit of the inner cavity.
  • the net forms an integrated structure with the mosquito racket main body and the power grid components, and the electrode nets of the power grid components are located in the upper protection net, the lower protection net and the racket frame.
  • a mosquito racket structure made by the above-mentioned manufacturing method comprising a mosquito racket main body and a power grid component.
  • the mosquito racket body is made of insulating plastic
  • the power grid component is made of conductive plastic.
  • the mosquito racket body includes a handle , A handle and a racket frame, the handle is provided with an inner cavity for installing a power control circuit and a battery
  • the power grid assembly is composed of a positive electrode part and a negative electrode part
  • the positive electrode part includes several positive electrode conductors and positive electrode conductive connectors
  • the negative electrode part includes a number of negative electrode conductors and a negative electrode conductive connector.
  • the positive electrode conductors and a number of negative electrode conductors are staggered in the frame to form an electrode net that intercepts and adsorbs the electrostatic field of mosquitoes;
  • the positive electrode conductive connector One end is connected to all positive conductors, the other end is connected to the positive terminal of the power control circuit in the inner cavity of the handle, one end of the negative conductive connector is butted to all the negative conductors, and the other end is connected to the power control of the inner cavity of the handle The negative end of the circuit.
  • the positive electrode conductor and the negative electrode conductor are respectively inserted into the frame from the two sides of the racket frame, so that a number of positive electrode conductors and a number of negative electrode conductors are staggered and distributed in the frame to form a mesh. structure.
  • the said racket frame is provided with reinforcing ribs, and the reinforcing ribs are made of insulating plastic.
  • the positive electrode conductor and the negative electrode conductor are straight or corrugated conductive plastic strips.
  • the positive electrode conductive connector and the negative electrode conductive connector are conductive lines made of conductive plastic, and the positive electrode conductive connector and the negative electrode conductive connector are arranged in the handle, the handle and the frame.
  • the frame is round or square.
  • one side of the racket frame is provided with an upper protection net, and the other side is provided with a lower protection net.
  • the upper protection net and the lower protection net are made of insulating plastic.
  • the nets are respectively arranged on both sides of the grid components and fixed on the frame.
  • mosquito swatter main body, power grid components, upper protection net and lower protection net are integrally molded by injection molding.
  • the present invention has the following outstanding substantive features and significant progress:
  • the main body of the mosquito swatter, the upper protection net and the lower protection of the present invention are made of insulating plastic, and the power grid components are made of conductive plastic. Therefore, the materials used in the production are relatively simple, easy to purchase, easy to control quality, and in production It can save materials, and the material consumption is reduced by 40% compared with the traditional one, which greatly reduces the cost.
  • the present invention is produced by pressure injection method, that is, injection molding equipment and molds are used for production, thereby greatly reducing the manufacturing link and reducing the dependence on labor. Compared with the traditional electric mosquito swatter, the labor is reduced by 70%, and the efficiency is higher. The traditional manufacturing method is increased by more than 10 times, and the quality is easy to guarantee.
  • the main body of the mosquito racket of the present invention includes a handle, a handle and a racket frame made of insulating plastic.
  • the handle is provided with an inner cavity for installing a power control circuit and a battery. Its structure is simple and easy to manufacture, making it integrated Type structure, better guarantee the quality of the product.
  • the power grid component of the present invention is made of conductive plastic, wherein the positive electrode part includes several positive electrode conductors and positive electrode conductive connectors, and the negative electrode part includes several negative electrode conductors and negative electrode conductive connectors. It is staggered with a number of negative conductors in the frame to form an electrode net that intercepts and adsorbs the electrostatic field of mosquitoes; one end of the positive conductive connector is connected to all positive conductors, and the other end is connected to the power control circuit in the cavity of the handle For the positive terminal, one end of the negative conductive connecting body is butted with all the negative conductors, and the other end is connected to the negative terminal of the power control circuit in the cavity of the handle. Therefore, the product structure is simple, the design is reasonable, and the production is easy, and it can be better integrated with the main body of the mosquito swatter to better ensure the quality of the product.
  • the frame of the present invention is provided with an upper protection net on one side and a lower protection net on the other side.
  • the upper protection net and the lower protection net are made of insulating plastic, whereby the upper protection net and The lower protection net can form an integrated structure with the main body of the mosquito swatter and the power grid components, which is simple and easy to manufacture, saves labor costs, improves production efficiency, and has more stable quality, safe and reliable use.
  • the complicated assembly process of the existing electric mosquito swatter is avoided, and the finished product is directly injected through the injection molding equipment and mold.
  • the PCB circuit board and the battery are installed in the inner cavity of the handle.
  • Fig. 1 is a schematic structural diagram of Embodiment 1 of the present invention.
  • Figure 2 is an exploded view of the structure of Figure 1.
  • Figure 3 is a schematic structural diagram of Embodiment 2 of the present invention.
  • Fig. 4 is an exploded view of the structure of Fig. 3.
  • a method for manufacturing a conductive plastic electrode net mosquito swatter the steps are:
  • the mosquito racket body 1 is made of insulating plastic injection molding.
  • the mosquito racket body 1 includes a handle 11, a handle 12, and a racket frame 13.
  • the handle 12 is provided with an inner cavity 122 for installing a power control circuit 121 and a battery;
  • the power grid component 2 is composed of a positive electrode part and a negative electrode part.
  • the part includes a number of positive electrode conductors 21 and a positive electrode conductive connector 22.
  • the negative electrode part includes a number of negative electrode conductors 23 and a negative electrode conductive connector 24.
  • the several positive electrode conductors 21 and several negative electrode conductors 23 are in the frame 13
  • the internal spacing is staggered to form an electrode mesh that intercepts and adsorbs the electrostatic field of mosquitoes; one end of the positive conductive connector 22 is connected to all the positive conductors 21, and the other end is connected to the positive terminal of the power control circuit 121 of the inner cavity 122 of the handle 12, and the negative electrode is conductive
  • One end of the connecting body 24 is butted with all the negative conductors 23, and the other end is connected to the negative end of the power control circuit 121 of the inner cavity 122 of the handle 12.
  • the mosquito swatter of the method of this embodiment is integrally formed by the second injection molding of the mosquito swatter main body 1 and the power grid assembly 2.
  • the diameter of the positive electrode conductor 21 and the negative electrode conductive connector 24 is 0.5-2.5 mm, and the plurality of positive electrode conductors 21 and the plurality of negative electrode conductors 23 can be set at a staggered distance in the frame 13 It is 1-10mm.
  • the diameter of the positive electrode conductive connecting body 22 and the negative electrode conductive connecting body 24 is 1.5-3.5 mm.
  • a mosquito swatter structure manufactured by the above-mentioned manufacturing method includes a mosquito swatter body 1 and a power grid assembly 2.
  • the mosquito swatter body 1 is made of insulating plastic, and the grid component 2 is conductive
  • the mosquito racket body 1 includes a handle 11, a handle 12, and a racket frame 13.
  • the handle 12 is provided with an inner cavity 122 for installing a power control circuit 121 and a battery. When in use, the opening of the inner cavity 122
  • the power grid assembly 2 is composed of a positive electrode part and a negative electrode part.
  • the positive electrode part includes a number of positive electrode conductors 21 and a positive electrode conductive connector 22.
  • the negative electrode part includes a number of negative electrode conductors 23 and a negative electrode conductive connection.
  • a body 24, the plurality of positive electrode conductors 21 and a plurality of negative electrode conductors 23 are staggered and distributed in the frame 13 to form an electrode net for intercepting and adsorbing the electrostatic field of mosquitoes; one end of the positive electrode conductive connector 22 is connected to all the positive electrode conductors 21 Butt, the other end is connected to the positive terminal of the power control circuit 121 of the inner cavity 122 of the handle 12, one end of the negative conductive connector 24 is butted with all the negative conductors 23, and the other end is connected to the power of the inner cavity 122 of the handle 12 The negative terminal of the control circuit 121.
  • the positive electrode conductor 21 and the negative electrode conductor 23 are straight conductive plastic strips.
  • the positive electrode conductive connector 22 and the negative electrode conductive connector 24 are conductive circuits made of conductive plastic.
  • the positive electrode conductive connector 22 and the negative electrode conductive connector 24 are arranged in the handle 11, the handle 12 and the frame 13.
  • the frame 13 is square.
  • the electrode net formed by the positive electrode conductor 21 and the negative electrode conductor 23 is arranged in the frame 13.
  • the positive electrode conductor 21 and the negative electrode conductor 23 are respectively inserted into the frame 13 from the positions on both sides of the frame 13. Specifically, the positive electrode conductor 21 and the negative electrode conductor 23 extend inside the frame 13 In the frame 13, a number of positive electrode conductors 21 and a number of negative electrode conductors 23 are staggered and distributed in the frame 13 to form a horizontal stripe network structure.
  • the said racket frame 13 is provided with reinforcing ribs 131, the reinforcing ribs 131 are made of insulating plastic, and the reinforcing ribs 131 are connected with a plurality of positive conductors 21 and a plurality of negative electrodes.
  • the conductors 23 are distributed intersectingly.
  • the electric mosquito swatter of the present invention is injected into the finished product through the injection molding equipment and the mold, without complicated assembly procedures, and can be used when the PCB circuit board and the battery are installed in the inner cavity of the handle.
  • the method also includes step 3, using insulating plastic to perform a third injection on both sides of the integrated power grid assembly 2 and the mosquito swatter body 1 to form upper protective nets 3 respectively.
  • the lower protection net 4 to form an electric mosquito swatter with the function of preventing electric shock.
  • the upper protection net 3 and the lower protection net 4 form an integrated structure with the mosquito swatter main body 1 and the power grid assembly 2, and make the electrode net of the power grid assembly 2.
  • the lower protection net 4 and the frame 13 Located in the upper protection net 3, the lower protection net 4 and the frame 13.
  • insulating plastic is used to perform the third injection on both sides of the integrated mosquito swatter body 1 and the power grid assembly 2, and the mosquito swatter body 1 and the power grid assembly 2 are injection molded to generate the upper protective net 3,
  • the other side of the main body 1 and the power grid assembly 2 is injection-molded to produce the lower protection net 4.
  • the upper protection net 3 and the lower protection net 4 can be made by injection molding, ie, twice injection molding, or the upper protection net
  • the net 3 and the lower protection net 4 can be made by pressure injection at the same time, that is, one pressure injection, so that the upper protection net 3 and the lower protection net 4, the mosquito swatter main body 1, and the power grid assembly 2 form an integrated structure, and the rest is the same as the above embodiment.
  • the racket frame 13 is oval.
  • the positive electrode conductor 21 and the negative electrode conductor 23 are corrugated conductive plastic strips.
  • a protective net is provided on one side of the frame 13 3.
  • a lower protection net 4 is provided on the other side.
  • the upper protection net 3 and the lower protection net 4 are made of insulating plastic.
  • the upper protection net 3 and the lower protection net 4 are respectively arranged on two sides of the power grid assembly 2. Side, fixed on the frame 13.
  • the mosquito swatter main body 1, the power grid assembly 2, the upper protection net 3 and the lower protection net 4 are integrally injection molded, and the rest is the same as the above embodiment.
  • the mosquito swatter of the method in this embodiment is integrally formed by injection molding twice or three times through the mosquito swatter main body 1, the power grid assembly 2, the upper protection net 3 and the lower protection net 4.

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  • Life Sciences & Earth Sciences (AREA)
  • Pest Control & Pesticides (AREA)
  • Engineering & Computer Science (AREA)
  • Insects & Arthropods (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Environmental Sciences (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Catching Or Destruction (AREA)
  • Housing For Livestock And Birds (AREA)

Abstract

一种导电塑料电极网蚊拍制作方法及其蚊拍结构,其方法步骤是:1)采用绝缘塑料压注制成蚊拍主体(1); 2)采用导电塑料在蚊拍主体(1)上进行第二次压注制作电网组件(2),使电网组件(2)与蚊拍主体(1)形成一体;其结构包括有蚊拍主体(1)和电网组件(2),蚊拍主体(1)包括手柄(11)、手把(12)和拍框(13),该手把(12)设有安装电源控制电路(121)和电池的内腔(122),电网组件(2)由正极部分和负极部分组成,正极部分包括若干条正极导电体(21)和正极导电连接体(22),负极部分包括若干条负极导电体(23)和负极导电连接体(24)。该蚊拍结构制作材料单一,且生产中可以节约材料。

Description

一种导电塑料电极网蚊拍制作方法及其蚊拍结构 技术领域
本发明涉及一种灭蚊装置,具体涉及一种电蚊拍的制作方法和电蚊拍结构。
背景技术
目前的电蚊拍包括有塑料电蚊拍框底盖、塑料电蚊拍框面盖、导电金属线、导电金属线链接线、正负电极片、塑料手把、PCB等,制作时,其导电金属线、导电金属线链接线、正负电极片需要通过抛光、电镀等工艺处理,然后相互连接安装在电蚊拍框底盖、塑料电蚊拍框面盖和手把上,因此,现有的电蚊拍结构复杂,所需材料多样,以致其制作方法工序多、且复杂,同时质量难以控制,导致生产效率低,成本高。
发明内容
本发明的目的是,为了解决现有电蚊拍存在上述的技术问题,提供一种电蚊拍的制作方法和电蚊拍结构。
本发明目的的方法可以通过以下技术方案实现:
一种导电塑料电极网蚊拍制作方法,步骤是:
1)采用绝缘塑料压注制成蚊拍主体,所述蚊拍主体包括手柄、手把和拍框,该手把设有安装电源控制电路和电池的内腔;
2)采用导电塑料在蚊拍主体上进行第二次压注制作电网组件,使电网组件与蚊拍主体形成一体;所述电网组件由正极部分和负极部分组成,所述正极部分包括若干条正极导电体和正极导电连接体,负极部分包括若干条负极导电体和负极导电连接体,所述若干条正极导电体与若干条负极导电体在拍框内间隔错开分布形成拦截吸附蚊子静电场的电极网;正极导电连接体一端与所有正极导电体对接,另一端连接至手把处内腔的电源控制电路正极端处,负极导电连接体一端与所有负极导电体对接,另一端连接至手把处内腔的电源控制电路负极端处。
本发明目的的方法还可以通过以下技术方案实现:
进一步的,还包括有步骤采用绝缘塑料在形成一体的电网组件和蚊拍主体两侧上进行第三次压注,分别制成上保护网和下保护网,所述的上保护网和下保护网与蚊拍主体、电网组件形成一体式结构,并使电网组件的电极网位于上保护网、下保护网和拍框内。
本发明目的的电蚊拍结构可以通过以下技术方案实现:
一种采用上述制作方法制作的蚊拍结构,包括有蚊拍主体和电网组件,所述蚊拍主体采用绝缘塑料制作而成,电网组件采用导电塑料制作而成,所述的蚊拍主体包括手柄、手把和拍框,该手把设有安装电源控制电路和电池的内腔,所述电网组件由正极部分和负极部分组成,所述正极部分包括若干条正极导电体和正极导电连接体,负极部分包括若干条负极导电体和负极导电连接体,所述若干条正极导电体与若干条负极导电体在拍框内间隔错开分布形成拦截吸附蚊子静电场的电极网;所述正极导电连接体一端与所有正极导电体对接,另一端连接至手把处内腔的电源控制电路正极端,所述负极导电连接体一端与所有负极导电体对 接,另一端连接至手把处内腔的电源控制电路负极端。
本发明目的的电蚊拍结构还可以通过以下技术方案实现:
进一步的,所述的正极导电体和负极导电体分别由拍框的两侧位置接入至拍框内,使若干条正极导电体和若干条负极导电体间隔错开分布在拍框内形成网状结构。
进一步的,所述的拍框内设有加强筋,该加强筋采用绝缘塑料制作而成。
进一步的,所述的正极导电体和负极导电体为直条型或波纹型的导电塑料条。
进一步的,所述的正极导电连接体和负极导电连接体为采用导电塑料制成的导电线路,该正极导电连接体和负极导电连接体设在手柄、手把和拍框内。
进一步的,所述的拍框为圆形或方形。
进一步的,所述的拍框一侧设有上保护网,另一侧上设有下保护网,所述的上保护网和下保护网采用绝缘塑料制作而成,该上保护网和下保护网分别设在电网组件的两侧,固定在拍框上。
进一步的,所述的蚊拍主体、电网组件、上保护网和下保护网为一体式压注成型。
本发明具有以下突出的实质性特点和显著的进步:
1、本发明的蚊拍主体、上保护网和下保护采用绝缘塑料制作而成,电网组件采用导电塑料制作而成,因此,制作采用的材料比较单一,便于购买,便于管控质量,且生产中可以节约材料,耗用材料比传统减小40%,大大降低成本。
2、本发明通过采用压注方法进行制作,即采用注塑设备及模具进行制作,由此大大缩小制造环节,减低对劳动力的依赖,与传统电蚊拍相比人力减小70%,而效率比传统的制造方法提升10倍以上,且质量容易保证。
3、本发明的蚊拍主体包括采用绝缘塑料制作而成的手柄、手把和拍框,该手把设有安装电源控制电路和电池的内腔,其结构简单,制作容易,使其形成一体式结构,更好的保证产品的质量。
4、本发明的电网组件采用导电塑料制作而成,其中正极部分包括若干条正极导电体和正极导电连接体,负极部分包括若干条负极导电体和负极导电连接体,所述若干条正极导电体与若干条负极导电体在拍框内间隔错开分布形成拦截吸附蚊子静电场的电极网;所述正极导电连接体一端与所有正极导电体对接,另一端连接至手把处内腔的电源控制电路正极端,所述负极导电连接体一端与所有负极导电体对接,另一端连接至手把处内腔的电源控制电路负极端。因此,其产品结构简单,设计合理,制作容易,可更好地与蚊拍主体融为一体,更好的保证产品的质量。
5、本发明的拍框一侧设有上保护网,另一侧上设有下保护网,所述的上保护网和下保护网采用绝缘塑料制作而成,由此,其上保护网和下保护网可以和蚊拍主体、电网组件形成一体式结构,制作简单容易、更好的节约人工成本,提供 生产效率,且质量更稳定,使用安全可靠。
6、本发明生产过程中,避免现有电蚊拍繁杂的装配流程,直接通过注塑设备及模具进行压注成品,使用时,把PCB电路板和电池安装在手把的内腔中即可使用,由此大大减少人工数量,节约人工成本,且有效提高生产效率、且生产质量稳定可靠。
附图说明
图1为本发明实施例1的结构示意图。
图2为图1的结构分解图。
图3为本发明实施例2的结构示意图。
图4为图3的结构分解图。
具体实施方式
以下结合附图对本发明作进一步的详细说明。
实施例1
一种导电塑料电极网蚊拍制作方法,步骤是:
1)采用绝缘塑料压注制成蚊拍主体1,所述蚊拍主体1包括手柄11、手把12和拍框13,该手把12设有安装电源控制电路121和电池的内腔122;
2)采用导电塑料在蚊拍主体1上进行第二次压注制作电网组件2,使电网组件2与蚊拍主体1形成一体;所述电网组件2由正极部分和负极部分组成,所述正极部分包括若干条正极导电体21和正极导电连接体22,负极部分包括若干条负极导电体23和负极导电连接体24,所述若干条正极导电体21与若干条负极导电体23在拍框13内间隔错开分布形成拦截吸附蚊子静电场的电极网;正极导电连接体22一端与所有正极导电体21对接,另一端连接至手把12处内腔122的电源控制电路121正极端处,负极导电连接体24一端与所有负极导电体23对接,另一端连接至手把12处内腔122的电源控制电路121负极端处。
简单的说,本实施例方法的蚊拍通过蚊拍主体1、电网组件2二次压注一体成型。
方法中,所述的正极导电体21和负极导电连接体24的直径为0.5-2.5mm,所述若干条正极导电体21与若干条负极导电体23在拍框13内间隔错开的距离可设置为1-10mm。正极导电连接体22和负极导电连接体24的直径为1.5-3.5mm。
一种采用上述制作方法制作的蚊拍结构,参照图1和图2所示,包括有蚊拍主体1和电网组件2,所述蚊拍主体1采用绝缘塑料制作而成,电网组件2采用导电塑料制作而成,所述的蚊拍主体1包括手柄11、手把12和拍框13,该手把12设有安装电源控制电路121和电池的内腔122,使用时,内腔122的开口处配置有一盖体,所述电网组件2由正极部分和负极部分组成,所述正极部分包括若干条正极导电体21和正极导电连接体22,负极部分包括若干条负极导电体23和负极导电连接体24,所述若干条正极导电体21与若干条负极导电体23在拍框13内间隔错开分布形成拦截吸附蚊子静电场的电极网;所述正极导电连接体22一端与所有正极导电体21对接,另一端连接至手把12处内腔122的电源控 制电路121正极端,所述负极导电连接体24一端与所有负极导电体23对接,另一端连接至手把12处内腔122的电源控制电路121负极端。
实施例中,所述的正极导电体21和负极导电体23为直条型的导电塑料条。所述的正极导电连接体22和负极导电连接体24为采用导电塑料制成的导电线路,该正极导电连接体22和负极导电连接体24设在手柄11、手把12和拍框13内。所述的拍框13为方形。所述的正极导电体21和负极导电体23形成的电极网设在拍框13内。
所述的正极导电体21和负极导电体23分别由拍框13的两侧位置接入至拍框13内,具体的,正极导电体21和负极导电体23沿拍框13内部向内侧伸入拍框13内,使若干条正极导电体21和若干条负极导电体23间隔错开分布在拍框13内形成横条网状结构。
为了增加蚊拍拍框13的使用强度,所述的拍框13内设有加强筋131,该加强筋131采用绝缘塑料制作而成,该加强筋131与若干条正极导电体21和若干条负极导电体23相交分布。
本发明的电蚊拍通过注塑设备及模具进行压注成品,无需繁杂的装配流程,使用时,把PCB电路板和电池安装在手把的内腔中即可使用。
实施例2:
本实施例方法的技术特点是:所述方法的还包括有步骤3采用绝缘塑料在形成一体的电网组件2和蚊拍主体1两侧上进行第三次压注,分别制成上保护网3和下保护网4,形成具有防触电功能的电蚊拍,所述的上保护网3和下保护网4与蚊拍主体1、电网组件2形成一体式结构,并使电网组件2的电极网位于上保护网3、下保护网4和拍框13内。具体的,采用绝缘塑料在形成一体的蚊拍主体1和电网组件2两侧上进行第三次压注,在蚊拍主体1和电网组件2的一侧压注生成上保护网3、在蚊拍主体1和电网组件2的另一侧压注生成下保护网4,所述的上保护网3和下保护网4可分别压注即压注两次制作而成,或所述的上保护网3和下保护网4可同时压注即压注一次制作而成,使上保护网3与下保护网4、蚊拍主体1、电网组件2形成一体式结构,其余同上实施例。
上述方法制作的蚊拍结构,参照图3和图4所示,所述的拍框13为椭圆形。所述的正极导电体21和负极导电体23为波纹型的导电塑料条。为了防止所述若干条正极导电体21与若干条负极导电体23在拍框13内间隔错开分布形成拦截吸附蚊子静电场的电极网容易触电,所述的拍框13一侧设有上保护网3,另一侧上设有下保护网4,所述的上保护网3和下保护网4采用绝缘塑料制作而成,该上保护网3和下保护网4分别设在电网组件2的两侧,固定在拍框13上。具体制作时,所述的蚊拍主体1、电网组件2、上保护网3和下保护网4为一体式压注成型,其余同上实施例。
简单的说,本实施例方法的蚊拍通过蚊拍主体1、电网组件2、上保护网3和下保护网4进行两次或三次压注一体成型。
以上所述仅为本发明的实施例而已,并非对本发明作任何形式上的限制,任何熟悉本专业的技术人员,在不脱离本发明技术方案范围内,利用上述揭示的结构及技术内容作出变动、修改等变化的等效实施,均属于本发明的保护范围。

Claims (10)

  1. 一种导电塑料电极网蚊拍制作方法,其特征是:步骤是:
    1)采用绝缘塑料压注制成蚊拍主体(1),所述蚊拍主体(1)包括手柄(11)、手把(12)和拍框(13),该手把(12)设有安装电源控制电路(121)和电池的内腔(122);
    2)采用导电塑料在蚊拍主体(1)上进行第二次压注制作电网组件(2),使电网组件(2)与蚊拍主体(1)形成一体;所述电网组件(2)由正极部分和负极部分组成,所述正极部分包括若干条正极导电体(21)和正极导电连接体(22),负极部分包括若干条负极导电体(23)和负极导电连接体(24),所述若干条正极导电体(21)与若干条负极导电体(23)在拍框(13)内间隔错开分布形成拦截吸附蚊子静电场的电极网;正极导电连接体(22)一端与所有正极导电体(21)对接,另一端连接至手把(12)处内腔(122)的电源控制电路(121)正极端处,负极导电连接体(24)一端与所有负极导电体(23)对接,另一端连接至手把(12)处内腔(122)的电源控制电路(121)负极端处。
  2. 根据权利要求1所述的蚊拍制作方法,其特征是:还包括有步骤3)采用绝缘塑料在形成一体的电网组件(2)和蚊拍主体(1)两侧上进行第三次压注,分别制成上保护网(3)和下保护网(4),所述的上保护网(3)和下保护网(4)与蚊拍主体(1)、电网组件(2)形成一体式结构,并使电网组件(2)的电极网位于上保护网(3)、下保护网(4)和拍框(13)内。
  3. 一种采用权利要求1或2制作方法制作的蚊拍结构,其特征是:包括有蚊拍主体(1)和电网组件(2),所述蚊拍主体(1)采用绝缘塑料制作而成,电网组件(2)采用导电塑料制作而成,所述的蚊拍主体(1)包括手柄(11)、手把(12)和拍框(13),该手把(12)设有安装电源控制电路(121)和电池的内腔(122),所述电网组件(2)由正极部分和负极部分组成,所述正极部分包括若干条正极导电体(21)和正极导电连接体(22),负极部分包括若干条负极导电体(23)和负极导电连接体(24),所述若干条正极导电体(21)与若干条负极导电体(23)在拍框(13)内间隔错开分布形成拦截吸附蚊子静电场的电极网;所述正极导电连接体(22)一端与所有正极导电体(21)对接,另一端连接至手把(12)处内腔(122)的电源控制电路(121)正极端,所述负极导电连接体(24)一端与所有负极导电体(23)对接,另一端连接至手把(12)处内腔(122)的电源控制电路(121)负极端。
  4. 根据权利要求3所述的蚊拍结构,其特征是:所述的正极导电体(21)和负极导电体(23)分别由拍框(13)的两侧位置接入至拍框(13)内,使若干条正极导电体(21)和若干条负极导电体(23)间隔错开分布在拍框(13)内形成网状结构。
  5. 根据权利要求3所述的蚊拍结构,其特征是:所述的拍框(13)内设有加强筋(131),该加强筋(131)采用绝缘塑料制作而成。
  6. 根据权利要求3所述的蚊拍结构,其特征是:所述的正极导电体(21)和负极导电体(23)为直条型或波纹型的导电塑料条。
  7. 根据权利要求3所述的蚊拍结构,其特征是:所述的正极导电连接体(22) 和负极导电连接体(24)为采用导电塑料制成的导电线路,该正极导电连接体(22)和负极导电连接体(24)设在手柄(11)、手把(12)和拍框(13)内。
  8. 根据权利要求3所述的蚊拍结构,其特征是:所述的拍框(13)为圆形或方形。
  9. 根据权利要求3-8任一所述的蚊拍结构,其特征是:所述的拍框(13)一侧设有上保护网(3),另一侧上设有下保护网(4),所述的上保护网(3)和下保护网(4)采用绝缘塑料制作而成,该上保护网(3)和下保护网(4)分别设在电网组件(2)的两侧,固定在拍框(13)上。
  10. 根据权利要求9所述的蚊拍结构,其特征是:所述的蚊拍主体(1)、电网组件(2)、上保护网(3)和下保护网(4)为一体式压注成型。
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