WO2018000776A1 - 一种全自动工字电感组合机 - Google Patents

一种全自动工字电感组合机 Download PDF

Info

Publication number
WO2018000776A1
WO2018000776A1 PCT/CN2016/112366 CN2016112366W WO2018000776A1 WO 2018000776 A1 WO2018000776 A1 WO 2018000776A1 CN 2016112366 W CN2016112366 W CN 2016112366W WO 2018000776 A1 WO2018000776 A1 WO 2018000776A1
Authority
WO
WIPO (PCT)
Prior art keywords
frame
horizontal
lifting
movable frame
timing belt
Prior art date
Application number
PCT/CN2016/112366
Other languages
English (en)
French (fr)
Inventor
林启升
黄传根
Original Assignee
分宜县新昌电子有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 分宜县新昌电子有限公司 filed Critical 分宜县新昌电子有限公司
Publication of WO2018000776A1 publication Critical patent/WO2018000776A1/zh

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/02Devices for feeding articles or materials to conveyors
    • B65G47/04Devices for feeding articles or materials to conveyors for feeding articles
    • B65G47/12Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles
    • B65G47/14Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles arranging or orientating the articles by mechanical or pneumatic means during feeding
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F41/00Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties

Definitions

  • the utility model relates to the technical field of automation equipment, in particular to a full-automatic industrial word inductor combination machine.
  • an inductor is widely used in a circuit board; wherein, for an inductor, it generally includes a core having a shape of a I-shaped, and two inserted in a magnetic core. The pin is inserted, the enameled wire is wound around the periphery of the core, and the enameled wire is soldered to the pin. In addition, the outer periphery of the inductor is covered with epoxy tape and coated with silicon coating.
  • the prior art In the process of production and processing of I-shaped inductors, the prior art generally adopts the method of manual operation or semi-automatic operation to realize the combined processing of the word-inductance; in the actual production and processing process, the above-mentioned operation modes generally have low degree of automation, The defects of low work efficiency and high labor cost, and the quality of the product are difficult to guarantee due to the large composition of the manual work.
  • the purpose of the present invention is to provide a fully automatic I-inductor combination machine with novel structure, high automation degree, high work efficiency and effective Save labor costs.
  • a fully automatic I-inductor combination machine includes a frame, and an upper end portion of the frame is provided with a fixed support plate arranged horizontally and horizontally, and an upper end side of the fixed support plate is arranged with a rearrangement from front to back.
  • a first timing belt transmission mechanism, a flux tank, a tin pot groove, a second timing belt transmission mechanism, and a lower surface of the fixed support plate is provided with a first driving motor corresponding to the first timing belt transmission mechanism, and a power of the first driving motor
  • the output shaft is drivingly connected with one of the synchronous belt pulleys of the first transmission timing belt
  • the lower surface of the fixed support plate is provided with a second driving motor corresponding to the second timing belt transmission mechanism, and the power output shaft and the second transmission of the second driving motor
  • a vibrating plate mounting bracket is disposed on a side of the rack, and a feeding vibration plate is disposed at an upper end portion of the vibrating disk mounting frame, and a first guiding frame is disposed between the vibrating plate mounting frame and the frame, and is adjacent to the first The first synchronous belt of a guide frame
  • the synchronous pulley of the moving mechanism is provided with a synchronous rotating transfer mold, and the first guiding frame is provided with a first guiding groove, and the feeding port of the first guiding groove is connected with the discharging port of the feeding vibration plate, the first The discharge port of the guiding trough extends to the transfer mold position;
  • the upper surface of the fixed support plate is provided with a movable support frame, and the movable support frame can be equipped with a horizontal movable frame relative to the front and rear activities.
  • the movable support frame is equipped with a horizontal driving motor corresponding to the horizontal movable frame, and the power of the horizontal driving motor is
  • the output shaft is connected with a horizontal driving screw extending horizontally in the front-rear direction, and the horizontal movable frame is provided with a horizontal screw nut corresponding to the horizontal driving screw, and the horizontal screw nut is matched with the horizontal driving screw, and the horizontal movable frame is adjacent to the horizontal movable frame.
  • the side may be provided with an electromagnetic suction magnetic strip extending horizontally in the left and right direction relative to the upper and lower movements, and the horizontal movable frame is provided with a lifting drive assembly corresponding to the electromagnetic suction magnetic strip, and the lifting driving assembly is driven and connected with the electromagnetic suction magnetic strip;
  • a coating machine is disposed on a side of the frame, a second guiding frame is disposed between the coating machine and the second timing belt transmission mechanism, and a second guiding groove is disposed in the second guiding frame.
  • the lifting drive assembly includes a motor mounting bracket mounted on the horizontal movable frame, and the upper end portion of the motor mounting bracket is provided with a lifting drive motor, and the power output shaft of the lifting drive motor is connected with a vertical
  • the electromagnetic suction magnetic strip is equipped with a lifting movable frame, and the lifting movable frame is equipped with a lifting screw nut corresponding to the lifting driving screw, and the lifting screw nut is matched with the lifting driving screw.
  • the electromagnetic suction magnetic strip is installed at the lower end of the lifting movable frame.
  • the movable support frame is provided with a horizontal guide rail horizontally extending along the front and rear direction corresponding to the horizontal movable frame
  • the horizontal movable frame is provided with a horizontal slider corresponding to the horizontal guide rail
  • the horizontal slider is matched with the horizontal guide rail.
  • the motor mounting bracket is provided with a vertically arranged vertical rail corresponding to the lifting movable frame, and the vertical movable rail of the lifting movable frame is provided with a vertical sliding block, the vertical sliding block and the vertical direction
  • the guide rails are matched.
  • the utility model has the beneficial effects that: the full-automatic I-shaped inductor combination machine of the utility model has a first synchronous belt transmission mechanism, a flux groove, and a tin on the end side of the fixed support plate of the frame.
  • the vibrating plate mounting frame on the side of the rack is provided with the feeding material a vibrating plate, a first guiding frame is arranged between the vibrating plate mounting frame and the frame, and a synchronous belt pulley of the first synchronous belt transmission mechanism adjacent to the first guiding frame is provided with a synchronous rotating transfer mold, and the first guiding The first guiding groove is arranged in the frame;
  • the movable support frame on the surface of the fixed support plate is provided with a horizontal movable frame, and the horizontal movable frame is driven by a horizontal driving motor, a horizontal driving screw and a horizontal screw nut, and an electromagnetic suction magnetic strip is arranged beside the horizontal movable frame, and electromagnetic attraction
  • the magnetic strip is driven by the lifting drive assembly;
  • a coating machine is further disposed on the side of the rack, and a second guiding frame is disposed between the coating machine and the
  • FIG. 1 is a schematic structural view of the present invention.
  • FIG. 2 is a partial structural schematic view of the present invention.
  • FIG. 3 is a schematic structural view of the lift drive assembly of the present invention.
  • FIGS. 1 to 3 Included in FIGS. 1 to 3 are:
  • a fully automatic I-inductor assembly machine includes a frame 1.
  • the upper end portion of the frame 1 is provided with a fixed support plate 11 arranged horizontally and horizontally, and the fixed support plate 11 is fixed.
  • the upper end side is provided with a first timing belt transmission mechanism 2, a flux tank 3, a solder pot groove 4, and a second timing belt transmission mechanism 5 which are arranged in order from the front to the rear.
  • the lower surface of the fixed support plate 11 corresponds to the first
  • the timing belt transmission mechanism 2 is provided with a first driving motor.
  • the power output shaft of the first driving motor is drivingly connected with one of the synchronous belt pulleys of the first transmission timing belt, and the lower surface of the fixed supporting plate 11 corresponds to the second timing belt transmission mechanism.
  • 5 is equipped with a second drive motor, and the power output shaft of the second drive motor is drivingly connected with one of the synchronous belt pulleys of the second drive timing belt.
  • a vibrating disk mounting frame 61 is mounted on the side of the frame 1.
  • the upper end of the vibrating disk mounting frame 61 is provided with a feeding vibrating plate 62, and the vibrating plate mounting frame 61 is disposed between the frame 1 and the frame 1.
  • the feed port of the first transfer groove communicates with the discharge port of the feed vibration plate 62, and the discharge port of the first transfer groove extends to the position of the transfer mold 64.
  • the upper surface of the fixed support plate 11 is provided with a movable support frame 71.
  • the movable support frame 71 can be mounted with a horizontal movable frame 72 relative to the front and rear activities, and the movable support frame 71 is installed corresponding to the horizontal movable frame 72.
  • There is a horizontal driving motor and the power output shaft of the horizontal driving motor is connected with a horizontal driving screw 731 extending horizontally in the front-rear direction, and the horizontal movable frame 72 is provided with a horizontal screw nut 732 corresponding to the horizontal driving screw 731, and the horizontal screw The nut 732 cooperates with the horizontal driving screw 731.
  • the side of the horizontal movable frame 72 can be mounted with an electromagnetic suction magnetic strip 74 extending horizontally in the left and right direction relative to the upper and lower movable.
  • the horizontal movable frame 72 corresponds to the electromagnetic suction magnetic strip.
  • the lift drive assembly 75 is mounted on the 74, and the lift drive assembly 75 is drivingly coupled to the electromagnetic suction magnetic strip 74.
  • a coating machine 81 is disposed on the side of the frame 1, and a second guiding frame 82 is disposed between the coating machine 81 and the second timing belt transmission mechanism 5.
  • the second guiding frame 82 ⁇ A second guiding slot is provided.
  • the lift drive assembly 75 includes a motor mount 751 mounted on the horizontal movable frame 72.
  • the upper end of the motor mount 751 is provided with a lift drive motor 752, and the power output shaft of the lift drive motor 752 is connected.
  • There is a vertically arranged lifting drive screw 753 the electromagnetic suction magnetic strip 74 is equipped with a lifting movable frame, and the lifting movable frame corresponding to the lifting driving screw 753 is provided with a lifting screw nut 754, a lifting screw nut 754 and The lifting drive screw 753 is matched, and the electromagnetic suction magnetic strip 74 is mounted on the lower end of the lifting movable frame.
  • the feeding vibration plate 62 passes through the first guiding groove of the first guiding frame 63.
  • the magnetic core with the pin pins and the enameled wire is transported to the transfer mold 64, the first drive motor drives the first timing belt transmission mechanism 2, and the transfer mold 64 follows one of the synchronous belt pulleys of the first timing belt transmission mechanism 2.
  • the transfer mold 64 transfers the magnetic core to the drive timing belt of the first timing belt transmission mechanism 2 and causes the magnetic core to hang on the transmission timing belt of the first timing belt transmission mechanism 2, in the first timing belt
  • the magnetic cores are arranged at intervals in the transmission timing belt of the first timing belt transmission mechanism 2; after the magnetic cores are arranged, the first driving motor stops, and the horizontal driving motor passes the horizontal driving screw 731.
  • the screw drive mechanism composed of the horizontal screw nut 732 drives the horizontal movable frame 72, the lifting drive assembly 75 and the electromagnetic suction magnetic strip 74 to move to the position of the transmission timing belt of the first timing belt transmission mechanism 2; After the strip 74 is moved forward, the lift drive motor 752 drives the lifting movable frame and the electromagnetic suction material through a screw drive mechanism composed of a lifting drive screw 753 and a lifting screw nut 754.
  • the magnetic strip 74 is moved downward and the electromagnetic suction magnetic strip 74 is adsorbed and arranged on the magnetic core of the transmission timing belt of the first synchronous belt transmission mechanism 2; after the electromagnetic suction magnetic strip 74 adsorbs the magnetic core, the lifting and lowering drive motor 752 is reversed and The lifting movable frame and the electromagnetic suction magnetic strip 74 are moved up and reset, and the horizontal driving motor reverses and drives the electromagnetic suction magnetic strip 74 to move directly above the flux tank 3, and then the lifting driving motor 752 drives the electromagnetic suction magnetic strip.
  • the lift drive motor 752 is reversed here and the electromagnetic suction magnetic strip is made 74 is moved up and reset, and then the horizontal driving motor drives the electromagnetic suction magnetic strip 7 4 to move directly above the tin pot slot 4.
  • the lifting drive motor 752 drives the electromagnetic suction magnetic strip 74 to move down and causes the magnetic core to extend into the tin.
  • the solder paste is adhered to the connection between the enameled wire and the pin pin; after the tin is finished, the lift drive motor 752 drives the electromagnetic suction magnetic strip 74 to move up and reset, and then the horizontal drive motor drives the electromagnetic suction Magnetic strip 74 moves to the second Positioning the belt drive mechanism 5, and operating by the lifting drive motor 75 2 and finally placing the magnetic core on the transmission timing belt of the second timing belt transmission mechanism 5; the magnetic core after the soldering is completed is placed on the transmission timing belt,
  • the second timing belt transmission mechanism 5 is operated by the driving of the second driving motor, and the driving timing belt of the second timing belt transmission mechanism 5 transfers the tinned magnetic core to the second guiding frame 82, the second guide
  • the feeding frame 82 transfers the tinned magnetic core to the coating machine 81 through the second guiding groove, and the coating machine 81 completes the epoxy resin tape wrapping and the silicon coating application operation.
  • the utility model adopts the following guiding structure design, specifically: the movable supporting frame 71 is provided with a level horizontally extending along the front and rear direction corresponding to the horizontal movable frame 72.
  • the guide rail 911, the horizontal movable frame 72 is horizontally slid corresponding to the horizontal rail 911
  • Block 912, horizontal slider 912 mates with horizontal rail 911.
  • the utility model adopts the following guiding structure design, specifically: the motor mounting frame 751 is provided with a vertically arranged vertical guiding rail corresponding to the lifting movable frame 92 1
  • the vertical movable rail 921 is provided with a vertical sliding block 922, and the vertical sliding block 922 is matched with the vertical guiding rail 9 21 .
  • the utility model has the advantages of novel structural design, high degree of automation, high work efficiency, and effective labor cost saving by the above structural design.

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Manufacture Of Motors, Generators (AREA)

Abstract

一种全自动工字电感组合机,其固定支撑板(11)上端侧装设第一同步带传动机构(2)、助焊剂槽(3)、锡锅槽(4)、第二同步带传动机构(5);振动盘安装架(61)装设送料振动盘(62),振动盘安装架(61)与机架(1)之间装设第一导送架(63),靠近第一导送架(63)的第一同步带传动机构(2)的同步带轮装设有同步转动的移送模具(64),第一导送架(63)开设第一导送槽;固定支撑板(11)上表面的活动支撑架(71)装设水平活动架(72),水平活动架(72)由水平驱动电机、水平驱动丝杆(731)、水平丝杆螺母(732)进行驱动,水平活动架(72)旁侧装设由升降驱动组件(75)驱动的电磁吸料磁条(74);涂封机(81)与第二同步带传动机构(5)之间装设第二导送架(82)。

Description

一种全自动工字电感组合机 技术领域
[0001] 本实用新型涉及自动化设备技术领域, 尤其涉及一种全自动工字电感组合机。
[0002] 背景技术
[0003] 作为一种非常重要的电子元器件, 电感被广泛地应用于线路板中; 其中, 对于 电感而言, 其一般包括有呈工字形状的磁芯、 插装于磁芯的两个引脚插针、 缠 绕于磁芯外围的漆包线, 漆包线与引脚插针进行焊锡连接; 另外, 电感的外围 包套有环氧树脂胶带并涂覆有硅涂料。
[0004] 在工字电感生产加工过程中, 现有技术普遍采用人工作业或者半自动作业的方 式来实现工字电感组合加工; 在实际的生产加工过程中, 上述作业方式普遍存 在自动化程度低、 工作效率低且人工成本高的缺陷, 且由于人工作业的成分较 大, 产品的品质也很难保证。
[0005] 实用新型内容
[0006] 本实用新型的目的在于针对现有技术的不足而提供一种全自动工字电感组合机 , 该全自动工字电感组合机结构设计新颖、 自动化程度高、 工作效率高且能够 有效地节省人工成本。
[0007] 为达到上述目的, 本实用新型通过以下技术方案来实现。
[0008] 一种全自动工字电感组合机, 包括有机架, 机架的上端部设置有呈水平横向布 置的固定支撑板, 固定支撑板的上端侧装设有从前至后依次间隔排布的第一同 步带传动机构、 助焊剂槽、 锡锅槽、 第二同步带传动机构, 固定支撑板的下表 面对应第一同步带传动机构装设有第一驱动电机, 第一驱动电机的动力输出轴 与第一传动同步带的其中一同步带轮驱动连接, 固定支撑板的下表面对应第二 同步带传动机构装设有第二驱动电机, 第二驱动电机的动力输出轴与第二传动 同步带的其中一同步带轮驱动连接;
[0009] 机架的旁侧装设有振动盘安装架, 振动盘安装架的上端部装设有送料振动盘, 振动盘安装架与机架之间装设有第一导送架, 靠近第一导送架的第一同步带传 动机构的同步带轮装设有同步转动的移送模具, 第一导送架幵设有第一导送槽 , 第一导送槽的进料口与送料振动盘的出料口连通, 第一导送槽的出料口延伸 至移送模具位置;
[0010] 固定支撑板的上表面装设有活动支撑架, 活动支撑架可相对前后活动地装设有 水平活动架, 活动支撑架对应水平活动架装设有水平驱动电机, 水平驱动电机 的动力输出轴连设有沿着前后方向水平延伸的水平驱动丝杆, 水平活动架对应 水平驱动丝杆装设有水平丝杆螺母, 水平丝杆螺母与水平驱动丝杆相配合, 水 平活动架的旁侧可相对上下活动地装设有沿着左右方向水平延伸的电磁吸料磁 条, 水平活动架对应电磁吸料磁条装设有升降驱动组件, 升降驱动组件与电磁 吸料磁条驱动连接;
[0011] 机架的旁侧装设有涂封机, 涂封机与第二同步带传动机构之间装设有第二导送 架, 第二导送架幵设有第二导送槽。
[0012] 其中, 所述升降驱动组件包括有装设于所述水平活动架的电机安装架, 电机安 装架的上端部装设有升降驱动电机, 升降驱动电机的动力输出轴连设有呈竖向 布置的升降驱动丝杆, 所述电磁吸料磁条配装有升降活动架, 升降活动架对应 升降驱动丝杆装设有升降丝杆螺母, 升降丝杆螺母与升降驱动丝杆相配合, 电 磁吸料磁条装设于升降活动架的下端部。
[0013] 其中, 所述活动支撑架对应所述水平活动架装设有沿着前后方向水平延伸的水 平导轨, 水平活动架对应水平导轨装设有水平滑块, 水平滑块与水平导轨相配 合。
[0014] 其中, 所述电机安装架对应所述升降活动架装设有呈竖向布置的竖向导轨, 升 降活动架对应竖向导轨装设有竖向滑块, 竖向滑块与竖向导轨相配合。
[0015] 本实用新型的有益效果为: 本实用新型所述的一种全自动工字电感组合机, 其 机架的固定支撑板上端侧装设第一同步带传动机构、 助焊剂槽、 锡锅槽、 第二 同步带传动机构, 第一同步带传动机构由第一驱动电机进行驱动, 第二同步带 传动机构由第二驱动电机进行驱动; 机架旁侧的振动盘安装架装设送料振动盘 , 振动盘安装架与机架之间装设第一导送架, 靠近第一导送架的第一同步带传 动机构的同步带轮装设有同步转动的移送模具, 第一导送架幵设第一导送槽; 固定支撑板上表面的活动支撑架装设水平活动架, 水平活动架由水平驱动电机 、 水平驱动丝杆、 水平丝杆螺母进行驱动, 水平活动架旁侧装设电磁吸料磁条 , 电磁吸料磁条通过升降驱动组件进行驱动; 机架旁侧还装设涂封机, 涂封机 与第二同步带传动机构之间装设第二导送架。 通过上述结构设计, 本实用新型 具有结构设计新颖、 自动化程度高、 工作效率高且能够有效地节省人工成本的 优点。
[0016] 附图说明
[0017] 下面利用附图来对本实用新型进行进一步的说明, 但是附图中的实施例不构成 对本实用新型的任何限制。
[0018] 图 1为本实用新型的结构示意图。
[0019] 图 2为本实用新型的局部结构示意图。
[0020] 图 3为本实用新型的升降驱动组件的结构示意图。
[0021] 在图 1至图 3中包括有:
[0022] 1 机架 11- 固定支撑板
[0023] 2 第一同步带传动机构 3 助焊剂槽
[0024] 4 锡锅槽 5- 第二同步带传动机构
[0025] 61 振动盘安装架 62 送料振动盘
[0026] 63 第一导送架 64 移送模具
[0027] 71 活动支撑架 72 水平活动架
[0028] 731 水平驱动丝杆 732 水平丝杆螺母
[0029] 74 电磁吸料磁条 75 升降驱动组件
[0030] 751 电机安装架 752 升降驱动电机
[0031] 753 升降驱动丝杆 754 升降丝杆螺母
[0032] 81 涂封机 82 第二导送架
[0033] 911 水平导轨 912 水平滑块
[0034] 921 竖向导轨 922 竖向滑块。
[0035] 具体实施方式
[0036] 下面结合具体的实施方式来对本实用新型进行说明。 [0037] 如图 1至图 3所示, 一种全自动工字电感组合机, 包括有机架 1, 机架 1的上端部 设置有呈水平横向布置的固定支撑板 11, 固定支撑板 11的上端侧装设有从前至 后依次间隔排布的第一同步带传动机构 2、 助焊剂槽 3、 锡锅槽 4、 第二同步带传 动机构 5, 固定支撑板 11的下表面对应第一同步带传动机构 2装设有第一驱动电 机, 第一驱动电机的动力输出轴与第一传动同步带的其中一同步带轮驱动连接 , 固定支撑板 11的下表面对应第二同步带传动机构 5装设有第二驱动电机, 第二 驱动电机的动力输出轴与第二传动同步带的其中一同步带轮驱动连接。
[0038] 进一步的, 机架 1的旁侧装设有振动盘安装架 61, 振动盘安装架 61的上端部装 设有送料振动盘 62, 振动盘安装架 61与机架 1之间装设有第一导送架 63, 靠近第 一导送架 63的第一同步带传动机构 2的同步带轮装设有同步转动的移送模具 64, 第一导送架 63幵设有第一导送槽, 第一导送槽的进料口与送料振动盘 62的出料 口连通, 第一导送槽的出料口延伸至移送模具 64位置。
[0039] 更进一步的, 固定支撑板 11的上表面装设有活动支撑架 71, 活动支撑架 71可相 对前后活动地装设有水平活动架 72, 活动支撑架 71对应水平活动架 72装设有水 平驱动电机, 水平驱动电机的动力输出轴连设有沿着前后方向水平延伸的水平 驱动丝杆 731, 水平活动架 72对应水平驱动丝杆 731装设有水平丝杆螺母 732, 水 平丝杆螺母 732与水平驱动丝杆 731相配合, 水平活动架 72的旁侧可相对上下活 动地装设有沿着左右方向水平延伸的电磁吸料磁条 74, 水平活动架 72对应电磁 吸料磁条 74装设有升降驱动组件 75, 升降驱动组件 75与电磁吸料磁条 74驱动连 接。
[0040] 另外, 机架 1的旁侧装设有涂封机 81, 涂封机 81与第二同步带传动机构 5之间装 设有第二导送架 82, 第二导送架 82幵设有第二导送槽。
[0041] 需进一步指出, 升降驱动组件 75包括有装设于水平活动架 72的电机安装架 751 , 电机安装架 751的上端部装设有升降驱动电机 752, 升降驱动电机 752的动力输 出轴连设有呈竖向布置的升降驱动丝杆 753, 电磁吸料磁条 74配装有升降活动架 , 升降活动架对应升降驱动丝杆 753装设有升降丝杆螺母 754, 升降丝杆螺母 754 与升降驱动丝杆 753相配合, 电磁吸料磁条 74装设于升降活动架的下端部。
[0042] 在本实用新型工作过程中, 送料振动盘 62通过第一导送架 63的第一导送槽将安 装有引脚插针、 漆包线的磁芯输送至移送模具 64, 第一驱动电机驱动第一同步 带传动机构 2动作, 且移送模具 64随着第一同步带传动机构 2的其中一同步带轮 转动, 在此过程中, 移送模具 64将磁芯移送至第一同步带传动机构 2的传动同步 带并使得磁芯挂于第一同步带传动机构 2的传动同步带上, 在第一同步带传动机 构 2动作的过程中, 磁芯间隔排布于第一同步带传动机构 2的传动同步带; 待磁 芯排列完毕后, 第一驱动电机停止动作, 水平驱动电机通过由水平驱动丝杆 731 、 水平丝杆螺母 732所组成的丝杆传动机构驱动水平活动架 72、 升降驱动组件 75 以及电磁吸料磁条 74移动至第一同步带传动机构 2的传动同步带位置; 待电磁吸 料磁条 74前移到位后, 升降驱动电机 752通过由升降驱动丝杆 753、 升降丝杆螺 母 754所组成的丝杆传动机构驱动升降活动架、 电磁吸料磁条 74下移并使得电磁 吸料磁条 74吸附排列于第一同步带传动机构 2的传动同步带的磁芯; 待电磁吸料 磁条 74吸附磁芯后, 升降驱动电机 752反转并使得升降活动架、 电磁吸料磁条 74 上移复位, 且水平驱动电机反转并驱动电磁吸料磁条 74移动至助焊剂槽 3的正上 方, 而后升降驱动电机 752驱动电磁吸料磁条 74下移并使得磁芯伸入至助焊剂槽 3内, 以使得引脚插针粘上助焊剂; 待助焊剂粘附完毕后, 升降驱动电机 752在 此反转并使得电磁吸料磁条 74上移复位, 而后水平驱动电机驱动电磁吸料磁条 7 4移动至锡锅槽 4的正上方, 到位后升降驱动电机 752驱动电磁吸料磁条 74下移并 使得磁芯伸入至锡锅槽 4内, 以使得漆包线与引脚插针的连接处粘附锡膏; 待沾 锡完毕后, 升降驱动电机 752驱动电磁吸料磁条 74上移复位, 而后水平驱动电机 驱动电磁吸料磁条 74移动至第二同步带传动机构 5位置, 且通过升降驱动电机 75 2动作并最终将磁芯放置于第二同步带传动机构 5的传动同步带上; 已沾锡完毕 后的磁芯放置于传动同步带上, 第二同步带传动机构 5在第二驱动电机的驱动作 用下而动作, 且第二同步带传动机构 5的传动同步带将沾锡后的磁芯移送至第二 导送架 82, 第二导送架 82通过第二导送槽将沾锡后的磁芯移送至涂封机 81, 涂 封机 81完成环氧树脂胶带绕包以及硅涂料涂覆作业。
需进一步指出, 为保证水平活动架 72平稳可靠地前后水平移动, 本实用新型采 用下述导向结构设计, 具体为: 活动支撑架 71对应水平活动架 72装设有沿着前 后方向水平延伸的水平导轨 911, 水平活动架 72对应水平导轨 911装设有水平滑 块 912, 水平滑块 912与水平导轨 911相配合。
[0044] 另外, 为保证升降活动架平稳可靠对上下移动, 本实用新型采用下述导向结构 设计, 具体为: 电机安装架 751对应升降活动架装设有呈竖向布置的竖向导轨 92 1, 升降活动架对应竖向导轨 921装设有竖向滑块 922, 竖向滑块 922与竖向导轨 9 21相配合。
[0045] 综合上述情况可知, 通过上述结构设计, 本实用新型具有结构设计新颖、 自动 化程度高、 工作效率高且能够有效地节省人工成本的优点。
[0046] 以上内容仅为本实用新型的较佳实施例, 对于本领域的普通技术人员, 依据本 实用新型的思想, 在具体实施方式及应用范围上均会有改变之处, 本说明书内 容不应理解为对本实用新型的限制。
技术问题
问题的解决方案
发明的有益效果

Claims

权利要求书
[权利要求 1] 一种全自动工字电感组合机, 其特征在于: 包括有机架 (1) , 机架
( 1) 的上端部设置有呈水平横向布置的固定支撑板 (11) , 固定支 撑板 (11) 的上端侧装设有从前至后依次间隔排布的第一同步带传动 机构 (2) 、 助焊剂槽 (3) 、 锡锅槽 (4) 、 第二同步带传动机构 (5 ) , 固定支撑板 (11) 的下表面对应第一同步带传动机构 (2) 装设 有第一驱动电机, 第一驱动电机的动力输出轴与第一传动同步带的其 中一同步带轮驱动连接, 固定支撑板 (11) 的下表面对应第二同步带 传动机构 (5) 装设有第二驱动电机, 第二驱动电机的动力输出轴与 第二传动同步带的其中一同步带轮驱动连接;
机架 (1) 的旁侧装设有振动盘安装架 (61) , 振动盘安装架 (61) 的上端部装设有送料振动盘 (62) , 振动盘安装架 (61) 与机架 (1 ) 之间装设有第一导送架 (63) , 靠近第一导送架 (63) 的第一同步 带传动机构 (2) 的同步带轮装设有同步转动的移送模具 (64) , 第 一导送架 (63) 幵设有第一导送槽, 第一导送槽的进料口与送料振动 盘 (62) 的出料口连通, 第一导送槽的出料口延伸至移送模具 (64) 位置;
固定支撑板 (11) 的上表面装设有活动支撑架 (71) , 活动支撑架 (
71) 可相对前后活动地装设有水平活动架 (72) , 活动支撑架 (71) 对应水平活动架 (72) 装设有水平驱动电机, 水平驱动电机的动力输 出轴连设有沿着前后方向水平延伸的水平驱动丝杆 (731) , 水平活 动架 (72) 对应水平驱动丝杆 (731) 装设有水平丝杆螺母 (732) , 水平丝杆螺母 (732) 与水平驱动丝杆 (731) 相配合, 水平活动架 (
72) 的旁侧可相对上下活动地装设有沿着左右方向水平延伸的电磁吸 料磁条 (74) , 水平活动架 (72) 对应电磁吸料磁条 (74) 装设有升 降驱动组件 (75) , 升降驱动组件 (75) 与电磁吸料磁条 (74) 驱动 连接;
机架 (1) 的旁侧装设有涂封机 (81) , 涂封机 (81) 与第二同步带 传动机构 (5) 之间装设有第二导送架 (82) , 第二导送架 (82) 幵 设有第二导送槽。
[权利要求 2] 根据权利要求 1所述的一种全自动工字电感组合机, 其特征在于: 所 述升降驱动组件 (75) 包括有装设于所述水平活动架 (72) 的电机安 装架 (751) , 电机安装架 (751) 的上端部装设有升降驱动电机 (75 2) , 升降驱动电机 (752) 的动力输出轴连设有呈竖向布置的升降驱 动丝杆 (753) , 所述电磁吸料磁条 (74) 配装有升降活动架, 升降 活动架对应升降驱动丝杆 (753) 装设有升降丝杆螺母 (754) , 升降 丝杆螺母 (754) 与升降驱动丝杆 (753) 相配合, 电磁吸料磁条 (74 ) 装设于升降活动架的下端部。
[权利要求 3] 根据权利要求 2所述的一种全自动工字电感组合机, 其特征在于: 所 述活动支撑架 (71) 对应所述水平活动架 (72) 装设有沿着前后方向 水平延伸的水平导轨 (911) , 水平活动架 (72) 对应水平导轨 (911 ) 装设有水平滑块 (912) , 水平滑块 (912) 与水平导轨 (911) 相 配合。
[权利要求 4] 根据权利要求 3所述的一种全自动工字电感组合机, 其特征在于: 所 述电机安装架 (751) 对应所述升降活动架装设有呈竖向布置的竖向 导轨 (921) , 升降活动架对应竖向导轨 (921) 装设有竖向滑块 (92 2) , 竖向滑块 (922) 与竖向导轨 (921) 相配合。
PCT/CN2016/112366 2016-06-27 2016-12-27 一种全自动工字电感组合机 WO2018000776A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201620644564.3 2016-06-27
CN201620644564.3U CN205828128U (zh) 2016-06-27 2016-06-27 一种全自动工字电感组合机

Publications (1)

Publication Number Publication Date
WO2018000776A1 true WO2018000776A1 (zh) 2018-01-04

Family

ID=58146643

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/112366 WO2018000776A1 (zh) 2016-06-27 2016-12-27 一种全自动工字电感组合机

Country Status (2)

Country Link
CN (1) CN205828128U (zh)
WO (1) WO2018000776A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN205828128U (zh) * 2016-06-27 2016-12-21 分宜县新昌电子有限公司 一种全自动工字电感组合机
CN106024357A (zh) * 2016-06-27 2016-10-12 分宜县新昌电子有限公司 一种全自动工字电感组合机

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200150923Y1 (ko) * 1997-01-15 1999-07-15 박용칠 트랜스 자동제조장치
CN102360904A (zh) * 2011-08-19 2012-02-22 深圳创维-Rgb电子有限公司 用于磁芯装配的设备
CN105047392A (zh) * 2015-08-01 2015-11-11 中山捷航自动化科技有限公司 绕线焊锡机
CN106024357A (zh) * 2016-06-27 2016-10-12 分宜县新昌电子有限公司 一种全自动工字电感组合机
CN205828128U (zh) * 2016-06-27 2016-12-21 分宜县新昌电子有限公司 一种全自动工字电感组合机

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200150923Y1 (ko) * 1997-01-15 1999-07-15 박용칠 트랜스 자동제조장치
CN102360904A (zh) * 2011-08-19 2012-02-22 深圳创维-Rgb电子有限公司 用于磁芯装配的设备
CN105047392A (zh) * 2015-08-01 2015-11-11 中山捷航自动化科技有限公司 绕线焊锡机
CN106024357A (zh) * 2016-06-27 2016-10-12 分宜县新昌电子有限公司 一种全自动工字电感组合机
CN205828128U (zh) * 2016-06-27 2016-12-21 分宜县新昌电子有限公司 一种全自动工字电感组合机

Also Published As

Publication number Publication date
CN205828128U (zh) 2016-12-21

Similar Documents

Publication Publication Date Title
CN105500903A (zh) 全自动锡膏印刷机
CN101674720A (zh) 多功能台式全自动贴片机
CN216727979U (zh) 一种电子配件组装装置
CN207390383U (zh) 一种翻转送料机构
WO2018000776A1 (zh) 一种全自动工字电感组合机
CN207917870U (zh) 一种全自动物料输送系统
CN211759588U (zh) 手机摄像头支架组装设备
CN109051772A (zh) 铜板上料输送装置
CN207558960U (zh) 一种自动化贴胶帽设备
CN215656090U (zh) 一种线路板加工用点胶机
CN210755715U (zh) 一种用于自动浸锡机的上料装置
CN207948017U (zh) 全自动smd装填机
CN213538143U (zh) 一种螺母加工用自动化电镀设备
CN109637747B (zh) 异形线涂覆机
CN208648123U (zh) 铜板上料输送装置
CN208560788U (zh) 一种电暖器外壳移载装置
CN208663065U (zh) 一种带有定位装置的铜排加工机床
CN208045909U (zh) 一种汽车线束自动端子注锡装置
CN106024357A (zh) 一种全自动工字电感组合机
CN215788064U (zh) 一种簸箕杆的装配装置
CN220682962U (zh) 一种全自动贴胶机
CN217618254U (zh) 一种全自动电感焊锡机
CN220570906U (zh) 一种用于pcb线路板回流焊的上板机
CN208767250U (zh) 一种led-t8灯管固化老化一体化装置
CN111330799B (zh) 一种智能柔性片式电感印刷生产线

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16907163

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16907163

Country of ref document: EP

Kind code of ref document: A1