Automatic bag sleeving and heat shrinking equipment for bulbs

文档序号:180339 发布日期:2021-11-02 浏览:27次 中文

阅读说明:本技术 一种球泡自动套袋热缩设备 (Automatic bag sleeving and heat shrinking equipment for bulbs ) 是由 曾学仁 许谦 刘谋仁 刘艳平 杨泽钢 张安军 于 2021-06-30 设计创作,主要内容包括:一种球泡自动套袋热缩设备,包括支架和设置在支架顶部的转盘,转盘的轴心处安装有电机,转盘通过电机驱动旋转,转盘的边缘处设置有多个治具,治具上支撑设置有球泡,转盘的上方设置有袋子料仓、热缩工位和机械手,所述袋子料仓中设置有吸盘,所述袋子料仓、热缩工位和机械手位于转盘的上方并且依次顺时针设置。本发明球泡自动套袋热缩设备能够通过袋子料仓、热缩工位和机械手对治具上的球泡完成套袋、热缩和取出动作,并且能够区分是否完成套袋,工作效率高。(The utility model provides an automatic bagging pyrocondensation equipment of ball bubble, includes the support and sets up the carousel at the support top, and the axle center department of carousel installs the motor, and the carousel passes through motor drive and rotates, and the edge of carousel is provided with a plurality of tools, and the support is provided with the ball bubble on the tool, and the top of carousel is provided with sack feed bin, pyrocondensation station and manipulator, be provided with the sucking disc in the sack feed bin, pyrocondensation station and manipulator are located the top of carousel and clockwise setting in proper order. The automatic bulb bagging and heat-shrinking equipment can complete bagging, heat-shrinking and taking-out actions on bulbs on the jig through the bag bin, the heat-shrinking station and the manipulator, can distinguish whether bagging is completed or not, and is high in working efficiency.)

1. The utility model provides an automatic pyrocondensation equipment of bagging-off of ball bubble which characterized in that, includes support (1) and carousel (11) of setting at support (1) top, the axle center department of carousel (11) installs the motor, carousel (11) are rotatory through motor drive, the edge of carousel (11) is provided with a plurality of tool (111), the support is provided with the ball bubble on tool (111), the top of carousel (11) is provided with sack feed bin (17), pyrocondensation station (18) and manipulator (19), be provided with the sucking disc in sack feed bin (17), pyrocondensation station (18) and manipulator (19) are located the top of carousel (11) and clockwise set gradually.

2. The automatic bagging and heat-shrinking device for the bulbs as claimed in claim 1, wherein a manual emptying area (12) is arranged at the bottom of the rotating disc (11).

3. The automatic bag sleeving and heat shrinking equipment for the bulbs according to claim 2, wherein a circuit breaker (13) and a gas source processing element (14) are arranged on the side wall of the bracket (1), the circuit breaker (13) is connected with a motor to control the starting and stopping of the motor, and the gas source processing element (14) is connected with a bag bin (17), a heat shrinking station (18) and a manipulator (19) and provides power gas.

4. The automatic bagging and heat-shrinking device for the bulbs according to claim 3, wherein a touch photoelectric switch (15) and a touch screen (16) are arranged at the top of the bracket (1) close to the turntable (11), and the touch screen (16) is provided with parameters for controlling the working parameters of the motor.

5. The automatic bagging and heat-shrinking device for the bulbs according to claim 4, wherein a discharge port (20) is connected to the edge of the rotating disc (11), and the discharge port (20) is an inclined part.

6. Automatic bagging and heat-shrinking device for bulbs according to claim 5, wherein the rotary table (11), the bag bin (17), the heat-shrinking station (18) and the manipulator (19) are controlled by a PLC program.

7. The automatic bagging and heat-shrinking equipment for the bulbs of claim 6, wherein the heat-shrinking station (18) is a C-shaped continuous heating device, the temperature of which is adjustable within 400 ℃, and the temperature can be adjusted up and down.

Technical Field

The invention relates to automatic ball bubble bagging and heat-shrinking equipment.

Background

The ball bubble is more common lighting bulb among the daily life, and the ball bubble need accomplish cover bag, pyrocondensation process before dispatching from the factory, and the cover bag can prevent that the ball bubble from being contaminated at the in-process that the transportation was preserved, and the pyrocondensation is to cover bag pyrocondensation parcel and live the bulb, and in the current ball bubble production process, the process all is that different machines are accomplished, and is inefficient.

Disclosure of Invention

The invention provides automatic bulb bagging and heat-shrinking equipment for completing bagging, heat-shrinking and taking out processes.

The technical scheme adopted by the invention for solving the technical problems is as follows:

the utility model provides an automatic bagging pyrocondensation equipment of ball bubble, includes the support and sets up the carousel at the support top, and the axle center department of carousel installs the motor, and the carousel passes through motor drive and rotates, and the edge of carousel is provided with a plurality of tools, and the support is provided with the ball bubble on the tool, and the top of carousel is provided with sack feed bin, pyrocondensation station and manipulator, be provided with the sucking disc in the sack feed bin, pyrocondensation station and manipulator are located the top of carousel and clockwise setting in proper order.

Preferably, the bottom of the turntable is provided with an artificial discharging area.

Preferably, the side wall of the bracket is provided with a circuit breaker and an air source processing element, the circuit breaker is connected with the motor to control the starting and stopping of the motor, and the air source processing element is connected with the bag bin, the heat shrinkage station and the mechanical arm and provides power gas.

Preferably, a touch photoelectric switch and a touch screen are arranged at the top of the support close to the turntable, and the touch screen is provided with parameters for controlling the working parameters of the motor.

Preferably, the edge of the rotating disc is connected with a discharge port which is an inclined part.

Preferably, the turntable, the bag bin, the heat shrinkage station and the manipulator are controlled by a PLC program.

Preferably, the heat-shrinkable station is a C-shaped continuous heating device, the temperature of which is adjustable within 400 ℃ and can be lifted up and down.

Compared with the prior art, the automatic bulb bagging and heat-shrinking equipment can complete bagging, heat-shrinking and taking-out actions on bulbs on the jig through the bag bin, the heat-shrinking station and the manipulator, can distinguish whether bagging is completed or not, and is high in working efficiency.

Drawings

Fig. 1 is a schematic perspective view of an automatic bagging and heat shrinking apparatus for bulbs according to the present invention.

Detailed Description

The invention is described in further detail below with reference to the accompanying examples.

As shown in fig. 1, the automatic bag sleeving and heat shrinking device for the bulb comprises a support 1 and a rotary table 11 arranged at the top of the support 1, a motor is installed at the axis of the rotary table 11, the rotary table 11 is driven to rotate by the motor, a plurality of jigs 111 are arranged at the edge of the rotary table 11, the jig 111 is supported by the bulb, an artificial discharging area 12 is arranged at the bottom of the rotary table 11, and the bulb can be stored and placed in the artificial discharging area 12.

The side wall of the bracket 1 is provided with a circuit breaker 13 and an air source processing element 14, and the top of the bracket 1 is provided with a touch photoelectric switch 15 and a touch screen 16 near the turntable 11. The bag bin 17, the thermal shrinkage station 18 and the manipulator 19 are arranged above the rotary table 11, the bag bin 17, the thermal shrinkage station 18 and the manipulator 19 are located above the rotary table 11 and are sequentially arranged clockwise, the edge of the rotary table 11 is connected with the discharge port 20, and the discharge port 20 is an inclined part. The circuit breaker 13 is connected with the motor to control the starting and stopping of the motor, and the air source processing element 14 is connected with the bag bin 17, the heat shrinkage station 18 and the manipulator 19 and provides power gas. The touch screen 16 can set the operating parameters of the parameter control motor.

Carousel 11, bag feed bin 17, pyrocondensation station 18 and manipulator 19 pass through each unit of PLC program control, can realize the automatic pyrocondensation bag of cover of ball bubble, automatic with the bag heat shrinkage, distinguish yields and defective products.

Carousel 11 adopts the cam wheel splitter structure, drives the carousel, can do the multistation operation, and the automatic pyrocondensation equipment of cover bag of ball bubble passes through each unit of PLC program control, can realize the automatic pyrocondensation bag of cover of ball bubble, automatic with sack heat shrinkage, distinguishes yields and defective products, takes off the plastic bag in sack feed bin 17 through the sucking disc, descends again after propping the sack to inhaling, embolias on the ball bubble shell, through touch photoelectric switch 15 discernment ball bubble have or not to overlap the plastic bag.

The thermal shrinkage station 18 is a C-shaped continuous heating device, the temperature of which can be adjusted within 400 ℃, and the thermal shrinkage station can be lifted up and down, when the bag-sleeved product enters the station, the heating port descends to wrap the product for thermal shrinkage, the time can be set by a program, after the completion, the heating device ascends, and the product is rotated out.

The manipulator 19 is controlled by a main program to take out the sleeved and heat-shrunk bag product and place the bag product into a discharge hole 20.

The working principle of the automatic bulb bagging and heat-shrinking equipment is as follows:

1. in the first step, the bulbs are manually loaded on the jigs 111 of the turntable 11.

2. The rotary table 11 rotates by one station to enter the lower part of the bag bin 17, a sucker is arranged in the bag bin 17, and the sucker sleeves the plastic bag in the bag bin 17 on the bulb to complete the sleeving of the plastic bag.

3. The turntable 11 rotates a station to enter a thermal shrinkage station 18, the thermal shrinkage station 18 detects whether a plastic bag exists on the detection bulb, if a plastic bag exists, the thermal shrinkage station 18 heats the plastic bag to perform thermal shrinkage, and if no plastic bag exists, the thermal shrinkage is not performed.

4. The bulb manipulator 19 without the plastic bag is not operated and continues to flow into the next station for secondary bag covering.

5. And (3) putting the bagged bulbs on a discharge hole 20 and then putting the bulbs into a buffer conveying line by a manipulator 19.

6. And finally, clamping the bulbs successfully sleeved with the bags to a material box by a manipulator at the tail end of the buffer conveying line, and enabling the bulbs not successfully sleeved with the bags to enter the NG box.

7. The apparatus completes one cycle.

The automatic bulb bagging and heat-shrinking device can complete bagging, heat-shrinking and taking-out actions on bulbs on the jig 111 through the bag bin 17, the heat-shrinking station 18 and the manipulator 19, can distinguish whether bagging is completed or not, and is high in working efficiency.

Finally, it should be noted that: the above examples are merely illustrative of the technical solutions of the present invention, and not limitative thereof; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

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