Injection molding material taking device for automobile injection molding accessories
Through the combination of vacuum suction cup and air-cooling mechanism, the safety hazards and low efficiency of traditional manual material collection are solved, non-contact material collection and rapid heat dissipation are achieved, safety and production efficiency are improved, and automated material collection is realized.
Patent Information
- Application Number
- CN202422419832.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-08
AI Technical Summary
Traditional automobile injection molding accessories have safety hazards and are inefficient in the removal of materials, so automation cannot be achieved.
The combination of vacuum suction cup and air-cooling mechanism is used to achieve contactless material collection and rapid heat dissipation, and precise movement is carried out in combination with the horizontal and longitudinal displacement mechanism driven by the motor.
Improve material removal safety, reduce scald risk, shorten cooling time, improve production efficiency, and realize automated material removal.
Smart Images

Figure CN223173501U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of injection molding production, and more specifically relates to an injection molding material taking device for automotive injection molded parts. Background Art
[0002] Automobile parts are various units that make up an automobile as a whole and a kind of product serving the automobile. In recent years, the automobile parts manufacturing industry has also been developing rapidly. Most automobile parts are generally produced by an injection molding processing method. Thermoplastic plastics or thermosetting plastics are made into various shaped automobile plastic products by an injection molding machine using a plastic molding die.
[0003] When the traditional injection molding machine for automotive injection molded parts takes materials, generally manual material taking is carried out. When manual material taking is carried out, not only the temperature of the injection molded workpiece formed by the injection molding machine is high, but also when the staff takes materials, it is easy to get scalded, there are high safety hazards, and automation cannot be achieved during manual part taking, the efficiency of part taking is relatively low, time is wasted, and the work efficiency is low. Summary of the Utility Model
[0004] The purpose of the utility model is to provide an injection molding material taking device for automotive injection molded parts, which realizes non-contact material taking of injection molded parts and improves the safety of work.
[0005] In order to achieve the above purpose, the technical solution of the utility model is as follows:
[0006] An injection molding material taking device for automotive injection molded parts includes a horizontal displacement mechanism. A longitudinal displacement mechanism is fixedly installed at the driving end of the horizontal displacement mechanism. A cross plate is fixedly installed at the driving end of the longitudinal displacement mechanism. Vacuum suction cups are installed at both ends on one side of the cross plate. An air cooling mechanism is arranged on the cross plate close to the vacuum suction cups.
[0007] Further, the air cooling mechanism includes a ventilation cylinder installed on the cross plate. A fan is installed in the ventilation cylinder. An air inlet communicating with the inside of the ventilation cylinder is opened on the cross plate. An air outlet pipe is connected to the air outlet of the ventilation cylinder. [[ID=:27]]
[0008] Further, the air outlet of the air outlet pipe is arranged towards the front of the vacuum suction cup.
[0009] Further, the horizontal displacement mechanism includes a horizontal guide rail frame. A horizontal lead screw and a first lead screw motor for driving the horizontal lead screw are arranged on the horizontal guide rail frame. A horizontal sliding seat is threadedly connected to the horizontal lead screw. The horizontal sliding seat is slidably connected to the horizontal guide rail frame.
[0010] Further, the longitudinal displacement mechanism includes a longitudinal guide rail frame installed on the horizontal slide base. A longitudinal lead screw and a second lead screw motor for driving the longitudinal lead screw to rotate are arranged on the longitudinal guide rail frame. A longitudinal slide base is threadedly connected to the longitudinal lead screw, and the longitudinal slide base is slidably connected to the longitudinal guide rail frame. The cross plate is fixedly installed on the longitudinal slide base.
[0011] Further, the vacuum suction cup is connected to a vacuum generator.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] The non-contact material taking of the injection molded parts is realized through the vacuum suction cup, avoiding potential safety hazards such as scalding that may be caused by traditional manual material taking, and greatly improving the work safety. Through the setting of the air cooling mechanism, the injection molded parts can be quickly cooled while taking materials, reducing the temperature of the injection molded parts, further reducing the safety risks, and shortening the cooling time of the injection molded parts, thereby improving the production efficiency. Description of the Drawings
[0014] Figure 1 Structural schematic of the present utility model Figure 1 ;
[0015] Figure 2 Structural schematic of the present utility model Figure 2 。
[0016] 1. Cross plate; 101. Air inlet; 2. Vacuum suction cup; 3. Ventilation tube; 4. Fan; 5. Air outlet pipe; 6. Horizontal guide rail frame; 7. Horizontal lead screw; 8. First lead screw motor; 9. Horizontal slide base; 10. Longitudinal guide rail frame; 11. Longitudinal lead screw; 12. Second lead screw motor; 13. Longitudinal slide base. Detailed Embodiment
[0017] As Figure 1 and Figure 2 shown, an injection material taking device for automotive injection molded parts includes a horizontal displacement mechanism. The driving end of the horizontal displacement mechanism is fixedly installed with a longitudinal displacement mechanism. The driving end of the longitudinal displacement mechanism is fixedly installed with a cross plate 1. Two ends on one side of the cross plate 1 are installed with vacuum suction cups 2. An air cooling mechanism is arranged on the cross plate 1 near the vacuum suction cups 2.
[0018] The air cooling mechanism includes a ventilation tube 3 installed on the cross plate 1. A fan 4 is installed in the ventilation tube 3. An air inlet 101 communicating with the inside of the ventilation tube 3 is opened on the cross plate 1. An air outlet pipe 5 is connected to the air outlet of the ventilation tube 3.
[0019] The air outlet of the air outlet pipe 5 is arranged facing the front of the vacuum suction cup 2.
[0020] The horizontal displacement mechanism includes a horizontal guide rail frame 6, on which a horizontal lead screw 7 and a first lead screw motor 8 for driving the horizontal lead screw 7 are provided. A horizontal slide block 9 is threadedly connected to the horizontal lead screw 7, and the horizontal slide block 9 is slidably connected to the horizontal guide rail frame 6.
[0021] The longitudinal displacement mechanism includes a longitudinal guide rail frame 10 installed on the horizontal slide block 9. On the longitudinal guide rail frame 10, a longitudinal lead screw 11 and a second lead screw motor 12 for driving the longitudinal lead screw 11 to rotate are provided. A longitudinal slide block 13 is threadedly connected to the longitudinal lead screw 11, and the longitudinal slide block 13 is slidably connected to the longitudinal guide rail frame 10. The cross plate 1 is fixedly installed on the longitudinal slide block 13.
[0022] The vacuum suction cup 2 is connected to a vacuum generator.
[0023] Working principle:
[0024] During operation, the first lead screw motor 8 in the horizontal displacement mechanism drives the horizontal lead screw 7 to rotate, thereby driving the horizontal slide block 9 to slide on the horizontal guide rail frame 6, realizing the movement of the cross plate 1 in the horizontal direction; the second lead screw motor 12 in the longitudinal displacement mechanism drives the longitudinal lead screw 11 to rotate, causing the longitudinal slide block 12 to slide on the longitudinal guide rail frame 10, and further driving the cross plate 1 and the vacuum suction cup 3 and the air-cooling mechanism installed on the cross plate 1 to move in the longitudinal direction. Through the cooperation of the horizontal displacement mechanism and the longitudinal displacement mechanism, the vacuum suction cup 1 on the cross plate is moved to the position where the injection molding fitting is located. The vacuum suction cup 1 generates suction under the action of the vacuum generator and adsorbs the injection molding fitting; during the material taking process, the fan of the air-cooling mechanism operates, sucking air from the air inlet 101 into the ventilation cylinder 3, and then guiding the cooling air to the injection molding fitting in front of the vacuum suction cup 1 through the air outlet pipe 5 to dissipate heat from it.
[0025] The vacuum suction cup material taking of the present utility model avoids manual contact with high-temperature injection molding fittings and reduces the risk of scalding. At the same time, the air-cooling mechanism can quickly reduce the temperature of the injection molding fittings, further improving the working safety; the precise movement of the horizontal displacement mechanism and the longitudinal displacement mechanism, as well as the quick adsorption of the vacuum suction cup, make the material taking process more efficient, greatly saving the material taking time; the device realizes automatic material taking and heat dissipation through equipment such as motor drive and vacuum generator, reduces manual intervention, and reduces the labor intensity.
[0026] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present utility model and are not used to limit the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. An injection molding and material taking device for automobile injection molded parts, characterized in that: It includes a horizontal displacement mechanism. A longitudinal displacement mechanism is fixedly installed at the driving end of the horizontal displacement mechanism. A cross plate (1) is fixedly installed at the driving end of the longitudinal displacement mechanism. Vacuum suction cups (2) are installed at both ends on one side of the cross plate (1). An air cooling mechanism is arranged on the cross plate (1) close to the vacuum suction cups (2).
2. The injection material taking device for the automotive injection molded fitting according to claim 1, characterized in that: The air cooling mechanism includes a ventilation cylinder (3) installed on the cross plate (1). A fan (4) is installed in the ventilation cylinder (3). An air inlet (101) communicating with the inside of the ventilation cylinder (3) is formed on the cross plate (1). An air outlet pipe (5) is connected to the air outlet of the ventilation cylinder (3).
3. The injection material taking device for the automotive injection molded fittings according to claim 2, characterized in that: The air outlet of the air outlet pipe (5) is arranged facing the front of the vacuum suction cup (2).
4. The injection material taking device for the automotive injection molded fitting according to claim 1, characterized in that: The horizontal displacement mechanism includes a horizontal guide rail frame (6). A horizontal lead screw (7) and a first lead screw motor (8) for driving the horizontal lead screw (7) are arranged on the horizontal guide rail frame (6). A horizontal sliding seat (9) is threadedly connected to the horizontal lead screw (7). The horizontal sliding seat (9) is slidably connected to the horizontal guide rail frame (6).
5. The injection material taking device for automobile injection molded fittings according to claim 4, characterized in that: The longitudinal displacement mechanism includes a longitudinal guide rail frame (10) installed on the horizontal sliding seat (9). A longitudinal lead screw (11) and a second lead screw motor (12) for driving the longitudinal lead screw (11) to rotate are arranged on the longitudinal guide rail frame (10). A longitudinal sliding seat (13) is threadedly connected to the longitudinal lead screw (11). The longitudinal sliding seat (13) is slidably connected to the longitudinal guide rail frame (10). The cross plate (1) is fixedly installed on the longitudinal sliding seat (13).
6. The injection material taking device for the automotive injection molded fitting according to claim 1, wherein: The vacuum suction cup (2) is connected to a vacuum generator.