CN207915912U - A kind of energy conservation and environmental protection plastics processing machines - Google Patents
A kind of energy conservation and environmental protection plastics processing machines Download PDFInfo
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Abstract
本实用新型公开了一种节能环保塑料加工机,包括条形承载基座,所述条形承载基座上表面设有加工台,所述加工台上表面设有塑料加工机构,所述加工台前后两侧设有摆动制冷机构。本实用新型的有益效果是,一种使用比较方便,人工参与较多,比较节约能源,便于回收废料,减少对环境的污染,通过再次加热原料,使得均匀成型的塑料加工装置。
The utility model discloses an energy-saving and environment-friendly plastic processing machine. There are swing refrigeration mechanisms on the front and rear sides. The beneficial effect of the utility model is that it is a plastic processing device that is more convenient to use, requires more manual participation, saves energy, is convenient to recycle waste materials, reduces environmental pollution, and makes uniform molding by reheating raw materials.
Description
技术领域technical field
本实用新型涉及塑料加工领域,特别是一种节能环保塑料加工机。The utility model relates to the field of plastic processing, in particular to an energy-saving and environment-friendly plastic processing machine.
背景技术Background technique
塑料加工就是生产塑料制品的装置,传统的塑料制品有平面的或者立体的,传统的立体塑料产品可以进行吹塑或者浇筑成型制成。Plastic processing is a device for producing plastic products. Traditional plastic products are flat or three-dimensional, and traditional three-dimensional plastic products can be made by blow molding or pouring.
有些带有空心的塑料成品需要进行浇筑或者吹塑,对于传统的浇筑而言,就是直接的件已经融化的塑料原料建筑到已经成型的模具内,进行风干冷却或者制冷冷却,传统的浇筑制造,在建筑完毕之后,就不再动,有些比较复杂的通路不方便进料,使得成型有可能不均匀,传统的加工工具比较大,人工干预比较少,虽然节约人力,但是比较的消耗电能,传统模具对于多余原料收集不方便,因此为了解决这些问题,设计一种节能环保的塑料加工装置是很有必要的。Some hollow plastic products need to be poured or blow-molded. For traditional pouring, it is to directly build melted plastic raw materials into molds that have been formed, and then perform air-drying or refrigeration cooling. Traditional pouring manufacturing, After the construction is completed, it will not move any more. Some complicated pathways are inconvenient to feed materials, which may make the molding uneven. Traditional processing tools are relatively large and require less manual intervention. Although it saves manpower, it consumes more power. Traditional It is inconvenient for the mold to collect excess raw materials, so in order to solve these problems, it is necessary to design an energy-saving and environmentally friendly plastic processing device.
实用新型内容Utility model content
本实用新型的目的是为了解决上述问题,设计了一种节能环保塑料加工机。The purpose of this utility model is to solve the above problems, and an energy-saving and environment-friendly plastic processing machine is designed.
实现上述目的本实用新型的技术方案为,一种节能环保塑料加工机,包括条形承载基座,所述条形承载基座上表面设有加工台,所述加工台上表面设有塑料加工机构,所述加工台前后两侧设有摆动制冷机构,所述塑料加工机构由固定连接在加工台上表面中心处的圆形承载基座、嵌装在圆形承载基座上表面的旋转驱动装置、套装在旋转驱动装置驱动端上的转动圆盘、固定连接在转动圆盘上表面边缘处的多个折形支撑架、固定连接在转动圆盘上表面中心处且与多个折形支撑架高度相匹配的多个竖直支撑圆柱、螺纹连接在每个折形支撑架和每个竖直支撑圆柱上的塑料模具下壳、固定连接在加工台上表面且位于圆形承载基座两侧的一组水平滑轨、设置在每个水平滑轨上的移动块、固定连接在每个移动块上表面的弧形支撑架、设置在一组弧形支撑架之间且位于塑料模具下壳上方的圆形盖板、嵌装在圆形盖板下表面中心处的转动圆板、固定连接在转动圆板下表面且与多个折形支撑架和多个竖直支撑圆柱相对应的多组电控推杆、套装在每个电控推杆下端面上的升降块、螺纹连接在每个升降块下表面且与所对应塑料模具下壳相对应的挤压上模具、固定连接在每个塑料模具下壳外侧表面下端的支撑环形架、套装在每个塑料模具下壳上且下端与所对应支撑环形架上表面相搭接的环形加热壳、设置在每个环形加热壳内的环形加热电阻丝共同构成的,所述条形承载基座侧表面嵌装控制器,所述控制器与塑料加工机构中电控推杆和环形加热电阻丝通过导线分别电性连接。The technical solution of the utility model to achieve the above object is an energy-saving and environment-friendly plastic processing machine, which includes a strip-shaped bearing base, a processing table is provided on the upper surface of the strip-shaped bearing base, and a plastic processing table is provided on the upper surface of the processing table. mechanism, the front and rear sides of the processing table are equipped with a swing refrigeration mechanism, and the plastic processing mechanism is driven by a circular bearing base fixedly connected to the center of the upper surface of the processing table, and a rotary drive embedded in the upper surface of the circular bearing base. device, a rotating disc set on the driving end of the rotating drive device, a plurality of folding support frames fixedly connected to the edge of the upper surface of the rotating disc, fixedly connected to the center of the upper surface of the rotating disc and connected to a plurality of folding supports A plurality of vertical support columns matching the height of the frame, a plastic mold lower shell screwed on each folded support frame and each vertical support column, fixedly connected to the upper surface of the processing table and located on both sides of the circular bearing base A set of horizontal slide rails on the side, a moving block arranged on each horizontal slide rail, an arc-shaped support frame fixedly connected to the upper surface of each moving block, arranged between a set of arc-shaped support frames and located under the plastic mold A circular cover plate above the shell, a rotating circular plate embedded in the center of the lower surface of the circular cover plate, fixedly connected to the lower surface of the rotating circular plate and corresponding to a plurality of folded support frames and a plurality of vertical support columns A plurality of sets of electric push rods, a lifting block set on the lower surface of each electric control push rod, an extrusion upper mold that is threaded on the lower surface of each lifting block and corresponding to the lower shell of the corresponding plastic mold, and fixedly connected to the The supporting annular frame at the lower end of the outer surface of each plastic mold lower shell, the annular heating shell that is set on the lower shell of each plastic mold and whose lower end overlaps the upper surface of the corresponding supporting annular frame, and the annular heating shell that is arranged in each annular heating shell An annular heating resistance wire is jointly formed, and a controller is embedded on the side surface of the bar-shaped bearing base, and the controller is electrically connected to the electric control push rod in the plastic processing mechanism and the annular heating resistance wire through wires.
所述摆动制冷机构由铰链连接在加工台前后两侧的两组双节摆动臂、固定连接在每组双节摆动臂端面上的折形遮挡壳、固定连接在每个折形遮挡壳内侧表面上的一组制冷风机、固定连接在每个折形遮挡壳端面上的强力吸铁块、固定连接在每个折形遮挡壳外侧表面上的拉动把手共同构成的,所述控制器与制冷风机通过导线电性连接。The swing refrigeration mechanism is hinged to two sets of double-section swing arms on both sides of the front and back of the processing table, a folding shield shell fixedly connected to the end face of each set of double-section swing arms, and a foldable shield shell fixedly connected to the inner surface of each fold-shaped shield shell. A group of refrigeration fans on the top, a strong iron block fixedly connected to the end surface of each foldable shielding shell, and a pull handle fixedly connected to the outer surface of each foldable shielding shell are jointly formed. The controller and the refrigeration fan Electrically connected by wires.
所述条形承载基座下表面边缘处固定连接四组万向轮。Four sets of universal wheels are fixedly connected to the edge of the lower surface of the strip bearing base.
每个所述挤压上模具侧表面上均加工与所对应塑料模具下壳相匹配的环形切割刀。An annular cutting knife matching the lower shell of the corresponding plastic mold is processed on the side surface of each extrusion upper mold.
每个所述挤压上模具内均嵌装加热片,所述控制器通过导线与加热片电性连接。A heating chip is embedded in each of the extrusion upper dies, and the controller is electrically connected to the heating chip through a wire.
所述旋转驱动装置由旋转端向上的旋转电机、套装在旋转电机旋转端上且与转动圆盘相连接的固定夹手组成的。The rotary driving device is composed of a rotary motor with the rotary end facing upwards, and a fixed gripper sleeved on the rotary end of the rotary motor and connected with the rotating disk.
所述加工台上表面且位于圆形承载基座左右两侧均加工条形豁槽,每个所述条形豁槽内均设条形垃圾承载盒。The upper surface of the processing table and the left and right sides of the circular bearing base are all processed with strip-shaped slots, and each strip-shaped slot is equipped with a strip-shaped garbage carrying box.
每个所述挤压上模具外侧表面均套装滑层。The outer surface of each extrusion upper die is covered with a sliding layer.
多个所述折形支撑架的数量为5-8个,且均匀分布。The number of the plurality of folded support frames is 5-8, and they are evenly distributed.
所述条形承载基座侧表面嵌装市电接口,所述控制器与市电接口通过导线电性连接。A mains interface is embedded on the side surface of the bar-shaped bearing base, and the controller is electrically connected to the mains interface through wires.
利用本实用新型的技术方案制作的节能环保塑料加工机,一种使用比较方便,人工参与较多,比较节约能源,便于回收废料,减少对环境的污染,通过再次加热原料,使得均匀成型的塑料加工装置。The energy-saving and environment-friendly plastic processing machine produced by the technical scheme of the utility model is more convenient to use, more manual involved, more energy-saving, easy to recycle waste materials, reduce environmental pollution, and make evenly formed plastic by reheating raw materials Processing device.
附图说明Description of drawings
图1是本实用新型所述一种节能环保塑料加工机的结构示意图;Fig. 1 is a structural schematic diagram of an energy-saving and environment-friendly plastic processing machine described in the utility model;
图2是本实用新型所述一种节能环保塑料加工机的正视图;Fig. 2 is a front view of an energy-saving and environment-friendly plastic processing machine described in the utility model;
图3是本实用新型所述一种节能环保塑料加工机的俯视图;Fig. 3 is a top view of an energy-saving and environment-friendly plastic processing machine described in the utility model;
图4是本实用新型所述一种节能环保塑料加工机中塑料模具下壳、挤压上模具、环形切割刀、加热片和滑层相配合的局部剖面图;Fig. 4 is a partial cross-sectional view of the cooperation of the plastic mold lower shell, the extrusion upper mold, the annular cutting knife, the heating sheet and the sliding layer in an energy-saving and environment-friendly plastic processing machine according to the utility model;
图中,1、条形承载基座;2、加工台;3、圆形承载基座;4、旋转驱动装置;5、转动圆盘;6、折形支撑架;7、竖直支撑圆柱;8、塑料模具下壳;9、水平滑轨;10、移动块;11、弧形支撑架;12、圆形盖板;13、转动圆板;14、电控推杆;15、升降块;16、挤压上模具;17、支撑环形架;18、环形加热壳;19、环形加热电阻丝;20、控制器;21、双节摆动臂;22、折形遮挡壳;23、制冷风机;24、强力吸铁块;25、拉动把手;26、万向轮;27、环形切割刀;28、加热片;29、条形垃圾承载盒;30、滑层;31、市电接口。In the figure, 1. Strip bearing base; 2. Processing table; 3. Round bearing base; 4. Rotary driving device; 5. Rotating disk; 6. Folding support frame; 7. Vertical support cylinder; 8. Plastic mold lower shell; 9. Horizontal slide rail; 10. Moving block; 11. Arc support frame; 12. Circular cover plate; 13. Rotating circular plate; 14. Electric push rod; 15. Lifting block; 16. Extrusion upper mold; 17. Supporting ring frame; 18. Ring heating shell; 19. Ring heating resistance wire; 20. Controller; 21. Double-section swing arm; 22. Folding shielding shell; 24. Strong iron-absorbing block; 25. Pulling handle; 26. Universal wheel; 27. Ring cutter; 28. Heating sheet; 29. Strip garbage carrying box;
具体实施方式Detailed ways
下面结合附图对本实用新型进行具体描述,如图1-4所示,一种节能环保塑料加工机,包括条形承载基座1,所述条形承载基座1上表面设有加工台2,所述加工台2上表面设有塑料加工机构,所述加工台2前后两侧设有摆动制冷机构,所述塑料加工机构由固定连接在加工台2上表面中心处的圆形承载基座3、嵌装在圆形承载基座3上表面的旋转驱动装置4、套装在旋转驱动装置4驱动端上的转动圆盘5、固定连接在转动圆盘5上表面边缘处的多个折形支撑架6、固定连接在转动圆盘5上表面中心处且与多个折形支撑架6高度相匹配的多个竖直支撑圆柱7、螺纹连接在每个折形支撑架6和每个竖直支撑圆柱7上的塑料模具下壳8、固定连接在加工台2上表面且位于圆形承载基座3两侧的一组水平滑轨9、设置在每个水平滑轨9上的移动块10、固定连接在每个移动块10上表面的弧形支撑架11、设置在一组弧形支撑架11之间且位于塑料模具下壳8上方的圆形盖板12、嵌装在圆形盖板12下表面中心处的转动圆板13、固定连接在转动圆板13下表面且与多个折形支撑架6和多个竖直支撑圆柱7相对应的多组电控推杆14、套装在每个电控推杆14下端面上的升降块15、螺纹连接在每个升降块15下表面且与所对应塑料模具下壳8相对应的挤压上模具16、固定连接在每个塑料模具下壳8外侧表面下端的支撑环形架17、套装在每个塑料模具下壳8上且下端与所对应支撑环形架17上表面相搭接的环形加热壳18、设置在每个环形加热壳18内的环形加热电阻丝19共同构成的,所述条形承载基座1侧表面嵌装控制器20,所述控制器20与塑料加工机构中电控推杆14和环形加热电阻丝19通过导线分别电性连接;所述摆动制冷机构由铰链连接在加工台2前后两侧的两组双节摆动臂21、固定连接在每组双节摆动臂21端面上的折形遮挡壳22、固定连接在每个折形遮挡壳22内侧表面上的一组制冷风机23、固定连接在每个折形遮挡壳22端面上的强力吸铁块24、固定连接在每个折形遮挡壳22外侧表面上的拉动把手25共同构成的,所述控制器20与制冷风机23通过导线电性连接;所述条形承载基座1下表面边缘处固定连接四组万向轮26;每个所述挤压上模具16侧表面上均加工与所对应塑料模具下壳8相匹配的环形切割刀27;每个所述挤压上模具16内均嵌装加热片28,所述控制器20通过导线与加热片28电性连接;所述旋转驱动装置4由旋转端向上的旋转电机、套装在旋转电机旋转端上且与转动圆盘5相连接的固定夹手组成的;所述加工台2上表面且位于圆形承载基座3左右两侧均加工条形豁槽,每个所述条形豁槽内均设条形垃圾承载盒29;每个所述挤压上模具16外侧表面均套装滑层30;多个所述折形支撑架6的数量为5-8个,且均匀分布;所述条形承载基座1侧表面嵌装市电接口31,所述控制器20与市电接口31通过导线电性连接。The utility model is described in detail below in conjunction with the accompanying drawings. As shown in Figures 1-4, an energy-saving and environmentally friendly plastic processing machine includes a strip-shaped bearing base 1, and a processing table 2 is provided on the upper surface of the strip-shaped bearing base 1. , the upper surface of the processing table 2 is provided with a plastic processing mechanism, and the front and rear sides of the processing table 2 are provided with a swing refrigeration mechanism. 3. The rotary driving device 4 embedded on the upper surface of the circular bearing base 3, the rotating disk 5 set on the driving end of the rotating driving device 4, and a plurality of folding shapes fixedly connected to the edge of the upper surface of the rotating disk 5 Support frame 6, fixedly connected at the center of the upper surface of rotating disc 5 and a plurality of vertical support cylinders 7 matched with a plurality of folded support frames 6 heights, screwed on each folded support frame 6 and each vertical support frame The plastic mold lower shell 8 on the straight support cylinder 7, a group of horizontal slide rails 9 fixedly connected to the upper surface of the processing table 2 and located on both sides of the circular bearing base 3, and a moving block arranged on each horizontal slide rail 9 10. The arc-shaped support frame 11 fixedly connected to the upper surface of each moving block 10, the circular cover plate 12 arranged between a group of arc-shaped support frames 11 and located above the lower shell 8 of the plastic mold, embedded in the circular The rotating circular plate 13 at the center of the lower surface of the cover plate 12, the plurality of sets of electric control push rods 14 fixedly connected to the lower surface of the rotating circular plate 13 and corresponding to a plurality of folded support frames 6 and a plurality of vertical support cylinders 7, The lifting block 15 that is set on the lower end surface of each electric control push rod 14 is screwed on the lower surface of each lifting block 15 and the extrusion upper mold 16 corresponding to the corresponding plastic mold lower shell 8 is fixedly connected to each The support ring frame 17 at the lower end of the outer surface of the plastic mold lower shell 8, the annular heating shell 18 that is set on the upper surface of each plastic mold lower shell 8 and whose lower end overlaps with the upper surface of the corresponding support ring frame 17, is arranged on each ring heating The annular heating resistance wire 19 in the shell 18 is jointly constituted, and the side surface of the bar-shaped bearing base 1 is embedded with a controller 20, and the controller 20 is connected with the electric control push rod 14 and the annular heating resistance wire 19 in the plastic processing mechanism. They are respectively electrically connected by wires; the swing refrigeration mechanism is connected by hinges to two sets of double-section swing arms 21 on the front and rear sides of the processing table 2, and a folding shield shell 22 fixedly connected to the end surface of each set of double-section swing arms 21, A group of refrigeration fans 23 fixedly connected to the inner surface of each foldable shielding shell 22, a strong iron-absorbing block 24 fixedly connected to the end face of each foldable shielding shell 22, and fixedly connected to the outside of each foldable shielding shell 22 The pull handle 25 on the surface is jointly formed, and the controller 20 is electrically connected with the cooling fan 23 through a wire; the edge of the lower surface of the strip-shaped bearing base 1 is fixedly connected with four sets of universal wheels 26; each of the On the side surface of the extrusion upper mold 16, an annular cutting knife 27 matching the corresponding plastic mold lower shell 8 is processed; a heating chip 28 is embedded in each of the extrusion upper molds 16, and the controller 20 passes through a wire It is electrically connected with the heating plate 28; the rotating drive device 4 is set on the rotating end of the rotating motor by a rotating motor with the rotating end upwards and rotates It is composed of fixed grippers connected with discs 5; the upper surface of the processing table 2 and the left and right sides of the circular bearing base 3 are all processed with strip-shaped grooves, and each of the strip-shaped grooves is equipped with a strip-shaped groove. Garbage carrying box 29; the outer surface of each of the extrusion upper molds 16 is covered with a sliding layer 30; the number of the plurality of folding support frames 6 is 5-8, and they are evenly distributed; the strip-shaped carrying base A mains interface 31 is embedded on the side surface, and the controller 20 is electrically connected to the mains interface 31 through wires.
本实施方案的特点为,使用此装置时,人工或者机械从外部将需要进行注塑加工的塑料的原料分别的放置在每个塑料模具下壳8内,通过人工拉动,将一组移动块10在所对应的水平滑轨9上进行移动,使得转动圆盘5移动到多个塑料模具下壳8对应的位置上,通过位于加工台2侧表面上控制器20的控制,使得位于转动圆板13下表面的多个电控推杆14慢慢的向下伸展,使得位于每个电控推杆14下表面的升降块15带着挤压上模具16不断的向下运动,直到与所对应的塑料模具下壳8进行重合,将内部的塑料原料进行挤压,便于制造空心的塑料产品,其中多个塑料模具下壳8均通过折形支撑架6或者竖直支撑圆柱7与位于加工台2上表面的圆形承载基座3上的旋转驱动装置4进行连接,在进行挤压之后,会将多余的塑料原料挤出塑料模具下壳8内,其中转动圆板13通过圆形盖板12与一组位于移动块10上表面的弧形支撑架11进行连接,通过控制,使得旋转驱动装置4内的旋转电机进行转动,通过固定夹手带动转动圆盘5进行转动,通过中间一系列的配合,使得转动圆板13在所圆形盖板12下表面进行转动,转动速度可调整,便于将内部的塑料原料进行转动均匀,使得成型良好,其中每个塑料模具下壳8均可以在所对应的折形支撑架6或者竖直支撑圆柱7上拧动下来,也便于更换不同的模具,其中每个挤压上模具16也便于在所对应的升降块15下表面拧动下来,便于根据不同的成型要求,更换内部空心的形状,其中位于每个塑料模具下壳8外侧的环形加热壳18内的环形加热电阻丝19便于通过控制进行加热,对内部的塑料模具下壳8内的原料进行适当的加热,使得内部原料均匀成型,加热完毕之后,通过控制停止加热,可以放置在空气中自然冷却,一种使用比较方便,人工参与较多,比较节约能源,便于回收废料,减少对环境的污染,通过再次加热原料,使得均匀成型的塑料加工装置。The feature of this embodiment is that when using this device, manually or mechanically place the plastic raw materials that need to be injected into the lower shell 8 of each plastic mold from the outside, and manually pull a group of moving blocks 10 in the Move on the corresponding horizontal slide rail 9, so that the rotating disk 5 moves to the corresponding position of the lower shells 8 of a plurality of plastic molds, and through the control of the controller 20 on the side surface of the processing table 2, the rotating disk 13 A plurality of electric control push rods 14 on the lower surface slowly extend downwards, so that the lifting block 15 located on the lower surface of each electric control push rod 14 moves downward continuously with the extrusion upper mold 16 until the corresponding The lower shells 8 of the plastic molds are overlapped to extrude the internal plastic raw materials to facilitate the manufacture of hollow plastic products. The lower shells 8 of the plastic molds are all connected to the processing table 2 through the folded support frame 6 or the vertical support cylinder 7. The rotary drive device 4 on the circular bearing base 3 on the upper surface is connected. After extrusion, the excess plastic raw material will be extruded into the lower shell 8 of the plastic mold, wherein the rotating circular plate 13 passes through the circular cover plate 12 It is connected with a group of arc-shaped support frames 11 located on the upper surface of the moving block 10. Through control, the rotating motor in the rotating drive device 4 is rotated, and the rotating disk 5 is driven by the fixed clamp to rotate. Through a series of intermediate Cooperate so that the rotating circular plate 13 rotates on the lower surface of the circular cover plate 12, and the rotation speed can be adjusted, which is convenient to rotate the inner plastic raw materials evenly, so that the molding is good, and wherein each plastic mold lower shell 8 can be placed on the lower surface of the circular cover plate 12 Corresponding folded support frame 6 or vertical support column 7 are screwed down, and it is also convenient to replace different molds, wherein each extruded upper mold 16 is also convenient to be screwed down on the corresponding lifting block 15 lower surface, so as to facilitate Different molding requirements, change the shape of the inner hollow, wherein the annular heating resistance wire 19 in the annular heating shell 18 outside the lower shell 8 of each plastic mold is convenient for heating through control, and the raw materials in the lower shell 8 of the inner plastic mold Proper heating is carried out to make the internal raw materials uniformly formed. After the heating is completed, the heating can be stopped by controlling, and it can be placed in the air for natural cooling. One is more convenient to use, requires more manual participation, saves energy, facilitates waste recycling, and reduces environmental impact. The pollution, by reheating the raw material, makes a uniformly shaped plastic processing device.
在本实施方案中,首先在本装置空闲处安装三台电机驱动器,控制器20的型号为MAM-260A,将该型号控制器20的五个输出端子通过导线分别与三台电机驱动器、环形加热电阻丝19和加热片28的输入端连接,本领域人员在将三台电机驱动器通过导线与旋转驱动装置4内的旋转电机、电控推杆14自带的驱动电机和制冷风机23的接线端连接,将市电接口31处的输出端通过导线与控制器20的接电端进行连接。本领域人员通过控制器20编程后,完全可控制各个电器件的工作顺序,具体工作原理如下:使用此装置时,人工或者机械从外部将需要进行注塑加工的塑料的原料分别的放置在每个塑料模具下壳8内,通过人工拉动,将一组移动块10在所对应的水平滑轨9上进行移动,使得转动圆盘5移动到多个塑料模具下壳8对应的位置上,通过位于加工台2侧表面上控制器20的控制,使得位于转动圆板13下表面的多个电控推杆14慢慢的向下伸展,使得位于每个电控推杆14下表面的升降块15带着挤压上模具16不断的向下运动,直到与所对应的塑料模具下壳8进行重合,将内部的塑料原料进行挤压,便于制造空心的塑料产品,其中多个塑料模具下壳8均通过折形支撑架6或者竖直支撑圆柱7与位于加工台2上表面的圆形承载基座3上的旋转驱动装置4进行连接,在进行挤压之后,会将多余的塑料原料挤出塑料模具下壳8内,其中转动圆板13通过圆形盖板12与一组位于移动块10上表面的弧形支撑架11进行连接,通过控制,使得旋转驱动装置4内的旋转电机进行转动,通过固定夹手带动转动圆盘5进行转动,通过中间一系列的配合,使得转动圆板13在所圆形盖板12下表面进行转动,转动速度可调整,便于将内部的塑料原料进行转动均匀,使得成型良好,其中每个塑料模具下壳8均可以在所对应的折形支撑架6或者竖直支撑圆柱7上拧动下来,也便于更换不同的模具,其中每个挤压上模具16也便于在所对应的升降块15下表面拧动下来,便于根据不同的成型要求,更换内部空心的形状,其中位于每个塑料模具下壳8外侧的环形加热壳18内的环形加热电阻丝19便于通过控制进行加热,对内部的塑料模具下壳8内的原料进行适当的加热,使得内部原料均匀成型,加热完毕之后,通过控制停止加热,将一组折形遮挡壳22进行摆动,使得位于每个折形遮挡壳22端面上的强力吸铁块24进行吸附,通过控制,使得位于每个折形遮挡壳22内的制冷风机23进行工作,对内部的塑料进行定型,其中每个折形遮挡壳22均通过一组双节摆动臂21与加工台2侧表面进行连接,如果不进行制冷风干,可以放置在空气中自然冷却,其中位于每个塑料模具下壳8侧表面上的支撑环形架17便于搭接所对应的环形加热壳18的,其中位于每个折形遮挡壳22上表面的拉动把手25便于进行拉动,其中位于条形承载基座1下表面的万向轮26便于在推动下进行移动,使得此装置进行移动,其中位于每个挤压上模具16侧表面上的环形切割刀27便于在进行挤压时,将多余的塑料原料与塑料模具下壳8进行分离,便于通过制作完毕之后,人工清理收拾起来,便于回收利用,位于加工台2上表面的一组条形垃圾承载盒29便于收集,其中位于每个挤压上模具16内的加热片28也便于通过控制进行加热,使得原料中心处加热良好,成型更加的均匀,其中位于每个挤压上模具16外侧的滑层30便于出料不粘黏成品,其中在进行工作前,需要将位于条形承载基座1侧表面上的市电接口31与市电进行连接,给此装置接通电源,使得此装置运行,在进行加工的时候,人工参与比较多,但是人工参与的不需要使用很大力气,因此强度不是很大,电性元件使用比较少,也能达到均匀成型的效果,便于节约电能,回收多余废料,便于使得表面洁净,不污染环境,比较的环保。In this embodiment, at first three motor drivers are installed in the vacant place of the device, the model of the controller 20 is MAM-260A, and the five output terminals of the model controller 20 are respectively connected with the three motor drivers and the ring heating device through wires. The resistance wire 19 is connected to the input end of the heating plate 28, and those skilled in the art are connecting the three motor drivers with the rotating motor in the rotary drive device 4, the drive motor carried by the electric control push rod 14 and the terminals of the cooling fan 23 through the wires. To connect, the output terminal at the mains interface 31 is connected to the power terminal of the controller 20 through wires. After programming through the controller 20, those skilled in the art can fully control the working sequence of each electrical device. The specific working principle is as follows: when using this device, the raw materials of plastics that need to be injection-molded are placed in each In the lower shell 8 of the plastic mold, a group of moving blocks 10 are moved on the corresponding horizontal slide rails 9 by manual pulling, so that the rotating disk 5 moves to the corresponding positions of the lower shells 8 of the plastic mold. The control of the controller 20 on the side surface of the processing table 2 makes a plurality of electric control push rods 14 on the lower surface of the rotating circular plate 13 slowly extend downwards, so that the lifting block 15 on the lower surface of each electric control push rod 14 The extrusion upper mold 16 moves downward continuously until it coincides with the corresponding plastic mold lower shell 8, and the internal plastic raw material is extruded to facilitate the manufacture of hollow plastic products. Among them, multiple plastic mold lower shells 8 All are connected to the rotary drive device 4 on the circular bearing base 3 on the upper surface of the processing table 2 through a folded support frame 6 or a vertical support cylinder 7, and after extrusion, the excess plastic raw material will be extruded In the lower shell 8 of the plastic mold, the rotating circular plate 13 is connected with a group of arc-shaped support frames 11 located on the upper surface of the moving block 10 through the circular cover plate 12, and the rotating motor in the rotating drive device 4 is controlled to rotate The rotating disc 5 is driven by the fixed clamp to rotate, and through a series of coordination in the middle, the rotating disc 13 is rotated on the lower surface of the circular cover plate 12, and the rotating speed can be adjusted to facilitate the rotation of the internal plastic raw materials. uniform, so that the molding is good, wherein each plastic mold lower shell 8 can be screwed down on the corresponding folded support frame 6 or vertical support cylinder 7, and is also convenient to replace different molds, wherein each extruded upper mold 16 is also convenient to screw down on the lower surface of the corresponding lifting block 15, so as to change the shape of the inner hollow according to different molding requirements, wherein the annular heating resistance wire located in the annular heating shell 18 outside the lower shell 8 of each plastic mold 19 is convenient for heating through control, properly heating the raw materials in the lower shell 8 of the internal plastic mold, so that the internal raw materials are uniformly formed, after the heating is completed, the heating is stopped through control, and a group of folded shielding shells 22 are swung to make The strong iron block 24 located on the end face of each foldable shielding shell 22 is adsorbed, and through control, the cooling fan 23 located in each foldable shielding shell 22 is operated to shape the inner plastic, wherein each folded The shape shielding shells 22 are all connected to the side surface of the processing table 2 through a group of double-section swing arms 21. If they are not refrigerated and air-dried, they can be placed in the air for natural cooling, wherein the support on the side surface of the lower shell 8 of each plastic mold The ring frame 17 is convenient to overlap the corresponding annular heating shell 18, wherein the pull handle 25 on the upper surface of each folded shield shell 22 is convenient for pulling, and the universal wheel 26 on the lower surface of the bar-shaped bearing base 1 is convenient for pulling. Move under push, make this device move, wherein be positioned at the annular cut on the side surface of die 16 of each extruding The knife 27 is convenient to separate the excess plastic raw material from the lower shell 8 of the plastic mold when extruding, so that after the production is completed, it can be cleaned up manually and recycled, and a group of strip-shaped garbage positioned on the upper surface of the processing table 2 The carrying box 29 is convenient for collection, and the heating sheet 28 located in each extrusion upper die 16 is also convenient to be heated through control, so that the center of the raw material is well heated and the molding is more uniform. The sliding layer 30 is convenient for discharging and non-sticky finished products. Before working, it is necessary to connect the mains interface 31 located on the side surface of the strip-shaped bearing base 1 with the mains, and connect the power to the device, so that the device Operation, when processing, there is more manual participation, but manual participation does not require a lot of effort, so the strength is not very large, and the use of electrical components is relatively small, and the effect of uniform molding can also be achieved, which is convenient for saving electric energy and recycling. Excess waste is convenient to make the surface clean, does not pollute the environment, and is relatively environmentally friendly.
上述技术方案仅体现了本实用新型技术方案的优选技术方案,本技术领域的技术人员对其中某些部分所可能做出的一些变动均体现了本实用新型的原理,属于本实用新型的保护范围之内。The above-mentioned technical solutions only embody the preferred technical solutions of the technical solutions of the present utility model, and some changes that may be made by those skilled in the art to some parts thereof reflect the principles of the present utility model and belong to the protection scope of the present utility model within.
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