CN212826465U - Double-port injection molding machine - Google Patents

Double-port injection molding machine Download PDF

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CN212826465U
CN212826465U CN202021502687.6U CN202021502687U CN212826465U CN 212826465 U CN212826465 U CN 212826465U CN 202021502687 U CN202021502687 U CN 202021502687U CN 212826465 U CN212826465 U CN 212826465U
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molding machine
injection molding
injection
embedding
top end
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CN202021502687.6U
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张鑫
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Anhui Haohui Electric Power Co ltd
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Anhui Haohui Electric Power Co ltd
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Abstract

The utility model belongs to the technical field of injection molding machines, in particular to a double-port injection molding machine, which comprises an injection molding machine main body, an injection molding machine shell, an injection mechanism and a fixing mechanism, wherein the surface of the injection molding machine main body is embedded and connected with the injection molding machine shell, one side of the injection molding machine shell is embedded and connected with the injection mechanism, the other side of the injection molding machine shell is embedded and connected with the fixing mechanism, the internal top of the injection mechanism is embedded and connected with a control box, the internal bottom of the injection mechanism is embedded and connected with a motor, the fixing mechanism is helpful to fix a mold at the top end of a fixer, thereby facilitating an operator to use the mold, further improving the practicability of the device, the injection mechanism is formed by combining a control box, a motor, a rotating shaft, a speed reducer, a heating connecting rod, therefore, the working speed and the accuracy of the device are improved, and the device has wide development prospect in the future.

Description

Double-port injection molding machine
Technical Field
The utility model relates to an injection molding machine technical field specifically is a two port injection molding machine.
Background
An injection moulding machine, also known as an injection moulding machine or an injection machine, is a main moulding device for making thermoplastic plastics or thermosetting plastics into plastic products of various shapes by using a plastic moulding mould, and is divided into a vertical type, a horizontal type and a full-electric type, wherein the injection moulding machine can heat the plastics and apply high pressure to the molten plastics to inject the plastics to fill a mould cavity, and the injection moulding machine can be divided into a vertical type, a horizontal type and a vertical and horizontal type according to the arrangement mode of an injection device and a mould locking device.
At present, the in-process that current injection molding machine hot melt plastics sent to the nozzle injection at the in-process of moulding plastics keeps warm and mobility is relatively poor, feeding line easily takes place to block up, and often once only can mould plastics to a mould at the in-process of moulding plastics, and production efficiency is lower and the cost is higher, can only carry a raw materials moreover and mould plastics, can't carry simultaneously to the raw materials of different types according to the demand and mould plastics, has reduced the practicality, and current device is intelligent low, and the operating means is loaded down with trivial details.
Therefore, how to design a double-port injection molding machine becomes a problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a two port injection molding machine to solve the intelligent low, the loaded down with trivial details and the low problem of work efficiency of operating means that provide among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a double-port injection molding machine comprises an injection molding machine main body, an injection molding machine shell, an injection mechanism and a fixing mechanism, wherein the surface of the injection molding machine main body is embedded and connected with the injection molding machine shell, one side of the injection molding machine shell is embedded and connected with the injection mechanism, the other side of the injection molding machine shell is embedded and connected with the fixing mechanism, the inside top of the injection mechanism is embedded and connected with a control box, the inside bottom of the injection mechanism is embedded and connected with a motor, the top of the motor is connected with a rotating shaft in a penetrating way, the middle part of the rotating shaft is connected with a speed reducer in a penetrating way, the top end of the rotating shaft is embedded and connected with a heating connecting rod, the two sides of the heating connecting rod are embedded and connected with stirring blades, the bottom embedding of fixed establishment is connected with flexible post, the top embedding of flexible post is connected with the bumper shock absorber, the top embedding of bumper shock absorber is connected with the circulator, the top embedding of circulator is connected with the fixer, the top embedding of fixer is connected with the mould, the inside swing joint of mould has the mandrel, the top through connection of mould has the filling opening, the top other end embedding of injection mechanism is connected with control panel, the bottom embedding of injection molding machine shell is connected with the base, the bottom embedding of base is connected with the support column.
Preferably, the other end of the pipeline is connected with a syringe in an embedding way.
Preferably, a temperature sensor is embedded and connected to the top of the storage box.
Preferably, the top end of the injection mechanism is connected with an alarm in an embedded manner.
Preferably, the injection mechanism is formed by combining a control box at the top inside the injection mechanism, a motor at the bottom inside the injection mechanism, a rotating shaft at the top of the motor, a speed reducer at the middle part of the rotating shaft, a heating connecting rod at the top end of the rotating shaft, stirring blades at two sides of the heating connecting rod, a storage box at one side inside the injection mechanism, a water pump at the top end of the storage box and a pipeline at the top end of the water pump.
Preferably, the fixing mechanism is formed by combining a telescopic column at the bottom of the fixing mechanism, a shock absorber at the top end of the telescopic column, a rotator at the top end of the shock absorber, a fixer at the top end of the rotator, a mould at the top end of the fixer, a core mould inside the mould and an injection opening at the top end of the mould.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this two port injection molding machine, injection mechanism are formed by control box, motor, rotation axis, reduction gear, the connecting rod that generates heat, stirring leaf, bin, water pump and pipeline combination jointly to reach the effect of carrying out the injection to the raw materials, injection mechanism helps making things convenient for operating personnel to inject the raw materials, thereby has improved the operating speed and the accuracy of device, and then great improvement work efficiency.
2. This two port injection molding machine, fixed establishment is formed by flexible post, bumper shock absorber, circulator, fixer, mould, mandrel and injection opening combination jointly to reach and carry out the effect of fixing to the mould, fixed establishment helps fixing the mould on fixer top, thereby makes things convenient for operating personnel to use the mould, and then has improved the practicality of device.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the overall cross-sectional structure of the present invention;
FIG. 3 is a schematic sectional view of the injection mechanism of the present invention;
fig. 4 is a schematic view of the sectional structure of the fixing mechanism of the present invention.
The labels in the figure are: 1. the injection molding machine comprises an injection molding machine body, 2, an injection molding machine shell, 3, an injection mechanism, 301, a control box, 302, a motor, 303, a rotating shaft, 304, a speed reducer, 305, a heating connecting rod, 306, a stirring blade, 307, a storage box, 308, a temperature sensor, 309, a water pump, 3010, a pipeline, 3011, an injector, 4, a fixing mechanism, 401, a telescopic column, 402, a shock absorber, 403, a rotator, 404, a fixer, 405, a mold, 406, a core mold, 407, an injection port, 5, a control panel, 6, an alarm, 7, a base, 8 and a supporting column.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a double-port injection molding machine comprises an injection molding machine main body 1, an injection molding machine shell 2, an injection mechanism 3 and a fixing mechanism 4, wherein the surface of the injection molding machine main body 1 is connected with the injection molding machine shell 2 in an embedded manner, one side of the injection molding machine shell 2 is connected with the injection mechanism 3 in an embedded manner, the other side of the injection molding machine shell 2 is connected with the fixing mechanism 4 in an embedded manner, the inner top of the injection mechanism 3 is connected with a control box 301 in an embedded manner, the inner bottom of the injection mechanism 3 is connected with an electric motor 302 in an embedded manner, the top of the electric motor 302 is connected with a rotating shaft 303 in a penetrating manner, the middle part of the rotating shaft 303 is connected with a speed reducer 304 in a penetrating manner, the top end of the rotating shaft 303 is connected with a heating connecting rod 305 in an embedded manner, the bottom embedding of fixed establishment 4 is connected with flexible post 401, the top embedding of flexible post 401 is connected with bumper shock absorber 402, the top embedding of bumper shock absorber 402 is connected with circulator 403, the top embedding of circulator 403 is connected with fixer 404, the top embedding of fixer 404 is connected with mould 405, the inside swing joint of mould 405 has the mandrel 406, the top through connection of mould 405 has injection mouth 407, the top other end embedding of injection mechanism 3 is connected with control panel 5, the bottom embedding of injection molding machine shell 2 is connected with base 7, the bottom embedding of base 7 is connected with support column 8.
Preferably, an injector 3011 is inserted into and connected to the other end of the pipeline 3010, when the raw material is delivered to the injector 3011 at the other end of the pipeline 3010 through the pipeline 3010 at the top end of the water pump 309, an operator controls the injector 3011 at the other end of the pipeline 3010 through the control panel 5, so that the injector 3011 at the other end of the pipeline 3010 starts to operate, and then the injector 3011 injects the raw material into the injection port 407 at the top end of the mold 405, and then injects the raw material into the mold, and the injectors 3011 are provided in two numbers, and the injectors 3011 are symmetrically arranged on the injection mechanism 3, and the two injectors 3011 help to accelerate the injection speed.
Preferably, the inside top embedded connection of storage box 307 has temperature-sensing ware 308, when the device is when the operation in-process, the inside temperature-sensing ware 308 at the inside top of microprocessor control storage box 307 of control box 301 begins to operate, and then temperature-sensing ware 308 monitors the inside temperature of storage box 307, and then temperature-sensing ware 308 is with relevant temperature data transmission to microprocessor, microprocessor handles data, and then show through control panel 5, thereby can realize carrying out data measurement often to the inside temperature of storage box 307, whether the inside temperature of detection storage box 307 is normal, and then make things convenient for operating personnel to look over, temperature-sensing ware 308 helps monitoring the inside temperature of storage box 307, whether the detection temperature is normal, thereby the intelligence of device has been improved.
Preferably, the top embedding of injection mechanism 3 is connected with alarm 6, operating personnel begins to start through 5 controlling means of control panel, thereby the microprocessor controlling means of the inside middle part of control box 301 begins to operate, and then alarm 6 on 3 tops of injection mechanism begins to operate, and then microprocessor monitors the operational aspect of device, the inside a plurality of sensors that are provided with of device, if the device appears the short circuit or receives the damage, the sensor is information transmission to microprocessor, microprocessor handles data, and then control alarm 6 begins to report to the police, thereby remind whether operating personnel detection device is normal, alarm 6 helps reminding operating personnel to detect each instrument in the device, whether detection device is normal, thereby the security of device has been improved.
Preferably, the injection mechanism 3 is formed by combining a control box 301 at the top inside the injection mechanism 3, a motor 302 at the bottom inside the injection mechanism 3, a rotating shaft 303 at the top of the motor 302, a speed reducer 304 at the middle part of the rotating shaft 303, a heating connecting rod 305 at the top end of the rotating shaft 303, stirring blades 306 at two sides of the heating connecting rod 305, a storage box 307 at one side inside the injection mechanism 3, a water pump 309 at the top end of the storage box 307 and a pipeline 3010 at the top end of the water pump 309, when an operator needs to perform injection molding, the operator puts raw materials into the storage box 307 at one side inside the injection mechanism 3 through a discharge port at one end of the injection mechanism 3, so that the operator controls the injection mechanism 3 to start to operate through the control panel 5, further controls the water pump 309 at the top end of the storage box 307 to operate, the water pump 309 conveys the raw materials in the storage box 307 to, and then pour into the raw materials into the mould, the motor 302 of the inside bottom of injection mechanism 3 begins to operate simultaneously, thereby it is rotatory to drive the rotation axis 303 at motor 302 top, and then the connecting rod 305 that generates heat on rotation axis 303 top is rotatory along with rotation axis 303, the stirring leaf 306 that drives the connecting rod 305 both sides that generate heat stirs the raw materials in the bin 307, the connecting rod 305 surface that generates heat on rotation axis 303 top is provided with the heater strip, thereby the heater strip heats the raw materials in the bin 307, and then prevent that the raw materials from solidifying, injection mechanism 3 helps making things convenient for operating personnel to inject the raw materials, thereby the operating speed and the accuracy of device have been improved, and then great improvement work efficiency.
Preferably, the fixing mechanism 4 is formed by combining a telescopic column 401 at the bottom of the fixing mechanism 4, a shock absorber 402 at the top end of the telescopic column 401, a rotator 403 at the top end of the shock absorber 402, a holder 404 at the top end of the rotator 403, a mold 405 at the top end of the holder 404, a core mold 406 inside the mold 405 and an injection port 407 at the top end of the mold 405, when an operator needs to use the device, the operator can conveniently inject raw materials into the injection port 407 at the top end of the mold 405 by placing the mold 405 at the top end of the holder 404 on the rotator 403 at the top end of the shock absorber 402 and fixing the mold 405 through the holder 404 at the top end of the rotator 403, thereby completing injection molding, the telescopic column 401 at the bottom of the fixing mechanism 4 helps to change the height of the mold 405, the rotator 403 at the top end of the shock absorber 402 helps to change the angle of the mold 405, thereby facilitating the operator to, the bumper shock absorber 402 on telescopic column 401 top helps slowing down rocking of device to improve the stability of device, fixed establishment 4 helps fixing the mould 405 on fixer 404 top, thereby makes things convenient for operating personnel to use mould 405, and then has improved the practicality of device.
The working principle is as follows: firstly, the fixing mechanism 4 is formed by combining a telescopic column 401 at the bottom of the fixing mechanism 4, a shock absorber 402 at the top end of the telescopic column 401, a rotator 403 at the top end of the shock absorber 402, a fixer 404 at the top end of the rotator 403, a mould 405 at the top end of the fixer 404, a core mould 406 inside the mould 405 and an injection port 407 at the top end of the mould 405, when an operator needs to use the device, the operator can conveniently inject raw materials into the injection port 407 at the top end of the mould 405 by placing the mould 405 at the top end of the fixer 404 on the rotator 403 at the top end of the shock absorber 402 and fixing the mould 405 through the fixer 404 at the top end of the rotator 403, thereby completing injection moulding, the telescopic column 401 at the bottom of the fixing mechanism 4 is helpful for changing the height of the mould 405, the rotator 403 at the top end of the shock absorber 402 is helpful for changing the angle of the mould 405, thereby facilitating, the bumper shock absorber 402 on telescopic column 401 top helps slowing down rocking of device to improve the stability of device, fixed establishment 4 helps fixing the mould 405 on fixer 404 top, thereby makes things convenient for operating personnel to use mould 405, and then has improved the practicality of device.
Then, the injection mechanism 3 is composed of a control box 301 at the top inside the injection mechanism 3, a motor 302 at the bottom inside the injection mechanism 3, a rotating shaft 303 at the top of the motor 302, a speed reducer 304 at the middle part of the rotating shaft 303, a heating connecting rod 305 at the top end of the rotating shaft 303, stirring blades 306 at both sides of the heating connecting rod 305, a storage tank 307 at one side inside the injection mechanism 3, a water pump 309 at the top end of the storage tank 307 and a pipeline 3010 at the top end of the water pump 309, when an operator needs to perform injection molding, the operator puts raw materials into the storage tank 307 at one side inside the injection mechanism 3 through a discharge port at one end of the injection mechanism 3, so that the operator controls the injection mechanism 3 to start to operate through the control panel 5, further the injection mechanism 3 controls the water pump 309 at the top end of the storage tank 307 to operate, the water pump 309 conveys the raw materials in the, and then pour into the raw materials into the mould, the motor 302 of the inside bottom of injection mechanism 3 begins to operate simultaneously, thereby it is rotatory to drive the rotation axis 303 at motor 302 top, and then the connecting rod 305 that generates heat on rotation axis 303 top is rotatory along with rotation axis 303, the stirring leaf 306 that drives the connecting rod 305 both sides that generate heat stirs the raw materials in the bin 307, the connecting rod 305 surface that generates heat on rotation axis 303 top is provided with the heater strip, thereby the heater strip heats the raw materials in the bin 307, and then prevent that the raw materials from solidifying, injection mechanism 3 helps making things convenient for operating personnel to inject the raw materials, thereby the operating speed and the accuracy of device have been improved, and then great improvement work efficiency.
Next, an injector 3011 is inserted into and connected to the other end of the pipe 3010, when the raw material is delivered to the injector 3011 at the other end of the pipe 3010 through the pipe 3010 at the top end of the water pump 309, an operator controls the injector 3011 at the other end of the pipe 3010 through the control panel 5, so that the injector 3011 at the other end of the pipe 3010 starts to operate, and then the injector 3011 injects the raw material into the injection port 407 at the top end of the mold 405, and then injects the raw material into the mold, and the injectors 3011 are provided in two numbers, and the injectors 3011 are symmetrically arranged on the injection mechanism 3, and the two injectors 3011 contribute to increase the injection speed.
Next, the inside top embedded connection of bin 307 has temperature-sensing ware 308, when the device is when the operation, the temperature-sensing ware 308 at the inside top of microprocessor control bin 307 of control box 301 begins to operate, and then temperature-sensing ware 308 monitors the inside temperature of bin 307, and then temperature-sensing ware 308 transmits relevant temperature data to microprocessor, microprocessor handles data, and then show through control panel 5, thereby can realize carrying out data measurement often to the inside temperature of bin 307, whether the inside temperature of detection bin 307 is normal, and make things convenient for operating personnel to look over, temperature-sensing ware 308 helps monitoring the inside temperature of bin 307, whether the detection temperature is normal, thereby the intelligence of device has been improved.
Finally, the top embedding of injection mechanism 3 is connected with alarm 6, operating personnel begins to start through 5 controlling means of control panel, thereby the microprocessor controlling means of the inside middle part of control box 301 begins to operate, and then alarm 6 on 3 tops of injection mechanism begins to operate, and then microprocessor monitors the operational aspect of device, the inside a plurality of sensors that are provided with of device, if the device appears the short circuit or receives the damage, the sensor is information transmission to microprocessor, microprocessor handles data, and then control alarm 6 begins to report to the police, thereby remind operating personnel detection device whether normal, alarm 6 helps reminding operating personnel to detect each instrument in the device, whether detection device is normal, thereby the security of device has been improved, this is exactly this kind of two-port injection molding machine's theory of operation.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a two port injection molding machine, includes injection molding machine main part (1), injection molding machine shell (2), injection mechanism (3) and fixed establishment (4), its characterized in that: the surface embedding of injection molding machine main part (1) is connected with injection molding machine shell (2), one side embedding of injection molding machine shell (2) is connected with injection mechanism (3), the opposite side embedding of injection molding machine shell (2) is connected with fixed establishment (4), the inside top embedding of injection mechanism (3) is connected with control box (301), the inside bottom embedding of injection mechanism (3) is connected with motor (302), the top through connection of motor (302) has rotation axis (303), the middle part through connection of rotation axis (303) has reduction gear (304), the top embedding of rotation axis (303) is connected with heating connecting rod (305), the both sides embedding of heating connecting rod (305) is connected with stirring leaf (306), the inside one side embedding of injection molding machine body (3) is connected with bin (307), the top embedding of bin (307) is connected with water pump (309), the top through connection of water pump (309) has pipeline (3010), the bottom embedding of fixed establishment (4) is connected with flexible post (401), the top embedding of flexible post (401) is connected with bumper shock absorber (402), the top embedding of bumper shock absorber (402) is connected with circulator (403), the top embedding of circulator (403) is connected with fixer (404), the top embedding of fixer (404) is connected with mould (405), the inside swing joint of mould (405) has mandrel (406), the top through connection of mould (405) has filling opening (407).
2. A two-port injection molding machine as claimed in claim 1, wherein: the injection molding machine is characterized in that the other end of the top of the injection mechanism (3) is connected with a control panel (5) in an embedded mode, the bottom end of the injection molding machine shell (2) is connected with a base (7) in an embedded mode, and the bottom end of the base (7) is connected with a supporting column (8) in an embedded mode.
3. A two-port injection molding machine as claimed in claim 1, wherein: the other end of the pipeline (3010) is embedded and connected with an injector (3011).
4. A two-port injection molding machine as claimed in claim 1, wherein: a temperature sensor (308) is embedded and connected at the top of the interior of the storage box (307).
5. A two-port injection molding machine as claimed in claim 1, wherein: the top end of the injection mechanism (3) is embedded and connected with an alarm (6).
6. A two-port injection molding machine as claimed in claim 1, wherein: the injection mechanism (3) is formed by jointly combining a control box (301) at the top inside the injection mechanism (3), a motor (302) at the bottom inside the injection mechanism (3), a rotating shaft (303) at the top of the motor (302), a speed reducer (304) at the middle part of the rotating shaft (303), a heating connecting rod (305) at the top end of the rotating shaft (303), stirring blades (306) at two sides of the heating connecting rod (305), a storage box (307) at one side inside the injection mechanism (3), a water pump (309) at the top end of the storage box (307) and a pipeline (3010) at the top end of the water pump (309).
7. A two-port injection molding machine as claimed in claim 1, wherein: the fixing mechanism (4) is formed by combining a telescopic column (401) at the bottom of the fixing mechanism (4), a shock absorber (402) at the top end of the telescopic column (401), a rotator (403) at the top end of the shock absorber (402), a fixer (404) at the top end of the rotator (403), a mold (405) at the top end of the fixer (404), a core mold (406) inside the mold (405) and an injection port (407) at the top end of the mold (405).
CN202021502687.6U 2020-07-27 2020-07-27 Double-port injection molding machine Active CN212826465U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021502687.6U CN212826465U (en) 2020-07-27 2020-07-27 Double-port injection molding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021502687.6U CN212826465U (en) 2020-07-27 2020-07-27 Double-port injection molding machine

Publications (1)

Publication Number Publication Date
CN212826465U true CN212826465U (en) 2021-03-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021502687.6U Active CN212826465U (en) 2020-07-27 2020-07-27 Double-port injection molding machine

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CN (1) CN212826465U (en)

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