CN214027053U - Injection mold with blow water installation - Google Patents

Injection mold with blow water installation Download PDF

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Publication number
CN214027053U
CN214027053U CN202022056690.6U CN202022056690U CN214027053U CN 214027053 U CN214027053 U CN 214027053U CN 202022056690 U CN202022056690 U CN 202022056690U CN 214027053 U CN214027053 U CN 214027053U
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China
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pressure hose
wall
pipe joint
ferrule type
type pipe
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CN202022056690.6U
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Chinese (zh)
Inventor
叶智敏
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Kunshan Meister Precision Mould Co ltd
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Individual
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Abstract

The utility model discloses an injection mold with blow water installation, its technical scheme is: including connecting device, lower module, air-blower, servo motor two, connecting device includes cutting ferrule formula pipe connector one, cutting ferrule formula pipe connector one end inner wall fixed mounting high-pressure hose two inputs, air-blower output inner wall is equipped with the thread groove, cutting ferrule formula pipe connector one end fixed mounting be in air-blower output inner wall, high-pressure hose two output end fixed mounting cutting ferrule formula pipe connector three, the beneficial effects of the utility model are that: high-efficient blowing, through belt pulley winding nylon rope, then the nylon rope is drawing high-pressure hose from water pipe groove input and is being up to water pipe groove output and high-pressure hose can blow water always, makes the water in the water pipe groove blow totally to and withdraw high-pressure hose through rail wheel winding high-pressure hose and manage the groove output, increased mould life.

Description

Injection mold with blow water installation
Technical Field
The utility model relates to a mould field, concretely relates to injection mold with blow water installation.
Background
An injection mould is a tool for producing plastic products, and is also a tool for endowing the plastic products with complete structures and accurate sizes, injection moulding is a processing method used when producing some parts with complex shapes in batches, and particularly, the injection mould injects heated and melted plastics into a mould cavity from an injection moulding machine under high pressure, and a formed product is obtained after cooling and solidification, and simultaneously the surface maintenance of the mould is also taken into consideration, which directly influences the surface quality of products, and the emphasis is to prevent corrosion, so that the selection of a suitable, high-quality and professional antirust oil is particularly important, after the mould completes the production task, the residual injection moulding is carefully removed by adopting different methods according to different injection mouldings, the residual injection moulding and other sediments in the mould can be removed by using copper bars, copper wires and professional mould cleaning agents, then air drying is carried out, hard objects such as iron wires, steel bars and the like are forbidden to be cleaned so as to avoid scratching the surface, and rust spots caused by corrosive injection moulding are generated, grinding and polishing by using a grinder, spraying special antirust oil, and then placing the die in a dry, cool and dust-free place for storage.
The prior art has the following defects: the existing injection mold has no way to clean the residual water in the water pipe after the mold cavity is cooled by water, so that the interior of the mold can be rusted after a long time, and the service life of the mold is shortened.
Therefore, it is necessary to develop an injection mold with a water blowing device.
SUMMERY OF THE UTILITY MODEL
Therefore, the utility model provides an injection mold with blow water installation all is blowing from water pipe groove output to water pipe groove input through high-pressure hose to high-pressure hose comes the freedom in the water pipe groove, with the unable clean-up problem of the inside water of mould after solving the cooling.
In order to achieve the above object, the present invention provides the following technical solutions: an injection mold with a water blowing device comprises a connecting device, a lower module, an air blower and a servo motor II, wherein the connecting device comprises a first ferrule type pipe joint, the inner wall of one end of the first ferrule type pipe joint is fixedly provided with a second high-pressure hose input end, the inner wall of the output end of the air blower is provided with a thread groove, one end of the first ferrule type pipe joint is fixedly arranged on the inner wall of the output end of the air blower, the second output end of the high-pressure hose is fixedly provided with a third ferrule type pipe joint, the second output end of the servo motor is fixedly arranged on the inner wall of a track wheel, the inner wall of one end of the track wheel is fixedly provided with a bearing, the third ferrule type pipe joint is fixedly arranged on the inner wall of the bearing, the circumference of the third output end of the ferrule type pipe joint is fixedly provided with a rubber sealing ring, and the third output end of the ferrule type pipe joint is connected with the thread groove, and a second ferrule type pipe joint is fixedly installed in the middle of the rail wheel and connected with the vent groove, and one end of the second ferrule type pipe joint is fixedly provided with an input end of a high-pressure hose.
Preferably, the connecting device further comprises a flange, the two input ends of the high-pressure hose are fixedly installed on the flange, the output end of the air blower is fixedly installed on the flange, the inner wall of the flange is fixedly installed with an inner hexagon bolt, and one end of the inner hexagon bolt is fixedly installed with a nut.
Preferably, one end of the lower module is fixedly provided with the air blower, one end of the lower module is fixedly provided with the second servo motor, and the air blower and the second servo motor are divided into two groups.
Preferably, a water pipe groove is formed in the inner wall of the lower module, and the first high-pressure hose is fixedly mounted on the inner wall of the water pipe groove.
Preferably, the first servo motor is fixedly installed at the bottom of the lower module, and fixed blocks are fixedly installed at the output end of one high-pressure hose and are divided into two groups.
Preferably, one output end of the servo motor is fixedly installed on the inner wall of the belt pulley, the nylon ropes are symmetrically and fixedly installed in the middle of the belt pulley, and one end of each nylon rope is fixedly installed on the fixing block.
The utility model has the advantages that:
high-efficient blowing, through belt pulley winding nylon rope, then the nylon rope is drawing high-pressure hose from water pipe groove input and until water pipe groove output and high-pressure hose can blow water always, make the water in the water pipe groove blow totally, after water cools off the die cavity through the water pipe groove, start the air-blower earlier, the air-blower will be delivered the air duct in the rail wheel inner wall through two high-pressure hoses, and flow into high-pressure hose one from the air duct, then wind flows out and bloies water pipe groove input from a high-pressure hose output, and receive the water pipe groove output with high-pressure hose through rail wheel winding high-pressure hose, obvious increase mould life.
Drawings
Fig. 1 is a schematic structural diagram of embodiment 1 provided by the present invention;
fig. 2 is a left side view of embodiment 1 provided by the present invention;
FIG. 3 is an enlarged view of the rail wheel provided by the present invention;
FIG. 4 is an enlarged view of the pulley provided by the present invention;
fig. 5 is a left side view of the rail wheel provided by the present invention;
fig. 6 is a connection diagram of the blower according to embodiment 1 of the present invention;
fig. 7 is a connection diagram of a blower according to embodiment 2 of the present invention.
In the figure: the device comprises a connecting device 1, a first ferrule type pipe joint 11, a threaded groove 12, a flange 13, a hexagon socket head cap screw 14, a nut 15, a lower module 2, a water pipe groove 21, a first high-pressure hose 22, a first servo motor 23, a belt pulley 24, a nylon rope 25, a fixed block 26, a second ferrule type pipe joint 27, a blower 3, a second high-pressure hose 31, a second servo motor 4, a track wheel 41, a bearing 42, a third ferrule type pipe joint 43, a rubber sealing ring 44 and a vent groove 45.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are presented herein only to illustrate and explain the present invention, and not to limit the present invention.
Embodiment 1, referring to fig. 1 to 6, the utility model provides an injection mold with a water blowing device, which includes a connecting device 1, a lower module 2, an air blower 3, and a servo motor two 4;
further, the connecting device 1 comprises a first ferrule type pipe joint 11, a second high-pressure hose 31 is fixedly mounted on the inner wall of one end of the first ferrule type pipe joint 11, a thread groove 12 is formed in the inner wall of the output end of the air blower 3, one end of the first ferrule type pipe joint 11 is fixedly mounted on the inner wall of the output end of the air blower 3, a third ferrule type pipe joint 43 is fixedly mounted on the output end of the second high-pressure hose 31, a second servo motor 4 is fixedly mounted on the inner wall of a track wheel 41, a bearing 42 is fixedly mounted on the inner wall of one end of the track wheel 41, a vent groove 45 is formed in the inner wall of the track wheel 41, the third ferrule type pipe joint 43 is fixedly mounted on the inner wall of the bearing 42, a rubber sealing ring 44 is fixedly mounted on the circumference of the output end of the third ferrule type pipe joint 43, the output end of the third ferrule type pipe joint 43 is connected with the vent groove 45, a second ferrule type pipe joint 27 is fixedly mounted in the middle of the track wheel 41, the second ferrule type pipe joint 27 is connected with the vent groove 45, and one end of the first high-pressure hose 22 is fixedly mounted on one end of the second ferrule type pipe joint 27, specifically, the first ferrule type pipe joint 11 is a sealed pipe joint suitable for non-corrosive or corrosive media such as oil, water, gas and the like, the specification requirement of an aluminum plastic pipe is more flexible, and the first ferrule type pipe joint 11 has the characteristics of firm connection, good sealing performance and the like after being connected with a pipeline, the first ferrule type pipe joint 11 has the function of connecting a high-pressure hose 31 to a blower 3, the second high-pressure hose 31 has the fixing function on the first ferrule type pipe joint 11, the output end of the blower 3 is in threaded connection with the first ferrule type pipe joint 11, the blower 3 has the fixing function on the first ferrule type pipe joint 11, the blower 3 eccentrically runs by a rotor which is offset in a cylinder, and enables air to be sucked, compressed and discharged by volume change between blades in a rotor groove, the blower 3 is set to be YK6000-2, the blower 3 has the function of generating wind, and the blower 3 has the function of transmitting the wind to the high-pressure hose 31 through the first ferrule type pipe joint 11, the high-pressure hose II 31 has a fixing function on the ferrule type pipe joint III 43, the high-pressure hose 31 is a flexible pipeline capable of bearing high pressure, the high-pressure hose 31 has a ventilation function, the servo motor II 4 is an engine for controlling mechanical elements to operate in a servo system and is an auxiliary motor indirect speed change device, the servo motor II 4 is set to be HC-SFS, the servo motor II 4 has a rotation providing function, the servo motor II 4 has a fixing and driving function on the track wheel 41, the track wheel 41 has a fixing function on the bearing 42, the bearing 42 has a fixing and non-rotation maintaining function on the ferrule type pipe joint III 43, the ventilation groove 45 has a ventilation function, the rubber sealing ring 44 is an annular cover consisting of one or more parts and is fixed on one ferrule or gasket of the bearing and is in contact with the other ferrule or gasket or forms a narrow labyrinth gap, the lubricating oil is prevented from leaking and foreign matters are prevented from invading, the rubber sealing ring 44 has the function of preventing wind from flowing out, the three ferrule type pipe joints 43 have the fixing function on the rubber sealing ring 44, the high-pressure hose II 31 has the function of enabling the wind to flow into the vent groove 45 through the three ferrule type pipe joints 43, the track wheel 41 has the fixing function on the two ferrule type pipe joints 27, the two ferrule type pipe joints 27 have the fixing function on the high-pressure hose I22, the vent groove 45 has the function of enabling the wind to flow into the high-pressure hose I22 through the two ferrule type pipe joints 27, the high-pressure hose I22 has the function of circulating the wind, and the track wheel 41 has the function of enabling the high-pressure hose I22 to wind around the track wheel 41 through rotation.
Further, 2 one end fixed mounting air-blower 3 of lower module, 2 one end fixed mounting servo motor two 4 of lower module, air-blower 3 and two groups of servo motor two 4 total, it is specific, lower module 2 has the fixed action to air-blower 3 and servo motor two 4.
Further, the inner wall of the lower module 2 is provided with a water pipe groove 21, a first high-pressure hose 22 is fixedly mounted on the inner wall of the water pipe groove 21, specifically, the water pipe groove 21 has a water flowing effect, the water pipe groove 21 has a fixing effect on the first hose 22, and the first hose 22 has a blowing effect on the water pipe groove 21.
Further, a first servo motor 23 is fixedly installed at the bottom of the lower module 2, a first high-pressure hose 22 is fixedly installed at an output end of the fixed block 26, and the fixed blocks 26 are divided into two groups.
Further, output end fixed mounting of servo motor 23 is at belt pulley 24 inner wall, belt pulley 24 middle part symmetry fixed mounting nylon rope 25, nylon rope 25 one end fixed mounting fixed block 26, it is concrete, servo motor 23 has fixed and drive rotatory effect to belt pulley 24, belt pulley 24 has the fixed action to nylon rope 25, fixed block 26 has the fixed action to nylon rope 25, belt pulley 24 belongs to dish hub class part, general relative dimension is bigger, generally cast on the manufacturing process, forge as the owner, belt pulley 24 has the effect that makes nylon rope 25 twine belt pulley 24 through the rotation, nylon rope 25 has the effect of dragging to high-pressure hose 22 through fixed block 26.
The utility model discloses a use as follows: when the utility model is used, the input end of the second high-pressure hose 31 is connected with the inner wall of the output end of the blower 3 through the first ferrule type pipe joint 11 by screw thread, the third ferrule type pipe joint 43 of the output end of the second high-pressure hose 31 is fixed in the inner wall of the bearing 42 on the track wheel 41, the second ferrule type pipe joint 27 of the input end of the first high-pressure hose 22 is fixedly connected with the inner wall of the middle part of the track wheel 41, then the first high-pressure hose 22 is output and end-plugged into the water pipe groove 21, the nylon rope 25 on the belt pulley 24 is fixed on the fixed block 26 of the output end of the first high-pressure hose 22 at the output end of the water pipe groove 21, then the first servo motor 23 and the second servo motor 4 are opened, the high-pressure hose 21 on the track wheel 41 is wound by controlling the second servo motor 4, and the nylon rope 25 wound on the belt pulley 24 is released by controlling the first servo motor 23, the high-pressure hose 21 can return to the input end of the water pipe groove 21, when water cools the die cavity through the water pipe groove 21, the blower 3 is started firstly, the blower 3 can convey wind to the vent groove 45 in the inner wall of the rail wheel 41 through the second high-pressure hose 31, the wind flows into the first high-pressure hose 22 from the vent groove 45, then the wind flows out from the output end of the first high-pressure hose 22 and blows the input end of the water pipe groove 21, then the high-pressure hose 21 wound on the rail wheel 41 is released in a rotating mode through controlling the second servo motor 4, and meanwhile the nylon rope 25 on the belt pulley 24 is wound in a rotating mode through controlling the first servo motor 23, so that the high-pressure hose 21 can blow from the input end of the water pipe groove 21 to the output end of the water pipe groove 21.
Embodiment 2, referring to fig. 7, the utility model provides an injection mold with a water blowing device, which comprises a connecting device 1, a lower module 2, an air blower 3 and a servo motor II 4;
further, the connecting device 1 further comprises a flange 13, the mounting flange 13 is fixed at the input end of the second high-pressure hose 31, the mounting flange 13 is fixed at the output end of the air blower 3, the inner wall of the flange 13 is fixedly provided with an inner hexagon bolt 14, one end of the inner hexagon bolt 14 is fixedly provided with a nut 15, specifically, the flange 13 is also called a flange disc or a flange, the flange is a part for mutual connection between a pipe and the pipe, the second high-pressure hose 31 and the air blower 3 have a fixing effect on the flange 13, the flange 13 has a fixing effect on the inner hexagon bolt 14, and the connection between the inner hexagon bolt 14 and the nut 15 has a fixing effect on the connection between the second high-pressure hose 31 and the air blower 3.
The utility model discloses a use as follows: when the utility model is used, the flange 13 at the input end of the second high-pressure hose 31 is combined with the flange 13 at the output end of the air blower 3 and is fixed by the hexagon socket head cap screw 14 and the screw cap 15, the third ferrule type pipe joint 43 at the output end of the second high-pressure hose 31 is fixed in the inner wall of the bearing 42 on the track wheel 41, the second ferrule type pipe joint 27 at the input end of the first high-pressure hose 22 is fixedly connected with the inner wall at the middle part of the track wheel 41, then the output end of the first high-pressure hose 22 is plugged into the water pipe groove 21, the nylon rope 25 on the belt pulley 24 is fixed on the fixed block 26 at the output end of the first high-pressure hose 22 at the output end of the water pipe groove 21, then the first servo motor 23 and the second servo motor 4 are opened, the high-pressure hose 21 on the track wheel 41 is wound in a rotating way by controlling the second servo motor 4, and the nylon rope 25 wound on the belt pulley 24 is released in a rotating way by controlling the first servo motor 23, the high-pressure hose 21 can return to the input end of the water pipe groove 21, when water cools the die cavity through the water pipe groove 21, the blower 3 is started firstly, the blower 3 can convey wind to the vent groove 45 in the inner wall of the rail wheel 41 through the second high-pressure hose 31, the wind flows into the first high-pressure hose 22 from the vent groove 45, then the wind flows out from the output end of the first high-pressure hose 22 and blows the input end of the water pipe groove 21, then the high-pressure hose 21 wound on the rail wheel 41 is released in a rotating mode through controlling the second servo motor 4, and meanwhile the nylon rope 25 on the belt pulley 24 is wound in a rotating mode through controlling the first servo motor 23, so that the high-pressure hose 21 can blow from the input end of the water pipe groove 21 to the output end of the water pipe groove 21.
The above description is only a preferred embodiment of the present invention, and any person skilled in the art may modify the present invention or modify it into an equivalent technical solution by using the technical solutions described above. Therefore, any simple modifications or equivalent replacements made according to the technical solution of the present invention belong to the scope of the claimed invention as far as possible.

Claims (6)

1. The utility model provides an injection mold with blow water installation, includes connecting device (1), lower module (2), air-blower (3), two (4) of servo motor, its characterized in that: the connecting device (1) comprises a first ferrule type pipe joint (11), the inner wall of one end of the first ferrule type pipe joint (11) is fixedly provided with a second high-pressure hose (31) input end, the inner wall of the output end of the air blower (3) is provided with a thread groove (12), one end of the first ferrule type pipe joint (11) is fixedly arranged on the inner wall of the output end of the air blower (3), the second high-pressure hose (31) is fixedly provided with a third ferrule type pipe joint (43), the output end of the servo motor (4) is fixedly arranged on the inner wall of a track wheel (41), a bearing (42) is fixedly arranged on the inner wall of one end of the track wheel (41), the inner wall of the track wheel (41) is provided with a vent groove (45), the third ferrule type pipe joint (43) is fixedly arranged on the inner wall of the bearing (42), and a rubber sealing ring (44) is fixedly arranged on the circumference of the output end of the ferrule type three pipe joint (43), the output end of the third ferrule type pipe joint (43) is connected with the vent groove (45), the middle part of the track wheel (41) is fixedly provided with the second ferrule type pipe joint (27), the second ferrule type pipe joint (27) is connected with the vent groove (45), and one end of the second ferrule type pipe joint (27) is fixedly provided with the input end of the first high-pressure hose (22).
2. The injection mold with the water blowing device according to claim 1, wherein: connecting device (1) still includes flange (13), two (31) input end fixed mounting of high pressure hose flange (13), air-blower (3) output end fixed mounting flange (13), flange (13) inner wall fixed mounting hexagon socket head cap screw (14), hexagon socket head cap screw (14) one end fixed mounting nut (15).
3. The injection mold with the water blowing device according to claim 1, wherein: and one end of the lower module (2) is fixedly provided with the air blower (3), one end of the lower module (2) is fixedly provided with the second servo motor (4), and the air blower (3) and the second servo motor (4) are divided into two groups.
4. The injection mold with the water blowing device according to claim 1, wherein: the inner wall of the lower module (2) is provided with a water pipe groove (21), and the inner wall of the water pipe groove (21) is fixedly provided with the first high-pressure hose (22).
5. The injection mold with the water blowing device according to claim 1, wherein: the bottom of the lower module (2) is fixedly provided with a first servo motor (23), the output end of the first high-pressure hose (22) is fixedly provided with a fixed block (26), and the fixed blocks (26) are divided into two groups.
6. An injection mold with a water blowing device according to claim 5, characterized in that: output end fixed mounting is in belt pulley (24) inner wall in servo motor (23), belt pulley (24) middle part symmetry fixed mounting nylon rope (25), nylon rope (25) one end fixed mounting fixed block (26).
CN202022056690.6U 2020-09-18 2020-09-18 Injection mold with blow water installation Active CN214027053U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022056690.6U CN214027053U (en) 2020-09-18 2020-09-18 Injection mold with blow water installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022056690.6U CN214027053U (en) 2020-09-18 2020-09-18 Injection mold with blow water installation

Publications (1)

Publication Number Publication Date
CN214027053U true CN214027053U (en) 2021-08-24

Family

ID=77350099

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022056690.6U Active CN214027053U (en) 2020-09-18 2020-09-18 Injection mold with blow water installation

Country Status (1)

Country Link
CN (1) CN214027053U (en)

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Effective date of registration: 20211119

Address after: 215314 rooms 3 and 4, No. 358, Kanghui Road, Zhoushi Town, Kunshan City, Suzhou City, Jiangsu Province

Patentee after: Kunshan Meister Precision Mould Co.,Ltd.

Address before: 350007 No. 22, panzhai, Hongxing farm, Gaishan Town, Cangshan District, Fuzhou City, Fujian Province

Patentee before: Ye Zhimin