CN221136677U - Multi-point injection molding device for suspension floor - Google Patents
Multi-point injection molding device for suspension floor Download PDFInfo
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- CN221136677U CN221136677U CN202322752225.XU CN202322752225U CN221136677U CN 221136677 U CN221136677 U CN 221136677U CN 202322752225 U CN202322752225 U CN 202322752225U CN 221136677 U CN221136677 U CN 221136677U
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- storage tank
- inboard
- injection molding
- motor
- fixed bolster
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Injection Moulding Of Plastics Or The Like (AREA)
Abstract
The utility model discloses a multi-point injection molding device for a suspension floor, which comprises a fixed bottom plate, a fixed bracket, a storage tank, a motor bin, a feed inlet, a water pump, a lifting assembly, a heating and stirring assembly and an exhaust assembly, wherein the fixed bottom plate is fixedly connected with the fixed bracket; the utility model discloses a heating stirring device for a material storage tank, including fixed bolster, motor storehouse, lifting assembly, heating stirring assembly, air discharge assembly, air pump, fixed bolster, storage tank and air discharge assembly. Compared with the prior art, the utility model has the advantages that: the utility model can stir and heat injection molding raw materials, can remove air in the raw materials, and can prevent bubbles from being generated during injection molding.
Description
Technical Field
The utility model relates to the technical field of suspension floors, in particular to a multipoint injection molding device for a suspension floor.
Background
At present all produce through single-point injection moulding one shot forming when producing suspension floor, the injection moulding divide into single-point injection moulding and multiple spot injection moulding, and the former exists only can produce the floor of little specification when moulding plastics, and the uneven of moulding plastics can appear in the floor of big specification, can't produce fast, and the circumstances such as the production degree of difficulty is big, and the latter does not have these problems, easy operation, and the production degree of difficulty is little, can produce and design bigger size specification, thicker floor, and the product performance of production is stable, and it is even to mould plastics.
The utility model discloses a suspension floor is with multiple spot device of moulding plastics that patent number CN210820564U among the prior art, which comprises a supporting rack, fixedly connected with mounting panel on the support frame, the mounting groove has been seted up in the mounting panel, fixedly connected with motor in the mounting groove, the motor output is connected with the pivot, pivot tip fixedly connected with rotary disk, the rotary disk rotates with mounting panel one side to be connected, rotary disk lateral wall fixedly connected with a plurality of demoulding mechanism, fixedly connected with first gear on the motor output, first gear rotates to be connected with drive mechanism. When the multi-point injection molding is carried out, the motor rotates at fixed time, the intermittent rotation of the mold positioned on the circular arc blocks is realized through the rotating shaft and the rotating disc, the multi-point injection molding machine carries out injection molding on the mold when the mold is stopped at a designated position, the motor drives the mold on the next circular arc block to carry out injection molding, and the rapid multi-point injection molding is realized and the production efficiency is improved.
However, the prior art patents suffer from several drawbacks:
(1) The multipoint injection molding device for the suspended floor is not provided with a heating stirring component, and because the hardness of the raw materials is high and the melting is insufficient, the nozzle of an injection molding machine can not normally spray out the melted raw materials, so that the injection molding process is difficult, the production efficiency is affected, the raw materials are not sufficiently melted, and the molecular structure and the performance inside the multipoint injection molding device can not reach the optimal state, so that the performances of the suspended floor such as wear resistance, compression resistance, tensile resistance and the like are affected.
(2) The multipoint injection molding device for the suspended floor is not provided with an exhaust component, and in the injection molding process, raw material internal air can expand at high temperature to form bubbles, and the bubbles can cool inside a product to form obvious melting marks, so that the appearance quality and the service performance of the suspended floor are affected.
Disclosure of utility model
The utility model aims to overcome the technical defects and provide the multi-point injection molding device for the suspended floor, which can stir and heat injection molding raw materials, can remove air in the raw materials and prevent bubbles from being generated during injection molding.
In order to solve the problems, the technical scheme of the utility model is as follows: a multi-point injection molding device for a suspension floor comprises a fixed bottom plate, a fixed support, a storage tank, a motor bin, a feed inlet, a water pump, a lifting assembly, a heating and stirring assembly and an exhaust assembly; the utility model discloses a heating stirring device for a material storage tank, including fixed bolster, motor storehouse, lifting assembly, heating stirring assembly, air discharge assembly, air pump, fixed bolster, storage tank and air discharge assembly.
Further, the tank wall inboard of storage tank is equipped with the rotary tank, the inboard of rotary tank is equipped with the revolving tube, the tank wall inboard of revolving tube is equipped with the empty slot, the inboard of empty slot is equipped with heating module, one side of heating module is equipped with electric heating pipe, the outside of revolving tube is equipped with the tooth's socket, the top of storage tank is equipped with motor one, one side of motor one is equipped with the gear, gear and tooth's socket meshing.
Further, the top of storage tank is equipped with the blast pipe, the inboard of blast pipe is equipped with solid fixed ring one, the inboard of blast pipe is equipped with mount one, one side of mount one is equipped with spout one, the inboard of spout one is equipped with the traveller one, the one end of traveller one is equipped with baffle one, the inboard of spout one is equipped with spring one.
Further, the inboard of blast pipe is equipped with solid fixed ring two, the inboard of blast pipe is equipped with mount two, one side of mount two is equipped with spout two, the inboard of spout two is equipped with the slide post two, the one end of slide post two is equipped with baffle two, the inboard of spout two is equipped with spring two, the one end of blast pipe is equipped with the filter screen, the top of blast pipe is equipped with the piston tube, the inboard of piston tube is equipped with the piston plate, the top of piston plate is equipped with the piston rod, the top of storage tank is equipped with motor two, one side of motor two is equipped with dwang one, one end of dwang is equipped with dwang two, dwang one is connected with dwang two rotation, be equipped with the connecting axle between dwang two and the piston rod, dwang two and connecting axle rotation are connected.
Further, an output pipe is arranged on one side of the water pump, a hose is arranged on one side of the output pipe, and a spray head is arranged at one end of the hose.
Further, the inboard of fixed bolster is equipped with spacing post, the inboard of fixed bolster is equipped with the screw thread axle, screw thread axle and fixed baseplate swivelling joint, the top of screw thread axle is equipped with the rotation axis, the outside of rotation axis is equipped with conical gear one, the inboard of fixed bolster is equipped with the motor three, one side of motor three is equipped with conical gear two, conical gear one and conical gear two meshing, the inboard of fixed bolster is equipped with the lifter plate, lifter plate and spacing post sliding connection, lifter plate and screw thread axle threaded connection, the lifter plate be equipped with the screw hole, shower nozzle and screw hole threaded connection.
Compared with the prior art, the utility model has the advantages that:
(1) The multipoint injection molding device for the suspended floor is provided with the heating and stirring assembly, the raw materials for multipoint injection molding of the suspended floor are usually thermoplastic materials such as polyurethane or polyethylene, and in the multipoint injection molding process, the raw materials need to be heated to a certain temperature, so that the raw materials have good fluidity and are convenient for injection molding.
(2) The multipoint injection molding device for the suspended floor is provided with the exhaust component, so that the generation of bubbles and melting marks can be effectively reduced by exhausting the air in the raw materials, and the surface quality and the internal structure of the suspended floor are improved. This helps improving the overall quality and performance of the product, and the discharge of air inside the raw materials helps improving the fluidity of the molten raw materials, reducing the resistance in the injection molding process, and making the injection molding process more stable. Therefore, the production efficiency can be improved, and the rejection rate can be reduced.
Drawings
Fig. 1 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
FIG. 2 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
FIG. 3 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
Fig. 4 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
Fig. 5 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
Fig. 6 is a fifth block diagram of the multi-point injection molding apparatus for a floating floor according to the present utility model.
Fig. 7 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
FIG. 8 is a block diagram of a multi-point injection molding apparatus for a floating floor according to the present utility model.
Fig. 9 is a block diagram seventh of a multi-point injection molding apparatus for a floating floor according to the present utility model.
As shown in the figure: 1. a fixed bottom plate; 2. a fixed bracket; 3. a storage tank; 4. a motor bin; 5. a feed inlet; 6. a water pump; 7. a lifting assembly; 8. heating and stirring the component; 9. an exhaust assembly; 10. a rotary groove; 11. a rotating tube; 12. a hollow groove; 13. a heating module; 14. an electric heating tube; 15. tooth slots; 16. a first motor; 17. a gear; 18. an exhaust pipe; 19. a first fixed ring; 20. a first fixing frame; 21. a first chute; 22. a first sliding column; 23. a first baffle; 24. a first spring; 25. a second fixing ring; 26. a second fixing frame; 27. a second chute; 28. a second sliding column; 29. a second baffle; 30. a second spring; 31. a filter screen; 32. a piston tube; 33. a piston plate; 34. a piston rod; 35. a second motor; 36. rotating the first rod; 37. a second rotating rod; 38. a connecting shaft; 39. an output pipe; 40. a hose; 41. a spray head; 42. a limit column; 43. a threaded shaft; 44. a rotation shaft; 45. a first conical gear; 46. a third motor; 47. a second bevel gear; 48. a lifting plate; 49. and (3) a threaded hole.
Detailed Description
Specific embodiments of the present utility model will be further described below with reference to the accompanying drawings. Wherein like parts are designated by like reference numerals.
It should be noted that the words "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
In order to make the contents of the present utility model more clearly understood, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
As shown in fig. 1 to 9, the multi-point injection molding device for the suspended floor comprises a fixed bottom plate 1, a fixed bracket 2, a storage tank 3, a motor bin 4, a feed inlet 5, a water pump 6, a lifting assembly 7, a heating and stirring assembly 8 and an exhaust assembly 9; the fixed bolster 2 is located the top of fixed baseplate 1, and storage tank 3 is located the inboard of fixed bolster 2, and motor storehouse 4 is located the top of storage tank 3, and pan feeding mouth 5 is located the top of storage tank 3, and water pump 6 is located the bottom of storage tank 3, and lifting assembly 7 is located the inboard of fixed bolster 2, and heating stirring subassembly 8 is located the inboard of storage tank 3, and exhaust assembly 9 is located the top of storage tank 3.
An output pipe 39 is arranged on one side of the water pump 6, a hose 40 is arranged on one side of the output pipe 39, a spray head 41 is arranged at one end of the hose 40, a limit post 42 is arranged on the inner side of the fixed support 2, a threaded shaft 43 is arranged on the inner side of the fixed support 2, the threaded shaft 43 is rotationally connected with the fixed bottom plate 1, a rotating shaft 44 is arranged at the top end of the threaded shaft 43, a first conical gear 45 is arranged on the outer side of the rotating shaft 44, a third motor 46 is arranged on the inner side of the fixed support 2, a second conical gear 47 is arranged on one side of the third motor 46, the first conical gear 45 is meshed with the second conical gear 47, a lifting plate 48 is arranged on the inner side of the fixed support 2, the lifting plate 48 is in sliding connection with the limit post 42, the lifting plate 48 is in threaded connection with the threaded shaft 43, a threaded hole 49 is formed in the lifting plate 48, and the spray head 41 is in threaded connection with the threaded hole 49.
The inner side of the tank wall of the storage tank 3 is provided with a rotary tank 10, the inner side of the rotary tank 10 is provided with a rotary pipe 11, the inner side of the tank wall of the rotary pipe 11 is provided with a hollow tank 12, the inner side of the hollow tank 12 is provided with a heating module 13, one side of the heating module 13 is provided with an electric heating pipe 14, the outer side of the rotary pipe 11 is provided with a tooth slot 15, the top end of the storage tank 3 is provided with a motor I16, one side of the motor I16 is provided with a gear 17, and the gear 17 is meshed with the tooth slot 15.
The top of the storage tank 3 is provided with an exhaust pipe 18, the inner side of the exhaust pipe 18 is provided with a first fixing ring 19, the inner side of the exhaust pipe 18 is provided with a first fixing frame 20, one side of the first fixing frame 20 is provided with a first sliding groove 21, the inner side of the first sliding groove 21 is provided with a first sliding column 22, one end of the first sliding column 22 is provided with a first baffle plate 23, the inner side of the first sliding groove 21 is provided with a first spring 24, the inner side of the exhaust pipe 18 is provided with a second fixing ring 25, the inner side of the exhaust pipe 18 is provided with a second fixing frame 26, one side of the second fixing frame 26 is provided with a second sliding groove 27, the inner side of the second sliding groove 27 is provided with a second sliding column 28, one end of the second sliding column 28 is provided with a second baffle plate 29, the inner side of the second sliding groove 27 is provided with a second spring 30, one end of the exhaust pipe 18 is provided with a filter screen 31, the top end of the exhaust pipe 18 is provided with a piston tube 32, the inner side of the piston tube 32 is provided with a piston plate 33, the top end of the piston plate 33 is provided with a second motor 35, one side of the second motor 35 is provided with a first rotating rod 36, one end of the rotating rod 36 is provided with a second rotating rod 37, the rotating rod 36 is rotatably connected with the second rotating rod 37, a connecting shaft 38 is rotatably, and the second rotating rod 37 is rotatably connected with the connecting shaft 38.
In specific use, injection molding raw materials are added into the storage tank 3 from the feed inlet 5, the heating module 13 is started to enable the electric heating pipe 14 to be electrified and heated, the first motor 16 is started to enable the gear 17 to rotate, the rotary pipe 11 with the tooth grooves 15 is started to drive the electric heating pipe 14 to rotate, heating and stirring of the injection molding raw materials are started, the fluidity of the injection molding raw materials is enhanced, and meanwhile, air in the injection molding raw materials is discharged.
The motor II 35 is started to enable the rotating rod I36 to rotate, the rotating rod II 37 is driven to rotate, the piston rod 34 and the piston plate 33 are driven to move up and down, the piston plate 33 is pressed down, the air extrusion baffle II 29 is enabled to discharge the exhaust pipe 18, the piston plate 33 is lifted to extract air in the storage tank 3, the motor II 35 continuously operates, and redundant air is continuously extracted.
According to the point of injection molding, the spray head 41 is spirally inserted into the corresponding threaded hole 49, the motor III 46 is started to enable the bevel gear II 47 to rotate, the bevel gear I45 is driven to drive the threaded shaft 43 to rotate, the lifting plate 48 is driven to descend so that the spray head 41 is inserted into the injection molding hole, and the water pump 6 is started to enable injection molding raw materials to be injected into the injection molding hole.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.
Claims (6)
1. The utility model provides a suspension floor is with multiple spot injection molding device which characterized in that: comprises a fixed bottom plate (1), a fixed bracket (2), a storage tank (3), a motor bin (4), a feed inlet (5), a water pump (6), a lifting component (7), a heating and stirring component (8) and an exhaust component (9);
the utility model discloses a heating stirring device for a material storage tank, including fixed bolster (2), heating stirring subassembly (8), motor storehouse (4), water pump (6) are located the top of fixed bolster (1), fixed bolster (2) are located the top of fixed bolster (1), storage tank (3) are located the inboard of fixed bolster (3), motor storehouse (4) are located the top of storage tank (3), pan feeding mouth (5) are located the top of storage tank (3), water pump (6) are located the bottom of storage tank (3), lifting unit (7) are located the inboard of fixed bolster (2), heating stirring subassembly (8) are located the inboard of storage tank (3), exhaust subassembly (9) are located the top of storage tank (3).
2. The multi-point injection molding apparatus for a floating floor according to claim 1, wherein: the novel energy-saving storage tank is characterized in that a rotary groove (10) is formed in the inner side of the tank wall of the storage tank (3), a rotary pipe (11) is arranged on the inner side of the rotary groove (10), an empty groove (12) is formed in the inner side of the tank wall of the rotary pipe (11), a heating module (13) is arranged on the inner side of the empty groove (12), an electric heating pipe (14) is arranged on one side of the heating module (13), a tooth groove (15) is formed in the outer side of the rotary pipe (11), a motor I (16) is arranged on the top end of the storage tank (3), a gear (17) is arranged on one side of the motor I (16), and the gear (17) is meshed with the tooth groove (15).
3. The multi-point injection molding apparatus for a floating floor according to claim 1, wherein: the top of storage tank (3) is equipped with blast pipe (18), the inboard of blast pipe (18) is equipped with solid fixed ring one (19), the inboard of blast pipe (18) is equipped with mount one (20), one side of mount one (20) is equipped with spout one (21), the inboard of spout one (21) is equipped with slide column one (22), the one end of slide column one (22) is equipped with baffle one (23), the inboard of spout one (21) is equipped with spring one (24).
4. A multi-point injection molding apparatus for a floating floor according to claim 3, wherein: the inside of blast pipe (18) is equipped with solid fixed ring two (25), the inboard of blast pipe (18) is equipped with mount two (26), one side of mount two (26) is equipped with spout two (27), the inboard of spout two (27) is equipped with slide post two (28), the one end of slide post two (28) is equipped with baffle two (29), the inboard of spout two (27) is equipped with spring two (30), the one end of blast pipe (18) is equipped with filter screen (31), the top of blast pipe (18) is equipped with piston tube (32), the inboard of piston tube (32) is equipped with piston plate (33), the top of piston plate (33) is equipped with piston rod (34), the top of storage tank (3) is equipped with motor two (35), one side of motor two (35) is equipped with dwang one (36), the one end of dwang two (37), dwang one (36) are connected with dwang two (37) rotation, be equipped with connecting axle (38) between dwang two (37) and piston rod (34), connecting axle (38) are connected with piston rod (38).
5. The multi-point injection molding apparatus for a floating floor according to claim 1, wherein: an output pipe (39) is arranged on one side of the water pump (6), a hose (40) is arranged on one side of the output pipe (39), and a spray head (41) is arranged at one end of the hose (40).
6. The multi-point injection molding apparatus for a floating floor according to claim 5, wherein: the inside of fixed bolster (2) is equipped with spacing post (42), the inboard of fixed bolster (2) is equipped with screw thread axle (43), screw thread axle (43) and fixed baseplate (1) swivelling joint, the top of screw thread axle (43) is equipped with rotation axis (44), the outside of rotation axis (44) is equipped with conical gear one (45), the inboard of fixed bolster (2) is equipped with motor three (46), one side of motor three (46) is equipped with conical gear two (47), conical gear one (45) and conical gear two (47) meshing, the inboard of fixed bolster (2) is equipped with lifter plate (48), lifter plate (48) and spacing post (42) sliding connection, lifter plate (48) and screw thread axle (43) threaded connection, be equipped with screw hole (49) of lifter plate (48), shower nozzle (41) and screw hole (49) threaded connection.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322752225.XU CN221136677U (en) | 2023-10-13 | 2023-10-13 | Multi-point injection molding device for suspension floor |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202322752225.XU CN221136677U (en) | 2023-10-13 | 2023-10-13 | Multi-point injection molding device for suspension floor |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN221136677U true CN221136677U (en) | 2024-06-14 |
Family
ID=91427943
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202322752225.XU Active CN221136677U (en) | 2023-10-13 | 2023-10-13 | Multi-point injection molding device for suspension floor |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN221136677U (en) |
-
2023
- 2023-10-13 CN CN202322752225.XU patent/CN221136677U/en active Active
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