Horizontal injection molding machine with high working efficiency

Through the coordination of the guide rail assembly, drive wheel assembly, turntable and suction cup assembly, the horizontal injection molding machine can automatically remove products, solve the problems of product damage and safety hazards, and improve work efficiency and continuity.

CN223456391UActive Publication Date: 2025-10-21CHANGZHOU FEIZHIYUE VEHICLE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422919849.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-21
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

Horizontal injection molding machines are prone to damage when products fall automatically and require manual removal, posing a safety hazard and reducing work continuity and efficiency.

Method used

The cooperation of the guide rail assembly, driving wheel assembly, turntable, lifting adjustment assembly and suction cup assembly is adopted to realize the automatic removal of products, which are fixed and rotated by the suction cup to avoid manual operation.

Benefits of technology

It improves the working efficiency and safety of the injection molding machine, avoids damage to the products due to collision, and realizes continuous production without human intervention.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223456391U_ABST
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Abstract

The utility model relates to the technical field of horizontal injection molding machines, in particular to a horizontal injection molding machine with high working efficiency, which comprises a first rack, a second rack and an injection mold assembly, two guide rail assemblies are symmetrically arranged between the first rack and the second rack, a base is arranged between the two guide rail assemblies, and a driving wheel assembly is arranged on the base. A turntable is rotatably arranged on the upper surface of the base, a first motor is arranged at the bottom end of the base, a first lifting part is arranged on the upper surface of the turntable, a lifting adjusting assembly is arranged at the driving end of the first lifting part, a first mounting plate is arranged on the lifting adjusting assembly in a transmission mode, and a horizontal driving part is arranged on one side of the first mounting plate. A second mounting plate is arranged at the driving end of the horizontal driving part, and a suction cup assembly and a suction cup adjusting assembly are symmetrically arranged on the second mounting plate. The automatic feeding device does not need to be manually taken by a worker, is good in safety and working continuity, does not need to stop for waiting for a long time, is higher in working efficiency, and prevents products from being collided and damaged due to the fact that the products fall due to gravity.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to horizontal injection molding machine technical field, specifically is horizontal injection molding machine of high working efficiency. BACKGROUND

[0002] Horizontal injection molding machine is the most common injection molding machine type, its mold part and injection part are on the same horizontal center line, its mold is opened along the horizontal direction, and the product is formed and ejected by using the gravity effect to automatically fall down, but it still needs the manual product taking out from the mold below by the staff after falling down, in the process, in order to ensure the safety of the staff, the injection operation cannot be carried out, the product falls down and is easy to deform and damage due to the bumping, and the staff needs to enter the equipment to manually take out the falling product, which has certain safety hidden danger, and the shutdown process is long, the working continuity is poor, and the working efficiency needs to be improved. INVENTION CONTENTS

[0003] The utility model solves the technical problem in the prior art, provides a horizontal injection molding machine with high working efficiency to solve the problems in the background art.

[0004] The utility model discloses a horizontal injection molding machine with high working efficiency, which comprises a first rack, a second rack arranged at intervals on one side of the first rack, an injection mold assembly arranged between the first rack and the second rack, two guide rail assemblies symmetrically arranged between the first rack and the second rack, a base arranged between the two guide rail assemblies, a driving wheel assembly drivingly connected with the guide rail assembly and arranged on the base, a rotating disc rotatably arranged on the upper surface of the base, a first motor arranged at the bottom end of the base and configured to drive the rotating disc to rotate, a first lifting member arranged on the upper surface of the rotating disc, a lifting adjusting assembly arranged at the driving end of the first lifting member, a first mounting plate drivingly arranged on the lifting adjusting assembly, a horizontal driving member arranged at the top end of the first mounting plate away from the lifting adjusting assembly, a second mounting plate arranged at the driving end of the horizontal driving member, a suction cup assembly symmetrically arranged on the second mounting plate, and a suction cup adjusting assembly configured to drive the two suction cup assemblies to move closer to or away from each other.

[0005] Further, the guide rail assembly extends horizontally to the outside of the first rack and the second rack, and the guide rail assembly comprises a guide rail housing and an optical axis symmetrically arranged in the guide rail housing.

[0006] Further, the driving wheel assembly comprises a roller rotatably arranged on the outer side of the base and a second motor arranged on the inner side of the base, the driving end of the second motor is connected with the roller, and an annular groove matched with the optical axis is formed in the outer surface of the roller.

[0007] Further, the lifting adjusting assembly comprises a column housing, a first screw rod, a sliding rod, a first driving member, and a third motor, the column housing is arranged at the driving end of the first lifting member, the first screw rod is rotationally arranged in the column housing, the sliding rod is arranged at one side of the first screw rod, a first sliding groove is formed in the column housing along the length direction of the column housing and is in communication with the inside of the column housing, one side of the first driving member is connected to the bottom end of the first mounting plate away from the horizontal driving member, and the other side penetrates through the first sliding groove and is in transmission connection with the first screw rod and the sliding rod, and the third motor is arranged at the top end of the column housing and the driving end of the third motor is connected to the first screw rod.

[0008] Further, the suction disc adjusting assembly comprises support end portions symmetrically arranged on the second mounting plate, a second screw rod rotationally arranged between the two support end portions, two second driving members in transmission connection with the second screw rod, and a fourth motor arranged at one of the support end portions, wherein the suction disc assembly is fixedly connected to the second driving member, the driving end of the fourth motor is connected to the second screw rod, and the outer surface of the second screw rod is provided with two sections of outer threads with opposite threads.

[0009] The utility model discloses the beneficial effect is:

[0010] The utility model discloses the cooperation setting of first rack, second rack, injection mold assembly, guide rail assembly, drive wheel assembly, base, carousel, first motor, first lifting member, lifting adjusting assembly, first mounting plate, horizontal driving part, second mounting plate, suction disc assembly, suction disc adjusting assembly, after injection molding, first lifting member, lifting adjusting assembly drive first mounting plate, suction disc assembly moves to between the fixed mould, dynamic mould of injection mold and corresponds with the shaped product, and horizontal driving part drives suction disc assembly to be close to the shaped product, along with the ejection mechanism of injection mold assembly demoulding shaped product, and suction disc assembly is close to and is adsorbed fixed with shaped product, and horizontal driving part, lifting adjusting assembly, first lifting member reset, and drive wheel assembly drives base to move to the outside of first rack, second rack, and shaped product is taken away from horizontal injection molding machine, and first motor drives carousel rotation, and drives shaped product to form rotation on the base, and makes it face the conveyer belt equipment, and suction disc assembly can loosen shaped product, and reset into between first rack, second rack, and injection mold can continue injection work in its process, and need not manual taking of staff, and safety is good, and working continuity is good, and need not long time shutdown and wait, and working efficiency is higher, and prevent product from falling and appearing knock damage because of gravity. BRIEF DESCRIPTION OF DRAWINGS

[0011] The foregoing and other objects, features and advantages of the utility model will become more apparent from the following detailed description, when taken in conjunction with the accompanying drawings.

[0012] Fig. 1The utility model discloses a front view.

[0013] Fig. 2 The utility model discloses a lifting adjusting assembly structure schematic view.

[0014] Among them: 1, first rack, 2, second rack, 3, injection mold assembly, 4, guide rail assembly, 401, guide rail shell, 402, optical axis, 5, base, 6, drive wheel assembly, 601, gyro wheel, 602, second motor, 603, annular groove, 7, carousel, 8, first motor, 9, first lifting piece, 10, lifting adjusting assembly, 1001, stand shell, 1002, first screw rod, 1003, sliding rod, 1004, first driving part, 1005, third motor, 1006, first sliding slot, 11, first mounting plate, 12, horizontal drive part, 13, second mounting plate, 14, sucking disc assembly, 15, sucking disc adjusting assembly, 1501, support end, 1502, second screw rod, 1503, second driving part, 1504, fourth motor. DETAILED DESCRIPTION

[0015] The utility model makes further explanation from the following combined with the annex.

[0016] Refer to Figs. 1-2 As shown in the figure, the horizontal injection molding machine with high working efficiency, including first rack 1, the second rack 2 of interval arrangement in first rack 1 one side, set up between first rack 1, second rack 2 injection mold assembly 3, the both sides of injection mold assembly 3 are connected with first rack 1, second rack 2 upper surface respectively, first rack 1, second rack 2 between symmetrical and set up two guide rail assemblies 4, set up between two guide rail assemblies 4 base 5, base 5 on set up with the drive wheel assembly 6 of guide rail assembly 4 transmission connection, guide rail assembly 4 extends to first rack 1, second rack 2 outside horizontally, guide rail assembly 4 includes guide rail shell 401 and the optical axis 402 of symmetrical setting in guide rail shell 401 interior, drive wheel assembly 6 includes gyro wheel 601 of rotation setting in the outside of base 5, second motor 602 of setting in the inside of base 5, the drive end of second motor 602 is connected with gyro wheel 601, the outer surface of gyro wheel 601 is set up annular groove 603 with the matching of optical axis 402, second motor 602 drive gyro wheel 601 along the optical axis 402 of guide rail shell 401 reciprocating movement, drive base 5 to move to the just below of injection mold assembly 3, or move to the outside of horizontal injection molding machine.

[0017] The upper surface of the base 5 is rotationally provided with a rotating disc 7, and the bottom end of the base 5 is provided with a first motor 8 for driving the rotating disc 7 to rotate. The first motor 8 drives the rotating disc 7 to rotate, so as to drive the suction disc assembly 14 to face the molded product and the conveying belt mechanism, facilitating the suction disc assembly 14 to adsorb the molded product or place the molded product on the conveying belt mechanism. The upper surface of the rotating disc 7 is provided with a first lifting piece 9, and the driving end of the first lifting piece 9 is provided with a lifting adjusting assembly 10. The first lifting piece 9 and the second lifting assembly 10 cooperate with each other to drive the suction disc assembly 14 to move to different heights, so as to correspond to the molded product or correspond to the height of the conveying mechanism. The lifting adjusting assembly 10 is drivingly provided with a first mounting plate 11. The lifting adjusting assembly 10 comprises a column housing 1001, a first screw rod 1002, a sliding rod 1003, a first driving piece 1004, and a third motor 1005. The column housing 1001 is arranged at the driving end of the first lifting piece 9. The first screw rod 1002 is rotationally arranged in the column housing 1001. The sliding rod 1003 is arranged at one side of the first screw rod 1002. A first sliding groove 1006 is formed in the column housing 1001 in communication with the inside of the column housing 1001 along the length direction of the column housing 1001. One side of the first driving piece 1004 is connected to the bottom end of the first mounting plate 11 away from the horizontal driving piece 12, and the other side penetrates through the first sliding groove 1006 and is drivingly connected to the first screw rod 1002 and the sliding rod 1003. The first driving piece 1004 is threadedly connected to the first screw rod 1002 and slidingly connected to the sliding rod 1003. The third motor 1005 is arranged at the top end of the column housing 1001, and the driving end of the third motor 1005 is connected to the first screw rod 1002. The third motor 1005 drives the first screw rod 1002 to rotate, so as to drive the first driving piece 1004 to reciprocally move up and down along the first screw rod 1002 and the sliding rod 1003, and make the suction disc assembly 14 correspond to the molded product.

[0018] The top end of the first mounting plate 11 away from the lifting adjusting assembly 10 is provided with a horizontal driving piece 12. The driving end of the horizontal driving piece 12 is provided with a second mounting plate 13. The second mounting plate 13 is symmetrically provided with a suction disc assembly 14 and a suction disc adjusting assembly 15 for driving the two suction disc assemblies 14 to approach or move away from each other. The horizontal driving piece 12 and the first lifting piece 9 can be electric telescopic rods. The horizontal driving piece 12 drives the suction disc assembly 14 to approach the molded product. When the demolding assembly of the horizontal injection molding machine works to lift the molded product away from the mold, the suction disc assembly 14 adsorbs and fixes the molded product by using negative pressure. The suction disc assembly 14 is a prior art, which will not be described in detail here. The suction disc adjusting assembly 15 adjusts the distance between the suction disc assemblies 14 to meet different specifications of the molded product, and has better practicability.

[0019] The chuck adjusting assembly 15 comprises support ends 1501 symmetrically arranged on the second mounting plate 13, a second screw 1502 rotatably arranged between the two support ends 1501, two second driving members 1503 drivingly arranged on the second screw 1502, a fourth motor 1504 arranged on one of the support ends 1501, the chuck assembly 14 being fixedly connected with the second driving members 1503, a driving end of the fourth motor 1504 being connected with the second screw 1502, the second screw 1502 being provided with two sections of external threads with opposite threads on the outer surface, the two second driving members 1503 being threadedly connected with the two sections of external threads with opposite threads respectively, the fourth motor 1504 driving the second screw 1502 to rotate, and driving the two second driving members 1503 to move close to or away from each other, so as to adjust the distance between the chuck assemblies 14.

[0020] The utility model discloses the working process, after injection mold assembly injection molding, movable die and fixed die separate, first lifting spare, lifting adjusting assembly drive first mounting plate, chuck assembly move to fixed die, movable die between and with the corresponding product of molding, horizontal drive member drive chuck assembly close to the product of molding, with the stripping assembly of injection mold assembly will product of molding stripping, simultaneously, chuck assembly and product of molding close and will it adsorb fixed, horizontal drive member, lifting adjusting assembly, first lifting spare reset, drive wheel assembly drive base to first rack, second rack outside movement, with product of molding from horizontal injection molding machine, first motor drive turntable rotation, drive product of molding on the base form rotation, make it face the conveyer belt equipment, chuck assembly can release product of molding, reset into first rack, second rack between, in its process, injection mold can continue injection molding work, do not need staff to take manually, safety is good, and the working continuity is good, need not long time shutdown and wait, work efficiency is higher, prevent product of molding and fall due to gravity appear knock damage.

[0021] The above is only the preferred embodiment of the utility model, and does not limit the utility model in any form, and any simple modification, equivalent change of the technical essence according to the utility model to the above embodiment all fall into the protection scope of the utility model.

Claims

1. A horizontal injection molding machine having high productivity, characterized by: The invention comprises a first frame (1), a second frame (2) arranged at intervals on one side of the first frame (1), an injection mold assembly (3) arranged between the first frame (1) and the second frame (2), the two sides of the injection mold assembly (3) being connected to the upper surfaces of the first frame (1) and the second frame (2), two guide rail assemblies (4) being symmetrically arranged between the first frame (1) and the second frame (2), a base (5) being arranged between the two guide rail assemblies (4), a driving wheel assembly (6) being arranged on the base (5) and being transmission-connected to the guide rail assembly (4), a turntable (7) being rotatably arranged on the upper surface of the base (5), and a bottom end of the base (5) being provided with a A first motor (8) drives the turntable (7) to rotate, a first lifting member (9) is provided on the upper surface of the turntable (7), a lifting adjustment component (10) is provided at the driving end of the first lifting member (9), a first mounting plate (11) is provided on the lifting adjustment component (10), a horizontal driving member (12) is provided at the top end of the first mounting plate (11) away from the lifting adjustment component (10), a second mounting plate (13) is provided at the driving end of the horizontal driving member (12), a suction cup component (14) is symmetrically provided on the second mounting plate (13), and a suction cup adjustment component (15) for driving the two suction cup components (14) to move closer to or away from each other.

2. The horizontal injection molding machine with high work efficiency according to claim 1, characterized in that: The guide rail assembly (4) extends horizontally to the outside of the first frame (1) and the second frame (2), and the guide rail assembly (4) comprises a guide rail housing (401) and an optical axis (402) symmetrically arranged inside the guide rail housing (401).

3. The horizontal injection molding machine with high work efficiency according to claim 2, characterized in that: The driving wheel assembly (6) comprises a roller (601) rotatably arranged on the outside of the base (5), a second motor (602) arranged on the inside of the base (5), a driving end of the second motor (602) being connected to the roller (601), and an annular groove (603) matching the optical axis (402) being formed on the outer surface of the roller (601).

4. The horizontal injection molding machine with high work efficiency according to claim 1, characterized in that: The lifting and adjusting assembly (10) comprises a column housing (1001), a first screw rod (1002), a slide rod (1003), a first driving member (1004), and a third motor (1005); the column housing (1001) is arranged at the driving end of the first lifting member (9); the first screw rod (1002) is rotatably arranged inside the column housing (1001); the slide rod (1003) is arranged on one side of the first screw rod (1002); and one side of the column housing (1001) is opened along its length direction. A first slide groove (1006) is provided which is in communication with the interior of the column housing (1001); one side of the first driving member (1004) is connected to the bottom end of the first mounting plate (11) away from the horizontal driving member (12); the other side passes through the first slide groove (1006) and is transmission-connected to the first screw rod (1002) and the slide rod (1003); the third motor (1005) is provided at the top end of the column housing (1001), and the driving end of the third motor (1005) is connected to the first screw rod (1002).

5. The horizontal injection molding machine with high work efficiency according to claim 1, characterized in that: The suction cup adjusting assembly (15) comprises support ends (1501) symmetrically arranged on the second mounting plate (13), a second screw (1502) rotatably arranged between the two support ends (1501), two second driving members (1503) drivingly arranged on the second screw (1502), a fourth motor (1504) arranged on one of the support ends (1501), and a suction cup assembly (14) fixedly connected with the second driving members (1503). The driving end of the fourth motor (1504) is connected with the second screw (1502), and the outer surface of the second screw (1502) is provided with two sections of outer threads with opposite threads.