Water-cooled material conveying device for a parts injection molding machine

CN115742165BActive Publication Date: 2026-09-15东台市强圣精密铸造有限公司
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Patent Information

Application Number
CN202211410164.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-11
Publication Date
2026-09-15
Estimated Expiration
2042-11-11

AI Technical Summary

Technical Problem

[0004]本发明要解决的技术问题是:为了解决上述背景技术中存在的问题,提供一种改进的用于零部件注塑机的水冷输料设备,解决目前成型后的产品从水箱拿取和输送大多需要人工操作,费时费力,操作很不方便,也无法快速对产品表面进行风干,输送堆叠摆放也很麻烦的问题

Benefits of technology

(1)本发明的一种用于零部件注塑机的水冷输料设备在底部储液箱上的上侧装配凹槽内部活动装配有用于安装驱动电机的翻转调节框,通过驱动电机带动翻转调节框内的外部镂空输送带转动,从而可以快速将底部储液箱内的产品分离和输送,无需人工拿取,省时省力;

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to injection molding equipment cooling conveying technical field, especially a kind of water-cooled material conveying equipment for parts injection molding machine, including the bottom liquid storage tank of being installed in the lower end of injection molding machine discharge port, electric control hydraulic support rod, drive motor and adjusting motor.A kind of water-cooled material conveying equipment for parts injection molding machine of the present application is movably equipped with the turnover adjusting frame for installing drive motor in the upper side assembly groove on the bottom liquid storage tank, the external hollow conveying belt in turnover adjusting frame is rotated by drive motor, so that the product in bottom liquid storage tank can be quickly separated and transported, without manual taking, save time and effort;Height-adjustable lifting type air-drying frame is installed on the bottom liquid storage tank, synchronous driving cylindrical centrifugal driven fan and cylindrical centrifugal driven fan are rotated by adjusting motor, quickly remove the moisture on the surface of product and external hollow conveying belt, improve post-processing efficiency.
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Description

Technical Field

[0001] This invention relates to the field of cooling and conveying technology for injection molding equipment, and in particular to a water-cooled material conveying device for injection molding machines for parts. Background Technology

[0002] Injection molding machines are the main molding equipment used to mold thermoplastics into various shapes of plastic products. The injection molding machine completes the process by injecting heated plastic into the mold cavity, which is then cooled and solidified.

[0003] After casting, the mold of a traditional injection molding machine needs to separate the product inside. The separated product is then cooled by falling into a cooling water tank, and finally separated and placed inside the tank for subsequent processing. However, the retrieval and conveying from the water tank mostly require manual operation, which is time-consuming, labor-intensive, and inconvenient. It also makes it impossible to quickly dry the product surface, and the conveying and stacking are also troublesome. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide an improved water-cooled material conveying device for injection molding machines of parts, in order to solve the problems that currently, the removal and conveying of molded products from the water tank mostly require manual operation, which is time-consuming, labor-intensive, inconvenient, and cannot quickly dry the product surface. The conveying and stacking are also troublesome.

[0005] The technical solution adopted by the present invention to solve its technical problem is: a water-cooled material conveying device for a parts injection molding machine, including a bottom liquid storage tank installed at the lower end of the injection molding machine outlet, an electro-hydraulic support rod, a drive motor and an adjusting motor. The bottom liquid storage tank has an upper mounting groove on the right side of its upper surface. A flip-adjusting frame for installing the drive motor is movably mounted inside the upper mounting groove. A right movable mounting seat for installing the electro-hydraulic support rod is fixed on the right outer wall of the bottom liquid storage tank. A lifting air drying frame for installing the adjusting motor is mounted on the upper surface of the bottom liquid storage tank at the opening of the upper mounting groove.

[0006] The upper mounting groove is fixedly fitted with an internal mounting shaft for mounting the flip adjustment frame. The flip adjustment frame is movably fitted with a support transmission roller, a support drive roller, and an external hollow conveyor belt sleeved on the outside of the support transmission roller and the support drive roller through the internal mounting shaft.

[0007] The outer side of the flip adjustment frame is fixedly equipped with a lateral mounting seat for mounting the drive motor corresponding to the connecting end of the support drive roller. The drive motor is located on the rotating shaft at the end of the flip adjustment frame and is coaxially fixed with a main drive gear that meshes with and drives the support drive roller.

[0008] A first support platform and a second support platform are fixedly installed on the right side wall of the bottom liquid storage tank by an inclined fixed bracket, and a support transmission roller is movably assembled on the upper end of the first support platform and the second support platform.

[0009] The outer side of the flip adjustment frame has an outwardly protruding integrated lateral control rod. The top of the telescopic rod of the electro-hydraulic support rod is coaxially fixed with a top control tube that cooperates with the lateral control rod. The electro-hydraulic support rod is movably assembled with the flip adjustment frame by being sleeved on the outside of the lateral control rod through the top control tube.

[0010] The lifting drying frame includes an external assembly guide frame fixedly mounted to the opening of the upper assembly groove by bolts, an internal mounting cover set inside the external assembly guide frame, an integral lifting assembly frame fixed on both sides of the internal mounting cover, and a cylindrical centrifugal active fan movably mounted inside the internal mounting cover. The internal mounting cover is movably mounted to the external assembly guide frame by the lifting assembly frames on both sides, and the regulating motor is fixed coaxially with the cylindrical centrifugal active fan by inserting it into the inside of the cylindrical centrifugal active fan. The cylindrical centrifugal active fan is movably mounted to the internal mounting cover by the mounting shaft at the end away from the regulating motor and the regulating shaft on the outside of the regulating motor, respectively, by inserting them into the inner wall of the internal mounting cover.

[0011] The inner mounting cover has a lateral exhaust port on the outer wall of the upper mounting groove, and the inner mounting cover has lateral air inlets on the outer walls of both sides for installing internal metal filters.

[0012] An inclined guide seat that cooperates with the flip adjustment frame is slidably mounted on the inner wall of the left side of the bottom liquid storage tank.

[0013] An inclined water return plate is fixedly mounted on the right side wall of the bottom liquid storage tank, between the upper mounting groove and the right movable mounting seat.

[0014] The bottom fixing cover of the internally mounted cylindrical centrifugal driven fan is fixed to the upper end of the outer side of the internal assembly shaft by bolts. The cylindrical centrifugal driven fan and the cylindrical centrifugal active fan are connected by a belt drive assembly.

[0015] The beneficial effects of this invention are: (1) A water-cooled material conveying device for a component injection molding machine of the present invention has a rotating adjustment frame for installing a drive motor installed in the upper mounting groove on the bottom liquid storage tank. The drive motor drives the external hollow conveyor belt inside the rotating adjustment frame to rotate, thereby quickly separating and conveying the products in the bottom liquid storage tank without manual handling, saving time and effort. (2) A height-adjustable lifting drying frame is installed on the bottom liquid storage tank. The adjustable motor drives the cylindrical centrifugal driven fan and the cylindrical centrifugal active fan to rotate synchronously, quickly removing moisture from the product and the surface of the external hollow conveyor belt, and improving the efficiency of subsequent processing. (3) The angle of the flipping adjustment frame is adjusted by using an electro-hydraulic strut. While the angle of the flipping adjustment frame is being adjusted, the product can be freely transported to different support platforms as needed, which facilitates the placement and stacking of products later. An inclined guide seat, whose lifting and lowering are controlled by a tilting adjustment frame, is slidably mounted on the inner left side of the bottom liquid storage tank. This reduces the length of the tilting adjustment frame in the bottom liquid storage tank, facilitating the guidance of products inside the bottom liquid storage tank. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a schematic diagram of the structure of the present invention.

[0018] Figure 2 This is a partial structural diagram of the flip adjustment frame in this invention.

[0019] Figure 3 This is a schematic diagram of the internal structure of the lifting air-drying frame in this invention. Detailed Implementation

[0020] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0021] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0022] Figure 1 , Figure 2 and Figure 3The water-cooled material conveying device for a component injection molding machine shown includes a bottom liquid storage tank 1 installed at the lower end of the injection molding machine outlet, an electro-hydraulic support rod 2, a drive motor 3, and an adjusting motor. The upper surface of the bottom liquid storage tank 1 has an upper mounting groove on the right side. A flip-adjusting frame 6 for mounting the drive motor 3 is movably mounted inside the upper mounting groove. A right movable mounting seat 7 for mounting the electro-hydraulic support rod 2 is fixed on the right outer wall of the bottom liquid storage tank 1. A lifting air drying frame for mounting the adjusting motor is mounted on the upper surface of the bottom liquid storage tank 1 at the opening of the upper mounting groove.

[0023] To facilitate the upper conveying drive, an internal assembly shaft 8 for mounting the tilting adjustment frame 6 is fixedly installed inside the upper mounting groove. Inside the tilting adjustment frame 6, a support transmission roller 9, a support drive roller 10, and an external perforated conveyor belt 11 sleeved on the outside of the support transmission roller 9 and the support drive roller 10 are movably mounted via the internal assembly shaft.

[0024] To facilitate active control, a lateral mounting base 12 for mounting the drive motor 3 is fixedly installed on the outer side of the flip adjustment frame 6 corresponding to the connecting end of the support drive roller 10. The drive motor 3 is located on the rotating shaft at the end of the flip adjustment frame 6 and is coaxially fixed with a main drive gear 13 that meshes with and drives the support drive roller 10.

[0025] The side wall of the support drive roller 10 is provided with a circular toothed groove that meshes with the main drive gear 13.

[0026] To facilitate lateral separation and stacking, a first support platform 15 and a second support platform 16 are fixedly installed on the right side wall of the bottom liquid storage tank 1 via an inclined fixed bracket 14. Support transmission rollers 17 are movably mounted on the upper ends of the first support platform 15 and the second support platform 16.

[0027] To facilitate telescopic control and flipping, the outer side of the flipping adjustment frame 6 has an outwardly protruding integrated lateral control rod 18. The top of the telescopic rod of the electro-hydraulic strut 2 is coaxially fixed with a top control tube 19 that cooperates with the lateral control rod 18. The electro-hydraulic strut 2 is movably assembled with the flipping adjustment frame 6 by being sleeved on the outside of the lateral control rod 18 through the top control tube 19.

[0028] To facilitate height adjustment and air drying, the lifting air drying frame includes an external assembly guide frame 20 fixedly mounted to the opening of the upper assembly groove by bolts, an internal mounting cover 21 located inside the external assembly guide frame 20, an integral lifting assembly frame 22 fixed on both sides of the internal mounting cover 21, and a cylindrical centrifugal active fan 23 movably mounted inside the internal mounting cover 21. The internal mounting cover 21 is movably mounted to the external assembly guide frame 20 by the lifting assembly frames 22 on both sides. The adjustment motor is fixed coaxially with the cylindrical centrifugal active fan 23 by inserting it into the inside of the cylindrical centrifugal active fan 23. The cylindrical centrifugal active fan 23 is movably mounted to the internal mounting cover 21 by inserting the mounting shaft away from the adjustment motor end and the adjustment shaft outside the adjustment motor into the inner wall of the internal mounting cover 21, respectively.

[0029] To facilitate airflow, the inner mounting cover 21 has a lateral exhaust port 24 on the outer wall of the upper mounting groove, and lateral air inlets 25 with internal metal filters are provided on the outer walls of both sides of the inner mounting cover 21.

[0030] To facilitate lifting and lowering and to allow the internal products to be easily fed onto the external perforated conveyor belt 11, an inclined guide seat 26 that cooperates with the tilting adjustment frame 6 is slidably mounted on the inner wall of the left side of the bottom liquid storage tank 1.

[0031] A side guide rail is fixed on the inner left side of the bottom liquid storage tank 1. The inclined guide seat 26 is slidably assembled with the side guide rail outside the side guide rail through the side guide groove on the left side wall. A bottom control groove is opened on the right side of the lower end of the inclined guide seat 26. The left side of the flip adjustment frame 6 is inserted into the bottom control groove to move and assemble with the lower end of the inclined guide seat 26.

[0032] The inclined guide seat 26 adopts a hollow structure design to reduce resistance during the lifting process.

[0033] In order to facilitate the return of external cooling water to the bottom reservoir 1, an inclined water return plate 27 is fixedly installed on the right side wall of the bottom reservoir 1 between the upper mounting groove and the right movable mounting seat 7.

[0034] Cooling water on the upper surface of the inclined water return plate 27 flows back into the bottom liquid storage tank 1 from inside the upper mounting groove.

[0035] To facilitate the synchronous air drying operation at the bottom, the bottom fixing cover 29 of the internally mounted cylindrical centrifugal driven fan 28 is bolted to the upper end of the outer side of the internal assembly shaft 8. The cylindrical centrifugal driven fan 28 and the cylindrical centrifugal active fan 23 are connected by a belt drive assembly 30.

[0036] The belt drive assembly 30 includes a pulley coaxially fixed on the mounting shaft on the side of the cylindrical centrifugal driven fan 28 and the cylindrical centrifugal driving fan 23, and a drive belt sleeved on the outside of the pulley.

[0037] The present invention discloses a water-cooled material conveying device for a component injection molding machine. A tilting adjustment frame 6 for mounting a drive motor 3 is movably mounted inside an upper mounting groove on the bottom liquid storage tank 1. The drive motor 3 drives the external perforated conveyor belt 11 within the tilting adjustment frame 6 to rotate, thereby quickly separating and conveying products within the bottom liquid storage tank 1 without manual handling, saving time and effort. A height-adjustable lifting drying frame is installed on the bottom liquid storage tank 1. An adjusting motor synchronously drives a cylindrical centrifugal driven fan 28 and a cylindrical centrifugal active fan 23 to rotate, quickly removing moisture from the products and the surface of the external perforated conveyor belt 11, improving subsequent processing efficiency. An electro-hydraulic strut 2 drives the tilting adjustment frame 6 to adjust its angle. While adjusting the angle of the tilting adjustment frame 6, products can be freely conveyed to different support platforms as needed, facilitating subsequent product placement and stacking. A slanted guide seat 26, controlled by the tilting adjustment frame 6, is slidably mounted on the left inner wall of the bottom liquid storage tank 1, reducing the length of the tilting adjustment frame 6 within the bottom liquid storage tank 1 and facilitating the guidance of products inside the bottom liquid storage tank 1.

[0038] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A water-cooled material conveying device for a parts injection molding machine, comprising a bottom liquid storage tank (1) installed at the lower end of the injection molding machine outlet, an electro-hydraulic support rod (2), a drive motor (3), and an adjusting motor, characterized in that: The bottom liquid storage tank (1) has an upper mounting groove on the right side of its upper surface. A flip adjustment frame (6) for installing a drive motor (3) is movably mounted inside the upper mounting groove. A right movable mounting seat (7) for installing an electro-hydraulic strut (2) is fixed on the outer wall of the right side of the bottom liquid storage tank (1). A lifting air drying frame for installing an adjustment motor is mounted on the upper surface of the bottom liquid storage tank (1) at the opening of the upper mounting groove. The upper mounting groove is fixedly fitted with an internal mounting shaft (8) for mounting the flip adjustment frame (6). The flip adjustment frame (6) is movably fitted with a support transmission roller (9), a support drive roller (10) and an external hollow conveyor belt (11) sleeved on the outside of the support transmission roller (9) and the support drive roller (10) through the internal mounting shaft (8). The outer side of the flip adjustment frame (6) has an outwardly protruding integral structure side control rod (18). The top of the telescopic rod of the electro-hydraulic support rod (2) is coaxially fixed with a top control tube (19) that cooperates with the side control rod (18). The electro-hydraulic support rod (2) is sleeved on the outside of the side control rod (18) and movably assembled with the flip adjustment frame (6) through the top control tube (19). The lifting drying frame includes an external assembly guide frame (20) fixedly installed at the opening of the upper assembly groove by bolts, an internal mounting cover (21) set inside the external assembly guide frame (20), an integral lifting assembly frame (22) fixed on both sides of the internal mounting cover (21), and a cylindrical centrifugal active fan (23) movably assembled inside the internal mounting cover (21). The internal mounting cover (21) is movably assembled with the external assembly guide frame (20) by the lifting assembly frames (22) on both sides, which are fitted on the outside of the external assembly guide frame (20). The regulating motor is fixed coaxially with the cylindrical centrifugal active fan (23) by inserting it into the inside of the cylindrical centrifugal active fan (23). The cylindrical centrifugal active fan (23) is movably assembled with the internal mounting cover (21) by inserting the mounting shaft away from the regulating motor end and the regulating shaft outside the regulating motor into the inner wall of the internal mounting cover (21) respectively. The bottom liquid storage tank (1) is slidably fitted with an inclined guide seat (26) that cooperates with the flip adjustment frame (6) on the inner wall of the left side.

2. The water-cooled material conveying device for a parts injection molding machine according to claim 1, characterized in that: The outer side of the flip adjustment frame (6) is fixedly fitted with a lateral mounting seat (12) for mounting the drive motor (3) corresponding to the connecting end of the support drive roller (10). The drive motor (3) is located on the rotating shaft at the end of the flip adjustment frame (6) and is coaxially fixed with a main drive gear (13) that meshes with the support drive roller (10).

3. The water-cooled material conveying device for a parts injection molding machine according to claim 1, characterized in that: The bottom liquid storage tank (1) has a first support platform (15) and a second support platform (16) fixedly installed on the right side wall by an inclined fixed bracket (14). The upper ends of the first support platform (15) and the second support platform (16) are movably equipped with support transmission rollers (17).

4. A water-cooled material conveying device for a parts injection molding machine according to claim 1, characterized in that: The inner mounting cover (21) has a lateral exhaust port (24) on the outer wall of the upper mounting groove, and the inner mounting cover (21) has lateral air inlets (25) for internally mounted metal filters on both outer walls.

5. A water-cooled material conveying device for a parts injection molding machine according to claim 1, characterized in that: An inclined water return plate (27) is fixedly mounted on the right side wall of the bottom liquid storage tank (1) between the upper mounting groove and the right movable mounting seat (7).

6. A water-cooled material conveying device for a parts injection molding machine according to claim 5, characterized in that: The bottom fixing cover (29) of the internally mounted cylindrical centrifugal driven fan (28) is fixed to the upper end of the outer side of the internally mounted shaft (8) by bolts. The cylindrical centrifugal driven fan (28) and the cylindrical centrifugal active fan (23) are connected by a belt drive assembly (30).

Citation Information

Patent Citations

  • Injection molding machine with overturning type cooling demolding mechanism

    CN112172015A

  • Postoperative instrument conveying and recycling device with internal joint control structure

    CN114408453A