Granulating device for producing amino molding plastic

By designing the feeding assembly, bearing assembly, and extrusion assembly for the granulation device of amino molding compounds, the problem of difficult cleaning of residues after granulation of amino molding compounds was solved, and convenient cleaning operation was achieved.

CN223849675UActive Publication Date: 2026-01-30溧阳市乔森塑料有限公司
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Patent Information

Application Number
CN202423143661.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2026-01-30
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing granulation equipment often leaves residues inside after producing amino molding compounds, making cleaning difficult.

Method used

A granulation device comprising a feeding component, a carrying component, and an extrusion component was designed. By quantitatively conveying, carrying, and extruding raw materials, the residual amount is reduced, facilitating subsequent cleaning.

Benefits of technology

It effectively reduces the amount of residue during the granulation process of amino molding compounds and simplifies the cleaning process of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of granulation devices, and particularly relates to a granulation device for producing amino molding plastics, which comprises a bracket, and further comprises a feeding component, a granulating component, a discharging component, a granulating component and a control component, wherein the feeding component is used for quantitatively conveying raw materials for producing the amino molding plastics and is arranged at the top of the bracket; the bearing assembly is used for bearing the raw materials conveyed by the feeding assembly, and the bearing assembly is arranged in the support; and the extrusion assembly is used for extruding the raw materials on the bearing assembly and is arranged at the top end of the bracket. The amino molding plastic granulating device has the advantages that when amino molding plastic is granulated, the residual quantity of extruded raw materials can be reduced, so that a worker can conveniently carry out subsequent cleaning and other operations on the granulating device to a certain extent.
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Description

TECHNICAL FIELD

[0001] The utility model relates to granulating device technical field, concretely is a kind of for producing amino moulding compound's granulating device. BACKGROUND

[0002] Amino moulding compound is a kind of compound based on amino or amido functional group and aldehyde compound (such as formaldehyde) and is generated thermosetting resin.Reaction.The main components include urea formaldehyde resin (urea-formaldehyde resin, UF) and melamine formaldehyde resin (MF).Amino moulding compound is non-toxic, odorless, hard, scratch-resistant, colorless or translucent, with good electrical insulation, arc resistance and water resistance, suitable for manufacturing various bright plastic products.

[0003] At present, in the process of producing amino moulding compound, granulating device is usually used to granulate amino moulding compound to obtain granular amino moulding compound.But after the granulating device of the prior art is used to granulate amino moulding compound, there may be residual material squeezed in the granulating device, which increases the difficulty of cleaning the granulating device.Therefore, a granulating device for producing amino moulding compound is needed. SUMMARY

[0004] In view of the above and / or the problems existing in the prior art, the present utility model is proposed.

[0005] Therefore, the utility model aims to provide a granulating device for producing amino moulding compound, which can solve the above-mentioned problems.

[0006] To solve the above technical problems, according to one aspect of the present utility model, the present utility model provides the following technical scheme:

[0007] A granulating device for producing amino moulding compound, comprising a support, further comprising:

[0008] A feeding assembly for quantitatively conveying raw materials for producing amino moulding compound, and the feeding assembly is arranged on the top of the support;

[0009] A bearing assembly for bearing the raw materials conveyed by the feeding assembly, and the bearing assembly is arranged in the support;

[0010] An extrusion assembly for extruding the raw materials on the bearing assembly, and the extrusion assembly is arranged on the top end of the support.

[0011] As a preferred scheme of the granulating device for producing amino moulding compound, the bearing assembly comprises:

[0012] Supporting rods are fixedly installed on both sides of the middle part of the inner cavity of the support;

[0013] A bearing plate is fixedly installed between the two groups of supporting rods.

[0014] As a preferred scheme of the granulating device for producing amino molding plastics, the bearing assembly further comprises:

[0015] First through holes are formed in the bearing plate;

[0016] A square box is fixedly installed on the top of the bearing plate.

[0017] As a preferred scheme of the granulating device for producing amino molding plastics, the bearing assembly further comprises:

[0018] A box body is fixedly installed on the four sides of the square box;

[0019] A first air cylinder is fixedly installed in the box body.

[0020] As a preferred scheme of the granulating device for producing amino molding plastics, the bearing assembly further comprises:

[0021] Push plates are fixedly installed on the piston rods of the first air cylinders, and the push plates are in contact with the bearing plate, and the four groups of push plates are arranged in a rectangular shape;

[0022] Second air cylinders are fixedly installed on both sides of the middle part of the inner cavity of the support.

[0023] As a preferred scheme of the granulating device for producing amino molding plastics, the bearing assembly further comprises:

[0024] Square plates are fixedly installed on the piston rods of the second air cylinders, and the top of the square plate is in contact with the bottom of the bearing plate;

[0025] Second through holes are formed in the square plate, and the second through holes and the first through holes are arranged in a staggered manner.

[0026] As a preferred scheme of the granulating device for producing amino molding plastics, the extruding assembly comprises:

[0027] Third air cylinders are fixedly installed on both sides of the top end of the support;

[0028] Supporting plates are fixedly installed on the piston rods of the third air cylinders;

[0029] The support plate has several columns fixedly installed at its bottom, and each column has a first through hole directly below it.

[0030] As a preferred embodiment of the granulation device for producing amino molding compounds according to this utility model, the feeding assembly includes:

[0031] A ring-shaped weight sensor, which is fixedly mounted on the top of the bracket;

[0032] A material bin, which is fixedly mounted on top of a ring-shaped weight sensor;

[0033] The rigid pipe with a valve is fixedly installed on the bottom of the material box, and one end of the rigid pipe passes through the annular weight sensor, the bracket and the support plate in sequence.

[0034] Compared with existing technologies:

[0035] By setting up a feeding component for quantitatively conveying the raw materials for producing amino molding compounds, a carrying component for supporting the raw materials conveyed by the feeding component, and an extrusion component for extruding the raw materials on the carrying component, the residual amount of extruded raw materials can be reduced during the granulation of amino molding compounds, thereby facilitating subsequent cleaning and other operations of the granulation device to a certain extent. Attached Figure Description

[0036] Figure 1 This is a front view schematic diagram of the structure of this utility model;

[0037] Figure 2 This is a top view of a partial structure of the load-bearing component of this utility model;

[0038] Figure 3 This is a schematic diagram of the support structure of this utility model;

[0039] Figure 4 This is a schematic diagram of the square plate structure of this utility model.

[0040] In the figure: bracket 10, support rod 20, bearing plate 21, first through hole 22, square frame 23, box body 24, first cylinder 25, push plate 26, second cylinder 27, square plate 28, second through hole 29, third cylinder 30, support plate 31, column 32, ring weight sensor 40, material box 41, rigid pipe 42. Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0042] The utility model provides a granulating device for producing amino moulding compound, please refer to Figures 1-4 , including support 10,

[0043] Still include: for the raw material of loading assembly is transported is supported to raw material loading assembly, and the support assembly is equipped in support 10,

[0044] Support assembly includes: support rod 20, bearing plate 21, first through -hole 22, square 23, box 24, first air cylinder 25, push plate 26, second air cylinder 27, square plate 28, second through -hole 29,

[0045] Support 10's inner chamber middle part both sides are fixedly installed support rod 20, and bearing plate 21 is fixedly installed between two groups of support rod 20, and bearing plate 21 is set up with a plurality of first through -hole 22 on, and square 23 is fixedly installed on the top of bearing plate 21, and the four sides of square 23 are fixedly installed box 24, and first air cylinder 25 is fixedly installed in box 24, and the piston rod of first air cylinder 25 is fixedly installed push plate 26, and push plate 26 is in contact with bearing plate 21, and four groups of push plate 26 are rectangularly arranged, and the inner chamber middle part both sides of support 10 are fixedly installed second air cylinder 27, and the piston rod of second air cylinder 27 is fixedly installed square plate 28, and the top of square plate 28 is in contact with the bottom of bearing plate 21, and a plurality of second through -hole 29 are set up on square plate 28, and second through -hole 29 and first through -hole 22 are staggered arrangement, wherein, the diameter of first through -hole 22 and second through -hole 29 is same, in addition, from the state of looking down, the same row of a plurality of first through -hole 22 and a plurality of second through -hole 29 are linear arrangement.

[0046] Still include: for the raw material on support assembly is extruded and is extruded to the raw material on support assembly, and the extrusion assembly is equipped on the top of support 10,

[0047] Extrusion assembly includes: third air cylinder 30, support plate 31, stand 32,

[0048] The top both sides of support 10 are fixedly installed third air cylinder 30, and the piston rod of third air cylinder 30 is fixedly installed support plate 31, and the bottom of support plate 31 is fixedly installed a plurality of stands 32, and the directly below of stand 32 is equipped with first through -hole 22, wherein, the diameter of stand 32 and first through -hole 22 is same.

[0049] Still include: for the raw material of producing amino moulding compound is quantitatively transported and is loaded to the raw material of producing amino moulding compound, and the loading assembly is equipped on the top of support 10,

[0050] Loading assembly includes: annular weight sensor 40, material box 41, hard tube 42 with valve,

[0051] The annular weight sensor 40 is fixedly installed on the top of the support 10, the material box 41 is fixedly installed on the top of the annular weight sensor 40, the hard pipe 42 is fixedly installed on the bottom end of the material box 41, and one end of the hard pipe 42 sequentially penetrates the annular weight sensor 40, the support 10 and the support plate 31.

[0052] In specific use, the specific steps are as follows:

[0053] Step one: first, the raw materials for producing amino molding compound are placed in the material box 41, then, the collecting box is placed on the bottom end of the support 10 and directly below the square plate 28;

[0054] Step two: the raw materials in the material box 41 flow into the bearing plate 21 through the hard pipe 42 until the annular weight sensor 40 is within the set value, at this time, the raw materials falling on the bearing plate 21 are located in the inner cavity formed by the four groups of push plates 26;

[0055] Step three: the push plate 26 is reciprocally moved by the first cylinder 25 until the raw materials are pushed into the first through hole 22; in this process, the front and rear push plates 26 and the left and right push plates 26 do not work at the same time;

[0056] Step four: the support plate 31 is lowered by the third cylinder 30 to make the column 32 extrude the raw materials in the first through hole 22 to form particles;

[0057] Step five: the square plate 28 is moved by the second cylinder 27 until the second through hole 29 and the first through hole 22 are aligned, at this time, the column 32 is pushed by the third cylinder 30 to make the particles fall into the collecting box through the second through hole 29, then, the lower surface of the column 32 is leveled with the lower surface of the bearing plate 21 by the third cylinder 30, at this time, the square plate 28 is moved to scrape off the raw materials remaining at the bottom of the square plate 28, which are located in the first through hole 22, then, the first through hole 22 and the second through hole 29 are aligned to discharge the scraped raw materials, and in the later stage, the obtained particles can be screened to remove the broken materials.

[0058] Although the utility model has been described above with reference to the embodiments, various modifications can be made thereto, and equivalent replacements can be made to the components thereof, without departing from the scope of the utility model. In particular, as long as there is no structural conflict, each feature in the embodiments disclosed by the utility model can be combined with each other in any manner, and the combinations are not exhaustively described in the specification merely for the purpose of omitting the length and saving the resources. Therefore, the utility model is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A granulating device for producing amino molding compounds, comprising a support (10), characterized in that Also include: The feeding assembly for the quantitative feeding of raw materials for producing amino molding compound, and the feeding assembly is arranged on the top of the support (10); The carrying assembly for carrying the raw materials fed by the feeding assembly, and the carrying assembly is arranged in the support (10); The extrusion assembly for extruding the raw materials on the carrying assembly, and the extrusion assembly is arranged on the top end of the support (10).

2. A pelletizing device for producing amino molding compounds according to claim 1, characterized in that The carrying assembly comprises: Supporting rods (20), which are fixedly installed on both sides of the middle part of the inner cavity of the support (10); A carrying plate (21) is fixedly installed between the two groups of supporting rods (20).

3. A pelletizing apparatus for producing amino molding compounds according to claim 2, characterized in that The carrying assembly further comprises: A plurality of first through holes (22) are formed in the carrying plate (21); A square box (23) is fixedly installed on the top of the carrying plate (21).

4. The pelletizer for producing amino molding compound according to claim 3, wherein The carrying assembly further comprises: Box bodies (24) are fixedly installed on the four sides of the square box (23); A first air cylinder (25) is fixedly installed in the box body (24).

5. A pelletizing apparatus for producing an amino molding compound according to claim 4, wherein The carrying assembly further comprises: A push plate (26) is fixedly installed on the piston rod of the first air cylinder (25), the push plate (26) is in contact with the carrying plate (21), and the four groups of push plates (26) are arranged in a rectangular shape; Second air cylinders (27) are fixedly installed on both sides of the middle part of the inner cavity of the support (10).

6. A pelletizing apparatus for producing an amino molding compound according to claim 5, wherein The carrying assembly further comprises: A square plate (28) is fixedly installed on the piston rod of the second air cylinder (27), and the top of the square plate (28) is in contact with the bottom of the carrying plate (21); A plurality of second through holes (29) are formed in the square plate (28), and the second through holes (29) and the first through holes (22) are arranged in a staggered manner.

7. The pelletizer for producing amino molding compound according to claim 1, wherein The extrusion assembly comprises: Third air cylinders (30) are fixedly installed on both sides of the top end of the support (10); A supporting plate (31) is fixedly installed on the piston rod of the third air cylinder (30); A plurality of vertical columns (32) are fixedly installed on the bottom of the supporting plate (31), and a first through hole (22) is arranged directly below the vertical column (32).

8. A pelletizing apparatus for producing amino molding compounds according to claim 7, characterized in that The feeding assembly comprises: A ring-shaped weight sensor (40) is fixedly installed on the top of the support (10); A material box (41) is fixedly installed on the top of the ring-shaped weight sensor (40); A hard pipe (42) with a valve is fixedly installed on the bottom end of the material box (41), and one end of the hard pipe (42) sequentially penetrates the ring-shaped weight sensor (40), the support (10) and the supporting plate (31).