Drawing soap cooling and shaping die

By using a U-shaped inner cavity plate and L-shaped heat sink combined with an S-shaped cooling channel in the cooling and shaping mold of the pull-type soap, the problem of the cooling water pool on the side of the mold affecting the inconvenience of material removal is solved, and the pull-type soap can be quickly and completely removed and cooled evenly.

CN223948302UActive Publication Date: 2026-02-27TIANJIN HONGYA LUBRICATION POWDER MFG
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Patent Information

Application Number
CN202520333504.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-02-27
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

The existing technology has a problem with the cooling water pool connected to the side of the mold affecting the inconvenience of material removal for shaping and drawing soap.

Method used

A cooling and shaping mold for stringy soap was designed, which includes a lower mold and an upper mold. It adopts a U-shaped inner cavity plate and an L-shaped heat sink structure, combined with an S-shaped cooling channel, to achieve efficient flow of cooling water and heat dissipation, facilitating the quick removal and uniform cooling of stringy soap.

Benefits of technology

It improves the ease of separation between the pull-apart soap and the shaping mold, enhances cooling efficiency, ensures uniform cooling and shaping of the pull-apart soap, and solves the problem of inconvenient material handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a drawing soap cooling and shaping mould, which relates to the field of industrial drawing soap production and comprises a soap-shaped lower mould and a soap-shaped upper mould, the soap-shaped upper mould is correspondingly distributed at the right upper end of the soap-shaped lower mould, the inner side of the soap-shaped lower mould is provided with a mould cavity, a U-shaped inner cavity plate is inserted and clung to the cavity surface of the mould cavity, and the U-shaped inner cavity plate is connected with the soap-shaped lower mould. L-shaped cooling fins are welded to the outer surface of the U-shaped inner cavity plate, a connecting plate is welded to the upper end face of the U-shaped inner cavity plate, a heat insulation handle is fixed to the outer side face of the connecting plate, a cooling channel is formed in the soap-shaped lower mold, and the front end and the rear end of the cooling channel communicate with a cold water inlet and a cold water outlet correspondingly. The utility model solves the problem that the cooling water tank communicated with the side end of the die in the prior art affects the taking inconvenience of the shaped wire-drawing soap.
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Description

TECHNICAL FIELD

[0001] The utility model relates to industrial wire drawing soap production technical field, concretely relates to a wire drawing soap cooling and shaping mould. BACKGROUND

[0002] Industrial wire drawing soap is also called dry type wire drawing lubricant, which can play a lubricating performance in the steel strip processing deformation process, protect the steel strip, prevent the steel strip from being pulled, and the wire drawing soap is usually cooled and shaped into the required size by using a mould, through the search, the prior art (announcement number: CN202321145993.2) a wire drawing soap cooling and shaping mould, which is characterized in that: a sufficient amount of cold water is injected into the water storage pool, and when the wire drawing soap needs to be cooled and shaped, the molten material of the wire drawing soap is injected into the model groove of the multiple rows; the water pump is driven to run to use the water suction pipe to draw out the cold water in the water storage pool, so that the cold water is injected into the centralized tank through the upper delivery pipe, and then enters the multiple groups of shunt grating pipes through the multiple input pipes, so that the multiple groups of shunt grating pipes simultaneously cool the four sides of all the model grooves, so that the material in the multiple rows of model grooves can be simultaneously and quickly cooled; the cold water absorbs heat and is discharged from the multiple output pipes and released into the receiving pool for temporary storage; through the above-mentioned mode, the wire drawing soap can be quickly cooled, and the cooling effect of each direction in the model groove is relatively uniform, so that the probability of deformation of the wire drawing soap is reduced; after the hot water in the receiving pool is cooled, the valve is opened, so that the cold water in the receiving pool flows back to the water storage pool, so that the water can be recycled, but the cooling water pool connected with the side end of the mould in the prior art affects the taking of the shaped wire drawing soap. CONTENT OF THE UTILITY MODEL

[0003] In order to overcome the defects existing in the prior art, the wire drawing soap cooling and shaping mould is provided to solve the problem that the cooling water pool connected with the side end of the mould in the prior art affects the taking of the shaped wire drawing soap.

[0004] In order to achieve the above-mentioned purpose, the wire drawing soap cooling and shaping mould is provided, which comprises: a soap type lower mould and a soap type upper mould, the soap type lower mould is arranged on the upper end of the soap type upper mould,

[0005] The inside of the soap type lower mould is provided with a mould cavity, the cavity surface of the mould cavity is tightly inserted with a U-shaped inner cavity plate, the outer surface of the U-shaped inner cavity plate is welded with an L-shaped heat sink, the upper end surface of the U-shaped inner cavity plate is welded with a connecting plate, the outer side surface of the connecting plate is fixed with a heat insulation handle, the inside of the soap type lower mould is provided with a cooling groove, and the front end and the rear end of the cooling groove are respectively connected with a cold water inlet and a cold water outlet.

[0006] Further, the front surface of the soap type lower mould is provided with a cold water inlet, the rear surface of the soap type lower mould is provided with a cold water outlet, and the upper surface of the soap type lower mould is provided with a positioning hole.

[0007] Further, the upper soap mold lower surface is welded with positioning columns; and the positioning columns are correspondingly inserted into the positioning holes of the lower soap mold.

[0008] Further, the upper soap mold lower surface is welded with positioning columns; and the positioning columns are correspondingly inserted into the positioning holes of the lower soap mold.

[0009] Further, the upper soap mold upper end is provided with a soap injection opening, and the upper soap mold upper surface is connected with a hydraulic mechanism.

[0010] Further, the upper soap mold upper end is provided with a soap injection opening, and the upper soap mold upper surface is connected with a hydraulic mechanism.

[0011] Further, the upper soap mold upper end is provided with a soap injection opening, and the upper soap mold upper surface is connected with a hydraulic mechanism.

[0012] The beneficial effects of the drawing soap cooling and shaping mold are as follows: the U-shaped inner cavity plate embedded and inserted in the lower soap mold cavity is used to take out the drawing soap cooled and shaped in the cavity, so that the drawing soap cooled in the shaping mold can be quickly and completely taken out, the convenient separation effect of the drawing soap and the shaping mold is improved, the cooling groove with an S shape is distributed around the outside of the mold cavity, the cold water flows in the cooling groove, the cold water can take away the heat of the drawing soap on multiple surfaces, the drawing soap in the mold is uniformly cooled and shaped, the L-shaped heat sink on the outer side of the U-shaped inner cavity plate further radiates heat to the cooling groove, and the cooling efficiency of the drawing soap shaping mold is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Fig. 1 It is a front view structural schematic diagram of the drawing soap cooling and shaping mold.

[0014] Fig. 2 It is a front view structural schematic diagram of the drawing soap cooling and shaping mold.

[0015] Fig. 3 It is a front view structural schematic diagram of the drawing soap cooling and shaping mold.

[0016] Fig. 4 It is a front view structural schematic diagram of the drawing soap cooling and shaping mold.

[0017] In the drawing: 1, lower soap mold; 11, mold cavity; 12, positioning hole; 2, upper soap mold; 21, positioning column; 22, soap injection opening; 23, hydraulic mechanism; 24, limiting pressing plate; 3, U-shaped inner cavity plate; 31, heat insulation handle; 32, L-shaped heat sink; 33, limiting groove; 34, connecting plate; 4, cooling groove; 41, cold water inlet; 42, cold water outlet. DETAILED DESCRIPTION

[0018] Referring Figs. 1 to 4 As shown in the utility model provides a kind of wire drawing soap cooling setting mould, comprising: soap type lower mould 1 and soap type upper mould 2, soap type lower mould 1 positive upper end is correspondingly distributed with soap type upper mould 2,

[0019] Soap type lower mould 1 inside is equipped with mould cavity 11, U-shaped inner cavity plate 3 is inserted and tightly attached in the cavity face of mould cavity 11, L-shaped fin 32 is welded on the outer surface of U-shaped inner cavity plate 3, connecting plate 34 is welded on the upper end surface of U-shaped inner cavity plate 3, heat insulation handle 31 is fixed on the outer side surface of connecting plate 34, cooling groove 4 is opened in the inside of soap type lower mould 1, and cold water inlet 41 and cold water outlet 42 are respectively communicated with the front and rear ends of cooling groove 4.

[0020] First, a plurality of U-shaped inner cavity plates 3 are inserted and tightly attached in the mould cavity 11 of soap type lower mould 1 (and U-shaped inner cavity plate 3 side is provided with sealing strip, prevents wire drawing soap raw material from flowing out from the insertion gap), then soap type upper mould 2 is lowered, so that soap type lower mould 1 and soap type upper mould 2 are tightly pressed and attached, after injecting appropriate amount of wire drawing soap raw material into mould cavity 11, cold water is passed into cooling groove 4, so that cold water flows into front cooling groove 4 and flows out from rear groove (the transverse cold water flow direction has been marked with arrow in the drawing), after setting is completed, soap type upper mould 2 is moved upward, and heat insulation handle 31 at the side end of U-shaped inner cavity plate 3 is pulled, so that the setting wire drawing soap can be taken out from mould cavity 11.

[0021] In the embodiment, the front surface of soap type lower mould 1 is provided with cold water inlet 41, the rear surface of soap type lower mould 1 is provided with cold water outlet 42, and the upper surface of soap type lower mould 1 is provided with positioning hole 12. The lower surface of soap type upper mould 2 is welded with positioning column 21; and the positioning column 21 is correspondingly inserted into the positioning hole 12 of soap type lower mould 1. The lower surface of soap type upper mould 2 is symmetrically welded with limiting press plate 24; and the limiting press plate 24 is distributed between the front and rear two groups of positioning columns 21. The upper end surface of soap type upper mould 2 is provided with soap injection port 22, and the upper surface of soap type upper mould 2 is connected with hydraulic mechanism 2.

[0022] As a preferred embodiment, cold water inlet 41 and cold water outlet 42 are respectively connected with cold water conveying equipment (not shown in the drawing), so that the cold water sent into the mould can take away the heat of wire drawing soap raw material, so that the wire drawing soap can be cooled and set. Soap type upper mould 2 is pressed downward on the surface of soap type lower mould 1 by the pushing of soap type upper mould 2, so that the mould cavity 11 forms a sealed chamber, and the wire drawing soap raw material can be injected into the chamber through the soap injection port 22.

[0023] In the embodiment, the surface of connecting plate 34 is provided with limiting groove 33; and the connecting plate 34 is inlaid and pressed on the groove surface of soap type lower mould 1, and the limiting groove 33 is correspondingly distributed below the limiting press plate 24.

[0024] As a preferred embodiment, the U-shaped inner cavity plate 3 is embedded in the mold cavity 11 through the connecting plate 34, so that the U-shaped inner cavity plate 3 can be quickly pulled up after the drawing soap is cooled and shaped, and the drawing soap can be separated from the mold cavity.

[0025] In this embodiment, the cooling groove 4 in S shape is distributed around the left and right ends and the lower end face outside the mold cavity 11.

[0026] As a preferred embodiment, the cooling groove 4 in S shape can facilitate the full and uniform flow of cold water to the multiple side surfaces of the mold cavity 11, so that the cold water can fully take away the heat from the multiple side surfaces of the drawing soap, ensure the uniform cooling and shaping of the drawing soap in the mold, and the L-shaped cooling fins 32 on the outer side surface of the U-shaped inner cavity plate 3 can further dissipate the heat to the cooling groove, thereby enhancing the cooling efficiency of the drawing soap shaping mold.

[0027] The drawing soap cooling and shaping mold can effectively solve the problem of the cooling water pool connected to the side end of the mold in the prior art, which affects the convenient taking of the shaped drawing soap. The drawing soap cooling and shaping mold can facilitate the quick and complete taking of the cooled drawing soap in the shaping mold, improve the convenient separation effect of the drawing soap and the shaping mold, facilitate the full taking away of the heat from the multiple side surfaces of the drawing soap by the cold water, ensure the uniform cooling and shaping of the drawing soap in the mold, and further dissipate the heat to the cooling groove by the L-shaped cooling fins on the outer side surface of the U-shaped inner cavity plate, thereby enhancing the cooling efficiency of the drawing soap shaping mold. The drawing soap cooling and shaping mold is suitable for the drawing soap cooling and shaping mold for steel strip processing.

Claims

1. A wire drawing soap cooling and sizing die comprising: A soap type lower mold (1) and a soap type upper mold (2) are arranged in correspondence with each other, characterized in that: The soap type lower mold (1) is internally provided with a mold cavity (11), the cavity surface of the mold cavity (11) is tightly inserted with a U-shaped inner cavity plate (3), the outer surface of the U-shaped inner cavity plate (3) is welded with an L-shaped cooling fin (32), the upper end surface of the U-shaped inner cavity plate (3) is welded with a connecting plate (34), the outer side surface of the connecting plate (34) is fixed with a heat insulation handle (31), and the soap type lower mold (1) is internally provided with a cooling groove (4), and the front and rear ends of the cooling groove (4) are respectively communicated with a cold water inlet (41) and a cold water outlet (42).

2. A drawing soap cooling and sizing die according to claim 1, wherein The soap type lower mold (1) is provided with a cold water inlet (41) on the front surface, is provided with a cold water outlet (42) on the rear surface, and is provided with a positioning hole (12) on the upper surface.

3. A drawing soap cooling and sizing die according to claim 1, wherein The soap type upper mold (2) is welded with a positioning column (21) on the lower surface, and the positioning column (21) is correspondingly inserted into the positioning hole (12) of the soap type lower mold (1).

4. A drawing soap cooling and sizing die according to claim 3, wherein The soap type upper mold (2) is symmetrically welded with a limiting pressing plate (24) on the lower surface, and the limiting pressing plate (24) is arranged between the front and rear two groups of positioning columns (21).

5. A drawing soap cooling and sizing die according to claim 4, wherein The soap type upper mold (2) is provided with a soap injection opening (22) on the upper end surface, and is connected with a hydraulic mechanism (23) on the upper surface.

6. A drawing soap cooling and sizing die according to claim 1 wherein, The connecting plate (34) is provided with a limiting groove (33) on the surface, is inlaid and pressed on the groove surface of the soap type lower mold (1), and the limiting groove (33) is correspondingly arranged below the limiting pressing plate (24).

7. A drawing soap cooling and sizing die according to claim 1 wherein, The outer side left and right ends and the lower end surface of the mold cavity (11) are all surrounded by the S-shaped cooling groove (4).

Citation Information

Patent Citations

  • Drawing soap cooling and shaping die

    CN219930002U