Full-automatic compression molding die for silicon oxide plate

By designing a multi-layered, fully automated pressing mold for silicon oxide plates, and utilizing gradient holes and strong magnets for adsorption and connection, the problem of air expulsion during the pressing process of silicon oxide powder was solved, enabling the smooth forming of silicon oxide plates and convenient mold replacement.

CN223749870UActive Publication Date: 2026-01-02NANTONG ZHONGYE HYDRAULIC PRESS MACHINE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422634243.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2026-01-02
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

Because of its extremely fine particles, light weight, and lack of flowability, silica powder is difficult to expel air quickly during the pressing process of a dry powder hydraulic press, making it impossible to effectively form silica plates.

Method used

Design a fully automatic pressing mold for silicon oxide plates. The mold adopts a multi-layer upper and lower mold, a stainless steel mesh plate with gradient holes and other structures, and combines strong magnetic adsorption and adhesive bonding to achieve rapid air venting.

Benefits of technology

Effectively removes air during the pressing process of silicon oxide plates, ensuring that the silicon oxide plates can be formed smoothly, avoiding deformation, and the connection structure is firm and easy to replace molds.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223749870U_ABST
    Figure CN223749870U_ABST
Patent Text Reader

Abstract

The utility model relates to a full-automatic compression molding die for a silicon oxide plate, which consists of an upper die, a middle die and a lower die, and the upper die, the middle die and the lower die are assembled to form a cavity; the upper die and / or the lower die are / is of a multi-layer structure, and exhaust is arranged on the upper die and / or the lower die; the upper die and / or the lower die are / is divided into seven layers, the first layer structure is a stainless steel grid plate I, the second layer structure is a stainless steel grid plate II, the third layer structure is a panel, the fourth layer structure is a template, the fifth layer structure is a transition plate, the sixth layer structure is an adjusting plate, and the seventh layer structure is a bottom plate. The stainless steel grid plate I, the stainless steel grid plate II, the panel, the template, the transition plate and the adjusting plate are all provided with a plurality of holes, and the holes are communicated to form exhaust on the upper die and / or the lower die. When a silicon oxide plate is pressed, a large amount of air can be quickly exhausted, so that the silicon oxide plate can be pressed and formed.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to dry powder compression molding technology, specifically relates to a full -automatic compression molding mould of silica plate. BACKGROUND

[0002] As the professional production battery heat insulation plate for electric vehicle, the silica plate has the functions of good heat insulation, fire prevention, moisture prevention and battery mutual collision prevention. The silica powder has the characteristics of very fine particle, light quality and no flowability, which is difficult to be compressed and molded by the dry powder hydraulic press. CONTENT OF THE UTILITY MODEL

[0003] It is found that when the silica plate is compressed by the dry powder hydraulic press, the silica powder has a large amount of air (relatively speaking) due to the very fine particle, light quality and no flowability of the silica powder, and the compressed area of the silica plate to be compressed is relatively large, so that the existing exhaust cannot quickly exhaust a large amount of air, so that the silica plate cannot be compressed and molded. Based on this, the utility model provides a full -automatic compression molding mould of silica plate, which can quickly exhaust a large amount of air when the silica plate is compressed, so that the silica plate can be compressed and molded.

[0004] The technical scheme of the utility model:

[0005] A full -automatic compression molding mould of silica plate, the compression molding mould is composed of an upper die, a middle die and a lower die, the upper die, the middle die and the lower die are combined to form a cavity; the upper die and / or the lower die is a multilayer structure, and an exhaust is arranged on the upper die and / or the lower die;

[0006] The upper die and / or the lower die has seven layers, wherein the first layer structure is a stainless steel grid plate I, the second layer structure is a stainless steel grid plate II, the third layer structure is a panel, the fourth layer structure is a template, the fifth layer structure is an excessive plate, the sixth layer structure is an adjusting plate, and the seventh layer structure is a bottom plate;

[0007] A plurality of holes are arranged on the stainless steel grid plate, the panel, the template, the excessive plate and the adjusting plate, and the holes are communicated to form the exhaust on the upper die and / or the lower die;

[0008] The holes on the stainless steel grid plate I, the stainless steel grid plate II, the panel, the template, the excessive plate and the adjusting plate gradually increase in size.

[0009] The above-mentioned exhaust has good exhaust effect; of course, the holes on the stainless steel grid plate should not be too large, otherwise the compressed and molded silica plate will be deformed, and if the holes are too small, the exhaust effect will be affected, preferably the holes on the stainless steel grid plate I are 0.5mm holes, and the holes on the stainless steel grid plate II are 3mm.

[0010] The application discloses a full-automatic pressing forming die for a silicon oxide plate, which is composed of an upper die, a middle die and a lower die, and the upper die, the middle die and the lower die are combined to form a cavity; the upper die and / or the lower die is a multilayer structure, and an exhaust is arranged on the upper die and / or the lower die.

[0011] The upper die and / or the lower die has six layers, wherein the first layer structure is a stainless steel grid plate I, the second layer structure is a panel, the third layer structure is a die plate, the fourth layer structure is an overboard, the fifth layer structure is an adjusting plate, and the sixth layer structure is a bottom plate.

[0012] A plurality of holes are arranged on the stainless steel grid plate, the panel, the die plate, the overboard and the adjusting plate, and the holes are communicated to form the exhaust on the upper die and / or the lower die.

[0013] The holes on the stainless steel grid plate, the panel, the die plate, the overboard and the adjusting plate are gradually increased in size.

[0014] The exhaust has a good exhaust effect; of course, the holes on the stainless steel grid plate should not be too large, otherwise the pressed silicon oxide plate will be deformed; and the holes should not be too small, otherwise the exhaust effect will be affected; preferably, the holes on the stainless steel grid plate are 0.5mm holes.

[0015] The holes on the stainless steel grid plate I, the stainless steel grid plate II, the panel, the die plate and the overboard are arranged in a matrix, and the adjusting plate is a hollow columnar body.

[0016] Preferably, the holes on the stainless steel grid plate I are 0.5mm holes with a hole spacing of 0.5mm; and the holes on the stainless steel grid plate II are 3mm holes with a hole spacing of 3mm.

[0017] The holes on the stainless steel grid plate, the panel, the die plate and the overboard are arranged in a matrix, and the adjusting plate is a hollow columnar body.

[0018] Preferably, the holes on the stainless steel grid plate are 0.5mm holes with a hole spacing of 0.5mm.

[0019] The panel is provided with slots at the middle and four corners, and strong magnets are embedded in the slots to adsorb the stainless steel grid plate I and the stainless steel grid plate II; and the panel, the stainless steel grid plate II and the stainless steel grid plate I are connected by adhesion.

[0020] The connection is firm, and the stainless steel grid plate I and the stainless steel grid plate II can be conveniently replaced.

[0021] The panel is provided with slots at the middle and four corners, and strong magnets are embedded in the slots to adsorb the stainless steel grid plate; and the panel and the stainless steel grid plate are connected by adhesion.

[0022] The connection is firm, and the stainless steel grid plate can be conveniently replaced. BRIEF DESCRIPTION OF DRAWINGS

[0023] Fig. 1 is a schematic diagram of the installation of the full-automatic pressing forming mold for silica plate.

[0024] Fig. 2 is a schematic diagram of the structure of the upper mold or the lower mold. (Some holes are omitted)

[0025] In the figure, the pressing forming mold 1, the upper mold 1-1, the middle mold 1-2, the lower mold 1-3, the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, the excess plate 6, the adjusting plate 7, the bottom plate 8, and the strong magnet 9. DETAILED DESCRIPTION

[0026] As shown in Figs. 1-2 , a full-automatic pressing forming mold for silica plate, the pressing forming mold 1 is composed of the upper mold 1-1, the middle mold 1-2, and the lower mold 1-3, the upper mold 1-1, the middle mold 1-2, and the lower mold 1-3 are combined to form a cavity; the upper mold 1-1 and the lower mold 1-3 are multi-layer structures, and an exhaust is arranged thereon.

[0027] The upper mold 1-1 has seven layers, wherein the first layer structure is the stainless steel grid plate I 2, the second layer structure is the stainless steel grid plate II 3, the third layer structure is the panel 4, the fourth layer structure is the mold plate 5, the fifth layer structure is the excess plate 6, the sixth layer structure is the adjusting plate 7, and the seventh layer structure is the bottom plate 8; the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, the excess plate 6, and the adjusting plate 7 are all provided with a plurality of holes, and the holes are connected to form an exhaust on the upper mold 1-1; the holes on the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, the excess plate 6, and the adjusting plate 7 gradually increase in size; the holes on the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, and the excess plate 6 are arranged in a matrix, and the adjusting plate 7 is a hollow columnar body; the holes of the stainless steel grid plate I 2 are 0.5 mm holes with a hole spacing of 0.5 mm; the holes of the stainless steel grid plate II 3 are 3 mm holes with a hole spacing of 3 mm; the panel 4 is slotted at the middle and the four corners, and the strong magnet 9 is embedded in the slot to adsorb the stainless steel grid plate I 2 and the stainless steel grid plate II 3 through the strong magnet 9; the panel 4, the stainless steel grid plate II 3, and the stainless steel grid plate I 2 are connected by adhesive.

[0028] The lower mold 1-3 has seven layers, wherein the first layer structure is a stainless steel grid plate I 2, the second layer structure is a stainless steel grid plate II 3, the third layer structure is a panel 4, the fourth layer structure is a mold plate 5, the fifth layer structure is an excess plate 6, the sixth layer structure is an adjusting plate 7, and the seventh layer structure is a bottom plate 8; the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, the excess plate 6, and the adjusting plate 7 are all provided with a plurality of holes, and the holes are communicated to form exhausts on the lower mold 1-3; the holes on the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, the excess plate 6, and the adjusting plate 7 gradually increase in size; the holes on the stainless steel grid plate I 2, the stainless steel grid plate II 3, the panel 4, the mold plate 5, and the excess plate 6 are arranged in a matrix, and the adjusting plate 7 is a hollow columnar body; the holes on the stainless steel grid plate I 2 are 0.5 mm holes with a hole spacing of 0.5 mm; the holes on the stainless steel grid plate II 3 are 3 mm holes with a hole spacing of 3 mm; the panel 4 is provided with slots at the middle and four corners, and a strong magnet 9 is embedded in the slots to adsorb the stainless steel grid plate I 2 and the stainless steel grid plate II 3; the panel 4, the stainless steel grid plate II 3, and the stainless steel grid plate I 2 are connected by adhesive.

[0029] The above merely describes a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art, according to the technical scheme and the inventive concept of the present application, can make equivalent replacements or changes within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A full-automatic pressing forming mold for silicon oxide plate, the pressing forming mold is composed of an upper mold, a middle mold and a lower mold, the upper mold, the middle mold and the lower mold are combined to form a cavity; characterized in that, The upper die and / or the lower die is a multi-layer structure, and exhausts are arranged on the upper die and / or the lower die; The upper die and / or the lower die has seven layers, wherein the first layer structure is a stainless steel grid plate I, the second layer structure is a stainless steel grid plate II, the third layer structure is a panel, the fourth layer structure is a die plate, the fifth layer structure is an excess plate, the sixth layer structure is an adjusting plate, and the seventh layer structure is a bottom plate. The stainless steel grid plate I, the stainless steel grid plate II, the panel, the die plate, the excess plate and the adjusting plate are all provided with a plurality of holes, and the holes are communicated to form the exhausts on the upper die and / or the lower die.

2. The full-automatic press forming mold for a silica plate according to claim 1, characterized by The holes on the stainless steel grid plate I, the stainless steel grid plate II, the panel, the die plate and the excess plate are arranged in a matrix, and the adjusting plate is a hollow cylindrical body.

3. The full-automatic molding mold for a silica plate according to claim 1, characterized by The holes on the stainless steel grid plate, the panel, the die plate and the excess plate are arranged in a matrix, and the adjusting plate is a hollow cylindrical body.

4. The full-automatic press forming mold for a silica plate according to claim 1, characterized by The panel is provided with slots at the middle and four corners, and strong magnets are embedded in the slots to adsorb the stainless steel grid plate I and the stainless steel grid plate II.

5. A full-automatic pressing forming mold for silicon oxide plate, the pressing forming mold is composed of an upper mold, a middle mold and a lower mold, the upper mold, the middle mold and the lower mold are combined to form a cavity; characterized in that, The upper die and / or the lower die is a multi-layer structure, and exhausts are arranged on the upper die and / or the lower die; The upper die and / or the lower die has six layers, wherein the first layer structure is a stainless steel grid plate, the second layer structure is a panel, the third layer structure is a die plate, the fourth layer structure is an excess plate, the fifth layer structure is an adjusting plate, and the sixth layer structure is a bottom plate. The stainless steel grid plate, the panel, the die plate, the excess plate and the adjusting plate are all provided with a plurality of holes, and the holes are communicated to form the exhausts on the upper die and / or the lower die. The holes on the stainless steel grid plate, the panel, the die plate, the excess plate and the adjusting plate gradually increase in size.

6. The full-automatic press forming mold for a silicon oxide plate according to claim 5, characterized by The panel is provided with slots at the middle and four corners, and strong magnets are embedded in the slots to adsorb the stainless steel grid plate.

7. The full-automatic press forming mold for a silicon oxide plate according to claim 6, characterized by The panel and the stainless steel grid plate are connected by adhesive.