Green body compression molding device for manufacturing energy-saving super capacitors

A technology of supercapacitor and press molding, which is applied in unloading devices, manufacturing tools, ceramic molding machines, etc., can solve the problems of long feeding time, affecting material quality, and increasing the difficulty of equipment cleaning, so as to improve production efficiency and ensure Quality, effect of increasing cleaning difficulty

Inactive Publication Date: 2021-02-19
顾龙
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the device has the following disadvantages: 1. The device holds shares and is in the standby state when loading and unloading the device, especially the loading time is long, which seriously affects the production efficiency; 2. The molding cavity of the device is located under the upper mold, resulting in When pressing and forming, the material is easy to fall off the lower mold and fall on the equipment, which not only affects the quality of the material, but also increases the difficulty of cleaning the equipment

Method used

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  • Green body compression molding device for manufacturing energy-saving super capacitors
  • Green body compression molding device for manufacturing energy-saving super capacitors
  • Green body compression molding device for manufacturing energy-saving super capacitors

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] like Figure 1-7As shown, a green body press-forming device for energy-saving supercapacitor manufacturing includes a support mechanism 1 and a press-molding mechanism 2. The support mechanism 1 is mainly composed of two oppositely arranged support platforms 101 and a U-shaped connecting frame 102. There is a U-shaped connecting frame 102 connected by bolts between the two supporting platforms 101, and also includes a lower mold set 3, which includes a fixed frame 301, a slide rail 302, a lower mold 303, an electric slider 304, and a connecting rod 305. The fixed frame 301 is connected to the tops of the two support platforms 101 by bolts, the two sides of the fixed frame 301 are connected with slide rails 302 by bolts, and two sets of electric sliders 304 are slidingly connected to the outer sides of the slide rails 302 , and between each group of electric sliders 304 A lower mold 303 is connected by bolts, a connecting rod 305 is connected by bolts between the two low...

Embodiment 2

[0037] like Figure 8 As shown, the difference between Embodiment 2 and Embodiment 1 is that the inner side of the ring cutter 205 is slidingly connected with a second push plate 20501, the top of the second push plate 20501 is welded with a pressing rod 20502, and the upper end of the pressing rod 20502 passes through the upper connecting plate 206, and the limit end plate is set, so that the pressing rod 20502 can be pressed, and the pressing rod 20502 drives the second push plate 20501 to descend, and then the material inside the ring cutter 205 is pushed out.

[0038] In the above structure, when in use, the raw material is first placed inside the molding cavity of the lower mold 303, and then the electric slider 304 is started, and the electric slider 304 slides on the outside of the slide rail 302, and the electric slider 304 drives the lower mold 303 to move, so that the full-bodied The lower mold 303 with raw materials moves to the bottom of the pressing mechanism 2, a...

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Abstract

The invention discloses a green body compression molding device for manufacturing energy-saving super capacitors. The green body compression molding device comprises a supporting mechanism and a compression molding mechanism, and is characterized in that the supporting mechanism is mainly composed of two oppositely-arranged supporting tables and a U-shaped connecting frame; the U-shaped connectingframe is connected between the two supporting tables through bolts; the green body compression molding device further comprises a lower mold group; the lower mold group comprises a fixed frame, a sliding rail, lower molds, an electric sliding block and connecting rods; and the fixed frame is connected to the tops of the two supporting tables through bolts. According to the green body compressionmolding device, the other lower mold is fed and discharged in the pressing forming process, so that the whole device is in a working state all the time; the production efficiency is effectively improved; a forming cavity is formed in each lower mold; raw materials are placed in the forming cavities in the feeding process, so that the materials cannot be separated from the forming cavity in the pressing process; the quality of materials can be guaranteed; and the fact that the raw materials can be prevented from being exposed on equipment, so that the cleaning difficulty is increased is avoided.

Description

technical field [0001] The invention relates to the technical field of new energy and energy saving, in particular to a green body press-forming device for manufacturing energy-saving supercapacitors. Background technique [0002] Supercapacitor refers to a new type of energy storage device between traditional capacitors and rechargeable batteries, and its capacity can reach hundreds to thousands of farads. Compared with traditional capacitors, it has larger capacity, specific energy or capacity density, wider operating temperature range and extremely long service life; and compared with batteries, it has higher specific power and is environmentally friendly No pollution. [0003] The Chinese patent with the publication number CN209737880U discloses a green body pressing and forming equipment for capacitor production, including a base, a guide rod is welded to the top outer wall of the base, and a lower mold is welded to the top outer wall of the guide rod, and the top of t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B28B3/26B28B11/16B28B13/06
CPCB28B3/26B28B11/161B28B13/06
Inventor 顾龙何英
Owner 顾龙
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