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System for the lead ingot to strip process

A lead ingot and process technology, which is applied in the field of non-ferrous metal ingot pressing into strip equipment, can solve the problems of large lead particle shape difference caused by the impact of lead ingot, many broken particles, and irregular shape of lead ingot, etc., to achieve long service life, The effect of loss of lead material and small working noise

Active Publication Date: 2018-04-24
遂宁鸿嘉发商贸有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

A cold cutting process has appeared in the prior art. Due to the irregular shape and thick thickness of the lead ingot itself, the impact of the lead ingot on the equipment is large during the cold cutting process, and the shape difference between the obtained lead particles is also large. , there are many broken particles, which is not conducive to the efficiency of subsequent ball milling into powder

Method used

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  • System for the lead ingot to strip process
  • System for the lead ingot to strip process
  • System for the lead ingot to strip process

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] Such as Figure 1 to Figure 3 As shown, the system for the process of forming lead ingots into strips, the system includes a frame 1, at least two groups of roller groups arranged on the frame 1, a feed part 2 for conveying lead ingots to the roller groups, and In the output part of the system where the lead plate is output and the intermediate material transfer device arranged between the roller groups, each roller group includes two mutually parallel pressure rollers 4, and the two pressure rollers 4 of each roller group There is a gap for the material to pass between;

[0034] It also includes a power component 11, at least one pressure roller 4 in each group of rollers is connected to the power component 11, and the power component 11 is used to drive the rotation of the pressure roller 4 connected thereto;

[0035] The intermediate material transfer device is used to transfer the material output by the upper roller set to the feed end of the lower roller set.

[...

Embodiment 2

[0041] Such as Figure 1 to Figure 3 As shown, the present embodiment is further limited on the basis of embodiment 1: further technical solutions are:

[0042] As a technical solution that facilitates the installation of intermediate material transfer devices and utilizes a limited number of pressure rollers 4 to obtain as many roller groups as possible, the system includes at least three pressure rollers 4, and the axes of the pressure rollers 4 are uniform Located in the horizontal direction, and the axes of the pressure rollers 4 are all located on the same vertical plane;

[0043] Among the pressing rollers 4, two adjacent pressing rollers 4 constitute a set of rollers.

[0044] In the above structure, at least three pressure rollers 4 are arranged along the vertical direction, so that the intermediate material transfer device can be arranged on the side of the pressure rollers 4 to complete the transfer of lead materials between two adjacent groups of rollers. In the a...

Embodiment 3

[0053] This embodiment is further limited on the basis of the technical solution provided in embodiment 1, as Figure 1 to Figure 3 As shown, in order to prevent the thinned lead material from clinging to the side of the pressure roller 4 and moving with the pressure roller 4, a scraper 3 is also included, and the scraper 3 is located on the discharge side of the roller group. Preferably only scraper 3 is set behind the roller group rear of the last stage, and scraper 3 is two pieces, and described discharge part is arranged as groove shape, and two scraper 3 are respectively installed on the upper side and the upper side of the feed end of discharge part. On the lower side, the free end of the scraper 3 on the upper side is upturned to be close to the upper side of the pressure roller 4 in the roller group, and the free end of the scraper 3 on the lower side is turned down to be close to the side of the lower pressure roller 4 in the roller group , In this way, no matter whic...

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PUM

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Abstract

The invention discloses a system for forming a lead ingot into a strip. The system includes a frame, at least two sets of rollers, a feeding part for delivering lead ingots to the rollers, and an outlet for the lead plate output of the system. The material part and the intermediate material transfer device arranged between the roller groups, each roller group includes two parallel pressure rollers, and there is a gap for the material to pass between the two pressure rollers of each roller group; Including power components, at least one pressure roller in each group of rollers is connected with the power components, and the power components are used to drive the rotation of the pressure rollers connected to it; the intermediate material transfer device is used to transfer the materials output by the upper roller group to the lower The feed end of the primary roll set. This system is used as a cold processing equipment for converting lead ingots to lead plates. The impact of each component of this system is small when it is working, so that this system can have a longer service life and less working noise; it is different from the existing melting The form of lead furnace processing lead ingots, adopting this system also has the characteristics of not losing lead materials.

Description

technical field [0001] The invention relates to the technical field of equipment for pressing non-ferrous metal ingots into strips, in particular to a system for the process of forming lead ingots into strips. Background technique [0002] Compared with other new batteries, such as lithium batteries, lead-acid batteries are still widely used batteries because of their unique advantages of large storage capacity and low manufacturing cost, such as those used in automobiles. The lead storage battery uses a lead substrate grid filled with spongy lead as the negative electrode, a lead substrate grid filled with lead dioxide as the positive electrode, and dilute sulfuric acid as the electrolyte. When the battery is being discharged, metallic lead is the negative electrode, which undergoes an oxidation reaction to generate lead sulfate; lead dioxide is the positive electrode, which undergoes a reduction reaction to generate lead sulfate. When the lead storage battery is charged w...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B21B1/22H01M10/12
CPCB21B1/22B21B2001/221H01M10/12Y02E60/10Y02P70/50
Inventor 陈学安方浩王远强
Owner 遂宁鸿嘉发商贸有限公司