Electrolytic manganese metal separation formula spacer for diaphragm bag

文档序号:932490 发布日期:2021-03-05 浏览:13次 中文

阅读说明:本技术 一种电解金属锰阻隔式隔膜袋用定位片 (Electrolytic manganese metal separation formula spacer for diaphragm bag ) 是由 吴大春 于 2019-08-30 设计创作,主要内容包括:本发明公开了一种电解金属锰阻隔式隔膜袋用定位片,具有长方体结构的片体,所述片体固定在隔膜袋侧边的定位片槽,所述片体在所述隔膜袋上成横向、竖向排布或交错分布,本发明的定位片属于耐强酸和耐强碱性的材质,其耐高温,能在100度以内的高温中保持材质的特性不变;其不导电能够起到绝缘的作用,其性能稳定,使用时间长,质量有保证。(The invention discloses a positioning sheet for an electrolytic manganese metal barrier type diaphragm bag, which is provided with a sheet body with a cuboid structure, wherein the sheet body is fixed in a positioning sheet groove at the side edge of the diaphragm bag and is transversely, vertically or in staggered distribution on the diaphragm bag; the insulating glass has the advantages of non-conductivity, insulating effect, stable performance, long service life and guaranteed quality.)

1. The utility model provides an electrolytic manganese metal separation formula spacer for diaphragm bag which characterized in that: lamellar body (1) with cuboid structure, locating piece groove (2) at diaphragm bag (3) side are fixed in lamellar body (1), lamellar body (1) is in become horizontal, vertical arranging or crisscross distribution on diaphragm bag (3).

2. The spacer for electrolytic manganese metal barrier membrane bags according to claim 1, wherein: the piece body (1) is inserted, bound or sewn with the membrane bag (3) into a whole in a fixed mode.

3. The spacer for electrolytic manganese metal barrier membrane bags according to claim 2, wherein: the positioning sheet grooves (2) are at least provided with two groups.

4. The spacer for electrolytic manganese metal barrier membrane bags according to claim 3, wherein: the piece body (1) is formed by compounding polypropylene layers and has a strong acid and strong alkali resistant structure.

5. The spacer for electrolytic manganese metal barrier membrane bags according to claim 4, wherein: the vertical length range value of the sheet body (1) is 20-70 CM.

6. The spacer for electrolytic manganese metal barrier membrane bags according to claim 5, wherein: the transverse length of the sheet (1) ranges from 20CM to 300 CM.

7. The spacer for electrolytic manganese metal barrier membrane bags according to claim 5, wherein: the sheet (1) has a specification of 52CM by 2.8CM by 0.3 CM.

8. The spacer for electrolytic manganese metal barrier membrane bags according to claim 6, wherein: the sheet (1) has a specification of 72CM by 3CM by 0.5 CM.

9. The spacer for electrolytic manganese metal barrier membrane bags according to claim 6, wherein: the sheet (1) has a specification of 57CM by 3CM by 0.5 CM.

10. The spacer for electrolytic manganese metal barrier membrane bags according to claim 6, wherein: the sheet (1) has a specification of 65CM by 3CM by 0.5 CM.

Technical Field

The invention relates to the technical field of diaphragm bags, in particular to a positioning sheet for an electrolytic manganese metal barrier type diaphragm bag.

Background

The common stripping method for separating the electrolytic manganese sheet from the cathode plate adopts manual beating stripping or a mechanical stripping machine to strip the manganese sheet, if the manganese-containing cathode plate is electrolyzed, the surface of the cathode plate is attached to the cloth surface of the diaphragm bag to produce the manganese sheet, the cathode plate and the manganese sheet are easily bonded in high density, the stripping is not easy, and the produced product does not reach the standard.

Disclosure of Invention

The invention aims to solve the problems and provide the positioning sheet for the electrolytic manganese metal separation type diaphragm bag, which has long service life, can separate the positioning sheet from an electrolytic cell and saves energy.

The object of the invention is achieved in the following way: the utility model provides an electrolysis manganese metal separation formula spacer for diaphragm bag, has the lamellar body of cuboid structure, the lamellar body is fixed in the spacer groove of diaphragm bag side, the lamellar body becomes horizontal, vertical arrangement or crisscross distribution on the diaphragm bag.

In a further optimized scheme, the positioning sheet for the electrolytic manganese metal barrier type membrane bag is a fixing mode that the sheet body is inserted into, bound with or sewn with the membrane bag into a whole.

In a further optimized scheme, the positioning sheet for the electrolytic manganese metal barrier type diaphragm bag is provided with at least two groups of positioning sheet grooves.

The positioning sheet for the electrolytic manganese metal barrier type diaphragm bag is further optimized in that the sheet body is formed by compounding polypropylene layers and has a strong acid and strong alkali resistant structure.

In a further optimized scheme, the positioning sheet for the electrolytic manganese metal barrier type diaphragm bag has a vertical length range of 20CM-70 CM.

In a further optimized scheme, the transverse length of the positioning sheet for the electrolytic manganese metal barrier type diaphragm bag is in a range of 20CM-300 CM.

In a further preferred embodiment, the spacer for the electrolytic manganese metal barrier membrane bag has a specification of 460CM by 26CM by 3 CM.

In a further preferred embodiment, the spacer for the electrolytic manganese metal barrier membrane bag has a specification of 715CM × 30CM × 6 CM.

In a further preferred embodiment, the spacer for the electrolytic manganese metal barrier membrane bag is characterized in that the size of the sheet body (1) is 57CM by 3CM by 0.5 CM.

In a further preferred embodiment, the spacer for the electrolytic manganese metal barrier membrane bag is characterized in that the size of the sheet body (1) is 65CM by 3CM by 0.5 CM.

The invention has the advantages that: the positioning sheet disclosed by the invention belongs to a strong acid and strong alkali resistant material, is high temperature resistant, and can keep the characteristics of the material unchanged at a high temperature within 100 ℃; the insulating glass has the advantages of non-conductivity, insulating effect, stable performance, long service life and guaranteed quality.

Drawings

In order that the present disclosure may be more readily and clearly understood, reference is now made to the following detailed description of the present disclosure taken in conjunction with the accompanying drawings, in which

Fig. 1 is a schematic structural view of the present invention.

The specific implementation mode is as follows:

as shown in figure 1, the positioning sheet for the electrolytic manganese metal barrier type diaphragm bag comprises a sheet body 1 with a cuboid structure, wherein the sheet body 1 is fixed in a positioning sheet groove 2 at the side edge of a diaphragm bag 3, and the sheet body 1 is arranged on the diaphragm bag 3 in a transverse, vertical or staggered manner. The sheet body 1 is inserted, bound or sewn with the membrane bag 3 into a whole in a fixed mode.

The positioning sheet groove 2 has at least two groups.

The piece body 1 is formed by compounding polypropylene layers and has a strong acid and strong alkali resistant structure.

The vertical length of the sheet 1 ranges from 20CM to 70 CM.

The transverse length of the sheet 1 ranges from 20CM to 300 CM.

The format of the tablet 1 is 52CM by 2.8CM by 0.3 CM.

The format of the tablet 1 is 72CM by 3CM by 0.5 CM.

The format of the tablet 1 is 57CM by 3CM by 0.5 CM.

The format of the tablet 1 is 65CM 3CM 0.5 CM.

The above-mentioned embodiments are intended to illustrate the objects, technical solutions and advantages of the present invention in further detail, and it should be understood that the above-mentioned embodiments are only exemplary embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalents, improvements and the like made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

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