Formula and manufacturing method of photosensitive polymer material plate

文档序号:932387 发布日期:2021-03-05 浏览:26次 中文

阅读说明:本技术 一种感光高分子材料板配方及其制作方法 (Formula and manufacturing method of photosensitive polymer material plate ) 是由 曹秀莉 桂晨芸 于 2019-08-31 设计创作,主要内容包括:本发明公开了一种感光高分子材料板配方及其制作方法,包括如下步骤:a、原料准备:将三氧化二钒、五氧化二钒、铝粒、铜粒、冷轧钢屑、铁粒、碳酸氢钙、沸石粉、金属钛和金属镁混合;b、原料配比重量份:三氧化二钒20-45份、五氧化二钒8-25份、铝粒35-60份、铜粒10-30份、冷轧钢屑20-55份、铁粒10-50份、碳酸氢钙5-25份、沸石粉10-20份、金属钛6-18份和金属镁5-20份;c、冶炼:点火冶炼、静置保温、自然冷却、拆炉水淬后得到钒铁合金。这样的感光材料板的制造方法可以生产出耐印程度更高、使用寿命长、印刷清晰程度高的感光材料;本发明所提出的材料稳定性能优异,可长期感光而保持其原初的感光效果,而且耐热、耐侯、耐化学性能有显著的提高,同时大大降低了产品的生产成本,实用性广泛。(The invention discloses a formula of a photosensitive polymer material plate and a manufacturing method thereof, wherein the formula comprises the following steps: a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium; b. the raw materials are as follows by weight: 20-45 parts of vanadium trioxide, 8-25 parts of vanadium pentoxide, 35-60 parts of aluminum particles, 10-30 parts of copper particles, 20-55 parts of cold-rolled steel scraps, 10-50 parts of iron particles, 5-25 parts of calcium bicarbonate, 10-20 parts of zeolite powder, 6-18 parts of metal titanium and 5-20 parts of metal magnesium; c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy. The manufacturing method of the photosensitive material plate can produce photosensitive materials with higher printing resistance, long service life and high printing definition; the material provided by the invention has excellent stability, can be subjected to long-term sensitization, keeps the original sensitization effect, remarkably improves the heat resistance, weather resistance and chemical resistance, greatly reduces the production cost of the product, and has wide practicability.)

1. The formula of the photosensitive polymer material plate is characterized by comprising the following raw materials: vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium.

2. The photosensitive polymer material plate according to claim 1, wherein the manufacturing method comprises the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 20-45 parts of vanadium trioxide, 8-25 parts of vanadium pentoxide, 35-60 parts of aluminum particles, 10-30 parts of copper particles, 20-55 parts of cold-rolled steel scraps, 10-50 parts of iron particles, 5-25 parts of calcium bicarbonate, 10-20 parts of zeolite powder, 6-18 parts of metal titanium and 5-20 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

3. The photosensitive polymeric material sheet formulation and the manufacturing method thereof according to claim 1, wherein the photosensitive polymeric material sheet formulation comprises: the iron content of the steel scraps is not lower than 93%. The purity of the vanadium trioxide is 70 percent, and the purity of the vanadium pentoxide is 95 percent.

Technical Field

The invention relates to the field of photosensitive materials, in particular to a formula of a photosensitive high polymer material plate and a manufacturing method thereof.

Background

The photosensitive material is a semiconductor material having a photosensitive property, and is also called a photoconductive material or a photosensitive semiconductor. The photosensitive materials commonly used in the current duplicators are an organic photosensitive drum (0PC), an amorphous silicon photosensitive drum, a cadmium sulfide photosensitive drum and a selenium photosensitive drum. In addition, photosensitive materials are often used in photography. Photosensitive materials are a general term for materials used in photography, such as films, rolls, and papers. Photosensitive materials are generally classified into black-and-white photosensitive materials and color photosensitive materials. The material can be used in the fields of lighting, film and television photography and printing plate making, and can make photochemical change under the action of light so as to meet the use requirements. The photosensitive high polymer material has high sensitivity, high resolution, high diffraction efficiency and simple processing, and is an ideal high polymer material. In the prior art, the photosensitive material is single and has poor stability, the photosensitive effect is greatly reduced after a certain photosensitive rate is reached, and the performances of heat resistance, weather resistance, water resistance and the like are poor. Therefore, the present invention provides a new technical solution to the above problems.

Disclosure of Invention

The invention aims to provide a formula of a photosensitive polymer material plate and a manufacturing method thereof, so as to solve the problems in the background technology.

In order to achieve the purpose, the invention provides the following technical scheme:

the formula of the photosensitive polymer material plate comprises the following raw materials: vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium.

As a further scheme of the invention: the manufacturing method of the photosensitive polymer material plate comprises the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 20-45 parts of vanadium trioxide, 8-25 parts of vanadium pentoxide, 35-60 parts of aluminum particles, 10-30 parts of copper particles, 20-55 parts of cold-rolled steel scraps, 10-50 parts of iron particles, 5-25 parts of calcium bicarbonate, 10-20 parts of zeolite powder, 6-18 parts of metal titanium and 5-20 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

As a still further scheme of the invention: the iron content of the steel scraps is not lower than 93%. The purity of the vanadium trioxide is 70 percent, and the purity of the vanadium pentoxide is 95 percent.

Compared with the prior art, the invention has the beneficial effects that:

the invention has the beneficial effects that: the manufacturing method of the photosensitive material plate can produce photosensitive materials with higher printing resistance, long service life and high printing definition; the material provided by the invention has excellent stability, can be subjected to long-term sensitization, keeps the original sensitization effect, remarkably improves the heat resistance, weather resistance and chemical resistance, greatly reduces the production cost of the product, and has wide practicability.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Example 1

A formula of a photosensitive high polymer material plate and a manufacturing method thereof comprise the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 20 parts of vanadium trioxide, 8 parts of vanadium pentoxide, 35 parts of aluminum particles, 10 parts of copper particles, 20 parts of cold-rolled steel scraps, 10 parts of iron particles, 5 parts of calcium bicarbonate, 10 parts of zeolite powder, 6 parts of metal titanium and 5 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

Example 2

A formula of a photosensitive high polymer material plate and a manufacturing method thereof comprise the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 25 parts of vanadium trioxide, 14 parts of vanadium pentoxide, 40 parts of aluminum particles, 15 parts of copper particles, 25 parts of cold-rolled steel scraps, 12 parts of iron particles, 8 parts of calcium bicarbonate, 14 parts of zeolite powder, 8 parts of metal titanium and 10 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

Example 3

A formula of a photosensitive high polymer material plate and a manufacturing method thereof comprise the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 30 parts of vanadium trioxide, 20 parts of vanadium pentoxide, 50 parts of aluminum particles, 28 parts of copper particles, 35 parts of cold-rolled steel scraps, 40 parts of iron particles, 15 parts of calcium bicarbonate, 18 parts of zeolite powder, 14 parts of metal titanium and 18 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

Example 4

A formula of a photosensitive high polymer material plate and a manufacturing method thereof comprise the following steps:

a. preparing raw materials: mixing vanadium trioxide, vanadium pentoxide, aluminum particles, copper particles, cold-rolled steel scraps, iron particles, calcium bicarbonate, zeolite powder, metal titanium and metal magnesium;

b. the raw materials are as follows by weight: 45 parts of vanadium trioxide, 25 parts of vanadium pentoxide, 60 parts of aluminum particles, 30 parts of copper particles, 55 parts of cold-rolled steel scraps, 50 parts of iron particles, 25 parts of calcium bicarbonate, 20 parts of zeolite powder, 18 parts of metal titanium and 20 parts of metal magnesium;

c. smelting: igniting and smelting, standing and preserving heat, naturally cooling, disassembling the furnace and water quenching to obtain the ferrovanadium alloy.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.

Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

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