Novel alloy material for awning as well as preparation method and application thereof

An alloy material and awning technology, applied in the field of alloy materials, can solve the problems of easy aging of awning materials, inconvenient use, short service life, etc., and achieve stable physical and mechanical properties, good durability and anti-aging ability, and long service life. long effect

Inactive Publication Date: 2016-04-20
ZHEJIANG HOMEY ELECTRICAL TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the existing awning materials are easy to age, have low strength, short service life, poor weather resistance and other shortcomings, need to be replaced frequently, and are inconvenient to use

Method used

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  • Novel alloy material for awning as well as preparation method and application thereof
  • Novel alloy material for awning as well as preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] In the embodiment of the present invention, a novel alloy material for an awning is composed of the following raw materials in parts by weight: 82 parts of lychee shells, 25 parts of ethyl acetate, 55 parts of polyethylene, 10 parts of methyl ethyl ketone, 2 parts of indium 0.5 parts of strontium, 0.05 parts of cesium, 25 parts of copper powder, and 42 parts of iron powder.

[0019] Wash and dry the lychee shells, put them into a pulverizer and crush them, pass through a 120-mesh sieve to obtain lychee shell powder, put ethyl acetate into the lychee shell powder, and seal and stir at 48°C for 10 minutes to obtain a mixture a. The polyethylene was pulverized, passed through a 100-mesh sieve, mixed with methyl ethyl ketone, and sealed and stirred at 60°C for 10 minutes to obtain mixture B. Mix mixture A, mixture B, indium, strontium, cesium, copper powder and iron powder, heat to 150°C in an argon atmosphere, stir for 35 minutes, then raise the temperature to 220°C, keep...

Embodiment 2

[0021] In the embodiment of the present invention, a novel alloy material for an awning is composed of the following raw materials in parts by weight: 88 parts of lychee shells, 35 parts of ethyl acetate, 63 parts of polyethylene, 16 parts of methyl ethyl ketone, 5 parts of indium 1.8 parts of strontium, 0.25 parts of cesium, 35 parts of copper powder, and 48 parts of iron powder.

[0022] Wash and dry the lychee shells, put them into a pulverizer, and pass through a 150-mesh sieve to obtain lychee shell powder. Put ethyl acetate into the lychee shell powder, and seal and stir at 2°C for 15 minutes to obtain a mixture. a. The polyethylene was pulverized, passed through a 120-mesh sieve, mixed with methyl ethyl ketone, and sealed and stirred at 65°C for 15 minutes to obtain mixture B. Mix mixture A, mixture B, indium, strontium, cesium, copper powder and iron powder, heat to 180°C under argon atmosphere, stir for 45min, then raise the temperature to 250°C, keep it warm for 1.5...

Embodiment 3

[0024] In the embodiment of the present invention, a novel alloy material for an awning is composed of the following raw materials in parts by weight: 84 parts of lychee shells, 28 parts of ethyl acetate, 57 parts of polyethylene, 12 parts of methyl ethyl ketone, 3 parts of indium 0.8 parts of strontium, 0.1 parts of cesium, 28 parts of copper powder, and 44 parts of iron powder.

[0025] Wash and dry the lychee shells, put them into a pulverizer, and pass through a 140-mesh sieve to obtain lychee shell powder. Put ethyl acetate into the lychee shell powder, and seal and stir at 50°C for 12 minutes to obtain a mixture. a. The polyethylene was pulverized, passed through a 110-mesh sieve, mixed with methyl ethyl ketone, and sealed and stirred at 62°C for 12 minutes to obtain mixture B. Mix mixture A, mixture B, indium, strontium, cesium, copper powder and iron powder, heat to 170°C in an argon atmosphere, stir for 40 minutes, then raise the temperature to 240°C, keep it warm fo...

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Abstract

The invention discloses a novel alloy material for an awning as well as a preparation method and application thereof. The novel alloy material is prepared from the following raw materials in parts by weight: 82-88 parts of lychee shell, 25-35 parts of ethyl acetate, 55-63 parts of polyethylene, 10-16 parts of methyl ethyl ketone, 2-5 parts of indium, 0.5-1.8 parts of strontium, 0.05-0.25 part of cesium, 25-35 parts of copper powder and 42-48 parts of iron powder. The preparation method of the novel alloy material comprises the following steps: cleaning, drying, crushing and screening the lychee shells, adding the ethyl acetate and performing sealing and stirring treatments, thereby obtaining a mixture A; crushing and screening the polyethylene, adding the methyl ethyl ketone and performing the sealing and stirring treatments, thereby obtaining a mixture B; mixing the mixture A, the mixture B, the indium, the strontium, the cesium, the copper powder and the iron powder, heating the mixture under the atmosphere of argon, cooling down to room temperature, and performing a high-temperature treatment, rolling, the high-temperature treatment, water-cooling, a cold deformation treatment, rolling, the high-temperature treatment, water-cooling and a solution treatment on the cooled mixture, thereby obtaining the novel alloy material. The novel alloy material provided by the invention has high tensile strength, also has the advantages of being stable, weather-proof, UV-resistant, anti-aging and environment-friendly, and is suitable for the fields such as awnings.

Description

technical field [0001] The invention relates to the technical field of alloy materials, in particular to a novel alloy material for awnings and its preparation method and application. Background technique [0002] Sunshade, a commercial product, has a comprehensive external sunshade function. The system uses a motor to drive the aluminum alloy coiled tube to rotate, so that the fabric wound on the coiled tube rises and falls. At the same time, the fabric is tightened by the spring force in the arm support rod. The maximum opening angle of the system is 0 to 130 degrees, and it can be operated by various control methods such as switch, remote control, and wind control. The awning can completely block ultraviolet radiation, lower the indoor temperature, and reduce the air-conditioning load; it has energy-saving effect, which is of great significance from the perspective of energy saving and environmental protection; while blocking the hot summer, it can make the strong sunlig...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C30/02C22C30/00C22C1/10
CPCC22C30/02C22C1/1005C22C30/00
Inventor 黄飞挺黄堂虹马双斌
Owner ZHEJIANG HOMEY ELECTRICAL TECH
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