CN103304926A - Anti-impact function regulator for polyvinyl chloride injection molding materials - Google Patents
Anti-impact function regulator for polyvinyl chloride injection molding materials Download PDFInfo
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- CN103304926A CN103304926A CN2013102581762A CN201310258176A CN103304926A CN 103304926 A CN103304926 A CN 103304926A CN 2013102581762 A CN2013102581762 A CN 2013102581762A CN 201310258176 A CN201310258176 A CN 201310258176A CN 103304926 A CN103304926 A CN 103304926A
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- injection molding
- function regulator
- polyvinyl chloride
- chloride injection
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Abstract
The invention discloses an anti-impact function regulator for polyvinyl chloride injection molding materials. The anti-impact function regulator comprises the following components in parts by weight: 2-3 parts of ethylene.ethyl acetate-vinyl chloride copolymer, 0.001-0.0015 part of aluminate coupling agent and 0.001-0.0015 part of dispersant. A preparation process of the anti-impact function regulator for polyvinyl chloride injection molding materials comprises the steps of: mixing the components, uniformly stirring the components, discharging and packaging the mixture. The anti-impact function regulator disclosed by the invention is novel in design, simple and convenient in process and easy to operate; and by adopting the technical scheme of the invention, the toughness and strength of polyvinyl chloride injection molding materials can be improved, the anti-impact performance of the product can be particularly improved, the quality of the product is enhanced, the defect of lacking anti-impact performance in an existing product is overcome and the blank of anti-impact products of polyvinyl chloride injection molding materials is filled. The anti-impact function regulator disclosed by the invention can be industrially produced in large scale and can be extensively applied in the field of processing polyvinyl chloride injection molding materials.
Description
Technical field
The present invention relates to a kind of conditioning agent for plastics, particularly relate to a kind of polyvinyl chloride (PVC) injection molding material anti-impact function regulator.
Background technology
Up to now, big, the intensity difference of the polyvinyl chloride injection molding material fragility that the prescription of traditional function regulator that is used for the polyvinyl chloride injection molding material is produced lack impact resistance, and production cost is higher, can not adapt to the demand in market, has limited it and has applied.
Summary of the invention
The objective of the invention is in order to overcome the defective of above-mentioned background technology, provide a kind of and can improve the shock resistance of polyvinyl chloride injection molding material, polyvinyl chloride injection molding material anti-impact function regulator with low cost.
To achieve these goals, the technical scheme of polyvinyl chloride injection molding material anti-impact function regulator of the present invention is such:
Anti-impact function regulator of the present invention comprises following component and weight part: ethene ethyl acetate and vinyl chloride copolymer 2 ~ 3; Aluminate coupling agent 0.001 ~ 0.0015; Dispersion agent 0.001 ~ 0.0015.
Anti-impact function regulator of the present invention comprises following component and weight part: ethene ethyl acetate and vinyl chloride copolymer 2.1 ~ 2.8; Aluminate coupling agent 0.00105 ~ 0.0014; Dispersion agent 0.00105 ~ 0.0014.
Anti-impact function regulator of the present invention comprises following component and weight part: ethene ethyl acetate and vinyl chloride copolymer 2.3 ~ 2.7; Aluminate coupling agent 0.00115 ~ 0.00135; Dispersion agent 0.00115 ~ 0.00135.
Anti-impact function regulator of the present invention comprises following component and weight part: ethene ethyl acetate and vinyl chloride copolymer 2.4 ~ 2.6; Aluminate coupling agent 0.0012 ~ 0.0013; Dispersion agent 0.0012 ~ 0.0013.
Anti-impact function regulator of the present invention comprises following component and weight part: ethene ethyl acetate and vinyl chloride copolymer 2.5; Aluminate coupling agent 0.00125; Dispersion agent 0.00125.
Dispersion agent of the present invention is ethylene bis stearic acid amide.
Polyvinyl chloride injection molding material anti-impact function regulator of the present invention has following beneficial effect: novel, technology is easy, easy handling; After adopting technical solution of the present invention, can improve polyvinyl chloride injection molding material toughness and intensity, especially can improve the shock resistance of goods, improve product quality, remedy the defective that currently available products lacks shock resistance, the blank of having filled up polyvinyl chloride injection molding material shock resistance product.The present invention can industrialized mass production, can be widely used for the manufacture field of polyvinyl chloride injection molding material.
Embodiment
The present invention is described in further detail below in conjunction with embodiment, but this embodiment should not be construed as limitation of the present invention.
Embodiment 1
Polyvinyl chloride injection molding material anti-impact function regulator of the present invention is prepared by following processing sequence:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2; Aluminate coupling agent 0.001; Ethylene bis stearic acid amide 0.001.
Two. the preparation of described polyvinyl chloride injection molding material anti-impact function regulator:
1, batch mixing: above-mentioned each ingredients weight parts for preparing is mixed, drop into mixing and stirring in the kneader together, heating can stop to heat to 135 ℃, standby.
2, discharging packing: the above-mentioned batch mixing that processes is cooled to normal temperature can discharging packing, i.e. finished product-described polyvinyl chloride injection molding material anti-impact function regulator.
Embodiment 2
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.1; Aluminate coupling agent 0.00105; Ethylene bis stearic acid amide 0.00105.
Embodiment 3
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.3; Aluminate coupling agent 0.00115; Ethylene bis stearic acid amide 0.00115.
Embodiment 4
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.4; Aluminate coupling agent 0.0012; Ethylene bis stearic acid amide 0.0012.
Embodiment 5
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.5; Aluminate coupling agent 0.00125; Ethylene bis stearic acid amide 0.00125.
Embodiment 6
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.6; Aluminate coupling agent 0.0013; Ethylene bis stearic acid amide 0.0013.
Embodiment 7
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.7; Aluminate coupling agent 0.00135; Ethylene bis stearic acid amide 0.00135.
Embodiment 8
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.8; Aluminate coupling agent 0.0014; Ethylene bis stearic acid amide 0.0014.
Embodiment 9
Present embodiment is substantially the same manner as Example 1, and its difference is:
One, produce the preparation of described polyvinyl chloride injection molding material anti-impact each component of function regulator and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 3; Aluminate coupling agent 0.0015; Ethylene bis stearic acid amide 0.0015.
Obviously, those skilled in the art can carry out various changes and variation to the present invention and not break away from the spirit and scope of the present invention.Like this, if these modifications and variations of the present invention belong within the scope of claim of the present invention and equivalent technologies thereof, then the present invention also is intended to comprise these changes and changes interior.
The content that is not described in detail in this specification sheets belongs to this area professional and technical personnel's known prior art.
Claims (6)
1. polyvinyl chloride injection molding material anti-impact function regulator, it is characterized in that: described anti-impact function regulator comprises following component and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2 ~ 3; Aluminate coupling agent 0.001 ~ 0.0015; Dispersion agent 0.001 ~ 0.0015.
2. polyvinyl chloride injection molding material anti-impact function regulator according to claim 1, it is characterized in that: described anti-impact function regulator comprises following component and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.1 ~ 2.8; Aluminate coupling agent 0.00105 ~ 0.0014; Dispersion agent 0.00105 ~ 0.0014.
3. polyvinyl chloride injection molding material anti-impact function regulator according to claim 2, it is characterized in that: described anti-impact function regulator comprises following component and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.3 ~ 2.7; Aluminate coupling agent 0.00115 ~ 0.00135; Dispersion agent 0.00115 ~ 0.00135.
4. polyvinyl chloride injection molding material anti-impact function regulator according to claim 3, it is characterized in that: described anti-impact function regulator comprises following component and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.4 ~ 2.6; Aluminate coupling agent 0.0012 ~ 0.0013; Dispersion agent 0.0012 ~ 0.0013.
5. polyvinyl chloride injection molding material anti-impact function regulator according to claim 4, it is characterized in that: described anti-impact function regulator comprises following component and weight part:
Ethene ethyl acetate and vinyl chloride copolymer 2.5; Aluminate coupling agent 0.00125; Dispersion agent 0.00125.
6. polyvinyl chloride injection molding material anti-impact function regulator according to claim 1, it is characterized in that: described dispersion agent is ethylene bis stearic acid amide.
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CN2013102581762A CN103304926A (en) | 2013-06-26 | 2013-06-26 | Anti-impact function regulator for polyvinyl chloride injection molding materials |
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101717554A (en) * | 2009-12-16 | 2010-06-02 | 广东盛恒昌化学工业有限公司 | Plastic profiled bar decorative layer combination material with metal-like natural texture, preparation method and application thereof |
US20100280164A1 (en) * | 2009-04-29 | 2010-11-04 | Tundra Composites, LLC. | Inorganic Composite |
CN102977498A (en) * | 2012-12-04 | 2013-03-20 | 安徽康嘉塑胶建材有限公司 | Polyvinyl chloride (PVC) composite electrical sleeve |
-
2013
- 2013-06-26 CN CN2013102581762A patent/CN103304926A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20100280164A1 (en) * | 2009-04-29 | 2010-11-04 | Tundra Composites, LLC. | Inorganic Composite |
CN101717554A (en) * | 2009-12-16 | 2010-06-02 | 广东盛恒昌化学工业有限公司 | Plastic profiled bar decorative layer combination material with metal-like natural texture, preparation method and application thereof |
CN102977498A (en) * | 2012-12-04 | 2013-03-20 | 安徽康嘉塑胶建材有限公司 | Polyvinyl chloride (PVC) composite electrical sleeve |
Non-Patent Citations (2)
Title |
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曾汉民等: ""新型抗冲击强度硬聚氯乙烯塑料"", 《科学通报》, 18 April 1965 (1965-04-18), pages 642 - 643 * |
李军: "《氯乙烯-醋酸乙烯酯共聚树脂的研究》", 《四川大学工程硕士专业学位论文(设计)》, 31 December 2002 (2002-12-31) * |
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Application publication date: 20130918 |