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Novel rubber tire isolation release agent and preparation method thereof

A rubber tire and release agent technology, applied in the field of rubber additives, to achieve the effects of easy use, mold surface protection and excellent effect

Inactive Publication Date: 2014-11-26
HIGH & NEW TECH RES CENT OF HENAN ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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  • Novel rubber tire isolation release agent and preparation method thereof

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Embodiment 1

[0015] (1) Accurately measure 60ml of ethanol, 30ml of propylene glycol, 25ml of distilled water, weigh 4.0g of emulsifier OP-10, weigh 1.6g of sodium stearate, and 15ml of calcium chloride solution with a concentration of 1M. In a 250ml three-neck flask, stir to form a transparent solution. Make sodium carbonate into an aqueous solution with a concentration of 1M, accurately pipette 15.15ml of sodium carbonate solution, slowly add it dropwise into a three-necked flask, and stir while adding dropwise. -1h to obtain active nano-calcium carbonate dispersion emulsion. The average particle size of the nano-calcium carbonate determined by the light scattering method is 40-60nm, and the crystal form of the nano-calcium carbonate is cubic when observed by a transmission electron microscope.

[0016] (2) Weigh 40g of polyethylene glycol with an average molecular weight of 2000, 4.0g of emulsifier OP-10, 1.0g of emulsifier Textol 1310, measure 80ml of distilled water, add it into a 25...

Embodiment 2

[0019] (1) Accurately measure 70ml of absolute ethanol, 10ml of ethylene glycol, weigh 5 g of polyethylene glycol (average molecular weight 1000) aqueous solution with a concentration of 2% by mass, 1.5g of emulsifier AEO3, 4.0g of emulsifier Textol 1310, 7.5g oleic acid, 30ml calcium chloride solution with a concentration of 1M, add it into a 250ml three-neck flask with a stirring reflux device, and stir to form a transparent solution. Make sodium carbonate into an aqueous solution with a concentration of 1M, accurately pipette 30.5ml of sodium carbonate solution, slowly add it dropwise into a three-necked flask, and stir while adding dropwise. -3.0h to obtain active nano-calcium carbonate dispersion emulsion. The average particle size of the nano-calcium carbonate determined by the light scattering method is 40-60nm, and the crystal form of the nano-calcium carbonate is cubic when observed by a transmission electron microscope.

[0020] (2) Weigh 40g of silicone oil with an...

Embodiment 3

[0023] (1) Accurately measure 17ml of absolute ethanol, 10g of polyethylene glycol (average molecular weight 1000) aqueous solution with a concentration of 3% by mass, weigh 2.0g of emulsifier TW60, 0.5g of emulsifier TW80, weigh Take 6.25g of stearic acid and 52.63ml of calcium chloride solution with a concentration of 2.5M, add them into a 250ml three-necked flask with a stirring reflux device, and stir to form a transparent solution. Make sodium carbonate into an aqueous solution with a concentration of 2.5M, accurately pipette 50.5ml of sodium carbonate solution, slowly add it dropwise into a three-necked flask, and stir while adding dropwise. 0.5h to obtain active nano-calcium carbonate dispersion emulsion. The average particle size of the nano-calcium carbonate determined by the light scattering method is 40-60nm, and the crystal form of the nano-calcium carbonate is cubic when observed by a transmission electron microscope.

[0024] (2) Weigh 40 g of polyethylene wax w...

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Abstract

The invention discloses a novel rubber tire isolation release agent and a preparation method thereof and belongs to the field of rubber auxiliary agents. The preparation method comprises the following steps of preparing active nanometer calcium carbonate from water-soluble calcium chloride and sodium carbonate as main raw materials, and compounding the active nanometer calcium carbonate and an organic film-forming matter into the novel rubber tire isolation release agent. The novel rubber tire isolation release agent obtained by the preparation method is suitable for isolation between rubber materials and separation between the rubber materials and a mold in tire production, has good effects, is convenient for use, has no pollution, is safe and reliable, and is convenient for mold surface cleaning.

Description

Technical field [0001] The present invention involves rubber tire isolation dehydration agents and its preparation methods, which are the field of rubber aids. Background technique [0002] As an important auxiliary agent in the production of rubber tires in rubber tires, it can improve the appearance and performance of the product and improve product quality.Commonly used depairing agents include wax, silicon oil, soap, etc., each with its own characteristics; and commonly used isolation agents are mainly inorganic powder such as talc powder. During the use processAt present, it is necessary to develop an isolation agent that overcomes the above defects and has the advantages of the two. [0003] Nano -carbonate refers to calcium carbonate between 1-100nm between 1-100nm and can be used as a reinforcement agent such as plastic, rubber, polymer resin to improve product performance and improve product quality.Usually, because the surface of calcium carbonate contains calcium ions,...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B29C33/60C08L83/04C08L23/06C08L71/08C08K9/04C08K9/02C08K3/26
Inventor 褚艳红张国宝刘清庞海岩余守志刘珂珂赵根锁
Owner HIGH & NEW TECH RES CENT OF HENAN ACAD OF SCI
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