Latex Rubber Encyclopedia

Main points of formula design of ordinary rubber hose mixed with latex reclaimed rubber 1

Create Date:2022-09-21 15:56:37Click volume:2812
Main points of formula design of ordinary rubber hose mixed with latex reclaimed rubber 1

Ordinary rubber hoses are mainly used to transport air, other inert gases, water and neutral liquids at room temperature. Generally, natural rubber, styrene-butadiene rubber and cis-butadiene rubber are used as the main raw materials. Some rubber hoses will be added with nitrile rubber and neoprene rubber. , polyethylene, etc. In actual production, latex reclaimed rubber is a low-cost raw material to replace high-priced natural rubber. It can be used in combination with natural rubber, cis-butadiene rubber, styrene-butadiene rubber, etc. in appropriate proportions to prepare rubber materials for each rubber layer of ordinary hoses. The editor will share with you today the formula design skills of each rubber layer of ordinary rubber hoses mixed with latex reclaimed rubber.

1. Main points of formula design of inner layer rubber of ordinary rubber hose mixed with latex reclaimed rubber

The inner layer of the ordinary hose is the first working surface of the hose, and the rubber material is required to have good compactness, adaptability to the conveying medium, and certain elasticity, softness, and aging resistance. The inner layer of ordinary hose is generally processed with natural rubber/synthetic rubber and rubber as raw materials, and an appropriate amount of latex reclaimed rubber is used to effectively reduce the cost of raw materials.

When natural rubber/synthetic rubber/latex reclaimed rubber are used together to prepare the inner layer of ordinary hoses, sulfur/thiazole accelerators/sulfenamide accelerators are generally used in the vulcanization system; the amount of sulfur is generally controlled at 1.5-2.5 parts, and the amount of latex reclaimed rubber When higher, the dosage of sulfur and accelerator can be appropriately increased. The inner layer of ordinary hoses containing latex reclaimed rubber is recommended to be reinforced with high wear-resistant carbon black, semi-reinforced carbon black or general-purpose carbon black, and filled with calcium carbonate, clay, etc. The amount of carbon black is generally among 40-60 parts . The latex reclaimed rubber of heavy oil, pine tar, asphalt, and petroleum resin is a common softener for preparing the inner layer of ordinary hoses. When preparing the inner rubber of a coreless method or requiring good stiffness, try to use a solid softener.

2. Main points of formula design of outer layer rubber of ordinary rubber hose mixed with latex reclaimed rubber

The outer layer of the ordinary hose is the second working surface, which mainly protects the inner layer of the hose from external damage. It needs to meet the requirements of the use environment and working conditions, such as good wear resistance, tear resistance, weather resistance, etc. Neoprene 2ELYY921 or natural rubber/styrene-butadiene rubber is processed with rubber as raw material; an appropriate amount of latex reclaimed rubber can be mixed, and the overall rubber content of the formula is controlled at about 35%.

The outer layer of ordinary hoses is mixed with latex reclaimed rubber, and sulfur/sulfenamide accelerators are recommended for the vulcanization system. The outer layer of ordinary hoses containing latex reclaimed rubber is mostly reinforced with semi-reinforced carbon black and general-purpose carbon black, and filled with clay, calcium carbonate, etc. The amount of reinforcing agent is slightly lower than that of the inner layer of ordinary hoses. In actual production, ester softeners and petroleum-based softeners are used for the outer layer of ordinary hoses mixed with latex reclaimed rubber, and the processing performance of the rubber is better; if necessary, an appropriate amount of solid softeners can be added.

Ordinary rubber hose also includes filling glue and cloth cleaning glue. The editor will continue to discuss related issues with you in the next issue.

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