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Polyethylene wax (PE wax), also known as polymer wax, abbreviated as polyethylene wax. Due to its excellent cold resistance, heat resistance, chemical resistance, and wear resistance, it has been widely used. In normal production, this wax can be directly added as an additive to polyolefin processing, which can increase the gloss and processing performance of the product. As a lubricant, it has stable chemical properties and good electrical performance. Polyethylene wax has good compatibility with polyethylene, polypropylene, polyvinyl acetate, ethylene propylene rubber, and butyl rubber. Can improve the flowability of polyethylene, polypropylene, ABS, and the demolding properties of polymethyl methacrylate and polycarbonate. Compared to other external lubricants, polyethylene wax has a stronger internal lubrication effect on PVC.
Oxidized polyethylene waxis made from polyethylene wax after special oxidation process. The molecular chain has certain functional groups, so its miscibility with polar resin has been significantly improved. Due to a certain amount of carbonyl and hydroxyl groups in the molecular chain of oxidized polyethylene wax, the compatibility with fillers, pigments and polar resins is significantly improved. The wettability and dispersibility in polar system are better than that of polyethylene wax, and it also has coupling property. Due to its high melting point and low viscosity, it promotes good resin fluidity, relatively reduces the power consumption of resin mixing, reduces the adhesion between resin and mold, is easy to remove film, plays the role of internal and external lubrication, and has good antistatic property. In the plastic processing industry, the internal and external lubrication of PVC is relatively balanced. The lubricity of oxidized polyethylene wax added to the rigid, transparent and opaque PVC formula is better than that of other lubricants. It can also be used as raw and auxiliary materials for textile softener, car wax and leather softener. It can be used as dispersant, lubricant, brightener and coupling agent of pigment or filler such as dense masterbatch, polypropylene masterbatch, additive masterbatch and filling masterbatch. Rubber and plastic processing lubricants, film removers and phase solvents. In the formulation of waterborne coatings and inks, it provides excellent wear resistance, adhesion resistance and scratch resistance
Lubricants are used in plastic processing to enhance the demolding properties of products and prevent defects caused by adhesion within the machine or mold. Usually added to the molding compound or coated on the surface of the mold cavity. Common lubricants include fatty acids and their salts, as well as long-chain fatty hydrocarbons. According to the different mechanisms of lubricant action, it can be divided into external lubricants and internal lubricants. (1) External lubricant: This lubricant has poor compatibility with molding resins, so it is commonly used in molding processing machinery or molds. It forms a lubricating layer between the lubricant and the resin, which facilitates resin flow and product demolding, such as paraffin. (2) Internal lubricant: This type of lubricant has good compatibility with resin and is often mixed into the resin to reduce its melt viscosity and improve its flowability. Such as butyl stearate, lead stearate, etc. Stearates are both good lubricants and effective stabilizers.
The main function of PVC impact modifier is to improve the impact resistance of PVC plastic products, enhance their toughness and hardness. PVC belongs to low-temperature brittle materials, which are prone to forming notches or cracks under stress impact. Therefore, adding impact modifiers can effectively improve these problems. Common PVC impact modifiers and their effects CPE (Chlorinated Polyethylene): CPE is one of the commonly used PVC impact modifiers, which has the characteristics of wide source and low price. It not only can toughen PVC, but also has cold resistance, weather resistance, and chemical resistance. CPE is widely used in the production of PVC pipes and profiles, with a typical addition amount of 5-15 parts. ACR (methyl methacrylate acrylate copolymer): ACR is one of the best impact modifiers developed in recent years, which can significantly improve the impact strength of materials. ACR is particularly suitable for PVC plastic products used outdoors due to its excellent aging resistance and processing performance. MBS (methyl methacrylate butadiene styrene copolymer): MBS has good compatibility with PVC and can significantly improve the impact strength of PVC while maintaining its transparency. MBS is commonly used for transparent PVC products, but its weather resistance is poor and it is not suitable for long-term outdoor use. Application scenarios and advantages and disadvantages of different impact modifiers CPE: It has a wide range of sources and low prices, but the use of chlorine containing components is limited in European and American countries, and its impact resistance is generally . ACR: It has the best impact resistance, good weather resistance, and is suitable for outdoor use, but its price is relatively high. MBS: Good transparency, but poor weather resistance, not suitable for outdoor use, high price
Introduction to PVC processing aids PVC processing aid is a chemical substance specifically used to improve the processing performance of polyvinyl chloride (PVC) plastic products. They play a crucial role in the production process of PVC plastic products, significantly improving product quality and production efficiency. Definition and Function PVC processing aids are multilayer ultra-high molecular weight polymers made of acrylate monomers through multi-stage lotion polymerization. Their main functions include: Improving processing performance: By improving the flowability, thermal strength, and ductility of PVC melt, plasticization time and productivity can be increased. Improve product quality: reduce mold expansion phenomenon, enhance resistance to elongation or stretching deformation, increase solution viscosity, and improve internal and surface quality. Types and Applications Common PVC processing aids include: ACR: The best impact modifier developed in recent years, suitable for outdoor PVC plastic products, with good processing performance, smooth surface, and good aging resistance. CPE: Chlorinated polyethylene, commonly used in the production of PVC pipes and profiles, with a dosage of 5-15 parts per square meter. MBS: It has good compatibility with PVC and is commonly used in transparent products, but its price is relatively high and it is not suitable for long-term outdoor use. ABS: The usual dosage is 5-20 parts, but it has poor weather resistance and is not suitable for long-term outdoor use. EVA: Often used in combination with other impact resistant resins, but it is difficult to obtain transparent products. History and Development PVC processing aids were first developed by the American company Rohm and Haas in 1958, and similar products were subsequently developed by countries such as Japan, South Korea, and Germany. With the widespread application of PVC products, processing aids have been widely used since the 1970s. Market and application areas At present, the world's major manufacturers of PVC processing aids include Mitsubishi from Japan, Zhongyuan Chemical, Rohm and Haas from the United States, and Bear from Germany. The Beijing Institute of Chemical Technology and Shanxi Institute of Chemical Technology were among the earliest to engage in research on PVC processing aids in China. Shanghai Shanhu Chemical Plant was the first to achieve industrial production in the early 1980s. In summary, PVC processing aids play an important role in the production of PVC plastic products, significantly improving production efficiency and product performance by improving processing performance and product quality.
The FANGPOWER SW570-1 POWERMAX 2 Seats ATV: A Comprehensive Overview of the 499cc ATV The FANGPOWER SW570-1 POWERMAX 2 Seats ATV is a robust and powerful all-terrain vehicle designed for both adventure and utility. With its spacious design and advanced features, it offers a comfortable and thrilling ride for two. Hereâ??s an in-depth look at what makes the FANGPOWER SW570-1 POWERMAX a standout choice in the ATV market. Engine and Performance Engine Type: Single-cylinder, 4-stroke liquid-cooled, 4 valves SOHC Displacement: 499cc Bore x Stroke: 92�?75 mm / 3.62�?2.95 in Max Power/RPM: 29Kw (6750�±500r/min) Horsepower: 39.4HP Max Torque: 44N.m (6000�±500r/min) Fuel Supply: DELPHI EFI Transmission: CVT Compression Ratio: 10.3:1 Spark Plug Type: DCPR7E (or NGK) Max Speed: 85 km/h Ignition and Starting System Starting Type: Electric start Battery Capacity: 12V20Ah Brakes and Suspension Front Brakes: Four-wheel hydraulic discs Rear Brakes: Four-wheel hydraulic discs, rear wheel parking Parking Brake: Hand-actuated Front Suspension: Double A-arm independent suspension Rear Suspension: Double A-arm independent suspension Front/Rear Shock Absorber: Coil spring oil damping Suspension Travel: Front: 166 mm / 6.54 in Rear: 172 mm / 6.77 in Design and Comfort Dimensions (L x W x H): 2200�?1180�?1270 mm / 86.6�?46.5�?50 in Wheelbase: 1370 mm / 53.9 in Seat Height: 900 mm / 35.4 in Front/Rear Track: 970 mm / 38.2 in Ground Clearance: 280 mm / 11 in Min. Turning Radius: 8000 mm / 314 in Drive System: 2WD/4WD/Front differential lock Gear Shift/Order: Manually / Pâ??Râ??Nâ??Hâ??L Tires and Wheels Front Tires: ATV 25�?8-12 Rear Tires: ATV 25�?10-12 Rim Front: 12�?6.0 cast aluminum Rim Rear: 12�?8 cast aluminum Capacity and Weight Dry Weight: 365 kg / 804 lbs Gross Weight: 425 kg Front Rack Capacity: 20 kg / 44 lbs Rear Rack Capacity: 40 kg / 88 lbs Payload: 205 kg Pulling Load: 150 kg / 330 lbs Tongue Weight: 30 kg / 66 lbs Fuel Capacity: 20 L / 5.28 gal Packaging and Shipping Package Size: 2270�?1150�?843 mm Loading Quantity: 20FCL: 10 PCS 40HQ: 30 PCS Conclusion The FANGPOWER SW570-1 POWERMAX 2 Seats ATV is an exceptional vehicle designed for those who demand power, comfort, and versatility. Its advanced engine, comprehensive suspension system, and spacious design make it ideal for both recreational adventures and practical utility. With a variety of color options and robust capabilities, the SW570-1 POWERMAX promises a superior riding experience for all types of terrains.
ACM IMPACT MODIFIER is an unique impact modifier which is an interpenetrating network copolymer (IPN ) with the structure of CPE grafted Polyacrylate . It has balance impact strength and toughness which endow it better performance than other general type impact modifiers like CPE and MBS. Excellent impact strength under low temperature Excellent toughness and hardness for PVC products. Better weather-resistance better surface glossiness for PVC finished products
We are China biggest oxidized polyethylene wax manufacturer with capacity 15,000MT per year,we have been in production of OPE wax more than 20 years. With the high and stable quality,currently we have taken China biggest market share in pvc foam board,WPC,SPC and pvc stabilizer.We also have taken India 1st market share since 2017 which could be seen from the India custom data. We have advantages in high density oxidized polyethylene wax , Our OA series OPE wax can completely replace Honeywell and BASF products with more competitive price widely used in the PVC products and PVC stabilizer industry. We have also established long-term cooperation with international stabilizer manufacturers such as Baerlocher and Sunace in some advantage products like OA716 which has high melt point and good fusion,it can be used in most pvc products to replace Honeywell AC316. OA719 which has high viscosity and high melt point to replace Honeywell AC307,with the highest viscosity it take good dispersivity in high filler formulation and promote good fusion to have better surface in pvc products. OA316A+ our R&D work out the advantage catalyst same as A-C 316A, it is the only grade in the market could totally replace Honeywell A-C 316A in most application like PVC products, PVC foam board, calcium zinc stabilizer, PVC stabilizer, color masterbatch, coating, cable,emulsion , printing, dyeing and textile, asphalt modification, etc.
Shandong Micflon Technology Co.,Ltd. is a processing company specialized in production, marketing and research of high performance Fluorine materials with certification of ISO9001, ISO14001 and ISO45001. Our products range from PTFE, PFA, PCTFE to their machined parts, which can be mainly used in the field of Semiconductor, 5G, New Energy, Medical, Aviation, etc.. At present, our customers have spread to more than 30 countries and areas, including Europe, USA, Korea, Japan, Brasil and China. Since establishment of our company, we are committed to research and production of high performance of Fluorine materials, we also started our Modified PTFE compounds project from the second half year of 2022. As a quality-driven company, our independent research laboratory undergo strict testing from raw material to finished products, ensuring our stable and high-level quality standards. Micflon is your reliable fluorine material solutions partner.
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1.Industrial heating: Heat transfer oil can be used in industrial heating systems, such as heat medium furnace, hot blast stove, hot water boiler, etc. It can transfer heat to the equipment or process in the production process, providing the required thermal energy. 2.Chemical production: Heat transfer oil is widely used in chemical production, for heating reactors, distillation towers, drying equipment, etc. It can provide stable temperature control to ensure the effect and quality of chemical reactions or material handling. 3.Food processing: Heat conduction oil can be used in food heating and cooking processes, such as deep fryers, ovens, wok, etc. It can provide a uniform heating effect and ensure the cooking quality and flavor of the food. 4.Pharmaceutical industry: Heat conduction oil is used in the pharmaceutical industry for heating reactors, drying equipment, cooling equipment, etc. It can provide precise temperature control and ensure the production process and quality of the drug. 5.Solar thermal energy utilization: thermal oil can be used in solar thermal energy utilization systems, such as solar collectors, water heaters, etc. It can convert solar energy into heat and transfer it to devices or uses that require heating. 6.Aerospace: Thermal oil is used in aerospace cooling and temperature control systems, such as aircraft engine cooling, spacecraft temperature control, etc. It can provide stable heat transfer and temperature control under extreme temperature conditions.
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