anti-aging performance advantages of rubber antioxidant ippd
- Classification:Chemical Auxiliary Agent
- Purity:98.9%
- Type:Anti-aging agent
- Appearance:Dark brown to dark violet pastilles
- Boiling point:260°C
- Application:For ethylene propylene, etc.
- Production Capacity:10000 Kilogram/Kilograms per Day
- Package:As the client's request
enhancing rubber performance with antioxidant ippd,discover how the antioxidant ippd enhances the performance of rubber products. learn about its unique properties, applications in various industries, and the growing demand for high-performance antioxidants.
explore the comparative analysis of rubber antioxidant ippd (n-isopropyl-n'-phenyl-p-phenylenediamine) with other antioxidants in this comprehensive review. learn about the anti-aging advantages, diverse application fields, and cost-effectiveness of ippd in the rubber manufacturing industry.
rubber antioxidants: tmq, 6ppd, ippd chemical products
rubber antioxidant IPPD, or n-isopropyl-n'-phenyl-p-phenylenediamine, is a synthetic rubber antioxidant widely used in the tire and rubber industry. It prevents degradation caused by heat, oxygen, and flex cracking.
rubber antioxidant ippd: enhancing competitiveness in the,discover how rubber antioxidant ippd enhances the performance and market competitiveness of rubber products by improving aging resistance, economic benefits, and production technology. stay ahead with insights into market trends.
4010na, ippd greenchemintl.com
antioxidant ippd is a gray to dark gray solid. it is a general-purpose excellent antioxidant for natural rubber, synthetic rubber and latex. it has excellent protective properties against ozone and flex cracking. it is also an excellent antioxidant for heat, oxygen, light, etc. and general aging.
recent progress in the rubber antioxidants Rubber Auxiliary Agent,in the thermal-aging testing, the retention of elongation at break for the rubber sample with combined antioxidants (mbz:445=2:1) is superior to that of other samples (fig. 2 c), demonstrating the synergistic antioxidative effects between mbz and 445 for epdm.
4010na/IPPD Rubber Antioxidant Auxiliary Agent
product details. rubber antioxidant ippd (4010na) chemical structure: chemical name: n-isopropyl-n” –phenylenediamine. molecular formula: c15h18n2. molecular weight: 226.32. cas no.: 101-72-4. properties: it is purple gray crystal. soluble in oil, alcohol and other organic solvents; hardly soluble in water.
rubber antioxidant tmq for sale products,antioxidant tmq is a widely used antioxidant, especially used in the rubber industry. similar to other antioxidants, tmq acts as an anti-aging agent and protects rubber from heat and heat.
advantages of rubber antioxidant ippd in tropical regions
explore the benefits of rubber antioxidant ippd in enhancing the durability and market competitiveness of rubber products in tropical climates. learn how ippd can extend the service life of rubber and improve product resistance to aging.
6ppd rubber antioxidant: characteristics, applications,6ppd (n-(1,3-dimethylbutyl)-n'-phenyl-p-phenylenediamine) is a highly effective rubber antioxidant with notable characteristics, including excellent heat resistance, anti-flex cracking properties, and compatibility with various rubber types.
- Does antioxidant 2246 protect rubber from aging?
- Among them, antioxidant 2246 has a good performance to protect rubber from aging caused by heat, oxygen, and metals. Because hydrogen in phenolic antioxidants can combine with the oxygen in air, their antiaging efficiency is therefore lowered compared with amine antioxidants [21, 22].
- What are the different types of antioxidants in rubber?
- Chemical antioxidants are generally classified as amine, phenolic, heterocyclic, phosphite, and nickel salts (nickel dibutyl dithiocarbamate (NBC)) antioxidants according to their chemical structure (Figure 1). During the rubber production, various antioxidants are often used as a mixture to improve performance and ensure an antiaging effect.
- What are amine antioxidants in rubber?
- Amine antioxidant is the most common rubber antioxidant, which was produced as early as the 1970s and widely used in the rubber industry. Typical amine antioxidants include diaryl-secondary amine, acetone-amine condensation product, p -phenylenediamine, and aldehyde-amine condensation product antioxidants .
- Are rubber antioxidants a rational design?
- The development of medical antioxidants also inspires the rational design of rubber antioxidants. Recently, Sun, et al. synthesized a novel antioxidant (APPT) containing aromatic amine, thiourea and allyl groups by the reaction between N-phenyl-p-phenylenediamine and allyl isothiocyanate (Fig. 3 b) .