recent progress in the rubber antioxidants Rubber Auxiliary Agent
- Classification:Chemical Auxiliary Agent
- Purity:96%
- Type:Antioxidant
- Appearance:Light brown or white powder or granule
- MOQ:1 ton
- Application:used in manufacture of tires
- Production Capacity:1000 Metric Tons per Month
- Package:20kg kraft bags,500kgs/pallet
4010na rubber antioxidant: enhancing durability,4010na is a widely used rubber antioxidant that plays a crucial role in improving the durability and performance of rubber products. this article provides an in-depth overview of 4010na, highlighting its characteristics, applications in rubber product manufacturing, compatibility with other products, and essential cons
compared to traditional antioxidant 4010na, it is found that the eda-cds showed the strongest photoluminescent intensity and superior antioxidative effect for sbr.
synergistic effects of antioxidant and silica on enhancing
the results shall indicate that, in comparison with 4010na/cb/nr composite, there existed synergistic effect of antioxidant 4010na and silica in 4010na/sio 2 /nr composite on greatly enhancing thermo-oxidative aging resistance of nr material.
antioxidant 4010na (ippd) price,antioxidant 4010na (ippd) generic family: additive -- antioxidant / heat stabilizer; supplied by: shanghai potomer international trade co., ltd. it is grayish purple flake or granular crystal.
understanding antioxidant agent 4010na (ippd)- taizhou
antioxidant agent 4010na (ippd) offers a balance between high performance and environmental safety. its non-toxic and non-carcinogenic nature aligns with stringent regulatory standards, promoting its use across diverse applications without compromising on health and safety aspects.
rubber antioxidant 4010 (ippd) with best price,Rubber antioxidant 4010 (ippd) chemical name: n-isopropyl-n'-phenyl-p-phenylenediamine. Molecular formula: c15h18n2. It is commonly used in tire manufacturing and can significantly improve the aging resistance and overall performance of rubber, helping to improve durability and safety.
antioxidant 4010na (ippd) manufacturer
application: a widely used antioxidant with high efficiency and many purpose, especially for natural rubber, many kinds of synthetic rubber products and their latexes. packing: in 20kgs bag.
rubber antioxidant 4010na(ippd) price,rubber antioxidant 4010na (ippd) a high activity antioxidant for matural and synthetic rubber provides powerful antiozonant and antioxidant properties with excellent high temperature, fatigue and flex resistance to rubber compounds.
rubber antioxidant ippd (4010na) (high-class) with best quality
rubber antioxidant ippd(4010na) (high-class) by henan rtenza is n-isopropyl-n'-phenyl-p-phenylenediamine grade. it acts as an antioxidant. it is suitable for natural rubber and synthetic rubber especially for the prevention of thermal deterioration on nbr.
effectiveness of different kinds of antioxidants in resin,the effectiveness of several antioxidants belonging to different chemical classes such as p-phenylene diamine (antioxidant 4010na), secondary amine (antioxidant 445), quinoline (antioxidant rd), and phenolic (bht, 1010, 2246) on the performance of a resin-cured biir vulcanizate was investigated.
- Does antioxidant 4010na improve the physicomechanical properties of Biir vulcanizate?
- The results show that the physicomechanical properties of the BIIR vulcanizate severely deteriorate when antioxidant 4010NA is used. Among the other antioxidants used, the phenolic-type antioxidant BHT is found to be better for the resin-cured BIIR vulcanizate of this study.
- What is the absorption peak of antioxidant mb/4010na/rd?
- The absorption peak at 1715 cm −1 appears at the aging time of 48 h for the control sample, 96 h for the new antioxidant ZDMA, 168 h for the traditional antioxidant package MB/4010NA/RD, the combined antioxidant MB/MC and the synergistic antioxidant MB/MC/ZDMA, respectively.
- Does antioxidant mb/4010na/rd change crosslinking density?
- Especially for the traditional antioxidant package MB/4010NA/RD, the change in crosslinking density is even larger than that of the control sample without any antioxidant. In addition, the change in crosslinking density is about 150% by using the combined antioxidant MB/MC after aging for 216 h.
- Can antioxidant 2246 be grafted to SIO 2?
- Zhong et al. proposed a novel solid-phase method to graft the antioxidant 2246 on the surface of SiO 2 with the aid of a silane coupling agent . The as-prepared SiO 2 -s-2246 performed better than pristine antioxidant 2246 in protecting rubber from thermo-oxidative aging because of the elimination of the “blooming” defects.