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- Classification:Chemical Auxiliary Agent
- Purity:96.9%
- Type:Rubber chemicals
- Appearance:Amber to Brown Flake
- Place of Origin:Henan, China
- Application:Rubber Industry
- Production Capacity:50000000t/Year
- Package:25 kg plastic woven bag
rubber antioxidant 4010 (ippd) supplier,application: it is an antioxidant with high efficiency and multi-functions, being used in a wide range of applications. it is applicable in natural rubber, many kinds of synthetic rubber products and their latexes. it can be used in airplane, car tyre, bicycle tyre, as well as rubber products and latexes in cable industry.
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recent progress in the rubber antioxidants price,fig. 7 shows that various antioxidants, such as carbon dots (the antioxidant of carbon dots will be discussed later), antioxidant rd, antioxidant 4010na, antioxidant 4020, and antioxidant sp, are encapsulated into the hollow fillers, such as hnts, silica nanorods, carbon nanotubes, mesoporous nano-silica, which allow a sustained release of.
antioxidant 4010na (ippd) rchchem.com
antioxidant 4010na (ippd) 0.30 % max. 0.20 % max. property: soluble in many organic solvents such as alcohol, oil and etc, hardly soluble in petrol and insoluble in water. it is easily oxidized and discolored on the exposure to air and light, but there is no effect on its properties. application: a widely used antioxidant with high efficiency.
n-isopropyl-n′-phenyl-1,4-phenylenediamine 101-72-4,chemical properties. dark grey to black solid. uses. this rubber chemical is used as an antioxidant. the main occupational sources are tyres. uses. n-isopropyl-n-phenyl-4-phenyle-nediamine is used in protection of rubber against oxidation, ozone, flex-cracking, and poisoning by copper and manganese; antidegradant in natural rubber, styrene-butadiene, nitrile-butadiene, butadiene, and.
rubber antioxidant 4010na (ippd) (top-grade) price
rubber antioxidant 4010na (ippd) (top-grade) by shandong stair chemical & technology is a n-isopropyl-n'-phenyl-p-phenylene diamine grade. it acts as an antioxidant. rubber antioxidant 4010na (ippd) (top-grade) is used in vehicle tires, shoes and belts.
rubber antioxidant 4010na(ippd) with high quality,generic family: additive -- antioxidant / heat stabilizer supplied. properties: 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.
chemical antioxidant ippd 4010na customized packing
IPPD/4010 or N-isopropyl-N’-phenyl-p-phenylenediamine, is a synthetic rubber antioxidant widely used in the tire and rubber industry. It provides protection against degradation caused by heat, oxygen, and flex-cracking.
synergistic effects of antioxidant and silica on enhancing,however, in aging experiments, the anti-oxidative efficacies of 4010na in 4010na/nr or 4010na/cb/nr composite are inferior to that in 4010na/sio 2 /nr composite (based on the difference of carbonyl increase rate r with and without 4010na in table 3). in our opinion, this phenomenon is associated with the physical loss (or migration) of antioxidant.
- Does 4010na/cb/Nr composite increase thermo-oxidative aging resistance?
- The results shall indicate that, in comparison with 4010NA/CB/NR composite, there existed synergistic effect of antioxidant 4010NA and silica in 4010NA/SiO2 /NR composite on greatly enhancing thermo-oxidative aging resistance of NR material.
- Does antioxidant 4010na increase k value in Nr/CB/Nr composite?
- Moreover, upon adding antioxidant 4010NA into NR or CB/NR composite, the K values for 4010NA/NR or 4010NA/CB/NR composite did not exhibit a significant improvement. In contrast, it is noticeable that the addition of 4010NA caused a significant increase in K value for 4010NA/SiO 2 /NR composites in comparison with SiO 2 /NR composite.
- Does antioxidant 4010na and silica enhance thermo-oxidative aging assistance?
- In this work, the synergistic effects of antioxidant 4010NA and silica on enhancing thermo-oxidative aging assistance for NR were investigated by experiments and molecular simulations, and the mainly conclusions were generalized as follows:
- Does antioxidant 4010na reduce FFV and FCV of NR?
- (1) By means of QM simulation, the protective mechanism of antioxidant 4010NA for NR was elucidated quantitatively from the point of free energy of dissociation and energy barrier of reaction. (2) The addition of silica was capable of reducing FFV and FCV of NR, thereby improving O 2 barrier ability of NR.