chemical additive rubber antioxidant ippd 4010na feiya
chemical additive rubber antioxidant ippd 4010na feiya
chemical additive rubber antioxidant ippd 4010na feiya
chemical additive rubber antioxidant ippd 4010na feiya
chemical additive rubber antioxidant ippd 4010na feiya
investigation of the compatibility and damping performance

Investigation of the Compatibility and Damping Performance

In this study, antioxidant N-isopropyl-N¡¯-phenyl-p-phenylenediamine (4010NA) was selected as a damping additive. NBR was selected as a polar rubber matrix. Small molecule 4010NA contains imino, which is easy to form H-bonds with NBR. Firstly, antioxidant 4010NA was grafted onto GO to prepare an anti-migration antioxidant (GO-4010NA).

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synergistic effects of antioxidant and silica on enhancing

Synergistic effects of antioxidant and silica on enhancing

In this work, the thermo-oxidative aging performance of antioxidant N-isopropyl-N¡ä-phenyl-p-phenylenediamine (4010NA)/silica (SiO 2)/natural rubber (NR) composite was evaluated by the variations of mechanical properties and chemical structure after aging at 100 ¡ãC.

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recent progress in the rubber antioxidants: a review

Recent progress in the rubber antioxidants: A review

Recent progress in the rubber antioxidants: A review is a comprehensive and systematic article that covers the latest developments and strategies of antioxidants for rubber. It provides a clear and concise introduction of the oxidation process and mechanism for rubbers, and discusses the factors affecting the anti-oxidative efficiency of rubber antioxidants. This article is a valuable source

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ijerph | free full-text | rubber antioxidants and their

IJERPH | Free Full-Text | Rubber Antioxidants and Their

Antioxidants are prevalently used during rubber production to improve rubber performance, delay aging, and extend service life. However, recent studies have revealed that their transformation products (TPs) could adversely affect environmental organisms and even lead to environmental events, which led to great public concern about environmental occurrence and potential impacts of rubber

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rubber antioxidant ippd(4010na) - rubber accelerator

Rubber Antioxidant IPPD(4010NA) - rubber accelerator

Molecular Formula: C 15 H 18 N 2 Molecular Weight: 226.31 CAS No .: 101-72-4 Chemical Structure: Specification: 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.

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chemical additive rubber antioxidant ippd 4010na - feiya

Chemical Additive Rubber Antioxidant IPPD 4010NA - Feiya

Chemical Additive Rubber Antioxidant IPPD 4010NA 4010NA - Feiya Products Made In China, China Manufacturer. Trade Name: 4010NA,IPPD Chemical Name: N-Isopropyl-N-phenyl-p-phenylenediamine Molecular Formula: C15H18N2 Molecular Weight: 226.31 CAS NO: 101-72-4 Parameter: Trade Name: 4010NA,IPPD Chemical Name: N-Isopropyl-N-phenyl-p-phenylenediamine

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new evidence of rubber-derived quinones in water, air, and

New Evidence of Rubber-Derived Quinones in Water, Air, and

Mixed antioxidants composed of antioxidant IPPD and novel rare earth lanthanum complex were used as an additive to prep. natural rubber (NR) samples. The variations of macro-properties, surface characterizations, and internal groups were investigated by mech. testing, XPS, and thermogravimetric anal. coupled with Fourier transform IR

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recent progress in the rubber antioxidants: a review

Recent progress in the rubber antioxidants: A review

As shown in Table 1, many commonly used rubber antioxidants are damaging to human health and the environment. For example, the antioxidant MB. Concluding remarks. Antioxidants are indispensable additives in the rubber industry as they enhance the reliability and service life of the rubber product by protecting it from degradation.

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influence of the molecular structure of phenylamine

Influence of the molecular structure of phenylamine

The structure of antioxidants significantly affects the anti-migration and thermal-oxidative aging properties of nitrile butadiene rubber (NBR) composites, which are crucial for applications in aerospace, biomedical, and fuel cell stack sealing industries. The findings reveal that the migration rate of N -(4-anilino phenyl) maleic imide (MC), with a reactive double bond, is only 15.6%

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n-isopropyl-n'-phenyl-1,4-phenylenediamine

N-Isopropyl-N'-phenyl-1,4-phenylenediamine

Infobox references. N-Isopropyl-N¡ä-phenyl-1,4-phenylenediamine (often abbreviated IPPD) is an organic compound commonly used as an antiozonant in rubbers. [1] Like other p-phenylenediamine -based antiozonants it works by virtue of its low ionization energy, which allows it to react with ozone faster than ozone will react with rubber. [2]

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