Azodicarbonamide
Oxybis BenzeneSulfonyl Hydrazide
Known for its offers excellent electrical properties, our Oxybis BenzeneSulfonyl Hydrazide is of impeccable quality. The company is a proficient Manufacturer, Exporter and Supplier of Oxybis BenzeneSulfonyl Hydrazide in Rajasthan, India. Decomposition of Oxybis BenzeneSulfonyl Hydrazide does not liberate ammonia; it can be safely used for cellular cable insulation. The Oxybis BenzeneSulfonyl Hydrazide is odorless, non-staining and non-discoloring decomposition residue, which can be used in the processing of light colored products.Application In the production of micro cellular rubber/ EPDM rubber, rigid PVC foam, coaxial, cables and crown cork linings. For cellular cable insulation. For the production of expanded LDPE/ EVA foam. In small quantity for the control of sink during injection molding of structural foam products. To remove excessive residual soda from carpet underlay which many harm floor finishes. For continuously extruded closed cell profiles for automotive door seals, low density refrigeration, and air conditioning insulation. In EVA shoe midsoles. In press cured PVC-NBR floats and athletic paddings. To get increased whiteness in PVC footwear and PVC foamed leather cloth. Dosage : 1 – 4 PHR depending on the polymers used & the extent to expansion required.Packing : MICROCELL OBSH is packed in 20 Kgs. HDPE bags/ Fiber drums/ UN approved corrugated paper cartons with a polythene liner inside.StorageIts storage stability is good enough provided it is stored : In a cool and dry place. Away from localized sources of heat. Away from strong alkalis & acids with which it reacts. Flammability : MICROCELL OBSH is a highly flammable and have dust combustion hazard. Decomposition of MICROCELL OBSH on heating causes evolution of fumes resembling smoke. Which can lead to Fire - In case of Fire, use water.Toxicity : MICROCELL OBSH is of low toxicity by skin contact and is mildly irritating to the eyes, itsdecomposition residues are also of low toxicity.Handling : MICROCELL OBSH is substantially free from handling problems, care should be taken to prevent its contact with skin & eyes. Avoid creating dusty conditions because of possibility of respiratory.Special Features Because of its odorless, non-staining and non-discoloring decomposition residue, MICROCELL OBSH can be used in the processing of light colored products. Since MICROCELL OBSH offers excellent electrical properties and its decomposition does not liberate ammonia, it can be safely used for cellular cable insulation. Alkanolamines and oxidizing agents like peroxides can lower the decomposition temperature of MICROCELL OBSH making it useful for special blowing applications at relatively low processing temperatures. MICROCELL OBSH decomposes in an alkaline latex system at steam temperature producing gas and acidic decomposition products. The latter coagulates the latex in the foamed state, thereby providing a unique method for producing expanded rubber products.
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Widely used in the production of sponge rubber and slipper soles, our p-Toluenesulfonyl Hydrazide has huge demand in the market. We are an eminent Manufacturer, Exporter and Supplier of p-Toluenesulfonyl Hydrazide in Rajasthan, India. The p-Toluenesulfonyl Hydrazide we make available is manufactured in adherence with international quality standards and norms. Owing to our reliable logistics network, we are capable of delivering bulk orders of the p-Toluenesulfonyl Hydrazide.Application The production of sponge rubber and slipper soles. The foaming of unsaturated polyesters. The expansion of most type of rubber and rubber cloth laminates. Low temperature vinyl applications where decomposition is desire prior to complete fusion of PVC. Production of epoxy foam where 4,4’ – Oxybis (benzenesulfonylhydazide) cannot be used because of its higher decomposition temperature. When MICROCELL TSH is incorporated into unsaturated polyester systems, it reacts exothermically with other components of the system to give cross linked polyester foams.Dosage : 1.5 – 6.0 PHR depending on the polymers used & the extent to expansion required.Packing : MICROCELL TSH is packed in 25 Kgs. HDPE bags/ Fiber drums/ UN approved corrugated paper cartons with a polythene liner inside.StorageIts storage stability is good enough provided it is stored : In a cool and dry place. Away from localized sources of heat. Away from strong alkalis & acids with which it reacts. Flammability : MICROCELL TSH is non-flammable and does not support combustion. Decomposition of MICROCELL TSH on heating causes evolution of fumes resembling smoke. In case of Fire, use water.Toxicity : MICROCELL TSH is of low toxicity by skin contact and is mildly irritating to the eyes, its decomposition residues are also of low toxicity.Handling : MICROCELL TSH is substantially free from handling problems, care should be taken to prevent its contact with skin & eyes. Avoid creating dusty conditions because of possibility 7of respiratory.Special Features MICROCELL TSH melts at 100OC and decomposes at 110OC. It does not give adequate rate of gas evolution below 140OC when decomposes thermally. Useful quantities of gas can be generated at temperature as low as 120OC while activating compounds as urea, thiourea, certain, amines and if metal containing compounds are present. It decomposes to give a solid residue of a disulphide, a sulphide sulphone and a gaseous mixture of nitrogen and steam. MICROCELL TSH does not dissolve in oils and plasticizers, generally used in compounding. Due to its fine particles. MICROCELL TSH can be dispersed during processing if it includes a milling operation. MICROCELL TSH can also be pre-mixed with appropriate oil & Plasticizer. When MICROCELL TSH in incorporated in to stock by not processing methods involving temperature above 100OC, it loses its efficiency due to pre-decomposition. MICROCELL TSH produces microcellular sponge which does not get discoloured in curing or on exposure to light. MICROCELL TSH does not import any objectionable odour to rubber sponge compounds. MICROCELL TSH causes a marked activation of cure system, hence addition of secondary activation accelerator is not needed
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