Chlumiao®8627 cas 68610-62-8

三(C12-15 烷基)亚磷酸酯

化学文摘社编号 : 68610-62-8

分子量 608

申请说明

一种酚类环保型三烷亚磷酸酯抗氧化剂,不含酚、辛基酚、壬基酚和双酚 A,可广泛应用于 PVC、LLDPE、HDPE、ABS、SBS 和聚氨酯等聚合物,具有优异的热稳定性和颜色稳定性。作为一种高效的辅助稳定剂和螯合剂,它可用于 PVC 材料(如 PVC 稳定剂、PVC 板材/异型材、PVC 地板等),有效提高其加工热稳定性和光稳定性,并保持产品的颜色稳定性和透明度。它还可用于 SBR、NBR、SBS 和聚氨酯等各种油墨中。
在聚合物中,可提高产品的耐热性。建议添加量:0.1-2.0%

说明

质量指数

产品外观无色透明液体
色度(APHA):≤50
酸值(mgKOH/g):≤0.1
折射率(25℃): -
酚含量 wt% : 净含量

包装规格

170 千克铁桶

应用

PVC、LLDPE、HDPE、ABS、SBS、PU、SBR、CR

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低杂质磷酸盐
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CHLUMIAO® 种子 化学文摘社编号 42774-15-2 抗氧化剂 SEED / Omnistab LS 5519 / 光稳定剂 856
抑制酚类抗氧化剂
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CHLUMIAO® 2,6-二叔丁基苯酚 化学文摘社编号 128-39-2 2,6-二叔丁基苯酚
CHLUMIAO® 300 化学文摘社编号 96-69-5 Irganox 300 / 抗氧化剂 300
CHLUMIAO® 2246 化学文摘社编号 119-47-1 Irganox 2246 / BNX 2246
CHLUMIAO® 1222 化学文摘社编号 976-56-7 抗氧化剂 1222 / Irganox 1222
CHLUMIAO® 702 化学文摘社编号 118-82-1 Irganox 702 / 抗氧化剂 702 / Ethanox 702
CHLUMIAO® DBHQ 化学文摘社编号 88-58-4 抗氧化剂 DTBHQ
Chlumiao® MTBHQ 化学文摘社编号 1948-33-0 工业级 2-叔丁基对苯二酚
CHLUMIAO® 1076 化学文摘社编号 2082-79-3 Irganox 1076 / 抗氧化剂 1076
CHLUMIAO® 1010 化学文摘社编号 6683-19-8 Irganox 1010 / 抗氧化剂 1010
CHLUMIAO® 1330 化学文摘社编号 1709-70-2 Irganox 1330 / Ethanox 330
CHLUMIAO® 1520 cas 110553-27-0 Irganox 1520 / 抗氧化剂 1520
游离酚亚磷酸盐 抗氧化剂
CHLUMIAO® 8608 化学文摘社编号 26544-27-4 抗氧化剂 AO DPD / Everaox 202
CHLUMIAO® 430 化学文摘社编号 36788-39-3 抗氧化剂 430 / WESTON 430
Chlumiao® 8608T CAS 1334238-11-7, 69439-68-5 抗氧化剂 8608T
CHLUMIAO® 8627 化学文摘社编号 68610-62-8 抗氧化剂 8627
CHLUMIAO® TDP 化学文摘社编号 25448-25-3 抗氧化剂 TDP
CHLUMIAO® TLP 化学文摘社编号 3076-63-9 抗氧化剂 TLP
CHLUMIAO® TOP 化学文摘社编号 301-13-3 抗氧化剂 TOP
CHLUMIAO® TTDP 化学文摘社编号 77745-66-5 抗氧化剂 TTDP
硫醇酯类 抗氧化剂
Chlumiao® Dltdp 化学文摘社编号 123-28-4 硫代二丙酸二月桂酯
Chlumiao® DSTDP 化学文摘社编号 693-36-7 硫代二丙酸异硬脂酯/抗氧化剂 DSTDP
氨基抗氧化剂
CHLUMIAO® 3114 化学文摘社编号 27676-62-6 Irganox 3114 / 抗氧化剂 3114
CHLUMIAO® 4,4′-联苯酚 化学文摘社编号 92-88-6

4,4′-联苯酚

金属失活剂 抗氧化剂
CHLUMIAO® 1098 化学文摘社编号 23128-74-7 Irganox 1098 / 抗氧化剂 1098

Antioxidants 8627 Application scenarios

1. Polyolefin Processing and Products:

Used in the production of PP and PE (LDPE, LLDPE, HDPE) films, fibers, injection molded parts, pipes, etc. It inhibits thermo-oxidative degradation during processing and use, prevents yellowing and embrittlement, and improves long-term mechanical properties and weather resistance. It is particularly effective in PP fibers and HDPE pressure pipes, with a typical addition level of 0.1% – 0.5%.

2. PVC Stabilization System:

Suitable for rigid PVC (door and window profiles, building panels) and flexible PVC (cable sheaths, films). Often compounded with metal stabilizers such as calcium and zinc, it inhibits thermal degradation during processing, improves initial color and long-term weather resistance, leaves no phenol residue, and meets environmental stabilization system requirements. The addition level is approximately 0.3% – 0.6%.

3. Engineering Plastics and Alloys:

Applied to engineering plastics and alloys such as ABS, PC, PA, and PBT, it prevents thermal degradation during high-temperature processing, improves thermal stability and long-term durability, and is suitable for electronic and electrical enclosures, automotive parts, etc. When combined with UV absorbers, it can enhance outdoor weather resistance.

4. Rubber Industry:

Used in rubber products such as SBR, NBR, and CR (tires, seals, hoses), it delays thermo-oxidative aging, protects the elasticity and mechanical properties of rubber, and reduces performance degradation during high temperatures and long-term use. Its effect is even better when combined with commonly used rubber antioxidants.

5. Coatings, Inks, and Adhesives:

Suitable for solvent-based, water-based, and high-solids coatings, inks, and high-temperature curing adhesives, it prevents oxidation, yellowing, loss of gloss, thickening, and performance degradation in the system. It is especially suitable for outdoor architectural coatings, automotive coatings, billboard inks, and other applications requiring high weather resistance.

6. Lubricating Oils and Greases:

As an extreme pressure anti-wear and antioxidant additive in industrial lubricating oils and greases, it can decompose hydroperoxides, chelate metal ions, and synergistically improve the thermal stability, anti-wear properties, and service life of the oil with sulfurized olefins, making it suitable for high-temperature and high-load conditions.

7. Biodegradable Materials and Specialty Plastics:

Used in biodegradable plastics such as PLA, it can improve heat distortion temperature and processing stability, and reduce degradation; it can also be used in epoxy resin encapsulation materials, and when compounded with magnesium hydroxide, it can act as a flame retardant synergist to improve flame retardant properties.

8. Sealants and Composite Materials:

Used in building sealants (doors, windows, curtain walls, roof waterproofing, etc.), it inhibits aging caused by ultraviolet rays, moisture, and high temperatures, maintaining sealing performance; it can also be used in composite materials to ensure thermal and oxygen stability and color retention during processing and use.

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