KryTech 395
多用途手套结合了切割防护和防水性能,以及隔热性能高达100°C
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CAT. 3
0334
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4X43D
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Type B
JKOPT
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X1XXXX
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具体优势
切割防护
- 出色的耐切割性
耐用性
- 经过认证的耐久性能
工作效率
- 良好的抓握力能够安全地拾取湿滑的物体
保护皮肤
- 全面防水,抵御机械损伤
保证质量
- 无硅树脂,防止金属板和玻璃在喷漆前存在痕迹和瑕疵
应用行业
汽车/机械行业
- 切割铝条
- 金属轧制、冲压和装配
- 金属板
其他行业
- 收集和分类工业和家庭废弃物
产品详情
| 材质 | 丁腈橡胶 |
|---|---|
| 颜色 | 绿色 |
| 内表面工艺 | Mapa技术支持的纺织面料 |
| 外表面工艺 | |
| 长度 (cm) | |
| 尺码 | 8 9 10 |
| 包装 | 1 对/包 12 对/箱 |
化学含量表
综合化学防护等级
防护等级是通过渗透和降解两方面的性能表现来决定的,为使用我们手套产品的用户提供针对特定化学品的总体防护指南。
指代颜色
用于高化学暴露或化学浸泡,穿透时间以一个工作日为限。
用于化学品反复接触,限于化学品接触总时长,即以工作日为基础的累积渗透时间。
仅防溅,接触化学物质时应丢弃手套,并尽快戴上新手套。
不推荐,这些手套被认为不适合与这种化学品接触。
NT : 未经测试
NA:“不适用”,因为没有全面测试(只有降解或渗透结果)
化学试验数据和整体化学防护等级不应作为手套选择的绝对依据。实际使用条件可能会因实验室测试的受控条件而改变手套的性能。除了化学接触时间以外的因素, 如浓度和温度、手套厚度和手套的重复使用,也可能影响性能。手套的其他要求,如尺码,灵巧度,防割性,耐磨性,抗刺穿和钩阻力, 或手套的抓握力也需要在最终选择前纳入考虑。
| 化学物质 | CAS # | 渗透时间 (分钟) |
渗透水平 | 标准 | 老化水平 | 级别 |
|---|---|---|---|---|---|---|
| 1,1,1-Trichloroethane 99% | 71-55-6 | 21 | 1 | EN 374-3:2003 | 1 |
|
| 1,1,2-Trichlorotrifluoroethane (Freon TF or Freon 113) 99% | 76-13-1 | >480 | 6 | ASTM F739 | 4 |
|
| 1,2 - dichloroethane 99% | 107-06-2 | 3 | 0 | ASTM F739 | NT |
|
| 2-Butoxyethanol (Butyl Cellusolve) 99% | 111-76-2 | 372 | 5 | ASTM F739 | 4 |
|
| 2-Ethoxyethyl acetate (Cellosolve Acetate) 99% | 111-15-9 | 67 | 3 | ASTM F739 | 2 |
|
| 2-Propanol (Isopropanol) 99% | 67-63-0 | >480 | 6 | ASTM F739 | 4 |
|
| Acetaldehyde 99% | 75-07-0 | 3 | 0 | ASTM F739 | NT |
|
| Acetic acid 99% | 64-19-7 | 91 | 3 | ASTM F739 | 2 |
|
| Acetone 99% | 67-64-1 | 3 | 0 | ASTM F739 | NT |
|
| Acetyl Chloride 98% | 75-36-5 | 1 | 0 | ASTM F739 | NT |
|
| Ammonium hydroxide solution 25% | 1336-21-6 | 344 | 5 | EN 16523-1:2015 | NT |
|
| Ammonium hydroxide solution 29% | 1336-21-6 | 435 | 5 | ASTM F739 | 4 |
|
| Aniline 99% | 62-53-3 | 89 | 3 | ASTM F739 | 1 |
|
| Benzene 99% | 71-43-2 | 6 | 0 | ASTM F739 | 2 |
|
| Butyl Acetate 99% | 123-86-4 | 20 | 1 | EN 374-3:2003 | 2 |
|
| Carbon disulfide 99% | 75-15-0 | 4 | 0 | ASTM F739 | NT |
|
| Carbon Tetrachloride 99% | 56-23-5 | 114 | 3 | ASTM F739 | 4 |
|
| Chromic Acid 50% | 7738-94-5 | 250 | 5 | ASTM F739 | 4 |
|
| Cumene 98% | 98-82-8 | 166 | 4 | ASTM F739 | 3 |
|
| Cyclohexane 99% | 110-82-7 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Dichloromethane (Methylene Chloride) 99% | 75-09-2 | 1 | 0 | ASTM F739 | NT |
|
| Diethanolamine 97% | 111-42-2 | >480 | 6 | ASTM F739 | 4 |
|
| Dimethylformamide 99% | 68-12-2 | 6 | 0 | EN 374-3:2003 | 1 |
|
| Dimethylsulfoxide 99% | 67-68-5 | 157 | 4 | ASTM F739 | 3 |
|
| Ethanol 95% | 64-17-5 | 288 | 5 | ASTM F739 | 4 |
|
| Ether (Diethyl Ether) 99% | 60-29-7 | 41 | 2 | ASTM F739 | 4 |
|
| Ethyl benzene 99% | 100-41-4 | 28 | 1 | ASTM F739 | 2 |
|
| Ethylene glycol 99% | 107-21-1 | >480 | 6 | ASTM F739 | 4 |
|
| Formaldehyde 37% | 50-00-0 | >480 | 6 | EN 16523-1:2015 | 4 |
|
| Fuel oils mixture | 68476-34-6 | >480 | 6 | EN 374-3:2003 | 3 |
|
| Furfural 99% | 98-01-1 | 34 | 2 | ASTM F739 | 1 |
|
| Hexamethylene Diisocyanate (1,6 - Diisocyanatohexane) 98% | 822-06-0 | 2 | 0 | ASTM F739 | NT |
|
| Hydrazine 35% | 302-01-2 | >480 | 6 | ASTM F739 | 4 |
|
| Hydrazine 70% | 302-01-2 | >480 | 6 | ASTM F739 | 4 |
|
| Hydrochloric acid 10% | 7647-01-0 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Hydrochloric acid 37% | 7647-01-0 | >480 | 6 | ASTM F739 | 4 |
|
| Hydrogen peroxide 30% | 7722-84-1 | >480 | 6 | EN 16523-1:2015 | NT |
|
| Isobutyl alcohol 99% | 78-83-1 | >480 | 6 | ASTM F739 | 4 |
|
| Kerosene mixture | 8008-20-6 | >480 | 6 | ASTM F739 | 4 |
|
| m-Cresol 97% | 108-39-4 | 309 | 5 | ASTM F739 | 1 |
|
| Methanol 99% | 67-56-1 | 20 | 1 | EN 374-3:2003 | 4 |
|
| Methyl Ethyl Ketone (2-Butanone) 99% | 78-93-3 | 3 | 0 | ASTM F739 | NT |
|
| Methylisobutylketone 99% | 108-10-1 | 25 | 1 | ASTM F739 | 2 |
|
| n-Heptane 99% | 142-82-5 | >480 | 6 | EN 374-3:2003 | 4 |
|
| n-hexane 95% | 110-54-3 | >480 | 6 | ASTM F739 | 4 |
|
| N-N dimethyl acetamide 99% | 127-19-5 | 15 | 1 | ASTM F739 | 2 |
|
| Naphtha mixture | 8030-30-6 | >480 | 6 | ASTM F739 | 4 |
|
| Naphtha VM&P mixture | 8032-32-4 | >480 | 6 | ASTM F739 | 4 |
|
| Naphtha, Hydrotreated Heavy mixture | 64742-48-9 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Nitric acid 50% | 7697-37-2 | 344 | 5 | ASTM F739 | 4 |
|
| Nitrobenzene 99% | 98-95-3 | 42 | 2 | ASTM F739 | 1 |
|
| Phenol 85% | 108-95-2 | 191 | 4 | ASTM F739 | 3 |
|
| Phosphoric acid 75% | 7664-38-2 | >480 | 6 | ASTM F739 | 4 |
|
| Phosphoric acid 85% | 7664-38-2 | >480 | 6 | ASTM F739 | 4 |
|
| Phosphorous Trichloride 98% | 7719-12-2 | 16 | 1 | ASTM F739 | 1 |
|
| Potassium Fluoride 40% | 7789-23-3 | >480 | 6 | ASTM F739 | 4 |
|
| Potassium Hydroxide 50% | 1310-58-3 | >480 | 6 | ASTM F739 | 4 |
|
| Propylene Oxide 99% | 75-56-9 | 2 | 0 | ASTM F739 | NT |
|
| Sodium hydroxide 20% | 1310-73-2 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Sodium hydroxide 40% | 1310-73-2 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Sodium hydroxide 50% | 1310-73-2 | >480 | 6 | EN 374-3:2003 | 4 |
|
| Spent Acid mixture | NA | >480 | 6 | ASTM F739 | NT |
|
| Styrene 99% | 100-42-5 | 7 | 0 | ASTM F739 | 1 |
|
| Sulfuric acid 10% | 7664-93-9 | >480 | 6 | EN 374-3:2003 | NT |
|
| Sulfuric acid 40% | 7664-93-9 | >480 | 6 | EN 374-3:2003 | 3 |
|
| Sulfuric acid 50% | 7664-93-9 | >480 | 6 | ASTM F739 | NT |
|
| Sulfuric acid 96% | 7664-93-9 | 97 | 3 | EN 374-3:2003 | NT |
|
| t-Butyl Methyl Ether 98% | 1634-04-4 | 452 | 5 | ASTM F739 | 4 |
|
| tert-Butyl Hydroperoxide 70% | 75-91-2 | 208 | 4 | ASTM F739 | 4 |
|
| Tetrachloroethylene (Perchloroethylene) 99% | 127-18-4 | 183 | 4 | ASTM F739 | 3 |
|
| Toluene 99% | 108-88-3 | 8 | 0 | EN 374-3:2003 | 2 |
|
| Trichloroethylene 99% | 79-01-6 | 4 | 0 | EN 374-3:2003 | 1 |
|
| Triethanolamine 98% | 102-71-6 | >480 | 6 | ASTM F739 | 4 |
|
| Turpentine mixture | 8006-64-2 | >480 | 6 | ASTM F739 | 4 |
|
| Unleaded gasoline mixture | 8006-61-9 | 52 | 2 | EN 374-3:2003 | 4 |
|
| Xylene 99% | 1330-20-7 | 22 | 1 | EN 374-3:2003 | 2 |
|
*非标准化结果
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