SSPC TU 8-2001 The Use of Isocyanate-Containing Paints as Industrial Maintenance Coatings《使用含异氰酸盐涂料作为工业维护涂料 编辑修订 2004年11月1日》.pdf
《SSPC TU 8-2001 The Use of Isocyanate-Containing Paints as Industrial Maintenance Coatings《使用含异氰酸盐涂料作为工业维护涂料 编辑修订 2004年11月1日》.pdf》由会员分享,可在线阅读,更多相关《SSPC TU 8-2001 The Use of Isocyanate-Containing Paints as Industrial Maintenance Coatings《使用含异氰酸盐涂料作为工业维护涂料 编辑修订 2004年11月1日》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、10-109SSPC-TU 8February 1, 2001Editorial Revisions November 1, 2004SSPC: The Society for Protective Coatings TECHNOLOGY UPDATE No. 8The Use of Isocyanate-Containing Paints as Industrial Maintenance Coatings 1. Background Information Isocyanates are chemicals that contain at least one isocyanate (-NC
2、O) group. Depending on the number of iso-cyanate groups, one can distinguish among monoisocyanates (1 group), diisocyanates (2 groups), or polyisocyanates (3 or more groups). Monoisocyanates are of no value in coatings because they cannot build the polymeric structure needed for a coating raw materi
3、al. Nevertheless, diisocyanates, often called monomers, are important building blocks for coating raw materials. Commonly used diisocyanates are MDI (diphenylmethane diisocyanate),TDI (toluene diisocyanate), IPDI (isophorone diisocyanate), HDI (hexamethylene diisocyan-ate), HMDI (bis(4-isocyanatocyc
4、lohexyl)methane), and TMXDI (tetrameth-ylxylene diisocyanate). Evaporation rates determine how quickly a material is vaporized and dispersed into the atmosphere. High evapora-tion rates cause faster dispersion and more vapor exposure than lower evaporation rates. Diisocyanates have varying evaporati
5、on rates. For example, the evaporation rates of TDI and HDI are considerably higher than that of MDI. In order to make TDI and HDI safer to use as coatings raw materials, they are further reacted to make slightly larger polyisocyanates that may contain from 3 to 7 units of the starting diisocyanate
6、monomer. These polyisocyanates do not evaporate and can become airborne only during spray appli-cation. However, the polyisocyanates do contain a very small amount (0.15% to 1.6%) of residual free HDI and unreacted TDI monomer that can still evaporate. TDI, MDI and their polyisocyanates are known as
7、 aromatic isocyanates. These materials absorb ultraviolet light (UV) from the sun and therefore become dull due to a chalky layer that forms on the paint surface. Therefore, paints based on these materials are not typically used as topcoats in outdoor applica-tions. On the other hand, HDI, IPDI, HMD
8、I and TMXDI are called aliphatic isocyanates. These do not absorb much UV light and therefore can be used in formulating outdoor topcoats. “Polyurethane” (PU) is the name of the material formed by the chemical reaction of an alcohol and an isocyanate or, more precisely, polyalcohols and polyisocyana
9、tes. Polyurethane coatings can be of several types. In a one-component or moisture-cure polyurethane, the polyisocyanate reacts with water in the atmosphere. In a two-component system, the polyisocyanate reacts with a resin having reactive hydrogen, which can be acrylic, polyester, polyether, vinyl,
10、 castor oil, etc. The paint fi lm resulting from this chemical reaction is the foundation of the performance properties of polyurethanes: durability, corrosion and chemical resistance, and color and gloss retention. These properties have resulted in the use of polyurethanes in a wide range of indust
11、ry segments. In 1998, 13.3 million gallons of PU coatings were used in transportation, 12.7 million gallons in industrial maintenance, 28.8 million gallons in architectural, and 53 million gallons in product fi nishing applications. Some typical industrial mainte-nance applications are bridges, chem
12、ical plants, tank farms, power plants, and municipal structures (e.g. as anti-graffi ti coatings). High performance paints can contain diisocyanates, poly-isocyanates, solvents, pigments, additives, and other resins. All these ingredients can present certain potential health hazards if one is expose
13、d to a suffi ciently high dosage. This is why the applicator and any other workers in the application area must be properly protected. All coatings, including those containing isocyanates, can be applied safely when proper personal protective equipment (PPE) is worn and safe work practices are obser
14、ved. This technology update focuses on the isocyanates in industrial maintenance coatings. Exposure to polyisocyanates in excess of recommended limits can irritate the eyes, nose, throat, skin, and lungs. An overexposed person may develop skin sensitization and/or respiratory sensitization resulting
15、 in asthmatic symptoms that could be permanent. Exposure in excess of recommended limits may also result in a reduction in lung function and possible permanent lung damage. Symptoms of overexposure can include fl u-like symptoms such as fever, chills, or an achy feeling. There is no evidence that is
16、ocyanate exposure causes human cancer, birth defects, nerve damage, or reproductive effects. 2. Worker Exposure 2.1 RECOGNITION OF HAZARD: In order to determine whether a particular coating contains isocyanates, one should refer to the paint can label and the material safety data sheet (MSDS). If a
17、coating is referred to as a polyurethane or a polyurea, it may contain isocyanates. However, some polyure-thane coatings are fully reacted. That is, all of the isocyanate groups are chemically changed to polyurethane groups prior to packaging for shipment. Examples of such coatings would be most one
18、-package, clear, polyurethane wood varnishes sold at retail home improvement stores. Polyurethane coatings used for industrial maintenance painting usually contain unreacted isocyanates at the time of application to the substrate. The two-package types have a “paint” side that needs to be mixed with
19、 a hardener, activator or “catalyst”, just before application. The hardener is the part that typically contains the unreacted 10-110SSPC-TU 8February 1, 2001Editorial Revisions November 1, 2004isocyanate. Because these two parts of the paint system are packaged and shipped separately, the supplier o
20、ften provides two different MSDSs, one for the “paint” side and one for the “catalyst” side. Both MSDSs must be reviewed in such a case because the “paint” side MSDS will typically not mention that “free” isocyanates may be present. Another type of polyurethane coating typically used in industrial m
21、aintenance is the one-package, moisture-cure system. This type does contain the isocyanate ingredient in the single can. This type of paint cures by reaction of the unreacted isocyanate with atmospheric moisture once the can has been opened to the ambient environment. Specifi c words and acronyms to
22、 look for on labels and MSDSs are: isocyanate, polyisocyanate, aliphatic isocyanate, aromatic isocyanate, hexamethylene diisocyanate (HDI), di-phenyl methane diisocyanate (MDI), isophorone diisocyanate (IPDI), toluene diisocyanate (TDI), dicyclohexylmethane diiso-cyanate (HMDI), TMXDI (tetramethylxy
23、lene diisocyanate), HDI homopolymer, isocyanate prepolymer, isocyanate oligomer, isocyanate monomer, etc. If the applicator suspects that a particular coating contains isocyanates but cannot fi nd any mention of them on the label or MSDS, a second step would be to call the paint supplier and ask to
24、speak to a product safety specialist. Often the MSDS itself will list the name of the contact.2.2 EVALUATION: Once it has been established that a particular paint system does contain an isocyanate ingredi-ent, the workplace atmosphere should be characterized to determine the airborne concentration.
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