Descrizione
PM839 CAS 72244-98-5
Aspetto | Liquido trasparente incolore |
Viscosità (25℃), mPas | 12000~14000 |
Colore APHA | ≤20 |
PM839 Usage:
In the field of material science, PM839 has emerged as a low-temperature fast curing agent for epoxy resins. Its appearance is pure and colorless, or a transparent liquid with a hint of yellowish color. Its viscosity ranges from 12,000 to 14,000 mPa-s at room temperature, i.e., 25°C. This viscosity characteristic makes it useful in a wide range of application scenarios. Its sulfhydryl content is impressive at ≥12 and its coloration is controlled at ≤20, which ensures both performance and good appearance in use.
In terms of practical applications, PM839 is frequently seen in various industrial and electronic fields. In the case of 5-minute AB glue, for example, it can achieve efficient bonding results in a very short time, which meets the needs of rapid production. In the field of electronic adhesives, it provides a reliable guarantee for the fixing and encapsulation of electronic components. In the application of metal epoxy putty, it can effectively fill the tiny gaps on the metal surface and enhance the stability and durability of the metal structure. In the production of electronic thermal conductive adhesive, PM839 not only has good bonding performance, but also can realize efficient heat conduction, to ensure the stability of electronic equipment in the process of operation. In the field of anticorrosive coatings, it provides a strong protective barrier for metal surfaces against the erosion of the external environment.
The field of silicon rod cutting adhesive deserves special mention. Silicon rod cutting, as a key link in the photovoltaic industry, requires high performance of cutting adhesives, and PM839 silicon rod cutting adhesive shows excellent bonding strength and flexibility after curing. From the perspective of historical development, the early silicon rod cutting adhesive due to poor performance, resulting in silicon rod cutting process often appear to fall, edge chips and cracks and other problems, seriously affecting the yield of silicon rod cutting. The appearance of PM839 has greatly improved this situation. For example, in the production line of a large photovoltaic enterprise, after the use of PM839 cutting adhesive, the yield of silicon bar cutting from the original 70% to more than 90%, which not only improves the production efficiency, but also reduces the production cost. Once the silicon rods have been cut, the silicon wafers coated with the adhesive can be quickly and easily separated by immersing them in warm water, which also facilitates large-scale industrial production.
The photovoltaic industry is in a golden age of growth as the global demand for clean energy grows. According to relevant data, the annual growth rate of the global photovoltaic industry has reached more than 20% in the past decade. In this development trend, the fine degree of silicon rod cutting requirements are also rising, which will undoubtedly promote the market demand for silicon rod cutting adhesive shows a rapid growth trend. According to the forecast of market research institutions, in the next five years, the market size of silicone rod cutting adhesive is expected to realize double growth.
In addition, PM839 also plays an important role in the packaging field of electronic and electrical production. As a key process in the production of electronic and electrical appliances, the quality of packaging is directly related to the final quality and service life of the product. In the packaging process of electronic components, packaging adhesive bears the important responsibility of protecting electronic components. From the scientific principle, it can effectively prevent the intrusion of moisture, avoiding the electronic components short-circuit or damage due to moisture. At the same time, it can also block dust and harmful gases to prevent these impurities from corroding electronic equipment or circuit boards. For example, in some electronic enterprises in coastal areas, due to the high humidity of the air, if high-quality packaging adhesives are not used, the failure rate of electronic components will be significantly higher. In addition, packaging adhesives can also slow down or offset the effects of external forces and vibrations on electronic components through their own cushioning effect, thus greatly improving the stability of electronic equipment. As the demand for smart phones, smart homes and other electronic and electrical products continues to climb globally, China, as the world’s largest electronics production and consumption market, is also expanding its market size. According to statistics, China’s electronics market has grown at an annual rate of about 15% over the past five years, which will further drive the steady growth in demand for adhesives for electrical and electronic products.
PM839 Package
25 kg/tamburo o 220 kg/tamburo
PM839 Storage:
Conservati in magazzini asciutti e puliti con una buona ventilazione.
Evitare l'esposizione alla luce e al calore.
Proteggere il prodotto da perdite, pioggia e insolazione durante il trasporto.
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Politiolo/Polimerocaptano | ||
DMES Monomero | Solfuro di bis(2-mercaptoetile) | 3570-55-6 |
DMPT Monomero | TIOCURA DMPT | 131538-00-6 |
Monomero PETMP | 7575-23-7 | |
PM839 Monomero | Poliossi (metil-1,2-etanediile) | 72244-98-5 |
Monomero monofunzionale | ||
Monomero HEMA | Metacrilato di 2-idrossietile | 868-77-9 |
Monomero HPMA | Metacrilato di 2-idrossipropile | 27813-02-1 |
Monomero THFA | Acrilato di tetraidrofurfurile | 2399-48-6 |
HDCPA Monomero | Acrilato di diciclopentenile idrogenato | 79637-74-4 |
Monomero DCPMA | Metacrilato di diidrodiclopentadienile | 30798-39-1 |
Monomero DCPA | Acrilato di diidrodiclopentadienile | 12542-30-2 |
Monomero DCPEMA | Metacrilato di diciclopentenilossietile | 68586-19-6 |
Monomero DCPEOA | Acrilato diciclopentenilico di etile | 65983-31-5 |
Monomero NP-4EA | (4) nonilfenolo etossilato | 50974-47-5 |
LA Monomero | Acrilato di laurile / Acrilato di dodecile | 2156-97-0 |
Monomero THFMA | Metacrilato di tetraidrofurfurile | 2455-24-5 |
Monomero PHEA | ACRILATO DI 2-FENOSSIETILE | 48145-04-6 |
Monomero LMA | Metacrilato di laurile | 142-90-5 |
Monomero IDA | Acrilato di isodecile | 1330-61-6 |
Monomero IBOMA | Metacrilato di isoborile | 7534-94-3 |
Monomero IBOA | Acrilato di isoborile | 5888-33-5 |
EOEOEA Monomero | Acrilato di 2-(2-etossi)etile | 7328-17-8 |
Monomero multifunzionale | ||
Monomero DPHA | 29570-58-9 | |
Monomero DI-TMPTA | TETRAACRILATO DI(TRIMETILOLPROPANO) | 94108-97-1 |
Acrilammide monomero | ||
ACMO Monomero | 4-acrilomorfolina | 5117-12-4 |
Monomero di-funzionale | ||
PEGDMA Monomero | Poli(etilenglicole) dimetacrilato | 25852-47-5 |
Monomero TPGDA | Tripropilene glicole diacrilato | 42978-66-5 |
TEGDMA Monomero | Dimetacrilato di trietilene e glicole | 109-16-0 |
PO2-NPGDA Monomero | Diacrilato di neopentilene glicole propoxilato | 84170-74-1 |
PEGDA Monomero | Diacrilato di polietilene e glicole | 26570-48-9 |
Monomero PDDA | Ftalato dietilenglicole diacrilato | |
Monomero NPGDA | Diacrilato di neopentile e glicole | 2223-82-7 |
Monomero HDDA | Esametilene diacrilato | 13048-33-4 |
EO4-BPADA Monomero | BISFENOLO A DIACRILATO ETOSSILATO (4) | 64401-02-1 |
EO10-BPADA Monomero | BISFENOLO A DIACRILATO ETOSSILATO (10) | 64401-02-1 |
EGDMA Monomero | Dimetacrilato di glicole etilenico | 97-90-5 |
Monomero DPGDA | Dienoato di glicole dipropilenico | 57472-68-1 |
Bis-GMA monomero | Bisfenolo A Glicidilmetacrilato | 1565-94-2 |
Monomero trifunzionale | ||
TMPTMA Monomero | Trimetilolpropano trimetacrilato | 3290-92-4 |
TMPTA Monomero | Trimetilolpropano triacrilato | 15625-89-5 |
Monomero PETA | 3524-68-3 | |
GPTA ( G3POTA ) Monomero | TRIACRILATO PROPOXY DI GLICERILE | 52408-84-1 |
EO3-TMPTA Monomero | Triacrilato di trimetilpropano etossilato | 28961-43-5 |
Monomero fotoresistente | ||
IPAMA Monomero | 2-isopropil-2-adamantile metacrilato | 297156-50-4 |
Monomero ECPMA | Metacrilato di 1 etilciclopentile | 266308-58-1 |
ADAMA Monomero | Metacrilato di 1-Adamantile | 16887-36-8 |
Metacrilati monomero | ||
TBAEMA Monomero | 2-(Tert-butilammino)metacrilato di etile | 3775-90-4 |
NBMA Monomero | Metacrilato di n-butile | 97-88-1 |
MEMA Monomero | Metacrilato di 2-metossietile | 6976-93-8 |
Monomero i-BMA | Metacrilato di isobutile | 97-86-9 |
Monomero EHMA | Metacrilato di 2-etilesile | 688-84-6 |
EGDMP Monomero | Glicole etilenico Bis(3-mercaptopropionato) | 22504-50-3 |
Monomero EEMA | 2-etossietil 2-metilprop-2-enoato | 2370-63-0 |
DMAEMA Monomero | N,M-Dimetilaminoetil metacrilato | 2867-47-2 |
Monomero DEAM | Metacrilato di dietilamminoetile | 105-16-8 |
CHMA Monomero | Metacrilato di cicloesile | 101-43-9 |
BZMA Monomero | Metacrilato di benzile | 2495-37-6 |
BDDMP Monomero | 1,4-Butandiolo Di(3-mercaptopropionato) | 92140-97-1 |
BDDMA Monomero | 1,4-butandioldimetacrilato | 2082-81-7 |
Monomero AMA | Metacrilato di allile | 96-05-9 |
AAEM Monomero | Metacrilato di acetilacetile | 21282-97-3 |
Acrilati monomero | ||
IBA Monomero | Acrilato di isobutile | 106-63-8 |
Monomero EMA | Metacrilato di etile | 97-63-2 |
Monomero DMAEA | Acrilato di dimetilamminoetile | 2439-35-2 |
Monomero DEAEA | 2-(dietilammino)etilprop-2-enoato | 2426-54-2 |
CHA Monomero | prop-2-enoato di cicloesile | 3066-71-5 |
BZA Monomero | prop-2-enoato di benzile | 2495-35-4 |
Xavier Thompson -
Un'esperienza meravigliosa! Il servizio è stato eccellente, la qualità del prodotto ha superato le mie aspettative.