CHLUMICRYL® TMPTMA Monomer / Trimethylolpropane trimethacrylate CAS 3290-92-4

(1 customer review)

Chemical Name: Trimethylolpropane trimethacrylate

Other Name: TMPTMA; ACRYESTER TMP;MIRAMER M301;Trimethacrylate de propylidynetrimethyle ;Trimetacrilato de propilidintrimetilo;2,2-bis[(methacryloyloxy)methyl]butyl methacrylate (non-preferred name)

CAS No.: 3290-92-4

Molecular Fomula:338.39544

Molecular weight: 246.43

Appearance:colorless clear liquid

Assay: 98%

Email me:  info@changhongchemical.com

Description

TMPTMA Monomer / Trimethylolpropane trimethacrylate CAS 3290-92-4

Appearance

colorless clear liquid

Assay

99.5%min

Isomer

0.1%max

Free acid

0.2%max

This product can replace Trimethylolpropane trimethacrylate; ACRYESTER TMP;MIRAMER M301;Trimethacrylate de propylidynetrimethyle ;Trimetacrilato de propilidintrimetilo;2,2-bis[(methacryloyloxy)methyl]butyl methacrylate (non-preferred name).

Trimethylolpropane trimethacrylate Usage

1. Trimethylolpropane trimethacrylate can be used as a cross-linking agent for peroxide cross-linking. It is suitable for mixing POLYBUTADIENE DIACRYLATE, POLY(PROPYLENE-CO-ETHYLENE), EPDM RUBBER, Isoprene rubber, acrylonitrile-butadiene rubber.

2. Trimethylolpropane trimethacrylate can be used as a vulcanizing agent. When synthetic rubber is vulcanized with peroxide, TMPTMA can improve corrosion resistance, aging resistance and hardness, heat resistance. TMPTMA plasticizes during mixing and vulcanizes the original Hardening effect, can be used for NBR, EPDM, acrylic rubber.

3. Trimethylolpropane trimethacrylate can be used as a cross-linking agent. TMPTMA can reduce radiation dose, shorten radiation time, increase cross-linking density, and has the characteristics of low precision, high cross-linking degree, low vapor pressure and fast curing speed. It can be used for light-curing inks and light. Polymeric materials.

4. PVC is blended into the car body sealing agent, caulking agent and all the PVC solution molding.

5. Special rubber’s vulcanization-assisting activator, ethylene propylene propylene rafter rubber and EPDM rubber, chloro rubber, silicone rubber, polyurethane, ethylene/vinyl acetate copolymer (EVA), chlorinated polyethylene elastomer (CPE) and other special rubbers Vulcanization is very difficult, and organic peroxides (such as DCP, BPO) are generally used for vulcanization. If a single organic peroxide is used for vulcanization, the vulcanization time is too long and the vulcanization is insufficient, and it is difficult to ensure good mechanical and physical properties. Therefore, TMPTMA must be added as a vulcanizing agent to achieve good results.

6. For example, organic fluorine rubber, etc., when using DCP for vulcanization, if the additive 1~4% TMPTMA is used as a vulcanizing agent, it can not only greatly shorten the vulcanization time, increase the degree of vulcanization, and reduce the amount of DCP, but also significantly improve the machinery of the product. Strength, wear resistance, solvent resistance and corrosion resistance etc. In the vulcanization process of fluorine-containing rubber, the double bond in the TMPTMA molecule not only participates in the vulcanization cross-linking reaction, but also acts as a hydrogen halide (HF, HCL, etc.) acceptor, absorbing the hydrogen halide released during processing, thereby It not only improves the product quality, but also greatly reduces the corrosiveness of the vulcanized rubber. The rubber compound containing TMPTMA has a plasticizing effect during mixing and a hardening effect after vulcanization.

 

Trimethylolpropane trimethacrylate Packaging and Shipping

Packing: 1/kg; 200kg/drum

Delivery: by sea, air and DHL

 

Trimethylolpropane trimethacrylate Storage

Store at low temperature and avoid light.

Contact Us Now!

If you need Price and Sample Testing, please fill in your contact information in the form below, we will usually contact you within 24 hours. You could also email me info@changhongchemical.com during working hours ( 8:30 am to 6:00 pm UTC+8 Mon.~Sat. ) or use the website live chat to get prompt reply.

 


 

CHLUMICRYL® AAEM Monomer  CAS 21282-97-3 Acetylacetoxyethyl methacrylate
CHLUMICRYL® ADAMA Monomer CAS 16887-36-8 1-Adamantyl Methacrylate
CHLUMICRYL® AMA Monomer CAS 96-05-9 Allyl methacrylate
CHLUMICRYL® BDDMA CAS 2082-81-7 1,4-Butanedioldimethacrylate
CHLUMICRYL® BDDMP Monomer CAS 92140-97-1 1,4-Butanediol Di(3-mercaptopropionate)
CHLUMICRYL® Bis-GMA Monomer  CAS 1565-94-2 Bisphenol A Glycidyl Methacrylate
CHLUMICRYL® BZA Monomer CAS 2495-35-4  benzyl prop-2-enoate
CHLUMICRYL® BZMA Monomer CAS 2495-37-6 Benzyl methacrylate
CHLUMICRYL® CHA Monomer  CAS 3066-71-5 cyclohexyl prop-2-enoate
CHLUMICRYL® CHMA  CAS 101-43-9 Cyclohexyl methacrylate
CHLUMICRYL® DCPA Monomer CAS 12542-30-2 Dihydrodicyclopentadienyl Acrylate
CHLUMICRYL® DCPEMA Monomer CAS 68586-19-6 Dicyclopentenyloxyethyl Methacrylate
CHLUMICRYL® DCPMA Monomer CAS 30798-39-1 Dihydrodicyclopentadienyl methacrylate
CHLUMICRYL® DEAEA Monomer CAS 2426-54-2 2-(diethylamino)ethyl prop-2-enoate
CHLUMICRYL® DEAM Monomer CAS 105-16-8 Diethylaminoethyl methacrylate
CHLUMICRYL® DMAEA Monomer CAS 2439-35-2 Dimethylaminoethyl acrylate
CHLUMICRYL® DMAEMA CAS 2867-47-2 N,M-Dimethylaminoethyl methacrylate
CHLUMICRYL® DMES  CAS 3570-55-6 2,2′-Thiodiethanethiol/Bis(2-mercaptoethyl) sulfide/Dimercapto diethyl sulfide/THIOCURE DMDS/Polythiol DMDS/Mercaptan DMDS
CHLUMICRYL® DMPT  CAS 131538-00-6 THIOCURE DMPT
CHLUMICRYL® ECPMA Monomer CAS 266308-58-1 1-Ethylcyclopentyl Methacrylate
CHLUMICRYL® EEMA  CAS 2370-63-0 2-ethoxyethyl 2-methylprop-2-enoate
CHLUMICRYL® EGDMA Monomer CAS 97-90-5 Ethylene glycol dimethacrylate
CHLUMICRYL® EGDMP Monomer CAS 22504-50-3 Ethylene glycol Bis(3-mercaptopropionate)
CHLUMICRYL® EHMA  CAS 688-84-6 2-Ethylhexyl methacrylate
CHLUMICRYL® EMA Monomer  CAS 97-63-2 Ethyl methacrylate
CHLUMICRYL® EO10-BPADA Monomer  CAS 64401-02-1 ethoxylated bisphenol A diacrylate
CHLUMICRYL® EO4-BPADA Monomer  CAS 64401-02-1 ethoxylated bisphenol A diacrylate
CHLUMICRYL® HDCPA Monomer CAS 79637-74-4 Dicyclopentenyl acrylate (hydrogenation)
CHLUMICRYL® IBA Monomer  CAS 106-63-8 Isobutyl acrylate
CHLUMICRYL® i-BMA  CAS 97-86-9 Isobutyl methacrylate
CHLUMICRYL® MCPMA Monomer CAS 178889-45-7 1-Methylcyclopentyl Methacrylate
CHLUMICRYL® MEMA CAS 6976-93-8 2-Methoxyethyl Methacrylate
CHLUMICRYL® MPEG Monomer CAS 26915-72-0 MPEG Monomer
CHLUMICRYL® Muscomer Tricyclodecanedimethanol  CAS 26896-48-0 Muscomer Tricyclodecanedimethanol
CHLUMICRYL® N,N-Dimethyl Acrylamide  CAS 2680-03-7 N,N-Dimethyl Acrylamide
CHLUMICRYL® n-BMA  CAS 97-88-1 n-Butyl methacrylate
CHLUMICRYL® PETMP Monomer  CAS 7575-23-7 PETMP Monomer
CHLUMICRYL® Polythiol PM839  CAS 72244-98-5 Polythiol PM839
CHLUMICRYL® TBAEMA  CAS 3775-90-4 2-(Tert-butylamino)ethyl methacrylate
CHLUMICRYL® THFMA Monomer  CAS 2455-24-5 Tetrahydrofurfuryl methacrylate
CHLUMICRYL® ACMO Monomer  CAS 5117-12-4 4-acryloylmorpholine
CHLUMICRYL® DCPEOA Monomer  CAS 65983-31-5 Dicyclopentenyloxyethyl Acrylate
CHLUMICRYL® DI-TMPTA Monomer CAS 94108-97-1 DI(TRIMETHYLOLPROPANE) TETRAACRYLATE
CHLUMICRYL® DPGDA Monomer CAS 57472-68-1 Dipropylene Glycol Dienoate
CHLUMICRYL® DPHA Monomer  CAS 29570-58-9 Dipentaerythritol hexaacrylate
CHLUMICRYL® EO3-TMPTA Monomer CAS 28961-43-5 Ethoxylated trimethylolpropane triacrylate
CHLUMICRYL® EOEOEA Monomer CAS 7328-17-8 2-(2-Ethoxyethoxy)ethyl acrylate
CHLUMICRYL® GPTA ( G3POTA ) Monomer CAS 52408-84-1 GLYCERYL PROPOXY TRIACRYLATE
CHLUMICRYL® HDDA Monomer  CAS 13048-33-4 Hexamethylene Diacrylate
CHLUMICRYL® HEMA Monomer CAS 868-77-9  2-hydroxyethyl methacrylate
CHLUMICRYL® HPMA Monomer CAS 27813-02-1 2-Hydroxypropyl methacrylate
CHLUMICRYL® IBOA Monomer   CAS 5888-33-5 Isobornyl acrylate
CHLUMICRYL® IBOMA  CAS 7534-94-3 Isobornyl methacrylate
CHLUMICRYL® IDA Monomer  CAS 1330-61-6 Isodecyl acrylate
CHLUMICRYL® IPAMA Monomer CAS 297156-50-4 2-isopropyl-2-adamantyl methacrylate
CHLUMICRYL® LMA Monomer  CAS 142-90-5 Lauryl methacrylate
CHLUMICRYL® NP-4EA Monomer CAS 50974-47-5 (4) ethoxylated nonylphenol
CHLUMICRYL® NPGDA Monomer  CAS 2223-82-7 Neopentyl glycol diacrylate
CHLUMICRYL® PDDA Phthalate diethylene glycol diacrylate
CHLUMICRYL® PEGDA Monomer CAS 26570-48-9 Polyethylene Glycol Diacrylate
CHLUMICRYL® PEGDMA Monomer CAS 25852-47-5 Poly(ethylene glycol) dimethacrylate
CHLUMICRYL® PETA Monomer  CAS 3524-68-3 PETA; 2-(Hydroxymethyl)-2-[[(1-oxoallyl)oxy]methyl]-1,3-propanediyl diacrylate; 3-(acryloyloxy)-2-[(acryloyloxy)methyl]-2-(hydroxymethyl)propyl acrylate
CHLUMICRYL® PHEA Monomer CAS 48145-04-6  2-PHENOXYETHYL ACRYLATE
CHLUMICRYL® PO2-NPGDA  CAS 84170-74-1
CHLUMICRYL® TEGDMA Monomer CAS 109-16-0 Triethylene glycol dimethacrylate
CHLUMICRYL® THFA Monomer CAS 2399-48-6 Tetrahydrofurfuryl acrylate
CHLUMICRYL® TMPTA Monomer CAS 15625-89-5 Trimethylolpropane triacrylate
CHLUMICRYL® TMPTMA Monomer CAS 3290-92-4 Trimethylolpropane trimethacrylate
CHLUMICRYL® TPGDA Monomer CAS 42978-66-5 Tripropylene glycol diacrylate
CHLUMICRYL® UV Functional Monomers Acrylic Monomers

 

The importance of the glass transition temperature (Tg) of acrylic resins, which are commonly used in coating formulations, is briefly described as an example

The glass transition temperature (Tg) is the lowest temperature at which the polymer chain segments can move, and is directly related to the flexibility of the molecular chains. For acrylic resins commonly used in coating formulations, the film becomes soft above its glass transition temperature, so they are usually used below the glass transition temperature, so we also want to use acrylic resins with a higher glass transition temperature. The glass transition temperature (Tg) of acrylic resins is a very important technical indicator, which must be designed and selected correctly, and its importance is mainly expressed in the following aspects. One, the engineer in the design of paint formulations with acrylic resin, once the coating species, performance and other comprehensive requirements to determine the glass transition temperature of acrylic resin Tg, basically also determines the choice of synthetic resin monomer, but also basically determines the performance of acrylic resin and paint after the performance of the paint. The higher the Tg value of the acrylic resin, the better the solvent and corrosion resistance of the coating film; conversely, the lower the Tg value of the resin, the worse the corrosion and solvent resistance of the coating film. Therefore, among the many technical indicators of acrylic resins, the Tg value has a greater impact on the resin and the performance of the coating film. Second, under the same acrylic resin synthesis reaction conditions, the higher the Tg of the resin, the greater the final viscosity of the resin reaction, that is, the higher the average molecular weight; conversely, the lower the Tg of the resin, the lower the final viscosity of the resin reaction, that is, the lower the average molecular weight. The higher the Tg value, the harder the film and the stronger the scratch resistance, but care should be taken to adjust the paint formulation and not to make the film brittle; conversely, the lower the Tg value, the lower the film hardness and the worse the scratch resistance. We often encounter high temperatures in summer when the film is easy to become soft, back to sticky, easy to be contaminated phenomenon, which is the film-forming resin Tg high or low impact on the film hardness and scratch resistance of the visual performance. Fourth, the higher the Tg of the acrylic resin, the better the solvent release of the coating, the better the dry rate of the film after painting; conversely, the worse the solvent release, the worse the dry rate of the film after painting the resin.

1 review for CHLUMICRYL® TMPTMA Monomer / Trimethylolpropane trimethacrylate CAS 3290-92-4

  1. Liam Carter

    Swift delivery, exceptional quality. Couldn’t ask for more! Highly satisfied with my purchase.

Add a review

Contact US

English