ML6 MATERIAL SAFETY INFORMATION
ML6 is Meridian Laboratory’s proprietary molded polyurethane, engineered for high-performance and durability in demanding industrial applications. While not classified as hazardous, this page provides key safety, handling, and compliance information including RoHS, REACH, Prop 65, and disposal guidelines.
FAQs
Common Questions about Polyurethane Material Safety
Yes. You can download the ML6® Polyurethane Safety Data Sheet below for complete handling, storage, and safety information.
ML6® polyurethane is a thermoset polyurethane, meaning it cannot be re-melted or reshaped. It is not recyclable, but its durability often reduces replacement frequency and total environmental impact.
Yes. ML6® polyurethane has excellent resistance to many oils, solvents, and chemicals. However, chemical compatibility varies, please contact us with your specific environmental conditions for evaluation.
Certain ML6® polyurethane formulations are certified for FDA or direct food contact applications. For food-grade polyurethane applications, please contact our engineering team to discuss your specific requirements..
No. ML6® polyurethane is classified under Export Administration Regulation (EAR99). This designation means it is not specifically listed on the Commerce Control List (CCL) maintained by the U.S. Department of Commerce’s Bureau of Industry and Security (BIS). As such, ML6® can typically be exported to most destinations without an export license, provided:
The end use is not for a prohibited purpose (e.g., weapons of mass destruction).
The end user is not on any U.S. Government restricted or denied party lists.
The destination is not subject to comprehensive U.S. sanctions or embargoes (e.g., Cuba, North Korea, Iran, Syria, or certain regions of Russia).
ML6® is a non-hazardous, non-dual-use industrial material and does not contain any components subject to additional export restrictions under ITAR or EAR controls. As always, exporters are responsible for screening transactions to ensure full compliance with all applicable export laws and regulations.
ML6® polyurethane is REACH Compliant. Meridian Laboratory exports less than 1 metric ton of material per year to the EU, making registration unnecessary.
Yes. ML6® polyurethane meets the requirements of California Prop 65 and does not contain any listed substances known to cause cancer or reproductive harm.
No. ML6® polyurethane is a polymer formed from organic compounds and contains no lead or other heavy metals.
Yes. ML6® polyurethane is fully RoHS compliant and tested to confirm the absence of hazardous substances, including Lead (Pb), Cadmium (Cd), Mercury (Hg), Hexavalent Chromium (Cr VI), PBBs, and PBDEs.
Yes. ML6® polyurethane is classified as a non-hazardous, non-recyclable material and can be disposed of with standard industrial or municipal waste, in accordance with local regulations.
MATERIAL SAFETY DATA SHEET
May be used to comply with OSHA’s Hazard
Communication Standard 29 CFR 1910.1200.
MATERIAL NAME: Cured Polyurethane
Section 1: Chemical Product
Material Identification: Cured polyurethane
Product Information Telephone Number 1-608-836-7571
Section 2: Composition, Information on Ingredients
| Hazardous Components: | Specific Chemical | %(Wt./Vol.) | Other Limits | |||
| Identity: | Common Names(s) | (Optional) | CAS | Recommended | PEL | TLVs |
| None | N/A | N/A | N/A | N/A |
Polyurethane elastomers are fully reacted polymers forming Articles which are not considered hazardous under osha’s Criteria 29 cfr 1910.1200. However, hazardous dusts, vapors, gases, or fumes may be released by mechanical or thermal processing, or by thermal decomposition.
Section 3: Hazard Identification
Emergency Overview
Acute: Fumes from hot wire cutting can be irritating and lead to coughing. These fumes could contain traces of tdi, mdi, other isocyanates, and/or curatives. Skin or airborne exposure to isocyanates may produce an asthma-like lung sensitization, with shortness of breath, wheezing or cough, which may occur after re-exposure to very low levels.
Skin contact with some polyurethane products may result in skin sensitization or an asthma-like lung sensitization.
Chronic: Animal studies indicate that chronic inhalation or overexposure of dusts may cause inflammation of the lungs, fibrosis, and airway destruction.
Severe Immediate Hazards:
Dusts from grinding operations may aggravate existing lung disorders when proper protection is not used.
Potential Health Effects:
| Routes of Exposure: | x Skin | x Inhalation | |||
| o Ingestion Lengths of Exposure: | o Single | x Repeated | |||
| x Lifetime Severity of Effect: | o Mild | o Moderate | x Severe | ||
| Target Organs: | o Liver | o Kidney | x Lung | x Skin | o______ |
See acute and chronic effects in Emergency Overview.
Carcinogenity
Cured polyurethane is not listed as a carcinogen
Section 4: First Aid Procedures
Procedures
Flush eyes with water if dust from grinding causes irritation.
Note to Physicians (if available)
None
Section 5: Fire Fighting Measures
Flammable Properties
| Flash Point: | Not Applicable | |
| Flammable Limits: | LEL: Not Applicable | UEL: Not Applicable |
| Dusts from processing operations may be combustible. |
Extinguishing Media
Water, dry chemical, foam, or carbon dioxide.
Fire Fighting Instructions
Evacuate non-emergency personnel to a safe area. Firefighters should use selfcontained breathing
apparatus. Avoid breathing smoke, fumes, and decomposition products. Use water spray to quench
smoldering elastomers. Product may melt after ignition, toform flammable liquids. Burning produces
intense heat, dense smoke, and toxic gases, such as isocyanates, carbon monoxide, oxides of nitrogen, and
traces of hydrogen cyanide. Do not breathe smoke. Smoke released, even after fire is out, may contain high
concentrations of isocyanates hundreds of feet away. Do not remove self- contained breathing apparatus
until smoke is gone and area is completely ventilated with clean air.
Section 6: Accidental Release Measures
Safeguards (Personal)
None
Spill Clean Up
Pick up and handle as any other solid material.
Section 7: Handling and Storage
Handling
Cutting elastomer by hot wire or hot branding, or other thermal processing can form decomposition
products. Local exhaust ventilation should be used to remove any fumes. If isocyanates or curatives are
emitted, ventilation must be sufficient to ensure levels below the TLV for TDI (0.005 PPM TWA/0.02 PPM
STEL), MDI (0.005 PPM TWA), other isocyanates, or curatives. Also, see respiratory protection below.
Storage
Store elastomers in areas equipped with sprinkler systems. Store away from sparks, flames, or other ignition
sources.
Section 8: Exposure Controls, Personal Protection
Engineering Controls
Local exhaust recommended for thermal processing operations, as required to reduce dust, gas, and vapor
fume exposure below OSHA levels.
Personal protective Equipment
Eye/Face Protection: None required in normal use. For grinding operations, use safety goggles, and face
shield.
Skin Protection
None required in normal use.
Respiratory Protection (specify type)
Use NIOSH approved respirator. For grinding operations – wear a dust respirator. If generating gas, vapor,
and fumes from hot wire, hot knife, or other thermal processing operations – wear an air-purifying respirator
with organic cartridge or supplied-air respirator if ventilation is inadequate.
General Protection
None required.
Section 9: Physical and Chemical Properties
|
Appearance and Odor Solid, no odor |
Vapor Density N/A |
Solubility in Water Insoluble |
|
Physical State Solid |
Boiling Point N/A |
Specific Gravity 1.05 – 1.25 |
|
PH N/A |
Freezing /Melting Point Melts 380°F – 450°F |
Evaporation Rate N/A |
|
Vapor Pressure N/A |
Other None |
Section 10: Stability and Reactivity
x Stable o Unstable
Conditions to Avoid: None
Incompatibility with Other Material
Strong acids or bases.
Hazardous Decomposition or By-products
Decomposition through burning produces fumes consisting of organic particulate, gaseous hydrocarbons,
carbon dioxide, carbon monoxide and may contain traces of toluene diisocyanate (TDI) or diphenylmethane
diisocyanate (MDI), other isocyanates, curatives, hydrogen cyanide, acrolein and oxides of nitrogen.
Hazardous Polymerization May Occur Hazardous Polymerization Will Not Occur Conditions to
Avoid:
o Hazardous Polymerization May Occur
x Hazardous Polymerization Will Not Occur
Conditions to Avoid: None
Section 11: Toxicological Information
Toxicological Data
Under normal conditions not applicable.
Section 12: Ecological Information
Ecological Data
Under normal conditions not applicable.
Section 13: Disposal Considerations
Waste Disposal
Not considered a hazardous material. Dispose of material according to any local, state, and federal regulations.
Section 14: Transport Information
Shipping Information
Not regulated as a hazardous material.
Section 15: Regulatory Information
U.S. Federal Regulations
| TSCA Health & Safety Reporting List: N/A Chemical Test Rules N/A Section 12b N/A |
TSCA Significant New Use Rule N/A CERCLA Hazardous Substances and corresponding RQs N/A SARA |
Section 302 Extremely Hazardous Substances N/A SARA Codes N/A Section 313 N/A Clean Air Act: N/A Clean Water Act: N/A |
U.S. State Regulations
| STATE: N/A | California Prop 65 N/A |
International Regulations
| European/International Regulations | Hazard Symbols: | Canada – DSL/NDSL N/A |
| N/A | Risk Phrases: | Canada – WHMIS N/A |
| European Labeling in Accordance with EC Directives | Safety Phrases: WGK (Water Danger/Protection) |
Additional Information
None
Note: This information is believed to be accurate and represents the information currently available.
However, no warranty is expressed or implied with respect to such information, and no liability resulting
from its use is assumed. Users should make their own investigations to determine the suitability of the
information for their particular purposes.
By Theodore J. Hogan & Associates, Inc. June 22, 2005
RESOURCES
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