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TDI — Toluene Diisocyanate (Formula: CH₃C₆H₃(NCO)₂ · CAS 26471-62-5 · MW 174.16 g/mol)
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TDI 80:20 Primary commercial grade
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NCO content
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ASTM D 5155 · ISO 14896
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48.2–48.6%
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Determines stoichiometric polyol quantity — must be confirmed per batch for accurate index calculation
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Flexible PU foam: mattresses, furniture, automotive seating, carpet underlay, packaging foam
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2,4-TDI isomer content
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GC · HPLC
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79–81%
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Controls reaction rate and foam rise profile — 80% 2,4-isomer gives optimum slabstock rise time
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2,6-TDI isomer content
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GC · HPLC
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19–21%
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Higher 2,6 content accelerates gelation — carefully balanced for stable foam manufacturing window
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Colour (APHA Hazen)
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ASTM D 5386
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≤20 APHA
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Pale yellow liquid at room temperature — darker colour indicates impurities or decomposition
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Hydrolysable chloride
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ASTM D 5386
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≤100 ppm
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Excess Cl causes urethane catalyst poisoning and foam defects — critical parameter for amine-catalysed systems
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Acidity (as HCl)
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Potentiometric titration
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≤0.005%
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High acidity indicates phosgene residue — affects catalyst activity and worker safety
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TDI 65:35
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NCO content
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ASTM D 5155
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48.2–48.6%
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Same NCO as 80:20 — stoichiometry identical; only reaction kinetics differ
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Coatings · Adhesives · Elastomers · CASE applications requiring slower gel time
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2,4-TDI isomer content
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GC
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64–66%
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Lower 2,4 ratio vs 80:20 — slower primary reaction, longer processing window for coatings and adhesives
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Colour (APHA)
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ASTM D 5386
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≤30 APHA
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Slightly higher colour tolerance than 80:20 — acceptable for non-foam applications
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Water content
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Karl Fischer
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≤0.05%
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CRITICAL: water reacts with NCO groups to form CO₂, causing foam voiding and urea formation in coatings
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TDI-100 (Pure 2,4-TDI)
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2,4-TDI isomer purity
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GC
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≥99.5%
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Highest reactivity, longest reaction window — used where maximum control over reaction sequence is required
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High-performance coatings · Specialty elastomers · Adhesives · Urethane prepolymers
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NCO content
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ASTM D 5155
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48.2–48.6%
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Same NCO total as mixed grades
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Melting point
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DSC
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19.5–21.5°C
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Pure 2,4-TDI is a solid below ~20°C — requires heated storage and transfer in cold climates
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MDI — Methylene Diphenyl Diisocyanate (Formula: OCN-C₆H₄-CH₂-C₆H₄-NCO · Monomeric 4,4'-MDI CAS 101-68-8)
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Pure MDI (4,4'-MDI)
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NCO content
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ASTM D 5155
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33.0–33.6%
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Significantly lower NCO % than TDI — determines polyol ratio in TPU and rigid foam formulations
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Thermoplastic polyurethane (TPU) · Spandex/elastane fibre (Lycra) · Automotive adhesives · PU leather
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4,4'-MDI isomer content
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HPLC
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≥98.5%
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High 4,4' purity gives symmetrical molecule with high crystallinity — essential for TPU and elastomere hard segment
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2,4'-MDI isomer
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HPLC
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≤1.5%
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2,4'-isomer disrupts crystallinity — excess gives softer, less well-defined TPU properties
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Colour (Hazen)
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ASTM D 5386
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≤15 Hazen
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White crystalline solid at room temperature (mp ~40°C) — must be melted and maintained above 40°C for handling
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Flash point
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ASTM D 93
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>190°C
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High flash point — classified as combustible liquid, not flammable. Relevant for storage classification and insurance.
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Polymeric MDI (PMDI)
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NCO content
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ASTM D 5155
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30.5–32.5%
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Lower NCO than pure MDI — mixture of monomeric and oligomeric MDI species
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Rigid PU insulation (PIR/PUR boards) · Cold storage panels · Refrigerators/freezers · Spray foam insulation
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Functionality (average f̄)
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NCO/chain end calculation
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2.7–3.0
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CRITICAL for rigid foam: higher functionality (vs TDI f̄=2.0) creates highly crosslinked rigid network. Closed-cell foam requires f̄ ≥2.7 for dimensional stability.
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Viscosity at 25°C
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ISO 3219 (Rotational)
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150–250 mPa·s
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Affects pumpability and mixing efficiency in foam machine. High-viscosity PMDI requires heated piping and equipment.
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Appearance
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—
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Dark brown viscous liquid
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Dark colour from higher oligomers — does not affect foam properties. Not suitable for colour-sensitive applications (use Pure MDI).
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