Label Encyclopedia

Label Material High and Low Temperature Water Resistance Performance Comparison: 3D Matrix + 9 Material Ratings

📅 2026-07-08 ✍️ Wuxi Lexiang Printing & Packaging ⏱ 6min read

💡 💡 At a Glance

PET temperature resistance -40~120°C, excellent waterproofing. Synthetic paper is the best choice for extreme environments. Coated paper is neither waterproof nor temperature-resistant.

Last week, a client in the outdoor industrial sector asked me: "My equipment is used outdoors in temperatures ranging from -10 to 60°C. Which material is the most suitable?"

I said: "A 3-dimensional matrix—heat resistance + cold resistance + water resistance. You need to evaluate all 3 dimensions simultaneously to make the right choice."

He asked: "How do you use the 3-dimensional matrix?"

I said: "9 materials × 3-dimensional scoring = a total score of 30—look for materials with a score ≥ 24. This article won't discuss 'which one resists temperature'—it covers the 3-dimensional matrix + scoring for 9 materials + a 5-step selection process."

3-Dimensional Performance Matrix

Dimension 1: High-Temperature Resistance

MaterialUpper Temperature LimitApplicationScore
PI (Polyimide)400°CPCB Reflow Soldering10
Silicone Label200°CAutomotive Engine9
PET150°CHome Appliances8
Modified Acrylic120°CCosmetics7
Synthetic Paper PP100°CGeneral Food6
Mirror-Coated Art Paper100°CCosmetic Gift Box6
Art Paper100°CGeneral Merchandise6
Metallized Paper100°CLiquor Gift Box6
Holographic Paper100°CAnti-Counterfeit Gift6

Dimension 2: Low-Temperature Resistance

MaterialLower Temperature LimitApplicationScore
Silicone Label-60°CPolar / Liquid Nitrogen10
PET-40°COutdoor Cold Storage9
Rubber Adhesive-40°CGeneral Cold Storage9
Modified Acrylic-30°CCosmetics7
Synthetic Paper PP-20°CGeneral Food6
Art Paper-20°CGeneral Merchandise6
Holographic Paper-20°CAnti-Counterfeit Gift6
Mirror-Coated Art Paper-20°CCosmetic Gift Box6
Metallized Paper-20°CLiquor Gift Box6

Dimension 3: Water Resistance

MaterialWaterproof RatingApplicationScore
PETIP 8 (Long-Term Immersion)Medical Device10
Silicone LabelIP 8Chemical / Seafood10
Synthetic Paper PPIP 7 (Short-Term Immersion)Cold Chain8
Holographic PaperIP 5 (Rain-Proof)Anti-Counterfeit6
Laminated Art PaperIP 4 (Splash-Proof)General Merchandise5
Modified AcrylicIP 7Cosmetics7
Mirror-Coated Art PaperIP 3 (Moisture-Proof)Cosmetics4
Metallized PaperIP 5Liquor6
Art Paper (Uncoated)IP 0 (Not Waterproof)General Merchandise2

9 Material 3-Dimensional Comprehensive Rating

MaterialHeat ResistanceCold ResistanceWaterproofTotal ScoreRecommended Scenarios
PI109827PCB High Temperature
Silicone9101029Extreme Environments
PET891027Electronics / Industrial
Modified Acrylic77721Cosmetics
Synthetic Paper PP66820General Food
Laminated Coated Paper66517General Merchandise
Mirror Coated Paper66416Cosmetics Gift Box
Laser Paper66618Anti-Counterfeit Gifts
Metallized Paper66618Liquor Gift Box

3 Typical Scenario Selections

Scenario 1: PCB Reflow Soldering (150°C for 90 seconds)

3-Dimensional Requirements:

  • High-temperature resistance: 150°C (must pass)
  • Low-temperature resistance: Room temperature (no requirement)
  • Waterproof: IP 0 (no requirement)

Recommended: PET (Total score 27)

Scoring:

  • 150°C ≥ 180°C (1.2×) → 8 points
  • Low-temperature resistance: 9 points
  • Waterproof: 10 points
  • Total score 27 points

Scenario 2: Frozen Food (-20°C short immersion)

3-Dimensional Requirements:

  • High-temperature resistance: 100°C (microwave heating)
  • Low-temperature resistance: -20°C (must pass)
  • Waterproof: IP 7 (ice water)

Recommended: Synthetic paper PP (Total score 20)

Scoring:

  • 100°C ≥ 120°C (1.2×) → 6 points
  • Low-temperature resistance -20°C → 6 points
  • Waterproof IP 7 → 8 points
  • Total score 20 points ✅ (minimum passing)

Scenario 3: Outdoor Industrial Labeling (-10 to 60°C, rain exposure)

3-Dimensional Requirements:

  • High-temperature resistance: 80°C (summer sun exposure)
  • Low-temperature resistance: -10°C (winter)
  • Waterproof: IP 7 (rain exposure)

Recommended: PET (Total score 27)

Scoring:

  • High-temperature resistance 60°C ≥ 96°C (1.2×) → 8 points
  • Low-temperature resistance -10°C → 9 points
  • Waterproof IP 7 → 10 points
  • Total score 27 points

5-Step Selection Process

Step 1: Define 3-Dimensional Requirements

3 Required Parameters:

  • Maximum temperature / Minimum temperature
  • Waterproof requirement (IP rating)
  • Usage environment

Step 2: Scoring

Scoring across 3 Dimensions:

  • High-temperature resistance (0-10)
  • Low-temperature resistance (0-10)
  • Waterproofing (0-10)

Step 3: Select 3-5 Candidates

Actions:

  • Choose 3-5 candidates from 9 materials
  • Ensure total score ≥ 20

Step 4: Physical Testing

Actions:

  • Print 1,000 samples
  • Test in real scenarios for 7 days
  • Compare performance

Step 5: Place Order

Actions:

  • Select the top 1-2 materials with the best performance
  • Compare quotes from 3 printing factories
  • Place order starting from 1,000 sheets

3 Common Selection Mistakes

Mistake 1: Looking Only at Unit Price, Not Performance

Symptom: Using cheap coated paper for PCB labels → falls off during reflow soldering

Solution: Select after a 3-dimensional scoring evaluation

Mistake 2: Looking Only at Heat Resistance, Not Water Resistance

Symptom: Using PI for outdoor signage → aging within 3 months

Solution: Only qualified after passing all 3 dimensions

Mistake 3: Relying Only on Manufacturer Recommendations Without Actual Testing

Symptom: Manufacturer recommends PET, but it actually falls off within 3 months

Solution: Conduct sample testing for 7-30 days

If you want to see material selection — refer to how to choose suitable label materials?, or directly contact LeXiang Packaging consultants, you will receive a 3-dimensional matrix scoring + recommended solution within 24 hours.

#Label Material Performance #High and Low Temperature Resistance #Waterproof Performance #Material Matrix #Label Material #Material Comparison #Temperature Resistance Performance #IP Rating #Material Selection #Material Rating #Label Material Evaluation #LeXiang Packaging

FAQ

How to compare the temperature resistance performance of label materials?

3D Matrix: (1) High-temperature resistance — PI 400°C > Silicone 200°C > PET 150°C > Modified Acrylic 120°C > Coated Paper 100°C; (2) Low-temperature resistance — Silicone -60°C > Rubber -40°C > Modified Acrylic -30°C > PET -40°C > Coated Paper -20°C; (3) Water resistance — PET IP 8 > Synthetic Paper IP 7 > Laminated Coated Paper IP 4 > Laser Paper IP 5 > Coated Paper IP 0. A 3D scoring for 9 materials, with a total score of 30 and 10 points per dimension: ≥ 24 = Excellent, 20–24 = Good, < 20 = Use with Caution.

Which label material is most resistant to high temperatures?

PI (polyimide) withstands temperatures up to 400°C, the highest heat resistance. Three typical scenarios: (1) PCB reflow soldering at 150–200°C; (2) automotive engines at 120–180°C; (3) semiconductor manufacturing at 200–300°C. PI costs 1–3 RMB per label (5–10 times more expensive), suitable for high-value / high-temperature scenarios. For mid-range scenarios, PET is recommended, withstanding 150°C (sufficient + cost-effective). For everyday scenarios, coated paper at 100°C is sufficient (microwave / steaming).

Which label material is the most waterproof?

PET Waterproof IP 8 (long-term immersion) is the most waterproof, with 3 typical scenarios: (1) long-term immersion—medical devices / seafood labels; (2) rain-exposed outdoor—chemical products / pesticide labels; (3) refrigerated environment—ice cream / cold chain labels. PET + silicone (water-resistant adhesive) provides the strongest waterproof performance. For mid-range scenarios, synthetic paper IP 7 (short-term immersion) is recommended, paired with rubber-based adhesive (waterproof adhesive). For everyday scenarios, laminated coated paper IP 4 (splash-proof) is sufficient.

How to choose label materials for low-temperature resistance?

Low-temperature resistant material selection priority: (1) Most low-temperature resistant — silicone, T_g = -60°C (extreme cold storage); (2) Moderate low-temperature resistance — rubber, T_g = -40°C (standard cold storage -20°C); (3) Not low-temperature resistant — acrylic, T_g = -20°C (suitable for room temperature only). 3 typical scenarios: (1) Polar / liquid nitrogen (-196°C) — specialty adhesive; (2) Standard cold storage (-20°C) — rubber adhesive + synthetic paper; (3) Refrigeration (0–4°C) — acrylic adhesive + coated paper. Simple home test: freeze the label at -18°C for 7 days; it passes if it does not fall off.

What is the use of 3D matrix for label materials?

3 Core Applications: (1) Rapid selection—directly compare against the 3-dimensional matrix and choose the one with the highest total score; (2) Avoid the single-dimension trap—selecting only for high-temperature resistance while ignoring water resistance = failure; (3) Comprehensive decision-making—a 3-dimensional total score of ≥24 is required for safe use. It is recommended that procurement teams use the 3-dimensional matrix to evaluate 3-5 candidate materials and place orders for the top 1-2 with the highest total scores.

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