High Quality Modern Frameless Tempered Glass Sliding Bathtub Door For Apartment Bathroom Hotel Showeroom
Tempered Safety Glass – Technical Specifications & Application Guide
Tempered glass is a high-strength safety glass produced through controlled thermal processing to induce compressive surface stresses, resulting in 4-5x greater mechanical strength than annealed glass and a unique breakage pattern for safety.
Manufacturing Process & Material Properties
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Thermal Tempering Process
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Heating to 620-675°C (near softening point)
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Rapid air quenching (cooling rate >100°C/sec)
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Surface compression: 100-150MPa
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Core tension: 30-50MPa
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Material Characteristics
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Modulus of Elasticity: 72GPa
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Poisson's Ratio: 0.23
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Density: 2.5g/cm³
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Thermal Shock Resistance: ΔT 200°C
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Stress Profile
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Surface Compression: ≥100MPa (EN 12150)
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Case Depth: ~20% of thickness
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Stress Equilibrium: Balanced compression/tension
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Mechanical Performance Data
Breakage Characteristics
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Fragmentation Pattern
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Diced breakage into small cuboid fragments
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EN 12150 requirements:
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4mm glass: 40-100 fragments/50mm²
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6mm glass: 30-80 fragments/50mm²
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10mm glass: 15-50 fragments/50mm²
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Edge Strength
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2x stronger than annealed glass edges
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Critical flaw size: 0.05mm (vs 0.15mm annealed)
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Optical & Dimensional Specifications
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Optical Quality
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Distortion: <0.1mm/m (EN 12150 Class 1)
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Wavefront distortion: λ/4 per 25mm
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Haze: <0.5% (ASTM D1003)
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Thickness Range
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Minimum: 3mm (practical production)
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Maximum: 25mm (furnace-dependent)
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Common: 4mm, 5mm, 6mm, 8mm, 10mm, 12mm
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Tolerance: ±0.2mm (thinner), ±0.3mm (thicker)
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Size Capabilities
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Minimum: 100×100mm
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Maximum: 3300×14000mm (jumbo furnaces)
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Standard production: 2440×3660mm
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Safety Standards & Certifications
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Global Standards
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EN 12150-1 (Europe)
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ANSI Z97.1 (USA)
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GB 15763.2 (China)
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JIS R3206 (Japan)
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AS/NZS 2208 (Australia)
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Impact Test Requirements
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227g steel ball drop test (EN 12600)
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4mm: 6m height (Class 1B)
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6mm: 9m height (Class 1A)
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45kg bag test (EN 356)
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Processing Limitations
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Post-Treatment Restrictions
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Cannot be cut or drilled after tempering
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Edge working requires pre-tempering
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Maximum hole diameter: 1/3 glass thickness
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Heat Soak Testing
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290°C for 8 hours (EN 14179)
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Detects nickel sulfide inclusions
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Reduces spontaneous breakage risk to <0.01%
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Specialty Tempered Glass Types
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Heat-Strengthened Glass
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Lower stress (50-75MPa surface compression)
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Breaks into larger pieces
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For overhead glazing applications
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Chemically Tempered Glass
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Ion exchange process
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Thin glass (<3mm) strengthening
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Used in mobile devices, aircraft
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Tempered Laminated Glass
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Combines safety and security
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For hurricane-resistant glazing
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Industry Applications
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Architectural Glazing
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Curtain walls (EN 13024 compliant)
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Glass railings (EN 12600 Class 1)
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Sliding doors (ANSI Z97.1 certified)
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Transportation
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Automotive side/rear windows (ECE R43)
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High-speed train glazing (EN 16273)
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Aircraft interior partitions
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Consumer Products
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Shower enclosures (ASTM C1036)
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Oven doors (UL 858 compliant)
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Appliance panels
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Specialty Applications
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Bullet-resistant laminates (UL 752)
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Hockey rink barriers (ASTM F1043)
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Solar panel covers (IEC 61215)
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Quality Control Measures
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Stress Measurement
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Surface polarimetry (FSM-6000)
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Differential scanning calorimetry
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Fragmentation Testing
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Impact test to verify break pattern
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Fragment counting per standard
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Flatness Verification
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Laser interferometry
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Maximum bow: 0.2% of length
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Leading Manufacturers
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Guardian Glass (TemperedGuard™)
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Jumbo sheet capability
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0.05mm flatness tolerance
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Saint-Gobain (SGG Securit®)
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High optical quality
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Custom shape tempering
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NSG (Pilkington Temperable)
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Low-iron variants
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Patterned glass options
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AGC (Temperlite®)
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Ultra-clear composition
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Thin glass tempering
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Sustainability Features
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100% recyclable
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Energy recovery from tempering furnaces
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Reduces injury risk (safety glass)
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Contributes to LEED MR credits
Technical Support Services
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Stress Analysis
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Surface compression mapping
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Edge stress profiling
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Breakage Investigation
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Fracture pattern analysis
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Stress corrosion evaluation
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Design Optimization
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Hole placement guidelines
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Minimum bend radii calculations
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