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Tin Ingot, Tin Block, Tin Sheet, Tin Rod, Pure Tin, 7440-31-5

Tin Ingot, Tin Block, Tin Sheet, Tin Rod, Pure Tin, 7440-31-5

TIN INGOT (PURE TIN)

PRODUCT IDENTIFICATION INFORMATION

Parameter Information
Product Name Tin Ingot
Chemical Symbol Sn
Synonyms (English) Tin Ingot, Tin Block, Tin Sheet, Tin Rod, Pure Tin
Synonyms (Turkish) Kalay Külçe, Kalay Levha, Kalay Çubuk, Saf Kalay
CAS Number 7440-31-5
EC Number (EINECS) 231-141-8
Atomic Number 50
Atomic Weight 118.71 g/mol
Appearance Silvery-white metallic ingot/block

CHEMICAL STRUCTURE

    Tin Ingot (Sn)
    
    Metallic Lattice Structure
    
         Sn  Sn  Sn  Sn
           \  |  /  |
            Sn Sn Sn Sn
           /  |  \  |
         Sn  Sn  Sn  Sn
    
    Tetragonal Crystal Structure (White Tin)
    Allotropic Forms: White Tin (β-Sn) and Gray Tin (α-Sn)

Molecular Formula: Sn (Elemental)
Crystal Structure: Tetragonal (White Tin β-Sn); Diamond Cubic (Gray Tin α-Sn)
Electron Configuration: [Kr] 4d¹⁰ 5s² 5p²
Oxidation States: +2, +4 (primary)
Allotropic Forms: White Tin (β-Sn) – stable above 13.2°C; Gray Tin (α-Sn) – stable below 13.2°C

SECTION 1: CHEMICAL IDENTITY AND DEFINITION

Parameter Information
Product Name Tin Ingot
Chemical Symbol Sn
Synonyms (English) Tin Ingot, Tin Block, Tin Sheet, Tin Rod, Pure Tin
Synonyms (Turkish) Kalay Külçe, Kalay Levha, Kalay Çubuk, Saf Kalay
CAS Number 7440-31-5
EC Number (EINECS) 231-141-8
Atomic Number 50
Atomic Weight 118.71 g/mol
Chemical Class Post-transition metal; elemental metal
Allotropic Forms White Tin (β-Sn) – stable above 13.2°C; Gray Tin (α-Sn) – stable below 13.2°C
Electron Configuration [Kr] 4d¹⁰ 5s² 5p²
Oxidation States +2, +4 (primary)
Appearance Silvery-white metallic ingot/block
Odor Odorless
Color Silvery-white

SECTION 2: PHYSICAL AND CHEMICAL PROPERTIES

Property Value Test Method / Note
Appearance Silvery-white metallic ingot/block Visual
Atomic Weight 118.71 g/mol Calculated
Density (20°C) 7.31 g/cm³ ASTM D792
Melting Point 231.9°C DSC
Boiling Point 2,602°C -
Electrical Conductivity 8.7 × 10⁶ S/m (good) ASTM E1004
Thermal Conductivity 66.6 W/m·K -
Specific Heat (25°C) 0.228 J/g·K -
Electrical Resistivity 1.15 × 10⁻⁷ Ω·m -
Hardness (Brinell) ~5-7 HB (very soft) ASTM E10
Tensile Strength ~15-30 MPa (low) ASTM E8
Elongation ~30-50% (high ductility) ASTM E8
Allotropic Transition 13.2°C (White Tin ↔ Gray Tin) -
Oxidation States +2, +4 -
Corrosion Resistance Excellent -
Standard Electrode Potential -0.136 V (Sn²⁺/Sn) -
Coefficient of Thermal Expansion 22.0 × 10⁻⁶ /°C -

SECTION 3: CHEMICAL PROPERTIES AND REACTIVITY

Parameter Information
Chemical Character Post-transition metal; soft; highly ductile and malleable; excellent corrosion resistance; non-toxic
Stability Stable under normal conditions; Resistant to corrosion; Forms protective oxide layer (SnO₂) on surface
Reactivity Resistant to water and air at room temperature; Reacts with strong acids and alkalis; Dissolves in concentrated acids
Incompatible Materials Strong oxidizing agents, strong acids, concentrated alkalis, halogens, nitrates
Corrosion Resistance Excellent; Resistant to corrosion in most environments; Forms protective oxide layer
Acid Reaction Sn + 2HCl → SnCl₂ + H₂ (slow, with concentrated acid); Sn + 4HNO₃ → SnO₂ + 4NO₂ + 2H₂O (with nitric acid)
Alkali Reaction Sn + 2NaOH + 2H₂O → Na₂[Sn(OH)₄] + H₂ (with strong alkalis)
Oxidation Forms protective oxide layer (SnO₂) on surface; Prevents further corrosion
Allotropic Transformation White Tin (β-Sn) → Gray Tin (α-Sn) below 13.2°C (Tin Pest)
Alloy Formation Easily forms alloys with copper (bronze), lead, antimony, silver, zinc

SECTION 4: COMPARISON OF TIN AND RELATED METALS

Property Tin (Sn) Lead (Pb) Copper (Cu) Silver (Ag)
CAS Number 7440-31-5 7439-92-1 7440-50-8 7440-22-4
Symbol Sn Pb Cu Ag
Atomic Number 50 82 29 47
Density (g/cm³) 7.31 11.34 8.96 10.49
Melting Point (°C) 231.9 327.5 1,085 961.8
Hardness Very soft Soft Hard Hard
Primary Use Solder, plating, alloys Batteries, shielding Wiring, plumbing Jewelry, electronics

SECTION 5: PRODUCTION METHODS

Method 1: Smelting and Refining (Most Common Method)

  • Process: Tin ore (Cassiterite - SnO₂) → Roasting → Smelting → Refining → Pure Tin

  • Description: Cassiterite ore is roasted to remove impurities; Smelted with carbon to produce crude tin; Refined by electrolysis or thermal refining; Most common industrial production method

Method 2: Electrolytic Refining

  • Process: Crude tin → Electrolysis → Pure tin

  • Reaction: Sn²⁺ + 2e⁻ → Sn (deposition at cathode)

  • Description: Crude tin is used as anode; Pure tin is deposited on cathode through electrolysis; Produces high-purity tin (99.9%+)

Method 3: Vacuum Distillation

  • Process: Crude tin → Vacuum distillation → Pure tin

  • Description: Tin is distilled under vacuum to remove volatile impurities; Produces high-purity tin

Method 4: Thermal Refining (Fire Refining)

  • Process: Crude tin → Heating → Fluxing → Slag removal → Pure tin

  • Description: Crude tin is heated and treated with fluxes to remove impurities; Produces commercial-grade tin

SECTION 6: FUNCTIONAL PROPERTIES AND MECHANISM OF ACTION

Property Description
Solder Material Used in soldering for electronic components; Low melting point (231.9°C); Good wetting and bonding; Excellent electrical and thermal conductivity; Provides strong, reliable joints
Corrosion Protection Used as coating to protect other metals from corrosion; Forms protective oxide layer (SnO₂); Non-toxic and food-safe; Used in tinplate for food packaging
Alloy Component Forms alloys with copper (bronze), lead, antimony; Improves mechanical properties; Enhances wear resistance; Used in bearings, pewter, and Babbitt metal
Plating Material Provides bright, decorative finish; Corrosion resistance; Non-toxic; Used in food containers, kitchenware, and decorative items
Chemical Applications Used in chemical processes; Tin compounds used as catalysts; Used in the production of tin oxide coatings; Glass and ceramic applications
Electrical/Electronic Used in solders for printed circuit boards; Electrical contacts; Electronic components; Battery applications

SECTION 7: MAIN APPLICATION AREAS

Industry / Application Function Typical Use
Electronics Solder Electronic circuits and components; PCB assembly; High conductivity and strong bonding
Food Packaging Coating/plating Tinplate production; Food cans and containers; Non-toxic and food-safe
Alloy Production Alloy component Bronze (copper-tin); Pewter; Babbitt metal (bearings); Solder alloys
Plating Industry Surface coating Metal surface plating; Corrosion protection; Decorative finish; Kitchenware
Chemical Industry Catalyst/raw material Chemical processes; Tin compounds; Glass and ceramic applications
Automotive Alloy component Bearings; Engine components; Solder applications
Construction Alloy component Bronze architectural elements; Decorative metalwork
Jewelry Alloy component Pewter jewelry; Decorative items

SECTION 8: QUALITY SPECIFICATIONS (PURE TIN INGOT)

Parameter Specification Test Method
Appearance Silvery-white metallic ingot/block Visual
Purity (Sn) ≥ 99.0% - 99.99% AAS / ICP
Lead (Pb) ≤ 0.01% - 0.05% AAS / ICP
Antimony (Sb) ≤ 0.005% - 0.01% AAS / ICP
Copper (Cu) ≤ 0.005% - 0.01% AAS / ICP
Iron (Fe) ≤ 0.005% - 0.01% AAS / ICP
Arsenic (As) ≤ 0.005% - 0.01% AAS / ICP
Bismuth (Bi) ≤ 0.005% - 0.01% AAS / ICP
Zinc (Zn) ≤ 0.001% - 0.005% AAS / ICP
Aluminum (Al) ≤ 0.001% - 0.005% AAS / ICP
Nickel (Ni) ≤ 0.001% - 0.005% AAS / ICP
Weight per Ingot 10-50 kg (standard) Weighing
Dimensions As per customer requirement Measurement

SECTION 9: TOXICOLOGICAL PROFILE

Parameter Value
Acute Oral Toxicity Very low toxicity (metallic form)
Acute Inhalation Toxicity Dust/fume inhalation may cause irritation
Skin Irritation Metallic form is non-irritant
Eye Irritation Metallic form is non-irritant
Chronic Toxicity Low toxicity; Tin is considered relatively non-toxic
Carcinogenicity Not classified as carcinogenic
Mutagenicity Not classified as mutagenic
Reproductive Toxicity Not classified as reproductive toxicant
Target Organs Respiratory system (dust/fume irritation)
Special Toxicity Note Tin metal is considered non-toxic and food-safe; Tin compounds (organotins) are more toxic; Avoid inhalation of dust and fumes

SECTION 10: GHS CLASSIFICATION AND LABELING

GHS Classification (Compliant with CLP and UN GHS):

Hazard Class Category H-Statement
Generally not classified as hazardous - -
STOT - SE (Single Exposure) Category 3 H335 (optional)

Note: Tin metal is generally considered non-hazardous. However, fine dust may cause mechanical irritation.

Signal Word: No signal word required (non-hazardous) or WARNING (optional)

Hazard Pictograms: GHS07 (optional)

Hazard Statements (H-Codes) - if classified:

Code Statement
H335 May cause respiratory irritation

NFPA 704 Hazard Classification:

Health Flammability Reactivity Special
0 0 0 -
(Minimal health hazard) (Will not burn) (Stable) (None)

SECTION 11: PRECAUTIONARY STATEMENTS (P-CODES)

Code Statement
P261 Avoid breathing dust/fume/gas/mist/vapors/spray
P264 Wash hands thoroughly after handling
P271 Use only outdoors or in a well-ventilated area
P280 Wear protective gloves/protective clothing/eye protection/face protection
P304+P340 IF INHALED: Remove person to fresh air and keep comfortable for breathing
P312 Call a POISON CENTER/doctor if you feel unwell
P362+P364 Take off contaminated clothing and wash it before reuse
P403+P233 Store in a well-ventilated place. Keep container tightly closed
P501 Dispose of contents/container in accordance with local/regional/national/international regulations

SECTION 12: FIRST AID MEASURES

Exposure Route Action to Take
Inhalation Move to fresh air immediately. Rest in a position comfortable for breathing. If symptoms persist, get medical attention.
Skin Contact Wash with plenty of soap and water. Remove contaminated clothing. If skin irritation occurs, get medical advice/attention.
Eye Contact Rinse immediately with plenty of water for at least 15 minutes. Keep eyelids open. Remove contact lenses if present. Continue rinsing. If eye irritation persists, get medical advice/attention.
Ingestion Rinse mouth with water. Do NOT induce vomiting. Drink plenty of water. Get medical attention if symptoms occur.

SECTION 13: FIREFIGHTING MEASURES

Parameter Information
Fire Hazard Non-combustible. Powder form may be combustible. High temperatures release toxic tin oxide fumes.
Hazards During Fire Thermal decomposition produces toxic tin oxide fumes
Suitable Extinguishers Use appropriate extinguishing media for surrounding fire. Dry chemical powder, CO₂, sand
Unsuitable Extinguishers Water (with powder form)
Special Protective Equipment Self-contained breathing apparatus (SCBA), full protective clothing
Special Precautions Prevent dust from entering sewers and waterways

SECTION 14: STORAGE AND SHELF LIFE

Parameter Information
Storage Conditions Store in a cool, dry, well-ventilated area; Keep away from moisture and incompatible substances
Container Requirements Original packaging, dry containers; Protect from corrosion
Materials to Protect From Strong oxidizing agents, strong acids, concentrated alkalis, halogens
Shelf Life Unlimited (under proper storage conditions)
Stability Note Stable under normal conditions; Forms protective oxide layer on surface; Protect from moisture

SECTION 15: PACKAGING OPTIONS

Packaging Type Quantity Material
Wooden Crate 50-200 kg Wooden crate (lined)
Steel Crate 50-200 kg Steel crate
Steel Drum 100-500 kg Corrosion-resistant lined steel
Pallet 500-1000 kg Steel pallet
Bulk Custom quantities Container

SECTION 16: TRANSPORT INFORMATION

Parameter Information
UN Number Not regulated (non-hazardous)
Hazard Class Not applicable
Packing Group Not applicable
ADR/RID Not regulated
IMDG Code Not regulated (not a dangerous good)
IATA (Air) Not regulated
Marine Pollutant No
Transport Temperature Ambient temperature; Protect from moisture

SECTION 17: REGULATORY STATUS

Region / Authority Status
European Union REACH registered; Not classified as hazardous
USA (TSCA) Listed
Turkey Industrial raw material; Subject to KKDIK regulation
IARC Group 3 (Not classifiable as to carcinogenicity to humans)
NTP Not listed
OSHA Not regulated as toxic or carcinogenic substance
California (Prop 65) Not listed
EU Restrictions Not restricted under REACH Annex XVII
FDA Approved for food contact applications (tinplate)

SECTION 18: OTHER NAMES AND SYNONYMS

Type Name
Turkish Names Kalay Külçe, Kalay Levha, Kalay Çubuk, Saf Kalay
English Names Tin Ingot, Tin Block, Tin Sheet, Tin Rod, Pure Tin
Chemical Names Tin; Elemental Tin; Tin Metal
CAS Number 7440-31-5
EC Number 231-141-8
Atomic Number 50
Atomic Symbol Sn

SECTION 19: SUMMARY TABLE

Parameter Value
Product Tin Ingot (Pure Tin)
CAS Number 7440-31-5
Atomic Number 50
Atomic Weight 118.71 g/mol
Appearance Silvery-white metallic ingot/block
Density 7.31 g/cm³
Melting Point 231.9°C
Boiling Point 2,602°C
Hardness Very soft (~5-7 HB)
Electrical Conductivity 8.7 × 10⁶ S/m
Primary Function Solder, alloy, plating
Main Applications Electronics (solder), food packaging (tinplate), alloys (bronze), plating
Shelf Life Unlimited
GHS Signal Word No signal word required (non-hazardous)
UN Number Not regulated
Toxicity Very low toxicity; Food-safe
Special Feature Low melting point; Excellent corrosion resistance; High ductility; Non-toxic

SECTION 20: CRITICAL WARNINGS AND BEST PRACTICES

CRITICAL WARNINGS:

  • Non-hazardous material but fine dust may cause mechanical irritation to respiratory tract.

  • Non-combustible. Does not burn. Stable at high temperatures.

  • Allotropic transformation (Tin Pest): Below 13.2°C, white tin transforms to gray tin, causing embrittlement.

  • Soft and ductile. Handle with care to prevent deformation.

  • Low melting point (231.9°C). Avoid exposure to temperatures near melting point.

  • Incompatibilities: Keep away from strong oxidizing agents, strong acids, and concentrated alkalis.

  • Food-safe. Approved for food contact applications.

  • Hygiene Requirement: Wash hands thoroughly after handling.

BEST PRACTICE RECOMMENDATIONS:

  • Electronics (Solder): Use for soldering electronic components and PCBs; Low melting point provides easy processing; Good wetting and bonding; High electrical conductivity.

  • Food Packaging (Tinplate): Use as coating for food cans and containers; Non-toxic and food-safe; Provides excellent corrosion resistance; Forms protective oxide layer.

  • Alloy Production: Use in bronze production (copper-tin alloy); Pewter; Babbitt metal for bearings; Solder alloys.

  • Plating: Use for decorative and protective plating; Provides bright finish; Corrosion resistance; Kitchenware and decorative items.

  • Handling: Use in well-ventilated areas; Avoid dust generation; Wear protective gloves and safety goggles when handling powder.

  • Personal Protective Equipment: Safety goggles, protective clothing, protective gloves (nitrile, neoprene), NIOSH-approved dust mask (if dust).

  • Hygiene: Wash hands thoroughly after handling; Do not eat, drink, or smoke when using.

  • Storage: Store in cool, dry, well-ventilated area; Protect from moisture; Keep away from acids and oxidizing agents.

  • Spill Response: Avoid dust generation; Vacuum or sweep; Place in closed containers; Do not allow to enter drains or waterways.

  • Disposal: Dispose of in accordance with local, regional, and national regulations; Tin is recyclable; Recycle where possible.

SPECIAL NOTE ON TIN PEST:

Tin pest is a transformation of white tin to gray tin:

  • Transition Temperature: 13.2°C (56°F)

  • Effect: White tin (β-Sn) → Gray tin (α-Sn)

  • Consequences: Loss of metallic properties; Embrittlement; Powdering; Structural failure

  • Prevention: Alloying with antimony or bismuth; Store above 13.2°C

  • Note: Alloying typically prevents transformation

SPECIAL NOTE ON SOLDER APPLICATIONS:

Tin is the key component in solders:

  • Tin-Lead Solder (Sn63/Pb37): 183°C melting point; Traditional electronics

  • Lead-Free Solder (Sn96.5/Ag3.0/Cu0.5): 217-220°C melting point; RoHS compliant

  • Tin-Silver Solder: Higher melting point; High reliability

  • Tin-Copper Solder: Lower cost; Good performance

LEGAL DISCLAIMER:

The information provided in this document is based on our current knowledge and experience and is presented in good faith. However, as all conditions of use are beyond our control, this document does not constitute a binding specification or warranty. This Technical Data Sheet is for informational purposes only. Users are responsible for testing suitability for their own applications. For complete safety, storage, handling, transportation, waste, and regulatory compliance information, please refer to the official Safety Data Sheet (SDS/MSDS) provided by the manufacturer/supplier.

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