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  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
  • Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line
Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line

Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line

  • >= 1 Sets
    $100,000

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Glass Tempering & Annealing: Designed to temper and anneal small glass bottles and glassware through precise electric heating, enhancing durability and thermal resistance.
  • Conveyor Integration: Equipped with modular conveyor systems for seamless integration into production lines, enabling automated material handling and streamlined workflows.

Key features

  • 1. Corrosion-Resistant Alloy Steel Chamber

  • With a corrosion-resistant alloy steel chamber, you can ensure long-lasting durability in high-temperature environments*, maintaining structural integrity even under frequent use.

  • 2. Programmable Digital Control Panel

  • With a touchscreen interface and multi-program presets, you can set precise temperature and cycle times for different glass types, reducing setup time by up to 30% compared to manual models*.

  • 3. High-Output Production Capacity

  • With a production capacity optimized for small-scale operations, you can achieve up to 500 bottles per hour—20% faster than traditional furnaces*—to meet both artisanal and commercial demands efficiently.

  • 4. Flexible Scenario Adaptability

  • Designed for small-scale production, it offers 2x more adaptability than fixed-design furnaces*, enabling seamless transitions between home artisan projects and commercial batch processing.

  • 5. CE Safety Certification Compliance

  • Certified to CE safety standards, you can ensure compliance with international manufacturing regulations*, surpassing basic safety requirements of non-certified models.

Product details

Small Glass Bottle Tempering Furnace Machine glassware Electric Annealing Lehr Equipment Furnace Production Line

The Small Glass Bottle Tempering Furnace Machine is a compact, high-efficiency solution for annealing and tempering glassware. Designed for industrial-scale production, it integrates advanced heating systems, automation, and safety features to ensure consistent product quality. Ideal for glass bottle manufacturers, this machine supports scalable production while minimizing energy consumption and operational risks.

Technical specifications

FeatureSpecificationApplication Scenario
Heating TechnologyElectric resistance heating (100-120°C/min)Rapid temperature ramp-up for glass tempering
Temperature RangeUp to 700°C (Pro Model: 750°C)High-precision annealing of borosilicate glass
Production CapacityCustomizable monthly/yearly outputMass production of beverage or pharmaceutical bottles
Automation LevelPLC-controlled conveyor integrationSeamless integration into assembly lines
Safety FeaturesGuardrails, emergency stop, thermal sensorsCompliance with OSHA standards for worker safety
CertificationCE, ISO 9001Export-ready compliance for EU/Global markets

Customization guide

Adjustable conveyor belt speeds (0.5–3 m/min) and modular heating zones allow customization to meet specific glass thickness (2–8mm) or production volume requirements.

Get inspired

With its compact design and automated conveyor systems, this furnace optimizes space and workflow in modern manufacturing facilities. The advanced temperature control ensures uniform stress relief, making it ideal for producing durable glass bottles for food, cosmetics, or medical industries.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Heating Rate100°C/min+15% (115°C/min)+30% (130°C/min)*
Max Temperature650°C700°C750°C
AutomationBasic PLC controlConveyor sync + IoTFull robotic integration
Conveyor Capacity500 units/hour800 units/hour1,200 units/hour

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s 750°C max temperature enables tempering of high-strength borosilicate glass, outperforming industry benchmarks by 20%.
    • Advanced Model’s IoT-enabled PLC control reduces downtime by 30% via real-time monitoring.
    • Base Model’s modular design cuts installation time by 50% compared to traditional furnaces.
  2. Version Selection Guide:

    • Base Model: Ideal for SMEs producing standard glass bottles (e.g., beverage containers) with limited floor space.
    • Advanced Model: Best for mid-sized manufacturers needing conveyor synchronization for pharmaceutical or cosmetic packaging.
    • Pro Model: Required for high-volume production of chemically resistant labware or automotive glass, leveraging robotic automation for precision.

With the Pro Model’s 750°C capability, you can temper ultra-durable glass for lab equipment, ensuring safety in harsh chemical environments. The Advanced Model’s IoT connectivity allows remote diagnostics, reducing maintenance costs by 25%. Choose the Base Model to start small and scale with modular upgrades.

Note: Comparative values assume industry-standard benchmarks (e.g., 100°C/min heating rate for traditional furnaces).

Frequently asked questions

  • Which glass tempering furnace model suits small-scale glass bottle production?

  • How do I clean the heating chamber of a glass tempering furnace?

  • What materials are used in the furnace for durability and heat resistance?

  • Can the furnace be customized for different bottle sizes or production speeds?

  • Is the furnace CE-certified and compliant with safety standards?

  • What’s the monthly production capacity of the Small Glass Bottle Tempering Furnace?

  • How does the furnace ensure uniform tempering for glass bottles?

  • What automation features does the furnace offer for efficient production lines?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
High-Capacity Glass Tempering FurnaceAutomotive glass productionProduction Capacity: 1000 units/hour (▲2 vs Industry Standard 800)
Temperature Uniformity: ±3°C (ASTM C1620)
▲▲2: Meets mass production demands for automotive windshields.
Consistent tempering results.
High energy consumption (▲1 over standard)
Requires large facility space.
Small Glass Bottle Tempering FurnacePharmaceutical vial productionProduction Capacity: 200 units/hour (Industry Standard)
Compact Size: 1.2m³ (ISO 9283)
Optimized for small-scale manufacturing.
Lower upfront cost (▲1 vs industrial models).
Limited scalability for high-volume orders.
Noisier operation (45 dBA vs silent models).
Industrial Glass Annealing OvenPre-treatment for glasswareCycle Time: 12 hours (▲1 vs Industry Standard 15 hours)
Temperature Stability: ±1°C (ISO 17892)
Reduces residual stress in glass (▲▲2 improvement).
Ensures durability for labware.
Slower process compared to tempering furnaces.
Higher maintenance costs.
Automated Glass Cutting MachineSmartphone screen productionPrecision: ±0.1mm (▲▲2 vs Industry Standard ±0.3mm)
Cutting Speed: 60 cuts/min (IEC 61496)
High repeatability for electronics components.
Reduces material waste (▲1).
Requires skilled operators.
High initial investment (▲▲2 over manual systems).
Glass Forming MachineBottle and container manufacturingMold Variety: 50+ shapes (▲▲2 vs Industry Standard 30)
Forming Speed: 25/sec (ASTM C316)
Versatile for custom bottle designs.
Rapid prototyping capability.
Complex mold setup increases downtime.
Higher energy use during operation.
Energy-Efficient Glass Coating LineCoating for solar panelsEnergy Consumption: 0.4 kWh/unit (▲▲2 vs Industry Standard 0.7)
Coating Thickness: 2-5μm (ISO 14644)
Eco-friendly operation (▲▲2 reduction in carbon footprint).
Enhances UV resistance.
Limited coating material compatibility.
Lower throughput (▲1 vs standard lines).

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.