Jianlong 180 Tube-Type Car Bottom Batch Furnace Project

Tube car-bottom batch furnace for efficient steel tube heat treatment and energy-saving industrial applications.

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1. Project Overview

ItemDetails
Furnace TypeJianlong 180 Tube-Type Car Bottom Batch Furnace
Effective Chamber Size1800 mm × 1800 mm × 2400 mm
Rated Temperature1050 ℃
Temperature Accuracy±3 ℃
Energy Efficiency≥28% more efficient than traditional tube furnaces
Lead Time45 days total (Design → Manufacturing → Installation → Commissioning)

This Car Bottom Furnace for Steel Tube Heating is specifically developed for precision thermal processing in the tube production industry. It meets the standards for Precision Tube Annealing Furnaces and Industrial Batch Heat Treatment Furnaces.

2. Design Highlights (Structural Optimization)

2.1 Ultra-Energy Efficient Structure

·Composite Fiber Insulation System

120 mm high-alumina fiber + 60 mm nano-microporous panels, with a hot-to-cold face temperature difference < 70 ℃.

·Micro-Bead Vacuum Insulating Bricks

Density only 0.8 g/cm³, compressive strength ≥ 6 MPa, thermal conductivity 0.18 W/(m·K).

2.2 Anti-Sagging Support Bricks

·20° Upward Incline Design

Prevents resistance wires from sagging due to high temperatures, extending lifespan by 2.5 times.

2.3 Impact-Resistant Front Brickwork

·Replaceable Ceramic Liners

25 mm thick, shock resistance ≥ 50 J, and maintenance time < 30 minutes.

This intelligent structure suits both Gas-Fired Furnace and Electric Furnace configurations, making it ideal for Heavy-Duty Car Bottom Furnace use.

3. Manufacturing & Quality Control

Advanced production lines with laser cutting and robotic welding ensure consistent quality and strength in this Industrial Furnace system.

ProcessKey Control PointInspection Method
Shell WeldingContinuous full welds, no undercuttingUT ultrasonic flaw detection
Refractory Brick LayingJoint thickness ≤ 2 mmFeeler gauge + infrared imaging
Resistance Strip FormingPitch tolerance ±1 mm3D coordinate measuring

Each Batch Furnace passes strict quality control for long-term stable operation.

4. Installation & Foundation-Free Design

4.1 Integrated Rail Design

·The car-bottom track is pre-welded to the furnace frame, leveled at the factory. On-site steps:

1.Recheck with level meter →

2.Fix with expansion bolts →

3.24-hour natural settlement inspection

4.2 Automatic Sealing System

·Four-link Press Mechanism

Furnace door lowers → Side seal airbag inflates to 0.4 MPa → Air leakage < 2 m³/h

This structure reduces the need for foundation work, enabling rapid deployment and relocation.

5. Commissioning & Performance Testing

Test ItemMethodResult
No-Load Heating TimeAmbient → 1000 ℃55 min (better than design spec of 60 min)
Temperature Uniformity9-point thermocouple testMax deviation: 4 ℃
Energy ConsumptionFull load (1t tubes)0.34 m³ natural gas / 100 kg
Sealing Test500 Pa pressure holdPressure drop: 30 Pa/min

These performance results exceed typical Tube Heat Treatment Furnace standards.

6. Client Benefits

·Energy Savings: Saves 42,000 m³ of natural gas per year, equivalent to approx. ¥260,000.

·Foundation-Free Installation: Saves ¥80,000 in civil work; complete relocation in 7 days.

·Low Maintenance: Anti-sagging design increases resistance wire life from 6 to 15 months.

A smart solution for companies needing a Custom Car Bottom Furnace for Tubes with high return on investment.

7. Conclusion

The Jianlong 180 Tube Car Bottom Batch Furnace integrates three innovations:

ultra-efficient insulation, foundation-free installation, and automated sealing.

It has become a benchmark National Standard Energy-Saving Tube Furnace, with successful replication across 12 production lines. This project showcases how a Car-Bottom Furnace for Alloy Tubes can offer fast commissioning, energy savings, and long-term reliability—ideal for modern Industrial Heat Treatment demands.