Q345 steel mechanically welded chassis | 1800 × 500 × 300 mm

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  • Q345 steel mechanically welded chassis | 1800 × 500 × 300 mm
  • Q345 steel mechanically welded chassis | 1800 × 500 × 300 mm
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Q345 steel mechanically welded chassis | 1800 × 500 × 300 mm
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Core Competitiveness of the Product

 

CO2 Gas Shielded Welding: Utilizing CO2 gas shielded welding, welding parameters can be precisely controlled, ensuring uniform and strong welds. The arc is stable and penetration is constant during welding, effectively preventing weld defects such as porosity and cracks, significantly enhancing the chassis' structural strength.

Professional Welding Service: Welding is performed by experienced, professional welders. These welders undergo rigorous training and certification, possess years of experience, and are familiar with various welding techniques and process requirements. Their exceptional skills and commitment ensure that every weld meets standards.

High-Quality Steel: High-quality Q345 steel is used, offering exceptional strength and toughness. It withstands the immense pressure and impact forces generated by large-scale machinery, resists deformation and damage, and provides reliable support for the equipment.

Strict Dimensional Inspection: The dimensions of each chassis undergo multiple inspections throughout the production process, from raw material cutting to finished product after welding, ensuring compliance with design specifications.

Galvanized: The surface is treated with a galvanizing process, resulting in a uniform and dense zinc coating. The galvanized coating meets standard thickness, effectively preventing rust and corrosion on the steel and extending the chassis' service life.

Excellent Corrosion Resistance: The galvanized coating offers excellent corrosion resistance, resisting erosion in a variety of harsh environments. Whether exposed to humid indoor spaces or harsh outdoor climates, the chassis maintains excellent performance, reducing maintenance costs and replacement frequency.

Secondary Welding: Our company typically utilizes secondary welding when constructing large welded structures. This process combines groove welding with cap welding to ensure 100% penetration on complex joints, such as tube-to-sheet fillet welds. This process has been shown to reduce the detection rate of internal defects by 82% compared to single-piece welding.

 

Advantages of Secondary Welding

 

Quality Advantages:

  • Reduced welding stress and distortion

  • Reduced crack susceptibility

  • Improved weld metal microstructure and properties

Process flexibility:

  • Allows mid-process review and adjustment

  • Suitable for complex structures

  • Easily controlled welding sequence

Economic Advantages:

  • Reduced requirements for welder one-off operations

  • Reduced use of expensive tooling

  • Reduced overall waste loss

 

Industrial Applications of Secondary Welding:

 

  • Pressure vessel manufacturing: Multi-layer, multi-pass welds are often used to ensure full-thickness penetration.

  • Shipbuilding: Large joint welds often utilize a segmented welding strategy.

  • Aerospace: Titanium alloy structural components are often welded in stages to control microstructure and properties.

  • Pipeline construction: Girth welds of high-quality pipeline steel require complex, multi-pass welding procedures.

  • Nuclear equipment: Welding of safety-critical components often involves multiple intermediate inspection and repair welds.

 

The finished products of primary and secondary welds are virtually identical in appearance, making them virtually indistinguishable to the naked eye. However, our company consistently adheres to the process standards of secondary welding, even though this requires more labor, consumes more materials, and is subject to time and economic constraints. This stems from our belief in "quality first." We believe that only by meticulously optimizing every process can we create high-quality products that our customers trust and stand the test of time.

 

Machinery Chassis Applications


This type of welded large-scale machinery chassis is widely used in a variety of large-scale machinery, such as construction machinery, agricultural machinery, and industrial automation equipment. It provides a stable support platform for these equipment, ensuring safe and efficient operation under various working conditions.

 

We understand that each customer's needs are unique, so we offer customized services. If you have special requirements for chassis size, material, welding process, or surface treatment, our professional team will custom design and produce a one-of-a-kind large-scale welded machinery chassis.

 

Consult now!