The equipment rack and fuselage adopt a ship-cabin-type keel structure, formed by welding square steel pipes and curved steel plates. After stress relief, the components are processed as a single unit to ensure sufficient strength, stiffness, and stability of the equipment. It is equipped with four height-adjustable foot cups.
The components of various equipment parts undergo necessary surface treatments based on actual operating conditions and working environments, such as electroplating, blackening, quenching, carburizing, and electrostatic spraying, to ensure sufficient strength and surface functionality of the parts.
The rotating shaft utilizes a force-amplifying precision planetary reducer for transmission, with independent servo systems controlling material feeding, bending, and rotation respectively.
The clamping mechanism adopts a parallelogram motion pattern with diagonal locking to ensure sufficient clamping force while preventing damage to copper tubes. All joints are equipped with German-made polymer lubrication-free bearings. The mold guide utilizes a slider-linkage structure with semi-retractable and fully retractable stroke configurations. The material clamp features a three-lobe chuck design to guarantee adequate clamping force, mechanical strength, and service life. The core-pulling mechanism incorporates rapid positioning and anti-rotation devices.
The controller programming software employs specialized code programming for FUNS pipe bending machines, featuring G-M code programming, program template editing, and data entry. It can automatically generate active drawing programs, active bending programs, or through-bending programs, with a system program editing capacity exceeding 400 programs..