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SRFC-D8


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Corresponding Industries and Application Scenarios

3C Electronics Manufacturing:

• Chamfering, polishing, and special-shaped cutting of mobile phone/tablet glass covers. The floating spindle can automatically adjust to follow curved contours, avoiding glass edge chipping.

• Deburring and counterbore processing of aluminum alloy middle frames and PCB boards, compensating for workpiece clamping deviations to improve yield.

Automotive Parts Processing:

• Inner wall polishing and sealing surface grinding of engine blocks and transmission housings, adapting to complex curved surfaces through radial floating.

• High-precision boring of wheel hub bearing holes and brake discs, reducing excessive surface roughness caused by vibration.

Aerospace and Precision Instruments:

• Drilling and milling of composite components (e.g., carbon fiber wing skins) to prevent material delamination.

• Mirror finishing of optical lens brackets and sensor housings, ensuring assembly accuracy and optical performance.

Medical Device Manufacturing:

• Surface pretreatment before coating of orthopedic implants (e.g., titanium alloy joints), with the floating spindle enabling uniform grinding of rough surfaces.

• Precision polishing of medical catheters and syringe molds, meeting surface finish requirements in sterile environments (Ra ≤ 0.2μm).

Automation and Robotics:

• Integrated as end-effectors in collaborative robots for curved surface grinding (e.g., bathroom fixtures, furniture panels) and screw tightening (floating compensation for screw hole deviations).

• Adaptive gluing and inspection of workpiece surfaces in flexible assembly scenarios (e.g., visual recognition combined with floating contact pressure).

Other Industries:

• Glaze polishing of bathroom ceramics and jade carving of jewelry.

• Edge chamfering of lithium battery pole pieces and precision cutting of photovoltaic silicon wafers in the new energy field.

Product Advantages

1. Highly Flexible Floating Capacity:Enables adaptive floating in the radial direction, automatically compensating for uneven workpiece surfaces, assembly errors, or positional deviations during processing. Reduces equipment wear and processing defects caused by rigid contact.

2. High-Precision Processing Adaptability:Equipped with precision bearings and elastic structure design, it maintains processing accuracy even in a floating state. Suitable for scenarios with strict requirements on surface finish and dimensional tolerance (e.g., micron-level processing).

3. Impact Resistance and Vibration Damping:Absorbs impact force and vibration during processing through the floating structure, reducing noise and extending the service life of spindles and tools. Especially suitable for processing brittle materials (e.g., glass, ceramics) or thin-walled parts.

4. Modularity and Easy Integration:Compact structure, flexibly integrable into various automated equipment (e.g., robots, CNC machines), and compatible with different fixtures, reducing equipment modification costs.

5. Strong Working Condition Adaptability:Supports high-speed rotation (rotational speed up to 22,000-24,000 rpm) and load changes in multiple scenarios, ensuring stable operation in dry processing.