Key Benefit
- Zero Collision Risk: Independent spindles eliminate part-on-part impingement entirely.
- Strict Control Logic: Right-side console strictly standardizes multi-shift operations.
- Extreme Processing Speed: Planetary dragging exponentially cuts required polishing time.
- Microscopic Tolerance Maintenance: Controlled kinematics strictly preserve complex critical dimensions.
- Consultative Guarantee: Digital CAD review strictly dictates flawless batch outcomes.
- Minimalist Architecture: High-end aesthetic seamlessly elevates premium controlled cleanrooms.

Product Specifications
|
Model Number |
KSD90-32 |
KSD100-24 |
KSDS130-32 |
KSDS170-24 |
|
Overall Dimensions |
1120*1420*1950mm |
1120*1420*1950mm |
1950*1950*2100mm |
1950*1950*2100mm |
|
Number of Split shaft |
32 |
24 |
32 |
24 |
|
Shaft pitch |
90mm |
100mm |
130mm |
170mm |
|
Media Capacity |
125kg |
125kg |
500kg |
500kg |
|
Power |
4kw |
4kw |
11kw |
11kw |
|
Price |
105000 |
95000 |
135000 |
115000 |
|
Wooden Box |
1150 |
1000 |
2500 |
2500 |
Product superiority

Absolute Part Protection
Independent fixture clamping completely eliminates part-on-part collisions, guaranteeing absolutely zero damage for your high-value aerospace and medical components.
Strict Control Logic
Engineered with our universally positioned right-side control console, it guarantees completely standardized multi-shift operation, entirely eliminating operator input confusion.
Extreme Kinetic Speed
The planetary dragging motion forces components through dense media at extreme velocities, delivering flawless mirror finishes in incredibly condensed processing cycles.
Consultative Engineering
We mathematically evaluate your component CAD data before requesting physical samples, guaranteeing our customized planetary parameters deliver instantly predictable, zero-defect refinement.

Application Scenarios
1. Flawless Medical Orthopedic Implants
Manufacturing titanium knee and hip joints demands absolute surface perfection with zero risk of collision damage. Traditional tumbling creates unacceptable impingement risks. The Drag Finisher isolates each implant on autonomous spindles, forcing them through the media via a controlled planetary trajectory. By strictly standardizing the universally positioned right-side control box, facility managers guarantee operators execute exact fluid dosing and rotational parameters. This delivers a flawless, biocompatible mirror finish in minutes, maintaining absolute dimensional integrity for stringent medical compliance.
2. Edge Honing for Aerospace Turbine Blades
Aerospace components require highly aggressive burr removal and precise edge rounding without altering critical aerodynamic geometries. Operating under our rigorous digital-first consultative sales protocol, we mathematically evaluate the blade's CAD profile and structural tolerances before requesting physical samples. This data-driven strategy guarantees our extreme-velocity drag parameters will predictably hone the leading edges, instantly extending component fatigue life and seamlessly eliminating production bottlenecks in high-end manufacturing cells.
Product detail drawing

Case Study Reference

Case Study 1: Zero-Defect Processing for a European Medical Supplier
Client: High-End European Orthopedic Implant Manufacturer
The Challenge: The client experienced severe reject rates due to part-on-part impingement during traditional vibratory finishing of high-value titanium bone plates. Furthermore, the slow processing cycles could not meet their expanding production quotas.
Our Consultative Solution: Prior to any physical implementation, our engineering team mandated a strict digital evaluation of their CAD files and required surface friction limits. Backed by our 30-year precision engineering heritage, we deployed the Drag Finisher to leverage its zero-collision spindle architecture.
The Result: The planetary dragging motion perfectly polished the implants to a mirror finish in minutes, entirely eliminating material rejection. Adhering to our strict physical logic, the universally positioned right-side control box allowed technicians across all shifts to predictably manage the complex planetary cycles with zero input errors, drastically optimizing their cleanroom throughput.
Case Study 2: Standardizing Tool Life for an Australian SME
Client: Premium CNC Cutting Tool Manufacturer (Australia)
The Challenge: Manual edge honing of carbide end mills was highly inconsistent across different shifts, leading to unpredictable cutting tool lifespans and frequent client complaints.
Our Consultative Solution: We mathematically analyzed their specific carbide material density and desired edge radius digitally. We integrated the Drag Finisher, engineering bespoke fixtures to secure the tooling.
The Result: The high-speed kinetic drag seamlessly homogenized the cutting edges, significantly increasing the tools' operational lifespan. By strictly aligning the integration so that operational controls mirrored our universally mandated right-side facility logic, the plant manager guaranteed that technicians across all shifts executed the exact same polishing recipes, delivering 100% predictable, high-value output.

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