Completely Solution Robotic Automotive Grinding and Polishing Machine For Flywheel Housing
Completely Solution Robotic Automotive Grinding and Polishing Machine For Flywheel Housing
Place of Origin:China
Brand Name:Kingstone
Certification:CE
Model Number:KS-1000
Minimum Order Quantity:1
Price:68000-102000 USD
Standard Packaging:wooden cases
Delivery Time:90 working days
Payment Terms:L/C,D/A,D/P,T/T
Supply Ability:200-300 sets per year
Product Details
Highlight:
Complete Solution Robotic Grinding Polishing Machine
,Polishing Machine for Flywheel Housing
,Automotive Flywheel Grinding Polishing Machine
Polishing Speed:
Adjustable, Up To 2500 RPM
Weight:
Approximately 1500 Kg
Control System:
Programmable Logic Controller (PLC)
Grinding Speed:
Adjustable, Up To 3000 RPM
Material Compatibility:
Metal, Paint, Plastic Surfaces
Safety Features:
Emergency Stop, Safety Enclosure
Dimensions:
Customizable Based On Model
Power Supply:
220V/380V, 50/60Hz
Function:
Grinding And Polishing
Application:
Automotive Surface Finishing
Precision:
±0.1 Mm
Operation Type:
Robotic Automation
Robot Type:
6-axis Articulated Robot
Automation Level:
Fully Automated With Minimal Human Intervention
Product Description
Detailed Specifications & Features
Completely Solution Robotic Automotive Grinding and Polishing Machine For Flywheel Housing
The flywheel housing is one of the most structurally and dimensionally critical components in automotive powertrain assembly. Cast from aluminum alloy under high pressure, it must simultaneously deliver precise mating face flatness for engine-to-transmission alignment, burr-free bolt hole patterns for torque-critical fastening, clean sealing surfaces for gasket integrity, and cosmetically acceptable exterior finish for OEM inspection standards.
Yet flywheel housing finishing remains one of the most labor-intensive and quality-inconsistent operations in automotive casting supply chains. Parting line flash varies with die wear. Bolt hole burrs vary with shot pressure. Mating face flatness varies with casting distortion. Manual grinding operators compensate differently — shift to shift, operator to operator — producing dimensional scatter that drives leak failures, misalignment at assembly, and warranty returns downstream.
The Complete Solution Robotic Grinding and Polishing Machine for Flywheel Housing eliminates this variation permanently. Engineered as a turnkey finishing workcell covering every surface zone of the flywheel housing in a single automated cycle, this system delivers validated dimensional consistency, full process traceability, and IATF 16949-compatible documentation — at the throughput and unit economics that Tier 1 and Tier 2 automotive casting suppliers demand.

Why Flywheel Housing Finishing Demands a Complete Robotic Solution
Parting Line Flash Variation Is Structural, Not Incidental
Die casting tooling for flywheel housings wears progressively. Flash thickness at the parting line increases from ±0.2 mm on a new die to ±0.8 mm near end-of-die-life. Fixed-path robots miss variable flash at end-of-life. Manual operators compensate but introduce dimensional inconsistency. Adaptive force-controlled robotic finishing handles the full flash variation range without operator intervention or path reprogramming.
Mating Face Flatness Is a Powertrain Alignment Requirement
The engine-side and transmission-side mating faces of the flywheel housing must maintain flatness within ±0.05 mm to prevent powertrain misalignment, vibration, and premature bearing wear. Casting distortion from die release and thermal cycling introduces flatness deviation that must be corrected at the finishing stage — not compensated downstream at assembly.
Multi-Zone Surface Specification Complexity
A single flywheel housing carries four to six distinct surface specifications within the same component:
- Mating faces: Ra ≤ 0.8 μm, flatness ≤ ±0.05 mm
- Sealing groove: Ra ≤ 1.6 μm, no burr
- Bolt hole pattern: burr-free chamfers, dimensional hold
- Internal bore: concentricity within ±0.1 mm
- Exterior surfaces: cosmetic conditioning, OEM appearance
- Mounting boss faces: flatness and Ra for gasket seating
Core Capabilities
Complete Zone Coverage in a Single Cycle
Every surface zone finished in one uninterrupted robotic cycle — no part repositioning, no inter-station transfer, no setup change between zones:
- Zone 1 — Parting Line & Flash Removal: Adaptive flash deburring across full housing perimeter, compensating for die-wear variation up to ±1.0 mm
- Zone 2 — Engine Mating Face Grinding: Flatness correction to ≤ ±0.05 mm, Ra ≤ 0.8 μm surface finish
- Zone 3 — Transmission Mating Face Grinding: Mirror-process of Zone 2 on opposite face
- Zone 4 — Bolt Hole Pattern Deburring: Chamfer consistency on all mounting bolt holes, internal thread entry deburring
- Zone 5 — Sealing Groove Conditioning: Ra ≤ 1.6 μm, edge integrity for O-ring and gasket seating
- Zone 6 — Internal Bore Surface: Concentricity-preserving bore conditioning, bearing seat preparation
- Zone 7 — Exterior Cosmetic Conditioning: OEM appearance specification surface texture
Vision-Guided Datum Registration
3D structured-light scan locates housing datum features at cycle start and corrects robot path for each individual casting. Handles casting-to-casting dimensional variation up to ±1.5 mm from thermal distortion and die release. Every part is treated as a unique geometry event — not a nominal CAD assumption.
Closed-Loop Flatness and Ra Verification
Post-process inline measurement station checks mating face flatness and Ra on every housing. Out-of-specification parts are flagged and held before leak test or assembly stage. Measurement data logged per housing serial number for IATF 16949 process traceability.
Frequently Asked Questions
Q: Our flywheel housings come from three different die casting suppliers with slightly different dimensional baselines. Can one system handle all three sources?
The 3D vision datum registration system scans each individual housing at cycle start and corrects the robot path for that specific part's actual geometry. Supplier-to-supplier dimensional baseline variation up to ±1.5 mm is compensated automatically. The finishing output is consistent regardless of which supplier's casting enters the cell.
Q: The mating face flatness specification from our OEM customer is ±0.04 mm. Can this system achieve that?
Our standard specification is ≤ ±0.05 mm. For ±0.04 mm requirements, the extended precision configuration with diamond grinding tooling and additional CMM probe verification achieves this consistently, validated with Cpk ≥ 1.33 on flatness. We recommend submitting your housing drawings and OEM specification for a process feasibility confirmation before system order.
Q: We run both ADC12 and AlSi9Cu3 housings on the same line. Does the system switch alloy parameters automatically?
Yes. Each housing part program stores alloy-specific force profiles, MQL parameters, and spindle speed settings. Part identification via vision or barcode triggers automatic profile selection. ADC12 and AlSi9Cu3 have meaningfully different flash hardness and smearing thresholds — the system handles both correctly without operator adjustment.
Message for quick reply
Related Products