BLDC Motor Lamination Stator Supplier
Lamination Stator — Precision Stacked Stators for Drone & BLDC Motors | Reenives Stator Core Supplier
⚠️ Is your lamination stator suffering from high core loss, poor stacking factor, or vibration? Weak interlocking, inconsistent lamination thickness, burrs, or air gaps between layers can reduce BLDC motor efficiency, cause overheating, and lead to vibration — especially in high-RPM drone motors.
✅ Reenives builds precision lamination stators engineered for drone and BLDC motors. With imported high-speed stamping lines, epoxy powder coating, and dust-free workshops, we deliver lamination stators with low core loss, tight tolerances, and consistent stacking pressure. As a reliable BLDC motor lamination stator supplier, we help 1000+ enterprises improve motor reliability.
📋 Table of Contents
What Is a Lamination Stator?
A lamination stator is the stationary magnetic core of a motor, formed by stacking thin electrical steel laminations together and securing them by interlocking, bonding, welding, or clamping. The lamination stator features slots that hold the copper windings, which generate the rotating magnetic field when energized.
In drone brushless motors, the lamination stator is the structural and electromagnetic backbone of the motor. Its stacking quality, material grade, and dimensional accuracy directly affect:
- Core loss & motor efficiency
- Stacking factor & flux density
- Mechanical rigidity & vibration resistance
- Heat dissipation & thermal stability
A well-built lamination stator minimizes air gaps, reduces losses, and maintains consistent performance across the entire RPM range.
Precision lamination stator — manufactured by Reenives with imported high-speed stamping & epoxy powder coating lines.
Types of Lamination Stators
Lamination stators are assembled using different methods depending on motor design, cost, and performance requirements. Reenives manufactures the following types:
- Interlocked Lamination Stators — Laminations with integral dimples or dovetails that lock together under pressure. Cost-effective, no adhesive required.
- Bonded Lamination Stators — Laminations coated with adhesive and cured under heat and pressure. Lower eddy current losses and better damping.
- Welded Lamination Stators — Laminations welded along the outer diameter. High mechanical strength for high-vibration applications.
- Clamped Lamination Stators — Laminations held together with end plates and bolts or rivets. Allows for easy disassembly and repair.
- Segmented Lamination Stators — Individual teeth wound separately and assembled into a full ring. Higher slot fill factor.
- Epoxy-Coated Lamination Stators — Individual laminations coated with epoxy powder before stacking for superior insulation and corrosion resistance.
Whether you need standard interlocked stators or custom bonded assemblies, Reenives can deliver.
Key Specifications & Data
Below are typical specifications for Reenives lamination stators. Custom values are available upon request.
| Parameter | Typical Range / Value | Notes |
|---|---|---|
| Lamination Material | Silicon steel (e.g., 35WW250, 50WW470) | Low core loss grades |
| Lamination Thickness | 0.20 mm – 0.50 mm | Thinner = lower eddy current loss |
| Outer Diameter | 20 mm – 200 mm | Customizable |
| Inner Diameter | 10 mm – 180 mm | Depends on rotor design |
| Stack Length | 5 mm – 80 mm | Affects torque & power |
| Slot Number | 6, 9, 12, 18, 24, etc. | Matches pole count |
| Assembly Method | Interlocked, bonded, welded, clamped | Depends on application |
| Insulation Coating | Epoxy powder coating | Uniform, pinhole-free |
| Core Loss (at 400Hz, 1T) | ≤ 25 W/kg | Material dependent |
| Tolerance | ±0.05 mm (critical dimensions) | High-precision stamping |
| Stacking Factor | ≥ 95% | Minimizes air gaps |
Data source: Reenives internal testing & supplier material datasheets, 2024. Actual values may vary by design.
Applications of Lamination Stators
Reenives lamination stators are used across a wide range of drone and brushless motor applications:
- FPV Racing Drones — High RPM, lightweight stators with low cogging torque.
- Cinematic & Photography Drones — Smooth, vibration-free stators for stable aerial footage.
- Agricultural Spraying Drones — Corrosion-resistant epoxy-coated stators for harsh chemical environments.
- Industrial Inspection Drones — High-torque stators for long endurance and heavy payloads.
- eVTOL & UAV Propulsion — Custom high-power stators for next-generation air mobility.
- Robot Actuators — Low cogging torque stators for precise motion control.
- General BLDC Motors — Fans, pumps, power tools, and automotive actuators.
Reenives lamination stators power FPV, agricultural, cinematic, and industrial UAVs worldwide.
How to Select the Right Lamination Stator
Choosing the correct lamination stator for your BLDC motor involves several engineering decisions. Follow these steps:
- Determine Required Torque & RPM — Higher torque needs more stack length or larger diameter. High RPM demands thinner laminations and low-loss material.
- Select Slot/Pole Combination — Common drone motors use 12S/14P or 9S/6P. This affects cogging torque, winding factor, and efficiency.
- Choose Lamination Thickness — For high-frequency operation (e.g., 400Hz+), use 0.20 mm laminations to reduce eddy current losses.
- Select Material Grade — Lower-loss silicon steel grades (e.g., 35WW250) reduce heat but cost more. Balance performance and budget.
- Decide on Assembly Method — Interlocked stators are economical; bonded or welded stators offer better performance and rigidity.
- Consider Insulation & Coating — Epoxy powder coating is recommended for moisture, vibration, and chemical resistance.
- Verify Tolerances & Stacking Factor — Tight tolerances and high stacking factor ensure proper magnetic performance and reduce vibration.
- Request Samples & Test — Reenives provides free samples for qualified projects. Test core loss, temperature rise, and mechanical fit.
FAQ — Lamination Stator Parameters
Q1: What is the difference between a lamination stator and a solid stator?
A: A lamination stator is built from many thin electrical steel sheets stacked together, while a solid stator would be a single piece of steel. Laminated stators are standard for motors because the thin insulation between laminations limits eddy currents, dramatically reducing core loss at high frequencies. A solid stator would suffer from excessive eddy current losses and heating, making it unsuitable for high-RPM drone motors.
Source: Reenives engineering team, based on motor design principles.
Q2: What lamination thickness do you recommend for high-RPM drone motors?
A: For high-RPM drone motors (above 10,000 RPM), we recommend 0.20 mm or 0.25 mm silicon steel laminations. Thinner laminations significantly reduce eddy current losses, which helps keep the motor cool and improves efficiency. For lower RPM applications, 0.35 mm or 0.50 mm can be more cost-effective.
Source: Reenives engineering team, based on motor design guidelines and material datasheets.
Q3: What is the typical core loss of your lamination stators?
A: Our standard lamination stators using 35WW250 silicon steel typically exhibit core loss ≤ 25 W/kg at 400Hz and 1 Tesla. With premium low-loss materials, we can achieve even lower values. Actual core loss depends on lamination thickness, material grade, and operating frequency.
Source: Reenives internal testing data, 2024.
Q4: Do you offer epoxy powder coating for lamination stators?
A: Yes. We use imported epoxy powder coating equipment to apply a uniform, pinhole-free insulation layer on individual laminations before stacking. This coating improves corrosion resistance, enhances wire adhesion, and protects against moisture — critical for agricultural and marine drones.
Source: Reenives production specification.
Q5: What is the stacking factor and dimensional tolerance of your lamination stators?
A: Our lamination stators achieve a stacking factor of ≥ 95%, minimizing air gaps between layers. For critical dimensions such as inner diameter, outer diameter, and stack length, we maintain tolerances of ±0.05 mm. Tighter tolerances can be achieved upon request with our high-precision stamping lines.
Source: Reenives quality control standards.
Q6: Can you develop custom lamination stators for my specific BLDC motor?
A: Absolutely. We support private mould development. Provide us with your required outer diameter, inner diameter, stack length, slot number, tooth profile, and assembly method. Our R&D team will design and produce custom lamination stators tailored to your motor. Tooling lead time is typically 15–25 days.
Source: Reenives custom development process.
Summary — Get Your Lamination Stator Quote Today
Ready to Improve Your BLDC Motor Performance with Precision Lamination Stators?
Reenives is a reliable BLDC motor lamination stator supplier with 4 years of manufacturing experience, 100+ R&D patents, and 3 production bases. We serve 1000+ enterprises worldwide with high-precision lamination stators for drone and BLDC motors.
📦 Bulk purchasing · 🔧 Private mould development · 🧪 Free samples
🌐 Official Website: www.reenives-bldcmotor.com
📧 Email: linda_reenives@163.com
Contact us now for a free sample and tailored solution for your production scenario.
Dongguan Runlu Motor Technology Co., Ltd.
Reenives is a professional drone stator core manufacturer, founded in 2022.
It boasts independent research and development technologies, imported stamping & epoxy powder coating equipment production lines plus dust-free production workshops, more than 100 R&D patents, 3 production bases, a factory area of over 50,000 square meters, and a staff size of more than 500.
From production to sales, we support bulk purchasing, private mould develop, and samples making, and can provide tailor-made perfect solutions for your production and usage scenarios. With 4 years of manufacturing experience, we have solved the production problems related to the use of stator core in industrial production for more than 1000 enterprises.
We can ship globally (with complete export qualifications). Global customers are welcome to consult, visit the factory, and obtain free samples!
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