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Raytron Technical Review RESEARCH ARTICLE WP-07-13

工业电机变压器绕组

Industrial Motor and Transformer Windings

RAYTRON Technical Team1

1RAYTRON Group, China

发布日期: March 2026 版本: 1.0
DOI: 10.1000/raytron.WP-07-13

1. Introduction

1.1 Winding Importance

ComponentCopper ContentCost Contribution
Motor stator30-50% of weight40-60% of material cost
Transformer winding20-40% of weight30-50% of material cost

1.2 Cost-Performance Trade-off

FactorCuCCA
EfficiencyHighestSlightly lower
CostHighLower
WeightHeavyLighter
Heat dissipationGoodGood

Diagram placeholder

MEDIA TODO
Figure 1 Motor stator winding cross-section showing CCA conductor

2. Winding Requirements

2.1 Electrical Requirements

RequirementMotorTransformer
ConductivityHighHigh
Current density3-6 A/mm²2-4 A/mm²
InsulationClass F/HClass F/H

2.2 Thermal Requirements

ParameterTypical Value
Hot spot temp120-180°C
Insulation classF (155°C) or H (180°C)
Temperature rise80-125°C

2.3 Mechanical Requirements

RequirementImportance
Tensile strengthHigh (winding tension)
FlexibilityCritical (winding process)
Dimensional toleranceCritical
Bond strengthGood

3. CCA for Windings

3.1 Properties

PropertyCuCCA-80%
Conductivity100%80%
Density8.96 g/cm³3.4 g/cm³
Tensile strength220-250 MPa120-150 MPa
Elongation25-35%10-20%

3.2 Advantages

AdvantageValue
Weight reduction60%
Cost reduction25-35%
Lower inertiaBetter motor response

3.3 Considerations

FactorCCA Consideration
Slightly higher I²R lossSize appropriately
Different thermal expansionDesign consideration
Termination careProper techniques

Diagram placeholder

MEDIA TODO
Figure 2 CCA winding wire cross-section and properties

4. Motor Applications

4.1 Motor Types

Motor TypeCCA Suitability
Small motors (<1 kW)Good
Medium motors (1-100 kW)Good (evaluate)
Large motors (>100 kW)Limited

4.2 Efficiency Impact

Motor SizeCu EfficiencyCCA EfficiencyDifference
1 kW85%84%-1%
10 kW90%89%-1%
100 kW94%93%-1%

4.3 Sizing

Cu SizeCCA-80% Equivalent
1.0 mm1.2 mm
1.5 mm1.8 mm
2.0 mm2.4 mm

4.4 Application Guidelines

ApplicationRecommendation
Ceiling fansCCA acceptable
Appliance motorsCCA acceptable
Industrial motorsEvaluate per case
Premium efficiencyCu preferred

5. Transformer Applications

5.1 Transformer Types

TypeCCA Suitability
Small transformersGood
Distribution transformersEvaluate
Power transformersLimited

5.2 Performance

ParameterCuCCA-80%
No-load lossSameSame
Load lossBaseline+5-10%
EfficiencyBaseline-0.1-0.2%

5.3 Design Considerations

FactorCCA Design
Wire sizeIncrease 10-20%
Window fillCheck with larger wire
Thermal designSlightly higher loss

5.4 Application Guidelines

ApplicationRecommendation
Small control transformersCCA acceptable
Distribution transformersEvaluate cost-benefit
High-efficiency requiredCu preferred

Diagram placeholder

MEDIA TODO
Figure 3 Transformer winding with CCA conductor

6. Conclusion

6.1 Summary

ApplicationCCA Suitability
Small motorsGood
Medium motorsEvaluate
Small transformersGood
Distribution transformersEvaluate

6.2 Decision Factors

  • Efficiency requirements
  • Cost sensitivity
  • Weight importance
  • Size constraints

7. References

  1. IEC 60034. (2022). Rotating Electrical Machines.
  2. IEEE C57. (2020). Transformer Standards.

FAQ

What motor sizes are suitable for CCA windings?

CCA is well-suited for small motors (<1 kW) such as ceiling fans and appliance motors. Medium motors (1-100 kW) require evaluation of efficiency requirements. Large motors (>100 kW) typically require copper for efficiency.

How does CCA affect motor efficiency?

CCA windings typically reduce motor efficiency by approximately 1% compared to copper. For example, a 90% efficient copper motor would be approximately 89% efficient with CCA windings when properly sized.

Can CCA be used for transformer windings?

Yes, CCA is suitable for small control transformers and can be evaluated for distribution transformers. Load loss increases by 5-10%, reducing efficiency by 0.1-0.2%. Premium efficiency applications typically require copper.

How do I size CCA magnet wire?

Increase CCA wire diameter by approximately 10-20% compared to copper equivalent. For example, 1.0 mm Cu becomes 1.2 mm CCA. Verify window fill factor with the larger wire size.

徐高磊

(Gaolei Xu)

资深材料科学家

资质荣誉

  • 锐创集团 CTO
  • 浙江省高层次人才特殊支持计划青年人才
  • 绍兴市"科技副总"
  • 绍兴市科技特派员
  • 全国有色金属standards化技术委员会重金属分技术委员会(TC243/SC2)委员

国家standards(主要起草人) 查看官方

发明专利 检索专利

专业Section

CCA(CCA)技术 铜包钢(CCS)制造工艺 双金属复合材料 光伏焊带技术 电动汽车电池极耳材料 连续挤压技术

代表性论文

  • 轧制法制造金属层状复合材料的研究与Applications,《铝加工》2008年第3期
  • 铜铝复合带退火工艺的研究
  • 电缆用铜铝复合带制备工艺研究
  • 轧制铜/铝复合带材在退火过程中的界面组织演变

徐高磊先生是有色金属加工Section的知名专家,拥有超过15年的丰富经验。他入选浙江省高层次人才特殊支持计划青年人才。他在双金属复合材料技术开发方面做出了重要贡献,并为中国铜及双金属材料的standards化工作做出了重要贡献。

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