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The end motor cover of the train traction motor is used to close the motor and support the rotor. A cooling air inlet is provided on the upper part of the end cover of the non-transmission end, and a plurality of large holes are provided on the end cover of the transmission end as an air outlet. The rotor core is made up of silicon steel sheets with good magnetic conductivity, and there are 46 grooves in the outer circumference. There are ventilation holes on the core to dissipate heat and reduce mass. Both ends of the rotor core are equipped with pressure rings. The traction motor is mechanically fixed together through the threaded holes on the front and rear end covers and the bracket with the lifting spring. Profiles connect the spring brackets to form a rectangular lifting structure. When the motor is installed, the overall tilt to the driving end is 1.5°. The mechanical connection of the motor to the vehicle is achieved by means of a bracket with elastic suspension. Motion is transmitted to the wheel sets of the train via an appropriate cardan shaft and gearbox. The traction motor is mechanically connected to the cardan shaft by a safety device that protects the cardan shaft and gearbox from over-torque in the event of a short circuit between the two-phase coils of the traction motor. In the efficient operation of the traction motor, the end cover is a key support component, and its performance is directly related to the reliability of the motor, life and environmental adaptability.

As a simple protective motor cover, but in fact it takes multiple missions:
structural support, as the connection of shell and rotor hub motor end cover, needs to carry the rotor high-speed rotation of the centrifugal force and vibration load;
Thermal management center: by optimizing the heat dissipation design, build end cover from the internal winding to the path of thermal conductivity of the external environment;
Sealing barrier: in complex condition, such as rail, electric cars, the end cover can resist the invasion of the moisture, dust and chemical corrosive medium; Electromagnetic compatibility interfaces: end cover part of the design should be integrated electromagnetic shielding layer, suppress the high-frequency harmonic disturbance to the surrounding equipment.
Mechanical properties of the fatigue strength: to satisfy the 10 ^ 7 times zero flaw under circulating load requirements (refer to the IEC 60034 標準); Dynamic deformation control: under the rated speed, the end cover flange surface axial pulse quantity usually 0.05 mm or less; Impact toughness: – 40 ℃ low-temperature impact energy (KV2) or greater 27 j (for frigid application scenario).
The thermal efficiency of heat transfer: aluminum alloy plate thermal conductivity should be 150 付き(mK) 以上, with forced air cooling when the temperature control is within 55 K; Thermal expansion coefficients of thermal expansion match: motor cover and frame difference to 1.5 * 10 ^ – 6 / ℃ or less and avoid the structure stress of high-temperature conditions.
The environmental adaptability of salt fog resistance: coastal environment application by 480 h neutral salt spray test (ISO 9227); Seal level: IP67 protection standards can withstand under 1 m water depth soak 30 分; Fretting wear resistance: the bearing chamber surface after nitriding treatment, microhardness to achieve HV650 above. Grade three, motor cover hardcore process control parameters of ductile cast iron QT500-7: graphite spheroidization rate is 90% 以上, pearlite content control in 30-50%; Low-pressure casting process: vacuum degree of the cavity 5 kph or less, to ensure that key parts without shrinkage cavity defects; Aging treatment: 300 ℃ x 6 h to stress annealing, 50 mph or less residual stress. Dynamic stiffness matching parameters of the bearing chamber: the radial stiffness of 5 × 10 ^ 8 or higher n/m, the axial rigidity of 3 × 10 ^ 8 n/m or higher; Modal frequency to avoid: first-order natural frequency to avoid the wheel-rail excitation frequencies (120-180 ヘルツ); Thermal deformation compensation: design expansion gap 0.15 0.3 mm (thermal gradient calculation according to the line).
Service monitoring data of the vibration intensity: the use of bearing vibration velocity RMS 2.8 mm/s or less (ISO 10816-3); Temperature threshold: winding end temperature alarm value set to 105 k corresponding insulation class (200); Seal life: fluorine rubber seal replacement cycle 800000 km or more (the equivalent of three-phase).
| Material process control | ダクタイル鋳鉄 QT500-7 | graphite spheroidization rate ≥90%, pearlite content control at 30-50% |
| Low pressure casting process | cavity vacuum ≤5kPa, to ensure that there is no shrinkage hole defect in key parts | |
| Aging treatment | 300℃×6h stress relief annealing, residual stress ≤50MPa | |
| Mechanical performance | Fatigue strength | to meet the requirements of zero cracks under 10^7 cycle loads (refer to IEC 60034 標準) |
| Dynamic deformation control | under the rated speed, the axial runout of the end cover flange surface is usually ≤0.05mm | |
| Impact toughness | -40℃ Low temperature impact work (KV2) ≥27J (for cold zone application scenarios) |
ポリ袋+カートンボックス+木製ケース/パレット, 顧客の要求に応じて

会社概要
洛陽豊洋重工業株式会社, 株式会社. に設立されました 1998, 面積72,600㎡, 以上の 300 従業員, 32 技術者, 含む 5 シニアエンジニア, 11 アシスタントエンジニア, そして 16 技術者. 洛陽工程技術センターとして評価されています, 洛陽テクノロジーR&Dセンター, 国家ハイテク企業と何度も.
弊社の生産能力は 30,000 年間トン. 現在, 私たちは主に鋳鋼を生産しています, 鋳鉄 (ねずみ鉄, ダクタイル鋳鉄, 等), 完成品の加工と部品の組み立て。製品はロシアに輸出されています, 米国, ドイツ, アルゼンチン, 日本, フランス, 南アフリカ,イタリアとその他の国.
よくある質問
Q1: メーカーですか、それとも商社ですか?
あ:私たちはメーカーです. 当社は年に設立されました。 1998, 鋳造業界で約30年の実績, 総面積72,600㎡, 工場建屋面積51,000㎡.
第2四半期. 主な製品は何ですか?
あ: 当社は主に鋼鋳造に注力しています, 鉄鋳物, 完成品加工, および部品組立生産.
Q3: 鋳造部品をどの程度の精度で製造できるか?
あ: 当社はさまざまな鋳造プロセスで鋳造部品を製造する能力を持っています. 生産はISOに厳密に準拠しています 9001, ISO 14001 ISO45001、EN15085, 虹彩.
Q4. サンプル通りに生産してもらえますか?
はい, あなたのサンプルまたは技術図面から生産できます. サンプルを入手した後、図面を作成することもできます.
Q5: 納品前の品質管理はどのように行っていますか?
あ: 品質検査は鋼鋳造部品の品質を保証する非常に重要な要素です. 私たちはフォローします 3 生産プロセス全体における検査回数. 材料試験レポートを提供します, 寸法試験レポート, 納品前に顧客に報告する機械的特性試験レポート.
何か商品にご興味がございましたら, お気軽にお問い合わせください.
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