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Bobine d'acier laminée à froid à usage commercial

Foshan Shunge Steel Trading Co., Ltd. a été créée en 2008, située sur le marché du fer et de l'acier de Chine méridionale à Lecong, district de Shunde, ville de Foshan, le plus grand centre de distribution d'acier en Chine et le principal secteur industriel de soutien pour les appareils ménagers dans le Perle Riviere Delta. Nous sommes une entreprise globale axée sur les services intégrant le commerce, la transformation et la distribution de l'acier.

 

Le commerce de l'acier comme activité principale, nous avons deux centres de traitement (Guangdong Shunde Jinwei Metal Products Co., Ltd., Dongguan Shunda Metal Materials Co., Ltd.), deux sociétés commerciales (Shanghai Shunchuang Industrial Co., Ltd., Foshan Guangjiuhui Supply Chain Management Co., Ltd.), une équipe logistique (Dongguan Shunluda Logistics Co., Ltd.).

 

Les entrepôts de Foshan et Dongguan ont une superficie totale de 30 000 mètres carrés et une capacité de stockage de 250 000 tonnes. Équipé de 5 unités de refendage avancées domestiques et de 3 unités de cisaillement horizontales, avec les caractéristiques d'un fonctionnement intelligent, d'une automatisation et d'une grande précision de traitement.

Les principaux produits avantageux de Shunge couvrent l'acier au silicium non orienté, laminé à froid, galvanisé (galvanisé à chaud/électro-galvanisé), la tôle électrolytique, le décapage, l'acier laminé à chaud, les barres d'armature et d'autres catégories.

 

Shunge est l'agent de niveau A de Shou Steel Silicon Steel et Bao Steel Silicon Steel dans le sud de la Chine, avec un volume de ventes annuel de 180 000 tonnes. Nous sommes également l'agent de la plaque froide et de la plaque galvanisée de Jiujiang Sheet et Gaoming Foundation, des stocks réguliers des principales aciéries telles que An Steel, Shougang, Bao Steel, Ben Steel, Mittal, Xinyu et Liugang. Le volume annuel des ventes de tôles froides, galvanisées et décapées est de 250 000 tonnes.


Grâce à la diversité des types d'acier, Shunge répond aux besoins exigeants des clients de diverses industries telles que la fabrication d'appareils électroménagers, de quincaillerie, d'électromécanique et d'équipements, et des services professionnels de traitement à valeur ajoutée personnalisés peuvent être fournis, tels que l'aplatissement, le refendage, le laminage. , emboutissage et formage.

 

Shunge adhère à la philosophie d'entreprise "d'intégrité, de coopération, de développement et d'innovation" et fournit aux clients des services complets de soutien à l'approvisionnement en acier grâce à un modèle d'exploitation stable, un réseau de vente parfait, une gestion fine et une bonne réputation.


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  • 2.5
    0
    milliard

    CHIFFRE D'AFFAIRES ANNUEL

  • 450000
    0
    MT

    Volume annuel des ventes

  • 60+
    0+
    pays

    Pays d'exportation

La mission, la vision et les valeurs de Shunge​​

Mission:

Aider l'industrie chinoise à dominer le monde avec des services de chaîne d'approvisionnement en acier professionnels et innovants !

Vision:

Devenir une maison heureuse pour tous les employés ;

Devenir le fournisseur d'acier le plus compétitif et le plus excellent du sud de la Chine ;

Devenir le partenaire stratégique privilégié de l'amont et de l'aval de la sidérurgie chinoise.

Valeurs:

Professionnel, progressif, fiable, enthousiaste, innovant et gagnant-gagnant


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Shunge Steel was established in 2008, located in the South China lron and Steel Marketing Lecong, Shunde District, Foshan City, the largest steel distribution center in China . We are a service-oriented comprehensive company integrating silicon steel trade, processing and distribution. We supply high-grade non-oriented silicon steel with thickness as low as 0.1mm, tailored for use in high-precision applications such as robotics and drones.


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Application

Shunge s'efforce de fournir la meilleure solution d'acier pour différentes applications

Why so many big companies choosing 0.1mm utral-silicon steel?

Did you know that the thickness of non-oriented silicon steel sheets can now be as low as 0.1mm? But why do we need to make oriented silicon steel sheets thinner? And what impact does this have on motor performance? Today's article by SHUNGE will take you to find out. I. Characteristics of Non-oriented 0.1mm Ultra-thin Silicon Steel Sheets The hallmark of non-oriented silicon steel sheets is their nearly uniform magnetic performance in all directions (isotropy), making them ideal for manufacturing rotating electric motors with continuously changing magnetic fields. When the thickness is reduced to 0.1mm, it exhibits the following core features:  1.Ultralow high-frequency losses Key Advantage: This is the primary design goal for the 0.1mm thickness. According to electromagnetic theory, eddy current losses are directly proportional to the square of the material thickness. Decreasing the thickness from the common 0.35mm or 0.50mm to 0.1mm greatly suppresses eddy current losses at high frequencies. Application Frequency: This makes it suitable for working frequency ranges extending up to 400Hz, 1kHz, or even above 2kHz, where conventional thicker silicon steel sheets would experience excessive core losses. 2.High Electrical Resistivity The addition of silicon (Si) in silicon steel sheets inherently increases the material's electrical resistivity, thereby reducing eddy current losses. Combining the 0.1mm ultra-thin specification with high silicon content (typically around 3%) achieves excellent high-frequency performance. 3.High Permeability Even at moderate magnetic flux densities and high frequencies, it maintains a high permeability, meaning it requires less magnetizing current to establish the magnetic field, resulting in high efficiency. 4.Moderate Saturation Flux Density The saturation flux density (Bs) of non-oriented silicon steel ranges typically between 1.6T and 1.8T, lower than oriented silicon steel but adequate for most high-frequency applications. It's important to note that the addition of silicon slightly lowers the saturation magnetization. 5.Good Stamping Processability Compared to more brittle materials like amorphous and nanocrystalline alloys, 0.1mm non-oriented silicon steel sheets still retain a degree of toughness and ductility, allowing for stamping into complex shapes using precise dies.   II. Types and Characteristics of Iron Cores Manufactured Iron cores made from 0.1mm non-oriented ultra-thin silicon steel sheets are primarily in the form of laminated cores. 1. Iron Core Manufacture Process Precision Stamping: Utilizing high-precision presses and dies to stamp the silicon steel coils into the desired shapes. Lamination: Stacking numerous stamped thin sheets layer by layer and securing them into a sturdy core structure using riveting, welding, bonding, or self-locking methods. Heat Treatment: Annealing in a protective atmosphere (such as nitrogen) to relieve stresses from the stamping process, restoring the material's optimal magnetic properties. 2. Types and Characteristics of Iron Cores These iron cores are mainly used in applications needing high-speed rotation or high-frequency magnetic fields, with the key features as follows:    3. Comparison with Other Materials vs. Common Non-oriented Silicon Steel (0.35/0.50mm): At the same frequency, the iron loss of 0.1mm sheets is significantly lower than the latter, making it the natural choice for stepping into high-frequency and high-speed applications. vs. Ferrite: The saturation flux density is much higher than that of ferrite, allowing it to handle larger power and avoid magnetic saturation under high-frequency currents. However, ferrite still holds advantages in higher frequencies (MHz level) and costs. vs. Amorphous and Nanocrystalline: Better processability, usually higher saturation magnetization, especially with stable performance at high temperatures. While amorphous and nanocrystalline materials may have lower losses at specific high frequencies, they are more brittle, with different cost structures. Summary Non-oriented 0.1mm ultra-thin silicon steel sheets are a special type of soft magnetic material designed for high-frequency and high-speed applications. Their core value lies in extreme reduction of high-frequency eddy current losses through ultrathin sizing. The laminated cores manufactured from these sheets are mainly used in: Next-generation high-speed motors (such as those in new energy vehicles and aerospace) to achieve higher power density and efficiency. Special high-frequency magnetic components (such as aviation and military power sources) to provide reliable performance in high-power and higher frequency requirements. It serves as a key material linking traditional line-frequency motor technologies with future high-frequency power electronics technologies.

Why so many big companies choosing 0.1mm utral-silicon steel?

Did you know that the thickness of non-oriented silicon steel sheets can now be as low as 0.1mm? But why do we need to make oriented silicon steel sheets thinner? And what impact does this have on motor performance? Today's article by SHUNGE will take you to find out. I. Characteristics of Non-oriented 0.1mm Ultra-thin Silicon Steel Sheets The hallmark of non-oriented silicon steel sheets is their nearly uniform magnetic performance in all directions (isotropy), making them ideal for manufacturing rotating electric motors with continuously changing magnetic fields. When the thickness is reduced to 0.1mm, it exhibits the following core features:  1.Ultralow high-frequency losses Key Advantage: This is the primary design goal for the 0.1mm thickness. According to electromagnetic theory, eddy current losses are directly proportional to the square of the material thickness. Decreasing the thickness from the common 0.35mm or 0.50mm to 0.1mm greatly suppresses eddy current losses at high frequencies. Application Frequency: This makes it suitable for working frequency ranges extending up to 400Hz, 1kHz, or even above 2kHz, where conventional thicker silicon steel sheets would experience excessive core losses. 2.High Electrical Resistivity The addition of silicon (Si) in silicon steel sheets inherently increases the material's electrical resistivity, thereby reducing eddy current losses. Combining the 0.1mm ultra-thin specification with high silicon content (typically around 3%) achieves excellent high-frequency performance. 3.High Permeability Even at moderate magnetic flux densities and high frequencies, it maintains a high permeability, meaning it requires less magnetizing current to establish the magnetic field, resulting in high efficiency. 4.Moderate Saturation Flux Density The saturation flux density (Bs) of non-oriented silicon steel ranges typically between 1.6T and 1.8T, lower than oriented silicon steel but adequate for most high-frequency applications. It's important to note that the addition of silicon slightly lowers the saturation magnetization. 5.Good Stamping Processability Compared to more brittle materials like amorphous and nanocrystalline alloys, 0.1mm non-oriented silicon steel sheets still retain a degree of toughness and ductility, allowing for stamping into complex shapes using precise dies.   II. Types and Characteristics of Iron Cores Manufactured Iron cores made from 0.1mm non-oriented ultra-thin silicon steel sheets are primarily in the form of laminated cores. 1. Iron Core Manufacture Process Precision Stamping: Utilizing high-precision presses and dies to stamp the silicon steel coils into the desired shapes. Lamination: Stacking numerous stamped thin sheets layer by layer and securing them into a sturdy core structure using riveting, welding, bonding, or self-locking methods. Heat Treatment: Annealing in a protective atmosphere (such as nitrogen) to relieve stresses from the stamping process, restoring the material's optimal magnetic properties. 2. Types and Characteristics of Iron Cores These iron cores are mainly used in applications needing high-speed rotation or high-frequency magnetic fields, with the key features as follows:    3. Comparison with Other Materials vs. Common Non-oriented Silicon Steel (0.35/0.50mm): At the same frequency, the iron loss of 0.1mm sheets is significantly lower than the latter, making it the natural choice for stepping into high-frequency and high-speed applications. vs. Ferrite: The saturation flux density is much higher than that of ferrite, allowing it to handle larger power and avoid magnetic saturation under high-frequency currents. However, ferrite still holds advantages in higher frequencies (MHz level) and costs. vs. Amorphous and Nanocrystalline: Better processability, usually higher saturation magnetization, especially with stable performance at high temperatures. While amorphous and nanocrystalline materials may have lower losses at specific high frequencies, they are more brittle, with different cost structures. Summary Non-oriented 0.1mm ultra-thin silicon steel sheets are a special type of soft magnetic material designed for high-frequency and high-speed applications. Their core value lies in extreme reduction of high-frequency eddy current losses through ultrathin sizing. The laminated cores manufactured from these sheets are mainly used in: Next-generation high-speed motors (such as those in new energy vehicles and aerospace) to achieve higher power density and efficiency. Special high-frequency magnetic components (such as aviation and military power sources) to provide reliable performance in high-power and higher frequency requirements. It serves as a key material linking traditional line-frequency motor technologies with future high-frequency power electronics technologies.

Construction

Les aciers sont couramment utilisés dans les domaines de la construction, tels que l'acier galvanisé, l'acier laminé à chaud et laminé à froid, varient selon l'utilisation, Shunge pourrait être le partenaire d'approvisionnement fiable pour nos clients afin de sélectionner les aciers appropriés qui répondent aux besoins.

Construction

Les aciers sont couramment utilisés dans les domaines de la construction, tels que l'acier galvanisé, l'acier laminé à chaud et laminé à froid, varient selon l'utilisation, Shunge pourrait être le partenaire d'approvisionnement fiable pour nos clients afin de sélectionner les aciers appropriés qui répondent aux besoins.

appareils électroménagers

La demande croissante des clients pour les appareils électroménagers se concentre également sur la qualité des produits qui est constamment améliorée. Shunge Steel espère faire correspondre des ressources de haute qualité avec les fabricants et assurer la qualité des matières premières.

appareils électroménagers

La demande croissante des clients pour les appareils électroménagers se concentre également sur la qualité des produits qui est constamment améliorée. Shunge Steel espère faire correspondre des ressources de haute qualité avec les fabricants et assurer la qualité des matières premières.

Voiture

Les aciers galvanisés à chaud, laminés à froid, décapés et laminés à chaud sont généralement utilisés dans la construction automobile. L'acier Shunge serait votre partenaire flexible, fiable et efficace pour vous fournir des produits leaders du marché provenant d'aciéries de pointe.

Voiture

Les aciers galvanisés à chaud, laminés à froid, décapés et laminés à chaud sont généralement utilisés dans la construction automobile. L'acier Shunge serait votre partenaire flexible, fiable et efficace pour vous fournir des produits leaders du marché provenant d'aciéries de pointe.

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