Ningbo FLGK Machinery Co., Ltd.

Gantry Frame High Precision Press

  • FHD-30
    FHD-30
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-45
    FHD-45
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-60
    FHD-60
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-80
    FHD-80
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-125
    FHD-125
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-220
    FHD-220
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FLD-220
    FLD-220
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-300
    FHD-300
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

  • FHD-400
    FHD-400
    High-Rigidity Frame Structure
    1. The three-section castings frame provides exceptional rigidity, minimizes deformation, and effectively absorbs vibration during high-speed operation. Its optimized structural design ensures stable Bottom Dead Center (BDC) accuracy within 0.005 mm, delivering superior stamping precision.
    Precision Guide System
    2. Equipped with a 4-post or 6-post guide pillar system, the press significantly reduces dynamic friction during operation. This design minimizes heat generation even during long-term continuous production, ensuring consistent accuracy, protecting tooling from premature wear, and extending mold service life.

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