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10kV High-Voltage 315kW Two-Stage Screw Compressor

10kV High-Voltage 315kW Two-Stage Screw Compressor

Marka Adı: Jufeng
Model Numarası: JF-315ASZ
MOQ: 1 adet
fiyat: Factory price
Paketleme Ayrıntıları: İhracat ambalajı
Ödeme Şartları: L/C,D/A,D/P,Western Union,T/T
Detay Bilgi
Menşe yeri:
Wuxi eyaleti
Sertifika:
CE, ISO
Ürün adı:
İki Kademeli Vidalı Hava Kompresörü
Sürücü tipi:
Doğrudan tahrik
Gürültü Seviyesi:
74±2 dB
Motor Gücü:
315kw
Basınç:
7-13 Bar
Soğutma:
Hava soğutma
Yetenek temini:
Aylık 50 adet
Ürün Tanımı

10kV High-Voltage 315kW Two-Stage Screw Compressor


TCO & ROI: The Financial Logic of High-Voltage 315kW Systems


For high-capacity industrial systems operating 315kW (430 HP) plants, low-voltage electricity (380V/440V) presents major operational hurdles, including immense line losses, massive cable cross-sections, and heavy starting currents that destabilize local plant grids. The Jufeng 10kV high-voltage two-stage screw compressor addresses these issues at the structural level. By shifting the native electrical draw to 10,000 Volts, currents drop drastically, and heat dissipation losses plummet, generating substantial long-term electricity savings.


Total Cost of Ownership (TCO) Fact: Operating a standard 315kW compressor 24/7 translates to massive annual energy expenditures. Jufeng's combined 10kV high-voltage integration and 2-stage air end drop specific power consumption to an Industry-Leading low, achieving capital payback on technology differentials within 14 to 18 months.


Deep Engineering Architecture Features


1. Advanced Isothermal Two-Stage Rotary Air End


Our dual-rotor design does not force air through a single, harsh pressure curve. Instead, air is compressed progressively through consecutive primary and secondary stages:

  • Inter-Stage Cooling: Precision inter-stage oil mist injection cools the air stream between stages, shrinking the specific volume of the air before it reaches the secondary chamber.
  • Minimized Rotor Slip: Dropping the internal pressure ratio across each individual rotor means internal air bypass and blow-by leakage are completely eliminated, preserving strict volumetric delivery.


2. Direct 10,000V Grid System Performance


  • Premium Insulation Security: Built with severe-duty high-voltage motors featuring vacuum pressure impregnation (VPI) epoxy systems and PTC thermistors to guarantee thermal integrity under sustained baseload duties.
  • Streamlined Infrastructure: Eliminates large step-down distribution setups, simplifying substation space footprints and lowering local electrical design costs.


3. Heavy-Duty Mechanical Integration


  • Coaxial Direct Shaft Coupling: Employs zero-slip flexible couplings to deliver a true 1:1 mechanical transfer efficiency from motor to rotors, avoiding all energy losses from internal gear or V-belt setups.
  • High-Capacity Fluid Separation: Triple-stage mechanical and centrifugal fluid separation lowers residual lubricant downstream to ≤2 ppm, shielding valuable pneumatic tools and valves.


Comprehensive Product Specifications


Nominal Motor Rating 315 kW / 430 Hp
Native Grid Supply 10kV (10,000 Volts) | 3-Phase | 50Hz or 60Hz Options
Air End Compression Layout Dual-Chamber, Series Two-Stage Rotary Screw Design
FAD Output @ 7.0 Bar 63.5 m3/min (2,242 CFM)
FAD Output @ 8.0 Bar 59.0 m3/min (2,083 CFM)
FAD Output @ 10.0 Bar 52.2 m3/min (1,843 CFM)
Motor Protection & Insulation IP55 Weatherproof Class / Class F Rise Standard
Lubrication Base Oil Capacity Heavy Industrial High-Thermal Fluid Formulation
Coupling Type 1:1 Direct Flexible Elastic Alignment Coupling


Industrial Applications


  • Air Separation & Gas Fractionation: Serving as reliable baseload feed systems for oxygen and nitrogen manufacturing plants.
  • Heavy Cement & Aggregate Handling: Supplying the continuous FAD needed for high-pressure pneumatic convey pipes and dust filtration systems.
  • Large Assembly Automotive Plant Lines: Driving massive robotic arrays, automated paint systems, and pneumatic fastening installations safely.

Compliance & Controls


The system is governed by an advanced IoT micro-computer control core, tracking comprehensive high-voltage data metrics. Features include automatic over-current warning, structural phase protection, high-temperature discharge trip arrays, and maintenance intervals alerts, keeping your operation safe and reliable.