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Screw Air Compressor Air End Screw pump host Hanbell AB-1320R

Air delivery: 21.4 m³/min 757cfm
Pressure: 0.8-1.0 MPa/8-10 bar/116-145 psi
Power: 132kW/175HP
Availability:
Quantity:
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The Hanbell AB-1320 represents the apex of large-capacity, oil-injected rotary screw compressor technology. It is engineered as a ultra-heavy-duty prime mover, designed to serve as the cornerstone of compressed air systems in the world's most demanding and energy-intensive industrial facilities, where maximum airflow, unwavering reliability, and superior energy efficiency are non-negotiable.


Technical  Parameters


ModelPower (kW)Rotating speed (rpm)Air Delivery (m3/min)Shaft power (kW)Specific power (kW/m3/min)S.F.Dimension(mm)Weight(kg)
AB-1320132295021.4139.56.51.06863*610*442490


Product   Characteristics 

  1. Next-Generation Hanbell Air End

    1. The core of the compressor features Hanbell's latest evolution of its proprietary asymmetric profile screw rotor set. These extra-large-diameter rotors are manufactured with extreme precision for optimal compression dynamics, maximizing volumetric efficiency and output while minimizing internal friction and energy loss.

  2. Ultra-Premium Efficiency Drive Train

    1. Powered by a ultra-premium efficiency (IE5 or equivalent class) low-speed synchronous reluctance motor or similar high-tech motor, directly coupled to the air end. This direct drive design eliminates belt losses, enhances power transmission efficiency, and drastically reduces maintenance requirements.

    2. Features an advanced cooling system with independently controlled, high-efficiency fans that modulate based on real-time thermal load, ensuring optimal operating temperatures with minimal electrical consumption.

  3. Sophisticated Intelligent Control System

    1. Governed by a state-of-the-art, programmable logic controller (PLC) with a large, full-color touch-screen Human-Machine Interface (HMI).

    2. This system provides unparalleled data logging, real-time performance analytics, remote connectivity via IoT protocols, and advanced prognostic diagnostics. It is designed for seamless integration into overarching Plant Energy Management Systems (PEMS) and Industry 4.0 smart factory networks.

  4. Heavy-Duty Industrial Design

    1. Constructed on a massively reinforced base frame with advanced vibration damping for rock-solid stability.

    2. Engineered with oversized, high-efficiency heat exchangers (oil cooler, aftercooler) and a robust cooling circuit to maintain precise operating temperatures even in the most challenging ambient conditions (up to 46°C / 115°F), guaranteeing continuous performance and preventing thermal shutdowns.

  

Core  Advantages

  1. Best-in-Class Energy Efficiency

    1. The synergy of the next-gen air end, ultra-premium motor, and intelligent cooling results in an industry-leading specific power consumption (kW/(m³/min)). This achieves the lowest possible energy cost per unit of compressed air produced, offering an exceptionally fast return on investment (ROI) and significantly reducing the plant's carbon footprint.

  2. Maximum Reliability and Operational Uptime

    1. Built with over-sized bearings and industrial-grade components designed for 100,000+ hours of operation, the AB-1320 is engineered for continuous, trouble-free performance.

    2. The prognostic capabilities of the control system allow for true predictive maintenance, scheduling service based on actual need rather than fixed intervals, thereby preventing costly unplanned downtime in mission-critical applications.

  3. Optimized Total Cost of Ownership (TCO)

    1. While representing a significant capital investment, the AB-1320 is designed for the lowest lifetime cost. This is achieved through minimal energy consumption, reduced maintenance (no belts, extended oil life, durable components), and unparalleled reliability, maximizing value over its entire operational life.

  4. Future-Proof Intelligence and Connectivity

    1. As a central utility asset, its advanced connectivity features allow it to be the lead unit in a sophisticated master control system, enabling optimal load sharing, cascading, and remote performance management from a central control room, which is essential for modern, automated industrial complexes.

 

Industral  Applications

  1. Next-Generation Hanbell Air End

    1. The core of the compressor features Hanbell's latest evolution of its proprietary asymmetric profile screw rotor set. These extra-large-diameter rotors are manufactured with extreme precision for optimal compression dynamics, maximizing volumetric efficiency and output while minimizing internal friction and energy loss.

  2. Ultra-Premium Efficiency Drive Train

    1. Powered by a ultra-premium efficiency (IE5 or equivalent class) low-speed synchronous reluctance motor or similar high-tech motor, directly coupled to the air end. This direct drive design eliminates belt losses, enhances power transmission efficiency, and drastically reduces maintenance requirements.

    2. Features an advanced cooling system with independently controlled, high-efficiency fans that modulate based on real-time thermal load, ensuring optimal operating temperatures with minimal electrical consumption.

  3. Sophisticated Intelligent Control System

    1. Governed by a state-of-the-art, programmable logic controller (PLC) with a large, full-color touch-screen Human-Machine Interface (HMI).

    2. This system provides unparalleled data logging, real-time performance analytics, remote connectivity via IoT protocols, and advanced prognostic diagnostics. It is designed for seamless integration into overarching Plant Energy Management Systems (PEMS) and Industry 4.0 smart factory networks.

  4. Heavy-Duty Industrial Design

    1. Constructed on a massively reinforced base frame with advanced vibration damping for rock-solid stability.

    2. Engineered with oversized, high-efficiency heat exchangers (oil cooler, aftercooler) and a robust cooling circuit to maintain precise operating temperatures even in the most challenging ambient conditions (up to 46°C / 115°F), guaranteeing continuous performance and preventing thermal shutdowns.


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