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Explosion-Proof Cabinet Series HDBX
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Explosion-Proof Cabinet Series HDBX

Explosion-proof cabinets are specialized electrical protection equipment designed for hazardous locations with potentially explosive gas or vapor atmospheres. Their purpose is to isolate electrical components—which may generate sparks, arcs, or excessive heat—within a robust, flameproof enclosure.

    Product OverviewOverview

    Explosion-proof cabinets are specialized electrical protection equipment designed for hazardous locations with potentially explosive gas or vapor atmospheres. Their purpose is to isolate electrical components—which may generate sparks, arcs, or excessive heat—within a robust, flameproof enclosure. This design prevents any internal ignition from propagating to the external environment. This product series is widely applied in high-risk sectors including petroleum, chemical, pharmaceutical industries, and industrial automation control systems.

    Selection Guide

    To select the appropriate model, users should consider the key functionality and internal configuration required for their specific application scenario:

    BXDK Explosion-Proof Electric Control Cabinet — Engineered for Power Drive

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    Core Function: Designed for high-power motor drive and control applications.
    High Current Rating: Supports a rated operational current of up to 160A.
    Integrated Drive: Features a built-in 37 kW frequency converter (inverter).
    Forced Cooling System: Includes an explosion-proof axial flow fan with an interlocked delay function (the fan continues to operate for 10 minutes after main power shutdown).
    Robust Enclosure: The flameproof housing utilizes high-strength fastening bolts with a yield strength ≥ 600 MPa.

    BXYK Explosion-Proof Instrument Control Cabinet — Engineered for Process Monitoring & Control

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    Core Function: Designed for instrument signal acquisition and automated logic control.
    Intelligent Monitoring: Integrates a PLC and configurable display for real-time monitoring and parameter setting of signals such as temperature, pressure, and flow.
    Precision Control: Rated for a current of 16A, making it suitable for low-power signal processing applications.
    Hybrid Wiring: Accommodates both intrinsically safe and non-intrinsically safe circuits within the same enclosure, with a mandatory minimum separation distance of ≥50mm between them.
    Fastening Specification: All fasteners feature a yield strength ≥ 450 MPa.

    Robust Construction: The enclosure is welded from high-quality steel plates, providing excellent strength to withstand internal pressure surges.

    ● Precise Explosion Containment: The parameters of the flameproof joint surfaces strictly comply with GB/T 3836.2. Each joint undergoes hydrostatic pressure testing after precision machining.

    ● Integrated Safety: Features clearly marked internal and external grounding bolts for reliable earthing protection.

    ● Safety Interlock: The cabinet door is mechanically interlocked with the power supply, ensuring it can only be opened after the power is disconnected, thereby guaranteeing operational safety.

    Protection Rating: IP65
    Rated Voltage: AC 380V
    Ambient Temperature: -20℃ ~ +40℃
    Atmospheric Pressure: 80 ~ 110kPa
    Surface Temperature: The maximum surface temperature class complies with T1 ~ T4 (≤130℃)
    Insulation Resistance: ≥1.5 MΩ

    Technical Parameters

    The BX Series Explosion-Proof Cabinet is developed and manufactured by Chengdu Hengda Industrial Control Co., Ltd.. Its explosion-proof performance complies with the standards GB/T 3836.1-2021 and GB/T 3836.2-2021.

    USE cases

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    Case Study: High-Voltage Liquid-Resistance Soft Starter System Upgrade

    1. Project Background
    The high-voltage motor system at Shaanxi Yangxian Yuhu Chemical Co., Ltd. had been operating with liquid-resistance soft starters for more than a decade. As the existing equipment aged, several pain points became evident:
    The liquid-resistance cabinets were bulky and occupied excessive floor space.
    Their complex design demanded frequent maintenance of electrolytes, electrodes, and mechanical parts, resulting in significant O&M workload and high costs.
    Startup performance was limited—low accuracy and the inability to support frequent restarts within short intervals—constraining production scheduling flexibility. The customer urgently required a high-efficiency, low-maintenance, and intelligent high-voltage soft-start solution.

    2. Hengda's Solution:
     Having reliably used Hengda’s excitation systems for more than a decade, the customer had full confidence in our product quality and service support. Based on this established trust, the customer directly selected the HDGR solid-state soft starter cabinet for this critical upgrade. 
    The solution delivered transformative results:
    Lower O&M Costs & Space Optimization: The fully solid-state, modular design occupies significantly less space than the former liquid-resistance cabinet. Eliminating the need for electrolytes and mechanical upkeep, the maintenance frequency and costs were drastically reduced, achieving truly “low-maintenance or maintenance-free” operation.
    Improved Startup Performance & Productivity: Leveraging high-precision thyristor control technology (as HDGR is solid-state), the system ensures smooth starting, completely eliminating mechanical and electrical shock during startup. It also supports rapid, repetitive starts and stops, significantly increasing the operational efficiency of the production process. The system's integration enables remote monitoring and condition diagnostics, further aligning with the customer's requirements for a digitalized and intelligent factory upgrade.

    3. Client Feedback
    The Operations and Maintenance (O&M) Department spoke highly of the benefits of the HDGR's minimal maintenance needs and high starting accuracy. They reported that the new equipment's performance stability and reliability significantly exceeded expectations, effectively guaranteeing the full life-cycle operation of critical assets. This retrofit not only addressed the client's core O&M pain points but also—via advanced solid-state technology—achieved a dual enhancement in production efficiency and reliability in a critical industrial segment.

    Hubei Sanning Group: Eliminating Recurrent Failures in Synthesis Reactor Electric Heating with WDTJ

    ● Customer Challenge
    The original temperature control system for Hubei Sanning Group's synthesis reactor relied on analog, non-microprocessor-based circuitry (using resistors and capacitors) to adjust the thyristor firing angle. This caused significant three-phase output imbalance. The resulting uneven heating of three-phase resistor elements led to frequent filament cracking, breakage, and short circuits, repeatedly forcing production line stoppages.

    ● Our Solution
    Since 1997, we have supplied the first-generation WDTJ AC voltage and power regulation cabinet to address this issue. By implementing high-performance industrial control chips and digital synchronous phase-shifting technology, we entirely replaced the unstable analog control, achieving precise digital regulation of the firing angle.

    ● Long-Term Results
    After the upgrade, the system immediately delivered accurate three-phase voltage triggering and stable output current. This completely eliminated unplanned downtime caused by three-phase imbalance at Hubei Sanning Group, ensuring continuous production.

    ● Built on this long-term trust and proven operational performance,Hubei Sanning Group has since adopted nearly 20 sets of our latest WDTJ AC voltage and power regulation cabinet across five newly built chemical plants. All WDTJ cabinets have been maintaining precise control and stable operation, consistently supporting the development of Hubei Sanning Group's chemical industry.

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    Case Study:Electrostatic Precipitator Upgrade at Hubei Sanning Chemical

    ● Customer Challenges
    Hubei Sanning Chemical’s electrostatic precipitator (ESP) system had been operating for years with increasing failures and declining dust collection efficiency. Key issues included:
    -Failure to reach target high-voltage levels
    -Poor voltage control accuracy
    -Inability to effectively limit discharge spark frequency
    These shortcomings not only risked non-compliance with environmental standards but also undermined production stability.

    ● Our Solution
    We delivered a customized WGT-series high-voltage control power supply featuring:
    -Highly precise voltage regulation and improved step-up characteristics
    -Microprocessor-controlled monitoring and limitation of spark rate (sparks per minute)

    ● Results Achieved
    -Operating voltage increased by 10%, significantly improving dust removal efficiency
    -Stable and accurate voltage output with tightly controlled sparking
    -Markedly improved system reliability and reduced failure rate
    -The system has now operated flawlessly for three years, earning consistent positive feedback from the custome

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