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four de traitement thermique
Created with Pixso. Vertical Aluminum Alloy Solution Furnace with Smart Dual-Speed Quenching Control System and High-Uniformity Heat Treatment for Φ 1200×1500mm Work Area

Vertical Aluminum Alloy Solution Furnace with Smart Dual-Speed Quenching Control System and High-Uniformity Heat Treatment for Φ 1200×1500mm Work Area

Nom De La Marque: WONDERY
MOQ: 1SET
Prix: TO BE NEGOTIATED
Délai De Livraison: 60 jours ouvrables
Conditions De Paiement: LC, D/P, T/T, Western Union
Informations détaillées
Lieu d'origine:
Chine
Certification:
CE
Nom:
Four à solution vertical en alliage d'aluminium
Taille de travail:
Φ 1200 × 1500 mm
Zones de contrôle:
2 zones
Puissance nominale:
120kw
Détails d'emballage:
Cas de contreplaqué
Capacité d'approvisionnement:
1000 ensembles par mois
Mettre en évidence:

Smart Dual-Speed Quenching Control System Vertical Aluminum Alloy Solution Furnace

,

High-Uniformity Heat Treatment Vertical Aluminum Alloy Solution Furnace

,

Φ 1200×1500mm Working Size Heat Treatment Furnace

Description du produit

Vertical Aluminum Alloy Solution Furnace | Smart Dual-Speed Quenching Control System | High-Uniformity Heat Treatment Equipment for Castings and Plates

I. Product Overview (Product Overview)

The Vertical Aluminum Alloy Solution Furnace by WUXI WONDERY (Proposal No. WDL2606116N) is a premium cycle-operated resistance heating system. Engineered for high-efficiency rapid solution, quenching, and annealing of aluminum castings and plates, it integrates a suspended loading layout with roof-mounted forced-convection fans to guarantee superior thermal uniformity.

II. Industry Challenges & Causes (Industry Challenges & Causes)

  • Lattice Solution Failure: Slow manual/mechanical doors cause excessive component transfer delays and thermal dissipation, ruining the solid solution strengthening effect.

  • Thermal Deformation & Cracking: Severe temperature cross-gradients across complex castings trigger immense internal stresses and destructive warpage during quenching.

  • Zero Data Traceability: Legacy configurations without digital instrumentation fail to log automated recipes, failing the stringent 100% trace requirements of automotive/aerospace supply chains.

III. Our Solution (Our Solution)

  • Second-Level Quenching Kinematics: A bottom sliding door pneumatically retracts within 4 seconds. Paired with a 1T dual-speed winch ($22text{ m/min}$ drop speed), it guarantees a transfer time of $le 7$ seconds to freeze the optimal lattice matrix.

  • Powerful Longitudinal Airflow: Dual high-temperature top fans combined with advanced radial-to-longitudinal guiding air hoods keep the soaking uniformity strictly within $<pm 5^circtext{C}$.

  • Distributed Digital Platform: Utilizes a 10-inch HMI touchscreen and Japanese SHIMADEN SRS13A controllers. Features secure dual-database storage logging process records for over 5 years.

IV. Technical Specifications (Technical Specifications)

Key Technical Item Specification & Configuration Key Technical Item Specification & Configuration
Equipment Type Aluminum Solution Furnace / Quenching Material Basket Size

varnothing 1200 times 1500

Max Loading Capacity  1000 (1T Dual-Speed Winch) Rated Max Temperature

650 / Continuous: Within 600

Thermal Uniformity  5(Late soaking stage) Control Accuracy

<pm 1

Total Heating Power 120 (Thyristor Regulated) Control Zones 2 Independent Control Zones
Door Retract Time Bottom horizontal sliding / 4 seconds Frame Dropping Speed 22
Total Quenching Time 7 seconds (Door open to immersion) Insulation Attributes

Full Fiber Linings / Thickness 

Tank Power / Pump 60/2.2 Outer Shell Temp Rise

+25

V. Selection Guide (How To Choose)

  1. Verify Gross Weight: Our standard mechanism handles $le 1000text{ kg}$. Heavy load requirements must be declared early to scale up the brake-reducer hoist and structural gantry columns.

  2. Audit Working Envelope: Standard basket size is $varnothing 1200 times 1500text{ mm}$. Part layout profiles must fit this volume while allowing a $50text{ mm}$ minimum clearance for crossflow convection.

  3. Check Plant Clearance: Given the tower architecture and lower horizontal track paths for the mobile tank, ensure your shop's ceiling height accommodates this footprint before finalizing layouts.

VI. FAQ (FAQ)

  • Q: How do you protect heating elements from short-circuiting under continuous vibration?

    • A: The 0Cr25Al5 alloy bands are anchored to full fiber walls via high-alumina ceramic screws and isolation washers, ensuring zero contact with the furnace shell.

  • Q: What are the benefits of the "Fast-Down and Slow-Up" winch design?

    • A: It drops at $22text{ m/min}$ for rapid quenching ($le 7text{ s}$), while using slow crawling speeds when extracting loads. This eliminates immense inertial shocks and saves gantry wear.

  • Q: What interlocks protect the door, hoist, and mobile tank from colliding?

    • A: Rigid electrical interlocks prevent hoist movement until the door is 100% open and heating elements are cut off. The door rejects close commands if the frame is misaligned.

VII. Why Partner with WUXI WONDERY (Why Partner with WUXI WONDERY)

  • Global Turnkey Experience: Deep expertise in executing major international industrial accounts. We manage the entire loop from utility integration layouts to final parameter calibration.

  • Tier-1 Component Integrity: Built with Japanese SHIMADEN instruments, Beijing Shougang elements, Shandong Luyang fiber lining, and CHINT switchgear to secure maximum system uptime.

  • Future-Proof Digital Deck: Features synchronous recipe downloads, automated diagnostics, and over 5 years of tamper-proof logging, fully ready for integration into your facility's MES network.