Stallion Machine

Die Casting Solutions

Low-Pressure & High-Pressure · Cell Automation · Configured to Your Part
Stallion engineers complete die casting solutions for aluminium, magnesium and zinc alloy components — from Low-Pressure Die Casting (LPDC) lines for cylinder heads and wheels, to fully automated High-Pressure Die Casting (HPDC) cell automation. The platform integrates servo ladlers, multi-axis sprayers, extractors, trim presses, sawing, and CNC deburring around the customer’s die casting machine, delivering repeatable cycle times, lower scrap, and a clean, safe casting bay. Cell architecture is configured to part size, alloy, and production volume. Also known as HPDC cell automation, die casting peripheral equipment, LPDC pouring lines, or pressure die casting machine integration.
Overview

At A Glance

180T – 4000T HPDC Machine Support
LPDC + HPDC Casting Architectures
Full-Servo Cell Drive Train
±1% / ±0.05 mm Pour / Spray Accuracy
Operations

Operations Performed

HPDC Cell Automation
LPDC Pouring
Servo Ladling
Mould Spraying
Casting Extraction
Trim Pressing
Technical Data

Full Specifications

HPDC Cell — Servo Cold-Chamber Sprayer & Extractor (FRZ Series)

Specification FRZ-02 FRZ-04 FRZ-06 FRZ-08 FRZ-10
Suitable for HPDC machine (T) 180–450 500–850 1000–1300 1600–2000 2500–3000
Spray nozzles (fixed mould) 14 pcs 18 pcs 22 pcs 26 pcs 30 pcs
Spray nozzles (moving mould) 14 pcs 18 pcs 22 pcs 26 pcs 30 pcs
Air-source pressure (kgf/cm²) 6 6 6 – 7 6 – 7 6 – 7
Effective travel — lift / X-axis (mm) 735 800 3,300 4,000 4,300
Spray head width (mm) 450 500 690 850 930
Spray cycle time (sec) 3 – 4 3 – 4 ≤5 ≤5 ≤5
Power supply 3-Phase 380V / 50 Hz 3-Phase 380V / 50 Hz 3-Phase 380V / 50 Hz 3-Phase 380V / 50 Hz 3-Phase 380V / 50 Hz

HPDC Cell — Hydraulic Trim Press (Edge Cutting / Deflashing)

Specification FRV-02 FRV-04 FRV-06 FRV-08 FRV-10 FRV-12
Suitable for HPDC machine (T) 125–400 500–800 1000 1600 2000–2500 3000–4000
Pouring capacity (kg) 0.5–5 2.5–8 12–15 15–25 25–50 50–70
Pouring accuracy ±1% ±1% ±1% ±1% ±1% ±1%
Crucible diameter (mm) ≥480 ≥480 ≥800 ≥800 ≥1000 ≥1100
Ladle depth (mm) ≤450 ≤450 ≤450 ≤450 ≤450 ≤450
Arm servo motor (kW) 1.5 1.5 3.0 3.0 3.0 3.0
Power capacity (kVA) 1.5 1.5 3.0 3.0 3.0 3.0
Pouring cycle time (sec) 6–8 6–8 8 10 12 15
 

HPDC Cell — Hydraulic Trim Press (Edge Cutting / Deflashing)

Specification FRZQB-20T FRZQB-40T FRZQB-60T FRZQB-80T FRZQB-100T
Mould closing force (T) 20 40 60 80 100
Mould opening force (T) 6 8.1 8.4 10 12.5
Mould column spacing (mm) 940×840 1110×910 1230×1020 1325×1075 1430×1130
Mould opening stroke (mm) 700 800 1000 1000 1100
Max die opening (mm) 1000 1100 1200 1500 1400
Die closing speed (mm/s) 200 200 200 200 200
Die opening speed (mm/s) 120 120 120 120 120
Oil pump motor (kW) 7.5 7.5 11 15 15
Build & Equipment

Standard Features Optional Equipment

Standard Features

  • Full-servo architecture across ladle, spray, and extract axes
  • Japan-grade precision servo motor and reducer (drive train)
  • Japan OMRON PLC + handheld touch-screen HMI
  • Japan NSK precision bearings on all primary axes
  • Germany Rexroth linear guide rails (steel-belt protection)
  • Germany Rost high-precision planetary reducer
  • IP67 protection grade on all field-exposed parts
  • Diversified standby modes (auto + manual switching)
  • Fault-code display and self-diagnostics

Optional Equipment

  • Six-axis ABB anthropomorphic extractor (cell-level integration)
  • Modular / profiling / tubular spray-tool quick-changers
  • Quantitative pouring furnace (insert into ladling line)
  • Closed cooling tank with stainless tray & auto-drain
  • Six-station forced-air cooling carousel
  • Photoelectric inspection station (post-trim quality check)
  • Stainless steel conveyor between cell stations
  • Laser marking station (traceability)
  • Plunger lubrication / mould-temperature controller integration
Applications

Typical Workpieces

Engine Cylinder Heads
Wheel Hubs (LPDC)
Gearbox Housings
Two-Wheeler Crankcases
Answers

Frequently Asked Questions

What is the difference between LPDC and HPDC? +

Low-Pressure Die Casting (LPDC) uses a holding furnace below the die and pushes molten metal upward into the mould under low gas pressure — ideal for thick-walled aluminium parts like cylinder heads and wheels where porosity must be minimal. High-Pressure Die Casting (HPDC) injects molten metal at very high velocity and pressure into a steel die — used for thin-walled, high-volume parts like gearbox housings, crankcases, and electronics enclosures.

Does Stallion supply the HPDC machine itself? +

Stallion configures and integrates complete HPDC cell automation around the customer's die casting machine — including servo ladlers, multi-axis sprayers, extractors, trim presses, and CNC deburring stations. For the die casting machine itself, Stallion works with established HPDC machine partners to deliver a turnkey cell. Talk to our engineering team to scope your full installation.

What HPDC machine tonnage range can the RZ peripherals support? +

The FRZ-series HPDC peripheral range covers HPDC machines from 180 tonnes to 4000 tonnes — across sprayers (FRZ-02 to FRZ-10), servo ladlers (FRV-02 to FRV-12), and trim presses (FRZQB-20T to FRZQB-100T). The cell is sized to the die casting machine and part-mass envelope.

How is the spray, ladle, and extract cycle synchronised? +

All axes run under a unified PLC controller with full servo drives, so spray-extract-ladle sequences are time-locked to the die casting machine's cycle signal. Pouring accuracy holds to ±1%, spray-head positioning to ±0.05 mm, and the entire cell can be operated by a single technician via a handheld touch-screen HMI.

Why is the Stallion HPDC cell superior to competitor offerings? +

The cell is built around a full-servo drive train — not the legacy pneumatic-plus-electric mix — which delivers higher running speed, lower failure rate, longer braking life, and quieter operation. Critical components including servo motors, bearings, PLCs, pneumatics, and linear guides are built around internationally proven names across Japan, Germany and Europe — Panasonic, OMRON, NSK, SMC, Rexroth, Rost — for sustained accuracy and long service life in heavy-duty foundry conditions.

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