Hydraulic Press Matched to Line Rhythm — every station around the Eco master 7000 is timed to its 10-15 second cycle, so raw material feeding and brick removal never leave the press idle.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | Eco master 7000 |
| Product Type | Hydraulic Interlocking Block Making Machine |
| Overall Dimensions (L×W×H) | 1660×1400×2380mm |
| Total Mass | 1300 kg |
| Power Source | Electric motor or Diesel engine |
| Rated Power | 7.5 kW or 12 HP |
| Hydraulic Pressure | 16–21 MPa |
| Cycle Time | 10–15 seconds |
| Productivity (300×150×100mm interlocking block) | 2 pcs/mould, 720 pcs/hour, 5760 pcs/day (8h) |
| Productivity (250×125×60mm interlocking block) | 2 pcs/mould, 720 pcs/hour, 5760 pcs/day (8h) |
| Output Capacity | 4000–6000 pcs/day (8h) (basis not stated in source — confirm block format / material / thickness) |
| Pallet Requirement | No pallets required |
| Automation Level | Semi-automatic or automatic (configurable) |
| Voltage & Frequency | 380V, 3-phase, 50Hz (customizable to local voltage) |
| Raw Material (Clay + Cement mix) | Cement 6–8%, Clay 80–90%, Water 3% |
| Raw Material (Full Clay mix) | Clay 97%, Water 3% |
| Mould Format | Interlocking brick (300×150×100mm / 250×125×60mm) |
| Warranty | 1 year (excluding quick-wear parts) |
| Assembly State | Fully assembled |
Application Suitability
| Application | Material or Output |
|---|---|
| On-site interlocking block production for building contractors | Clay-based mix, pallet-free output stacked directly onto curing area |
| Small-scale interlocking brick plants | Full-clay or clay-cement proportioning with minimal auxiliary infrastructure |
| Adding interlocking formats alongside existing block lines | Compressed earth blocks at 16–21 MPa hydraulic pressure without pallet handling |
Why Upstream Feeding Determines Real Daily Output
A press cycling at 10-15 seconds means the mixer and feed hopper must deliver a fresh batch every cycle, or the machine sits idle waiting for material.
Capacity figures like 5760 pieces per day assume the interlocking block machine production line delivers raw mix without interruption. In my early QC years I watched a clay block line in Riyadh lose two full shifts because the pan mixer could not match the press rhythm — the operator stood idle while the hopper refilled. The bottleneck was never the press [NEED_CITE: line balancing principles for block production].
Raw Material Proportioning That Keeps Pace With the Press
The Eco master 7000 accepts two distinct mix designs: a clay-cement blend at 80-90% clay with 6-8% cement, or a full-clay formula at 97% clay with 3% water. Upstream batching equipment must handle whichever proportion the local soil demands, and the mixer discharge rate must align with the 10-15 second press cycle. When the interlocking block machine production line is configured with a correctly sized pan mixer and belt feeder, the hopper never runs dry between cycles.
Downstream Handling Without Pallets or Conveyors
Because the Eco master 7000 produces interlocking bricks without pallets, the line layout eliminates pallet return conveyors, pallet feeding stations and pallet stacking racks. Fresh-pressed blocks transfer directly from the mould to the curing area by hand or by a simple off-take belt. This removes an entire subsystem that frequently becomes the bottleneck on conventional lines — a problem I saw firsthand when a client in Saudi Arabia invested in a high-capacity press but undersized the pallet return system, leaving output piled on the floor [NEED_CITE: pallet handling constraints in block production].
How Hydraulic Pressure and Mix Design Interact
The 16–21 MPa hydraulic range must be set against the actual clay composition at your site. Soils with higher sand content generally require higher pressure to achieve adequate interlock and compressive strength, while pure clay mixes respond well at the lower end of the range. The vibration force — not stated on the current data sheet — should be confirmed during commissioning, because insufficient vibration combined with high pressure can cause mould wear without improving block density. Matching pressure to your local aggregate avoids inconsistent block strength across batches [NEED_CITE: hydraulic pressure settings for compressed earth blocks].
What Happens When Stations Are Sized Independently
When a buyer sources the mixer from one vendor and the press from another, cycle times rarely align. The mixer may discharge every 20 seconds while the press expects material every 12 seconds, forcing the operator to run the press on partial charges. Blocks pressed with incomplete mould fill show reduced density at the edges, and the interlocking fit degrades across the batch. I have seen entire housing projects delayed because block dimensions drifted out of tolerance during exactly this kind of mismatch [NEED_CITE: dimensional tolerance standards for interlocking masonry].
Why Configuration Matters at the Line Level
Every Eco master 7000 is specified against the buyer’s actual clay sample and target block format, not a catalogue default. The pallet-free design is evaluated together with your curing area dimensions and forklift type so that output handling does not become an afterthought. Voltage and frequency are confirmed before production to prevent commissioning delays on arrival, and the control language is set to your operator’s requirement. Line capacity calculations state the exact block format assumed, so the output figure you plan against matches the brick your market actually sells. Mould design covers the interlocking profiles your region demands, with custom drawings available for non-standard formats.
Documentation & Verification
- Line layout showing raw material feed path, mixer position and curing area relative to the press
- Capacity calculation sheet stating the 300×150×100mm or 250×125×60mm format assumed
- Voltage, frequency and control language confirmation record signed before production
- Factory test record on your specified clay-cement or full-clay mix ratio
- Hydraulic and electrical schematic for on-site troubleshooting
Installation, Commissioning & Support
- Fully assembled 1300 kg unit requires a level concrete pad sized to the 1660×1400 mm footprint
- 7.5 kW electric motor demands a dedicated 3-phase 380V circuit with correct breaker rating
- Diesel engine option available for sites without stable grid power
- Commissioning includes pressure adjustment between 16–21 MPa against your local clay sample
- Operator training covers mould change procedure for both listed interlocking formats
- Wear parts list identifies seals and mould liners with recommended replacement intervals
What to Include in Your Inquiry
Provide your target block format and the daily output your market demands so the interlocking block machine production line can be sized around a verified capacity figure. Share your local clay test results or soil composition so the mix ratio and hydraulic pressure setting are matched before production. Confirm your site voltage, frequency and the language your operators read, along with your curing area dimensions and any existing handling equipment you plan to retain.
Frequently Asked Questions
Q: How is daily output calculated and which block format does the capacity figure assume?
A: The 5760 pieces per day figure is based on either the 300×150×100mm or 250×125×60mm interlocking block at 2 pieces per mould and a cycle time within the 10–15 second range over an 8-hour shift. The broader 4000–6000 range lacks a stated format. Always verify output against your target block size before planning production schedules.
Q: What raw material feeding and mixing equipment keeps the press cycle uninterrupted?
A: The upstream mixer must discharge a fresh batch at least every 15 seconds to match the press cycle. A pan mixer sized to the mould volume, paired with a belt feeder or screw conveyor delivering proportioned clay and cement, prevents the hopper from running dry between cycles.
Q: Can the line run full-clay or clay-cement mix, and how does that affect upstream stations?
A: Both mix designs are supported. The clay-cement option requires a cement silo, weigh batcher and additional feed auger, while the full-clay mix simplifies upstream equipment to a clay feeder and water dosing pump. The choice affects both capital cost and mixer sizing.
Q: How does the pallet-free design affect downstream handling and curing layout?
A: Without pallets, freshly pressed blocks move directly from the mould to the curing zone, eliminating pallet return conveyors and pallet storage racks. Your curing area must be positioned adjacent to the press and sized for daily output, with clear forklift access for stacking and transport.