Cement Hollow Block Mobile Block Machine QMY6-25 | Complete Line
Mobile block machine
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Cement Hollow Block Mobile Block Machine QMY6-25 | Complete Line

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<p><strong>QMY6-25 Mobile Egg-Laying Block Machine, 9.6 kW, 25–30 s Cycle</strong> — lays hollow and solid blocks directly on the ground without pallets, using three-dimensional vibration at 3200 Hz for consistent density.</p> <ul> <li>Hydraulic steering and automatic travel let one operator run the press along the production bed</li> <li>Upstream mixer discharge rate and downstream curing area must be sized to the 25–30 s moulding cycle so the press is never left waiting</li> </ul> <p>We size the mixer and curing layout to your actual block format and site conditions, not a catalogue default.</p>

European Design
Airbag + 4 vibration motors
320+ Engineers
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Tailored to local materials
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Spare parts 7-day delivery
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Product Details

Complete Line Synchronization — Every station around the QMY6-25 mobile egg-laying block machine is specified so the mixer, press, and curing area run at the same rhythm without manual intervention between cycles.

Technical Specifications

Parameter Value
Model QMY6-25
Product Type Mobile Egg-Laying Concrete Block Making Machine
Main Vibration Form Three-dimensional excitation
Vibration Frequency 3200 Hz
Overall Power 9.6 kW
Moving Method Automatically move and hydraulic steering
Overall Dimensions (L×W×H) 2000 × 2100 × 1650 mm
Moulding Cycle 25–30 s
Pallet Requirement No pallet required (egg-laying / mobile type)
Output Capacity (400×200×200mm Hollow Block) 1080 pcs/h, 8600 pcs/shift (8h)
Output Capacity (400×150×200mm Hollow Block) 1260 pcs/h, 10000 pcs/shift (8h)
Output Capacity (400×120×200mm Solid Block) 1620 pcs/h, 12960 pcs/shift (8h)
Output Capacity (400×100×200mm Solid Block) 1800 pcs/h, 14400 pcs/shift (8h)
Operator Requirement Single-person operation
Automation Level Semi-automatic (mobile, egg-laying)
Voltage & Frequency Configurable to site requirement (basis to be confirmed)
Warranty 1 year for the whole machine (excluding spare parts)

Application Suitability

Application Material or Output
On-site hollow block production for housing projects Crushed stone, sand, cement, and water mixed to local aggregate gradation
Small-scale solid block manufacturing Crusher dust, river sand, and cement without pallet infrastructure
Supplementary mobile production for existing plants Standard concrete mixes laid directly on a leveled concrete floor
First plant setup for entrepreneurs Locally sourced aggregate with basic mixer feeding into the mobile press

Why the Mixer Discharge Height Must Match the Press Hopper

A mobile block machine production line stalls the moment the upstream mixer cannot gravity-feed the press hopper at the cycle rhythm.

I once watched a QMY-class egg-laying block machine supporting equipment setup in West Africa where the pan mixer sat on a flat slab while the press hopper required a raised discharge point. The crew ended up shoveling mix by hand, and the 25–30 second moulding cycle stretched to over a minute because the operator waited for each shovel load. The machine itself never ran at its rated tempo. Before any mobile press leaves the factory, the elevation drawing of every upstream and downstream interface must be locked down [NEED_CITE: typical site preparation standards for mobile block production].

QMY6-25 mobile egg-laying block machine on a production bed with mixer and curing area

Line Rhythm Starts at the Mixer Outlet

A mobile block machine production line is only as fast as its slowest handoff. The QMY6-25 completes a moulding cycle every 25–30 seconds, which means the mixer must deliver a fresh batch to the hopper within that same window. If the mixer batch size is too small, the press idles; if it is too large, the mix begins to set before it enters the mould. Matching batch volume to hopper capacity and discharge height to gravity feed is the first calculation in any egg-laying block machine supporting equipment plan.

Curing Space Dictates Daily Ceiling

Because the QMY6-25 lays blocks directly on the ground, the production bed length and curing area footprint set the real daily output ceiling. Once the bed is full, production stops until cured blocks are moved. Planning the curing rack or open-air yard area around the shift output — 8600 pieces of 400×200×200mm hollow blocks per 8-hour shift — prevents the press from out-running the available floor space [NEED_CITE: curing time requirements for concrete masonry units].

Removing the Pallet Loop from the Line

The egg-laying design eliminates the pallet purchase, the pallet return conveyor, and the pallet cleaning station that a static plant requires. This simplifies the mobile block machine production line to three core stations: mixing, pressing, and curing. Fewer stations mean fewer interfaces where a height mismatch or timing gap can break the cycle. The trade-off is that the ground surface must be level and strong enough to support green blocks without deformation.

Reading the Vibration and Power Data

Three-dimensional excitation at 3200 Hz is the specification that determines block density on this mobile platform. Unlike a static press that relies on a massive hydraulic ram, a mobile egg-laying block machine supporting equipment configuration uses high-frequency vibration to compact the mix inside a lighter mould frame. The hydraulic system on the QMY6-25 handles steering and travel rather than pressing force, so the vibration motor rating and frequency are the numbers to check against your mix design and target block strength. The 9.6 kW overall power figure includes the vibration motor, travel motor, and control circuits — a relatively low draw that allows generator-powered operation on remote sites where grid supply is unreliable.

Hydraulic steering assembly and vibration motor detail on the QMY6-25

What Happens When Line Interfaces Are Ignored

When the mixer discharge, press hopper, and curing area are not dimensioned as a single system, the mobile block machine production line develops bottlenecks that no amount of operator effort can clear. The press waits for mix, the crew manually shovels material, and cured blocks pile up because no handling plan was made to move them off the production bed. These are not machine defects; they are line design gaps that surface only after arrival [NEED_CITE: common commissioning delays in mobile block plant installations].

What This Purchase Includes Beyond the Press

Block machinery is the single focus here, so the QMY6-25 is specified as the press station within a broader mobile block machine production line rather than sold as a standalone island. Configuration is set against your actual mix design, local aggregate, and target block format instead of a catalogue default. Mould design covers the formats your market sells, with custom drawings available for non-standard sizes. Automation level is selectable so a buyer can start with single-person semi-automatic operation and add feeding or handling stations later. Installation support includes operator training on-site so the crew understands cycle timing and mould change procedure from day one.

Documentation & Verification

  • Line layout drawing with elevation marks for mixer discharge and press hopper interface
  • Capacity calculation sheet stating block format assumed for each output figure
  • Mould drawing and format list for every mould included in the shipment
  • Voltage, frequency, and control language confirmation record before dispatch
  • Factory test record run on your specified block format and mix proportion
  • Hydraulic and electrical schematic for local maintenance reference

Installation, Commissioning & Support

  • Leveled concrete production bed required; overall machine footprint is 2000 × 2100 mm
  • 9.6 kW total draw — confirm site voltage and frequency before production starts
  • Machine ships assembled; hydraulic steering tested at factory before container loading
  • On-site commissioning covers first-cycle parameter setting for your local aggregate
  • Operator training includes mould change procedure and daily vibration motor inspection
  • Wear parts list and mould maintenance schedule provided at handover

Preparing Your Inquiry

To size the egg-laying block machine supporting equipment around your project, share the block formats you plan to produce, the daily shift output you need, and the local aggregate available. Include your site voltage and frequency, the production bed dimensions you can allocate, and any existing mixer or handling equipment already on the ground. If you have a project deadline, state it so lead time and dispatch scheduling can be confirmed upfront.

Frequently Asked Questions

Q: How do I verify realistic daily output for my block format on this mobile machine?
A: The published output figures — such as 8600 pieces per 8-hour shift for 400×200×200mm hollow blocks — assume a specific moulding cycle and uninterrupted material feed. Ask for a capacity calculation that states your exact block format, the cycle time for that mould, and the mixer discharge rate needed to sustain it without press idle time.

Q: What mixer capacity prevents the QMY6-25 from waiting between cycles?
A: The 25–30 second moulding cycle means the mixer must deliver a batch within that window. The mixer batch volume should match the hopper capacity, and the discharge height must allow gravity feed. Provide your mixer model and discharge elevation so the line layout can confirm the interface before shipment.

Q: Does this mobile machine need supporting equipment to run a complete line?
A: The press itself is pallet-free and self-propelled, but a complete mobile block machine production line requires a mixer, a raw material feed method, and a curing area plan. Each station must be dimensioned so that cycle times align and the press is never left waiting for mix or floor space.

Q: What electrical details must be confirmed before the machine ships?
A: Voltage, frequency, and control display language must be locked before production. A mismatch delays commissioning and may require on-site rewiring. Provide your site supply specification so the motor and control panel are built to match, and confirm whether the control system is PLC-based or relay logic.

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