QMY10-15 Mobile Hydraulic Block Making Machine | Production Line
Automatic block machine
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QMY10-15 Mobile Hydraulic Block Making Machine | Production Line

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<p><strong>QMY10-15 Mobile Hydraulic Block Making Machine, Siemens Motor, Heat-Treated Moulds</strong> — pallet-free egg-laying operation eliminates pallet feeding and return stations, simplifying the line to mixer, press and curing area. Hydraulic pressure and vibration force are matched to your local aggregate and mix design so block density stays consistent across continuous laying cycles in 100–200 mm hollow formats.</p> <ul> <li>15–20s cycle across four hollow block sizes with output stated per format</li> <li>Machine, mould and handling specified as one matched system, not assembled from separate suppliers</li> <li>Installation and commissioning support with operator training included</li> </ul>

European Design
Airbag + 4 vibration motors
320+ Engineers
Full after-sales support
Custom Solutions
Tailored to local materials
Fast Dispatch
Spare parts 7-day delivery
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Product Details

Matched System Layout — every mixer, laying cycle and curing zone is planned around the QMY10-15 so no station waits on another.

Technical Specifications

Parameter Value
Model QMY10-15
Product Type Mobile Hydraulic Block Making Machine
Machine Type Mobile (egg-laying) block machine
Motor Siemens motor
Hydraulic Pressure Present (exact MPa to be confirmed)
Vibration Force Present (exact kN to be confirmed)
Pallet Size Not required (pallet-free mobile operation)
Cycle Time 15–20s (basis: hollow block formats listed below)
Mould Treatment Heat treatment for extended service life
Automation Level Full-automatic
Control System To be confirmed (PLC brand and language options)
Voltage & Frequency To be confirmed with manufacturer
Overall Dimensions To be confirmed
Net Weight To be confirmed
Assembly State Mobile unit, no fixed plant required
Key Features Pallet-free laying, hydraulic pressure with vibration, heat-treated moulds, Siemens motor drive

Mould Format & Capacity

Block Format Pcs/Mould Cycle Pcs/Hour Pcs/8hr
400×200×200 mm hollow block 10 15–20s 1,800–2,400 14,400–19,200
400×150×200 mm hollow block 12 15–20s 2,160–2,880 17,280–23,040
400×120×200 mm hollow block 16 15–20s 2,880–3,840 23,040–30,720
400×100×200 mm hollow block 18 15–20s 3,240–4,320 25,920–34,560

Application Suitability

Application Material or Output
On-site hollow block production Crushed stone, sand, cement without fixed plant or pallet infrastructure
Construction contractor project sites 100 mm to 200 mm wall thickness hollow blocks laid directly on prepared ground
First-time block plant startups Lower-investment mobile line with mixer and curing area planning
Remote or temporary job sites Mobile hollow block formats alongside an existing fixed plant operation

What "14,400 Blocks per Shift" Actually Requires on the Ground

A mobile block making machine production line only reaches its rated cycle when the mixer output, laying pace and curing area are calculated as one system.

I once laid out a line for a West African contractor where the press cycle was dialed in perfectly, but the pan mixer batch size was too small for the 15–20 second laying rhythm. The QMY10-15 sat idle between lays waiting for the next mix, and daily output dropped to roughly half the quoted figure. The egg-laying block machine supporting equipment — the mixer, the raw material feed, the curing zone — must all match the press cadence. When they do not, the bottleneck simply moves upstream [NEED_CITE: line throughput calculation methods for mobile block production].

QMY10-15 mobile block making machine production line showing mixer, press and curing area layout

Mixer-to-Press Cadence Alignment

The QMY10-15 lays a mould every 15–20 seconds, which means the mixer must deliver a fresh batch of concrete to the machine hopper within that same window. A mobile block making machine production line built around this press needs a mixer with a discharge rate that matches the volume consumed per cycle across all four hollow block formats. If the mixer takes 45 seconds to discharge while the press cycles in 15, two out of every three cycles are lost to material starvation.

Curing Area Sizing Against Format Output

An egg-laying block machine leaves freshly pressed blocks directly on the ground, so the curing area must be large enough to hold the full shift output without overlapping or stacking before initial set. For the 400×200×200 mm format producing up to 19,200 pieces per 8-hour shift, the required ground area is substantial. Planning the curing zone dimensions and surface preparation before the machine arrives prevents the common situation where blocks are stacked prematurely and crack under their own weight [NEED_CITE: concrete block curing area planning standards].

Reading the Specification Sheet for Line Planning

Hydraulic pressure and vibration force together determine the density and compressive strength of each block the QMY10-15 lays. Higher vibration force compacts the aggregate mix more tightly, but without sufficient hydraulic pressure the mould fill remains uneven, producing blocks with weak corners. The heat-treated moulds maintain dimensional accuracy across thousands of cycles, which matters when laying directly on uneven ground where tolerance stack-up is less forgiving than a fixed pallet system. The Siemens motor provides consistent drive torque for sustained vibration across continuous laying shifts, reducing the risk of density drop-off as the motor heats up.

QMY10-15 hydraulic pressure and vibration system detail with Siemens motor

The Cost of Ignoring Line Station Balance

When the mixer capacity is undersized for the QMY10-15 cycle, operators sometimes compensate by running the press at a slower pace, which changes the vibration compaction profile and produces blocks with inconsistent density. When the curing area is too small, blocks get moved before initial set, and surface damage pushes the reject rate higher across the shift. These problems do not show up in the machine quotation because they live in the spaces between stations [NEED_CITE: common causes of block quality inconsistency in mobile production].

Why Plan the Line Here

Block machinery is the single focus, so the QMY10-15 is specified alongside the mixer, raw material feed and curing layout as a matched system rather than a standalone press dropped into an unprepared site. Configuration is set against the buyer’s actual mix design and local aggregate, not a catalogue default, which prevents the situation where a machine arrives configured for a material the site cannot source. Mould design covers the hollow block formats the buyer’s market actually sells, including custom drawings when standard formats do not match local demand. Installation and commissioning support includes operator training on maintaining the laying rhythm and recognizing when upstream feed is falling behind. Documentation ships with the factory test record so the buyer can verify cycle times against their chosen format before the machine leaves the workshop.

Documentation & Verification

  • Line layout showing mixer output matched to QMY10-15 cycle time per block format
  • Machine specification sheet with hydraulic pressure and vibration force ratings
  • Mould drawing and format list for all four hollow block sizes
  • Heat-treated mould specification and wear parts list
  • Voltage and control language confirmation record before dispatch
  • Factory test record on buyer’s chosen block format

Installation, Commissioning & Support

  • Prepared ground surface required for pallet-free laying across the full curing zone
  • Voltage and frequency confirmed before production to match site power supply
  • Mobile unit arrives assembled, reducing on-site setup to positioning and power connection
  • Commissioning includes first-run cycle timing verified against chosen hollow block format
  • Operator training covers mixer-to-press feed rhythm and mould change procedure
  • Heat-treated mould wear parts list provided for first replacement planning

Before You Send the Inquiry

To size the egg-laying block machine supporting equipment around the QMY10-15, we need the target hollow block format and the daily output you plan to run. Share the local aggregate type and cement availability so the mixer and feed system are configured for materials you can actually source. Confirm the site voltage, frequency and preferred control language so commissioning is not delayed after arrival.

Frequently Asked Questions

Q: How is realistic daily output calculated for the QMY10-15 across different hollow block formats?

A: Each format has a different piece count per mould — from 10 for the 200 mm wall to 18 for the 100 mm wall — and the 15–20 second cycle applies to all four. Daily output is calculated by multiplying pieces per mould by achievable cycles per hour, factoring in mixer discharge time and operator lay intervals, not just the press cycle alone.

Q: What mixer capacity and feed rate keep up with the 15–20 second laying cycle?

A: The mixer must deliver a batch volume equal to one mould fill within the cycle window. For the QMY10-15 producing 400×200×200 mm blocks, this means the pan mixer discharge rate and hopper refill sequence must be timed so the press never waits on material between consecutive lays.

Q: How much curing area is needed based on block format and local climate?

A: The 400×200×200 mm format produces up to 19,200 blocks per 8-hour shift, each occupying ground space until initial set. In hot or dry climates, curing duration may shorten but water demand increases, so the area calculation must account for both block footprint and access paths for watering.

Q: Can the QMY10-15 integrate with upstream batching as a coordinated line?

A: Yes. The mobile block making machine production line is planned with raw material feeding, mixing and laying pace calculated as connected stations. The batching system is sized so that aggregate and cement delivery matches the press consumption rate across the chosen format.

Q: What voltage, frequency and control language must be confirmed before shipping?

A: The QMY10-15 motor and control system must match the site power supply exactly. Voltage and frequency are confirmed during the proposal stage, and the PLC display language is set to the operator’s working language so commissioning proceeds without translation delays on site.

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