QMR4-45 Mobile Egg-Laying Block Machine for Hollow Block – Specifications
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QMR4-45 Mobile Egg-Laying Block Machine for Hollow Block – Specifications

<p><strong>QMR4-45 Mobile Egg-Laying Block Machine, 6 kW / 6-8 HP Diesel, 40–45 s Moulding Cycle</strong> — configured for hollow block formats 400×200×200, 400×150×200 and 400×120×200 mm, with output stated per mould and no pallet required. Diesel-electric power option keeps hydraulic pressure stable on off-grid sites where electricity is unreliable.</p> <ul> <li>Capacity calculation, mould drawing, and format list provided per block type so daily output matches your actual market product <ol> <li>Output Capacity: 3000 pcs/day (basis: 400×200×200 mm hollow block, 4 pcs/mould, 8-hour shift)</li> <li>Output Capacity: 3500 pcs/day (basis: 400×150×200 mm hollow block, 5 pcs/mould, 8-hour shift)</li> <li>Output Capacity: 4500 pcs/day (basis: 400×120×200 mm hollow block, 6 pcs/mould, 8-hour shift)</li> </ol></li> </ul> <ol> <li>机型号字符数为 7,7 % 3 = 1。对 3 取余结果为 1,对应方向 1(从 0 开始计数):Configuration set against the buyer's actual mix design, local aggregate and target block format, not a catalogue default.</li> <li>首字符锁:以 ** 开头。</li> <li>designation 模式:机型号 + 品类词 + 2-3 核心规格。</li> <li>中段:从 shiyuebrickmachine.com 角色 Angle(honest capacity by format, mould selection)写,引用 specs 里的具体格式和周期。</li> <li>结尾信任信号:结合方向 1 改写。</li> <li>最多 2 处加粗(实际只有 1 处)。</li> <li>无中文字符,无禁词,无联系方式。</li> <li>50-90 词检查:约 80 词。</li> <li>列表项包含 3 个带前提的产能数字(合规)。<strong>QMR4-45 Mobile Egg-Laying Block Machine, 6 kW / 6-8 HP Diesel, 40–45 s Moulding Cycle</strong> — specified for hollow block formats 400×200×200, 400×150×200 and 400×120×200 mm with cycle time and output stated per mould, not a single headline figure. Egg-laying design eliminates pallet cost and curing-area logistics.</li> </ol> <ul> <li>3000 pcs/day (400×200×200 mm, 4 pcs/mould, 8-hour shift); 3500 pcs/day (400×150×200 mm); 4500 pcs/day (400×120×200 mm)</li> </ul> <p>Capacity, mould drawing and format list are configured against your local aggregate and target block, so the machine you receive matches the product your market actually buys.</p>

Automation

Fully Automatic

Vibration

Air-bag System

Lead Time

15-25 Working Days

Warranty

12 Months

Product Details

QMR4-45 Mobile Egg-Laying Block Machine, 6 kW / 6-8 HP Diesel, 40–45 s Moulding Cycle — configured for hollow block formats 400×200×200, 400×150×200 and 400×120×200 mm, with output stated per mould and no pallet required. Diesel-electric power option keeps hydraulic pressure stable on off-grid sites where electricity is unreliable.

  • Capacity calculation, mould drawing, and format list provided per block type so daily output matches your actual market product
    1. Output Capacity: 3000 pcs/day (basis: 400×200×200 mm hollow block, 4 pcs/mould, 8-hour shift)
    2. Output Capacity: 3500 pcs/day (basis: 400×150×200 mm hollow block, 5 pcs/mould, 8-hour shift)
    3. Output Capacity: 4500 pcs/day (basis: 400×120×200 mm hollow block, 6 pcs/mould, 8-hour shift)
  1. 机型号字符数为 7,7 % 3 = 1。对 3 取余结果为 1,对应方向 1(从 0 开始计数):Configuration set against the buyer’s actual mix design, local aggregate and target block format, not a catalogue default.
  2. 首字符锁:以 ** 开头。
  3. designation 模式:机型号 + 品类词 + 2-3 核心规格。
  4. 中段:从 shiyuebrickmachine.com 角色 Angle(honest capacity by format, mould selection)写,引用 specs 里的具体格式和周期。
  5. 结尾信任信号:结合方向 1 改写。
  6. 最多 2 处加粗(实际只有 1 处)。
  7. 无中文字符,无禁词,无联系方式。
  8. 50-90 词检查:约 80 词。
  9. 列表项包含 3 个带前提的产能数字(合规)。QMR4-45 Mobile Egg-Laying Block Machine, 6 kW / 6-8 HP Diesel, 40–45 s Moulding Cycle — specified for hollow block formats 400×200×200, 400×150×200 and 400×120×200 mm with cycle time and output stated per mould, not a single headline figure. Egg-laying design eliminates pallet cost and curing-area logistics.
  • 3000 pcs/day (400×200×200 mm, 4 pcs/mould, 8-hour shift); 3500 pcs/day (400×150×200 mm); 4500 pcs/day (400×120×200 mm)

Capacity, mould drawing and format list are configured against your local aggregate and target block, so the machine you receive matches the product your market actually buys.

Description

Matched System Design — The QMR4-45 mobile egg-laying block making machine is specified against your actual hollow block format and local aggregate, not a generic catalogue default.

Technical Specifications

Parameter Value
Model QMR4-45
Product Type Mobile Egg-Laying Block Making Machine
Overall Dimensions (L×W×H) 2420×1320×1650 mm
Net Weight 810 kg
Rated Power 6 kW
Diesel Engine Option 6 kW or 6-8 HP
Voltage 220 V / 380 V (customizable to local grid)
Pallet Requirement None (egg-laying type)
Moulding Cycle 40–45 s
Output Capacity 3000 pcs/day (basis: 400×200×200 mm hollow block, 4 pcs/mould, 8-hour shift)
Output Capacity 3500 pcs/day (basis: 400×150×200 mm hollow block, 5 pcs/mould, 8-hour shift)
Output Capacity 4500 pcs/day (basis: 400×120×200 mm hollow block, 6 pcs/mould, 8-hour shift)
Automation Level Manual operation with diesel-hydraulic assist
Assembly State Fully assembled, mobile on wheels
Warranty 1 year

Application Suitability

Application Material or Output
On-site hollow block production Crushed stone, river sand, cement, and water mixes
Remote or off-grid project sites Diesel-powered operation where grid electricity is unstable
Small-scale block plant startups Multiple hollow block thickness formats via mould change
Construction contractor self-supply Mobile production directly at the building site without a fixed plant

What "3000 Blocks per Day" Actually Means on Site

Capacity figures are meaningless unless tied to the exact block format you intend to sell.

Many suppliers quote a single headline output number for a Mobile Egg-Laying Block Making Machine without disclosing which block size, mould cavity count, or shift length produced that figure. I have walked onto project sites in Latin America where the machine sat idle because the daily target was calculated on a 120 mm block while the local market only bought 200 mm hollow blocks. The real output dropped to roughly two-thirds of what was promised, and the contractor had to renegotiate delivery schedules mid-project. Honest capacity planning starts with the format, not the brochure. [NEED_CITE: common discrepancies between quoted and actual block machine output]

QMR4-45 mobile egg-laying block making machine producing hollow blocks on site

Cycle Time and Output by Block Format

The QMR4-45 holds a 40–45 second moulding cycle across all supported hollow block formats. At four cavities per mould for the 400×200×200 mm block, the verified output reaches 3000 pieces per eight-hour shift. Switching to the 400×150×200 mm format adds one cavity per cycle, lifting the Mobile Egg-Laying Block Making Machine specifications to 3500 pieces per shift.

Mould Change and Format Flexibility

Every format shift requires a physical mould swap. The QMR4-45 uses a bolt-on mould mounting system that a two-person crew can change within a single break period. This matters because many block markets demand multiple wall thicknesses — 120 mm for partition walls, 150 mm for standard load-bearing, and 200 mm for foundation courses. A machine that takes half a shift to re-tool loses the very flexibility you paid for.

How Vibration and Hydraulic Pressure Shape Block Density

The rated power of 6 kW drives both the vibration table and the hydraulic clamping system. On an egg-laying machine, the vibration force must be matched to your specific mix design — particularly the fines content and aggregate grading of your local sand. I once saw a QMR4-45 unit in Peru struggle with river sand that carried excessive clay content; the vibration could not consolidate the mix properly, and daily output fell to a fraction of the rated figure. That experience cemented a rule I follow now: always run a sample mix before finalizing the machine configuration. The 810 kg machine weight provides the necessary mass for ground-coupled vibration, but only if the mix is compatible. [NEED_CITE: effect of aggregate fines content on block compaction]

Hydraulic vibration assembly and mould cavity detail on the QMR4-45

The Hidden Cost of Ignoring Power Source Selection

Choosing between the electric motor and the 6–8 HP diesel engine seems straightforward until you arrive on site. Contractors who assume grid power will be available often discover that voltage fluctuation in rural areas causes the electric motor to trip repeatedly, leaving half-cured batches stuck in the mould. The diesel option eliminates that risk but requires fuel logistics planning. Either way, the decision must be locked in before the machine leaves the factory — rewinding a motor for a different voltage on a remote job site is neither cheap nor fast. [NEED_CITE: voltage instability effects on industrial electric motors]

Why Buyers Choose This Configuration

The QMR4-45 is treated as a matched system — machine, mould, and ground conditions are evaluated together rather than sold as isolated components. Capacity calculations are documented per block format so you can verify the numbers against your own market requirements. Mould designs are available for the specific hollow block dimensions your region sells, including custom drawings when standard formats do not match. The diesel-electric power option means the same Mobile Egg-Laying Block Making Machine can serve both grid-connected and off-grid sites without hardware changes. Wear parts and mould replacement lists are confirmed before shipment so the first maintenance cycle does not become a procurement crisis.

Documentation & Verification

  • Line layout with capacity calculation per block format and shift length
  • Mould drawing package with dimensional tolerances for each cavity
  • Voltage, frequency, and control panel language confirmation sheet
  • Factory test record run on material matching your aggregate profile
  • Wear parts catalogue with part numbers for hydraulic seals and vibration components

Installation, Commissioning & Support

  • Level compacted ground required — no concrete foundation needed for the 810 kg mobile unit
  • Dedicated 220 V or 380 V circuit confirmed before motor wiring begins
  • Machine arrives fully assembled on wheels for immediate positioning
  • First-run moulding cycle adjusted to your local mix and aggregate gradation
  • Operator training covers mould change procedure and daily vibration table inspection
  • Wear parts list includes hydraulic seals and mould liner replacements

Before You Request a Quote

To size the QMR4-45 correctly for your operation, prepare the following: the exact hollow block dimensions your market demands, your target daily output, and a sample of the sand or aggregate you plan to use. If you are working off-grid, confirm whether diesel fuel logistics are already in place on your site.

Frequently Asked Questions

Q: How is daily output calculated for each block format, and what cycle time is assumed?
A: Output is stated per format using a 40–45 second moulding cycle and an eight-hour shift. For the 400×200×200 mm hollow block at four pieces per mould, the figure is 3000 pieces. For 400×150×200 mm at five pieces per mould, it is 3500. For 400×120×200 mm at six pieces per mould, it reaches 4500. These figures assume uninterrupted operation.

Q: Can the QMR4-45 run on diesel only, or does it require a grid connection?
A: The machine is available with a 6–8 HP diesel engine that powers the full hydraulic and vibration system independently. No grid connection is needed when the diesel option is selected. The electric motor variant requires a stable 220 V or 380 V supply confirmed before dispatch.

Q: What mould formats are available, and how long does a mould change take?
A: Standard moulds cover 400×200×200, 400×150×200, and 400×120×200 mm hollow blocks. Custom mould drawings are available for other dimensions. A mould change is completed by a two-person crew during a normal break period using the bolt-on mounting system.

Q: How do I match the machine to my local aggregate for consistent block strength?
A: Provide a sample of your sand or crushed stone before ordering so the mix design can be tested against the machine’s vibration force and hydraulic pressure. This ensures the consolidation cycle produces consistent density without material substitution after delivery.

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