Qt10-15 Automatic Block Machine Production Line
Automatic block machine
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Qt10-15 Automatic Block Machine Production Line

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<p><strong>QT10-15 Automatic Block Machine, 1100×900 mm Pallet, 21 MPa Hydraulic Pressure, 60 kN Vibration Force</strong> — configured as a complete line with matched raw material feeding, mixing, pallet handling and stacking stations so cycle times align and the press is never left waiting for upstream or downstream equipment. Platform vibration frequency covers 2800–4500 r/min to match your local aggregate and mix design.</p> <ul> <li>PLC-controlled with person-machine conversation interface for batch-to-batch consistency across hollow blocks, pavers, kerbstones and interlocking formats</li> <li>Line layout, capacity calculation per block format, voltage and PLC language confirmed in writing before production begins</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-Line Engineering — The Qt10-15 is configured as a complete production line, with press cycle, pallet feeding, stacking and curing handling timed to eliminate station bottlenecks.

Technical Specifications

Parameter Value
Model Qt10-15
Product Type Automatic Concrete Block Making Machine
Overall Dimensions (L×W×H) 9350×2320×2950 mm
Rated Pressure 21 MPa
Main Vibration Form Platform Vibration
Vibration Frequency 2800~4500 r/min
Vibration Force 60 kN
Pallet Size 1100×900 mm
Molding Cycle 15-25 s (basis not stated in source — confirm block format / material / thickness)
Overall Power 44 kW
Total Mass 10 T
Demolding Method Hydraulic
General Water Consumption 8 T/Day
Factory Area 500 m²
Control System PLC with person-machine conversation interface
Automation Level Fully automatic production line
Applied Products Concrete blocks, hollow/solid blocks, pavers, interlocking blocks, curbstone, colored pavers
Raw Material Crushed stone, sand, cement, dust, fly ash, gravel, slag
Voltage & Frequency Configurable (confirm before commissioning)
PLC Display Language Configurable (confirm before production)
Stacking Method To be confirmed (manual or automatic)

Application Suitability

Application Material or Output
Hollow block production for load-bearing walls Crushed stone, sand, cement, fly ash blends
Solid block manufacturing for partition walls Gravel, cement, and local sand aggregates
Paver and colored paver runs Fine sand, cement, pigment, and slag mixes
Interlocking block and kerbstone forming Coarse aggregate with cement binder
Riverside and revetment brick production Heavy aggregate blends with high cement content
Grassed and porous brick for landscaping Open-graded aggregate with controlled moisture

What "Cycles Per Hour" Hides About Your Daily Output

Capacity only means something when the block format is named alongside it.

In my years planning lines across the Pearl River Delta, I have seen buyers sign off on an automatic block machine production line quoting impressive cycle counts, then arrive at the site to discover that figure assumed a small solid paver — not the 200 mm hollow block their market actually orders. The Qt10-15 molding cycle sits between 15 and 25 seconds, but that range spans thin pavers at the fast end and tall hollow blocks at the slow end. Without a format-specific capacity calculation, a plant owner cannot size the curing area, the pallet return conveyor, or the daily raw material delivery [NEED_CITE: block format assumptions in capacity quoting for concrete block machinery]. A 1100×900 mm pallet can carry different block counts depending on the mould loaded, and the automatic block machine production line must account for that variation at every downstream station.

Qt10-15 automatic block machine production line with PLC control and platform vibration system

Line Synchronization from Raw Feed to Curing Rack

The Qt10-15 press completes a cycle every 15 to 25 seconds, which means the mixer must deliver a fresh batch to the hopper within that window, the pallet feeder must slide a clean pallet under the mould before the next press stroke, and the stacker must clear cured pallets before they back up at the press exit. When any one of these stations runs slower than the press, the entire automatic block machine production line throttles down to the pace of its slowest link. Matching the PLC-controlled batching accuracy to the press cycle prevents the hopper from running dry mid-stroke, which causes inconsistent fill and weak blocks.

Pallet Handling and Curing Area Alignment

A 1100×900 mm pallet loaded with wet blocks weighs considerably more than an empty one, and the forklift serving the curing area must handle that loaded weight at the rate the press produces them. If the curing rack spacing was designed around a different pallet dimension, blocks will sit on the floor waiting for rack space, and the automatic block machine production line output piles up in aisles instead of curing under controlled conditions [NEED_CITE: pallet and curing rack dimensional coordination in block plants]. The pallet material — whether hardwood, bamboo, or composite — also affects how cleanly blocks release after curing and how many cycles a pallet survives before warping.

Pressure, Vibration, and Block Density

The 21 MPa rated hydraulic pressure and 60 kN vibration force on the Qt10-15 work together: vibration settles the aggregate into the mould cavity, while hydraulic pressure compresses it to final density. A mix with high fly ash content flows differently from one with coarse crushed stone, so the 2800–4500 r/min vibration frequency range allows the operator to tune compaction to the local aggregate. If the vibration is set too high for a fine-sand mix, the material liquefies and blocks emerge with soft edges; too low for a gravel-heavy mix and voids remain inside the block, reducing compressive strength [NEED_CITE: vibration frequency and hydraulic pressure interaction in concrete block forming]. The PLC person-machine conversation interface lets operators store and recall settings for each format, keeping batch-to-batch density consistent across shifts.

PLC control panel and hydraulic valve block on Qt10-15 block making press

The Cost of Misaligned Stations Downstream

I once configured a line where the host press ran at full speed but the stacker was an older model rated for a slower cycle. Within two hours, pallets jammed at the exit conveyor, operators were pulling them off by hand, and the press sat idle for half the shift. When a buyer purchases the Qt10-15 without confirming the stacker, pallet return, and curing rack handling as part of the same quotation, those missing stations become field improvisations — usually at higher cost and lower reliability than factory-matched equipment [NEED_CITE: consequences of unmatched line stations in block production]. The 44 kW overall power draw also demands a dedicated circuit; sharing a feeder with the mixer can cause voltage dips that trip the PLC mid-cycle.

Why Procure This Line Here

Block machinery is the single focus of the workshop, so the Qt10-15 press, its moulds, pallets, and handling equipment are specified as one matched system rather than assembled from separate suppliers. The configuration starts from the buyer’s actual mix design and local aggregate, not a catalogue default, which means vibration force and hydraulic pressure are set to produce the block strength the buyer’s market requires. Moulds are designed for the formats the buyer actually sells, including custom drawings when a non-standard kerbstone or interlocking profile is needed. Automation level is selectable, allowing a buyer to begin with semi-automatic pallet handling and add the full automatic block machine production line stacker later. Factory testing runs the complete line before dispatch, catching timing mismatches that would otherwise surface on the buyer’s floor.

Documentation & Verification

  • Line layout drawing with capacity calculated per block format, not a single headline figure
  • Machine specification sheet covering the 21 MPa pressure, 60 kN vibration, and 44 kW power rating
  • Mould drawing and format list for every block type included in the order
  • Pallet specification matched to buyer’s curing rack dimensions and forklift load capacity
  • Hydraulic and electrical schematic for on-site troubleshooting and spare parts ordering
  • Factory test record showing cycle timing across all ordered block formats before shipment

Installation, Commissioning & Support

  • Foundation plan accounts for the 9350×2320 mm press footprint and vibration isolation requirements
  • Electrical hookup specifies dedicated circuit capacity for the 44 kW overall power draw
  • Press arrives partially dismantled for container loading; reassembly sequence documented in the manual
  • First-run commissioning includes PLC parameter tuning for the buyer’s confirmed mix design and block format
  • Operator training covers mould change procedure, pallet loading, and PLC fault diagnosis
  • Wear parts and mould list provided so spares can be ordered before the first replacement is due

What to Include in Your Inquiry

To size the Qt10-15 and its supporting stations accurately, provide the block formats you plan to produce along with target daily output for each. Confirm your local voltage and frequency, the PLC display language your operators need, and the dimensions of your existing curing racks and forklift capacity. If you already operate a mixer or pallet return system upstream or downstream, share its cycle time so the automatic block machine production line can be synchronized before production begins.

Frequently Asked Questions

Q: How is daily output calculated, and which block format does each capacity figure assume?
A: Output is calculated by multiplying the molding cycle per format by the number of blocks per pallet, then by operating hours. The 15–25 second cycle range covers different formats, so a hollow block will yield fewer pieces per hour than a thin paver. We state capacity per format in the proposal, not as a single catalogue number.

Q: How do the mixer, pallet feeder, and stacker cycle times align with the Qt10-15 press?
A: Each supporting station is timed against the 15–25 second press cycle during line layout design. The mixer batch delivery, pallet feed stroke, and stacker clearance rate are all specified so no station forces the press to idle between cycles.

Q: Is pallet handling, stacking, and curing included in the line quotation?
A: These stations are included when specified in the proposal. Buyers should confirm whether the quotation covers only the press or the full line from raw material feeding through stacking, so there are no missing stations at installation.

Q: What raw material feed configuration suits my local aggregate?
A: The feed configuration depends on whether your aggregate is fine sand, coarse crushed stone, or a fly ash blend. We match the hopper gate, conveyor type, and mixer cycle to your confirmed mix design so the press hopper stays filled without overflow.

Q: How is the 500 m² factory area distributed across the production stages?
A: The 500 m² covers raw material storage, the pressing area around the 9350×2320 mm machine, curing rack space, and finished block staging. The exact split depends on your block formats, pallet size, and daily output target.

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