Hollow Block Making Machine Qtj4-25 – Complete Line
Automatic block machine
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Hollow Block Making Machine Qtj4-25 – Complete Line

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<p><strong>QTJ4-25 Automatic Block Machine, PLC Controlled, 850×480mm Pallet, 25s Molding Cycle</strong> — configured as a complete line where raw material feeding, pallet handling, and block stacking are synchronized with the press cycle so no station is left waiting.</p> <ul> <li>Vibration motor with large vibration box matched to hydraulic pressure for consistent block density across hollow and solid formats</li> <li>Siemens motor, thick steel frame, and fully automatic pallet feeding with stacker specified as one matched system</li> </ul> <p>Line layout and capacity calculation provided per your target block format, with voltage, frequency, and PLC language confirmed before production.</p>

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Airbag + 4 vibration motors
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Product Details

Synchronized Line Stations — Every station from raw material feeding to stacking is timed against the 25-second press cycle so the QTJ4-25 never idles waiting for the next pallet or batch.

Technical Specifications

Parameter Value
Model QTJ4-25
Product Type Automatic Concrete Block Making Machine
Control System PLC controlled fully automatic
Machine Power 16.58 kW
Molding Cycle 25 seconds
Capacity 4600 pcs / 8 hours (basis not stated in source — confirm block format and thickness)
Machine Weight 5000 kg
Overall Dimensions 6400 × 1500 × 2700 mm
Pallet Size 850 × 480 mm
Vibration System Vibration motor with large vibration box
Motor Siemens motor
Frame Thick steel construction
Voltage Configured to local voltage and frequency (confirm before production)
Automation Level Fully automatic — pallet feeding, material feeding and scraping, block stacking
Raw Materials Concrete, sand, cement, fly ash, crushed stone, lime, water
Block Formats Hollow blocks, solid blocks/bricks, paver stone bricks
Warranty One year

Application Suitability

Application Material or Output
Medium-capacity hollow block production Concrete, sand, cement, and crushed stone mix
Solid brick manufacturing for masonry walls Fly ash, lime, sand, and water blend
Paver stone brick production for walkways and yards Cement, crushed stone, and pigment mix
On-site block production for housing projects Locally sourced aggregate and cement

What "4600 Pieces per Shift" Actually Means on a Block Line

Capacity is meaningless without the block format and the station cycle times behind it.

Many buyers sign a contract for an automatic block machine production line quoting a headline output number, only to find on commissioning day that the mixer discharges slower than the press cycles, or that pallet return conveyors cannot keep pace. The press sits idle while operators wait for material, and real daily output drops well below the quoted figure. [NEED_CITE: common causes of throughput shortfall in concrete block plants] When we lay out an automatic block machine production line, every station — mixer discharge, material hopper feed, pallet circulation, stacker lift — is checked against the press cycle before the proposal is finalized.

QTJ4-25 automatic block machine production line with synchronized stations

Matching Every Station to the 25-Second Press Cycle

The QTJ4-25 completes one molding cycle in 25 seconds, which sets the tempo for every upstream and downstream station. If the raw material feeder delivers a batch in 30 seconds, the press loses five seconds per cycle and that gap compounds across an eight-hour shift. The automatic material feeding and scraping system on this line is specified to match or slightly exceed the press tempo, keeping the hopper charged without overflow.

Pallet Circulation and Stacking as Part of the Line

Finished blocks leave the press on 850 × 480 mm pallets, and the automatic block stacker lifts and aligns them for curing rack transfer. When pallet return speed lags behind the press cycle, the machine pauses and output drops. The pallet feeding mechanism here is timed so that a fresh pallet is in position before the press completes its current cycle. This synchronization is the defining difference between a press sold alone and a genuine automatic block machine production line. [NEED_CITE: pallet circulation design in block manufacturing lines]

Reading the Specs That Matter for Line Balance

The 16.58 kW total machine power covers the vibration motor, hydraulic pump, and conveyor drives running simultaneously, which is important when sizing the dedicated circuit at the plant. The Siemens motor specification ensures consistent torque delivery to the vibration box across long shifts. The PLC control system coordinates the sequence — pallet feed, material charge, vibration, press, scrape, stack — and any mismatch in timing parameters is visible on the display before it becomes a production loss. The thick steel frame absorbs vibration forces cycle after cycle, keeping alignment within tolerance over years of operation.

PLC control panel and vibration box assembly on the QTJ4-25

When One Undersized Station Cripples the Whole Line

A block plant I visited in West Africa had a press capable of steady output, but the small pan mixer they paired with it could not discharge fast enough to keep up. The operator stood idle for several seconds every cycle watching an empty hopper. Over a full shift, the line produced barely half its nameplate capacity. The fix was not a bigger press — it was replacing the mixer and adjusting the conveyor speed so every station moved in lockstep. [NEED_CITE: impact of bottleneck stations on block plant throughput]

Why Sourcing the Line Together Matters

Block machinery is our single focus, so the QTJ4-25 press, pallets, stacker, and feeding equipment are specified as one matched system rather than assembled from separate vendors. Each station’s cycle time is calculated against your target block format and local aggregate, not pulled from a generic catalog. Pallet size is confirmed against your existing curing area dimensions and forklift capacity before production begins. Voltage, frequency, and PLC display language are locked in at the order stage to avoid commissioning delays. The line layout document you receive shows capacity stated per block format, so you know exactly what to expect on day one.

Documentation & Verification

  • Line layout showing station positions and pallet flow path for the QTJ4-25
  • Capacity calculation sheet stating the block format assumed for the output figure
  • Pallet specification matched to your curing rack spacing and forklift fork width
  • Voltage, frequency, and PLC language confirmation recorded before production
  • Factory test record with cycle timing logged for each station
  • Hydraulic and electrical schematic for on-site troubleshooting

Installation, Commissioning & Support

  • Foundation pad sized to the 6400 × 1500 mm footprint with anchor bolt template
  • Dedicated circuit rated for 16.58 kW plus startup surge, wired to confirmed local voltage
  • Machine arrives with vibration box and hopper bolted in place; stacker assembled on site
  • PLC parameters for pallet feed timing and vibration duration set during first run
  • Operator training covers mould change procedure and stacker alignment adjustment
  • Wear parts list identifies vibration motor bearings and scraper blades by part number

Preparing Your Line Inquiry

To configure this automatic block machine production line around your actual conditions, share the block formats you plan to produce, the target daily output for each format, and the raw materials available locally. Confirm your plant voltage and frequency, the language your operators need on the PLC display, and the pallet handling equipment already on site. If you have an existing curing yard, note its dimensions so pallet size can be matched.

Frequently Asked Questions

Q: How is the 4600 pcs/8h capacity calculated and which block format does it assume?
A: The capacity figure is based on continuous operation over an eight-hour shift, but the source does not state which block format, wall thickness, or mix design it assumes. Before quoting, we calculate realistic output for your specific block format — a 400 × 200 × 200 mm hollow block cycles differently from a thin paver stone. The confirmed figure is stated in your proposal so there is no ambiguity at commissioning.

Q: Which line stations are included in the quotation?
A: The QTJ4-25 line includes the press, automatic material feeding and scraping system, pallet feeder, and block stacker. Mixing equipment, curing rack handling, and cubing systems are available as additional stations. Each station is specified so its cycle time aligns with the 25-second press cycle, and the scope is listed clearly in the quotation to avoid gaps on arrival.

Q: How do the cycle times of each station match so the press is not left waiting?
A: During line design, we map the discharge time of the mixer, the travel time of the material feeder, the pallet feed interval, and the stacker lift duration against the 25-second molding cycle. Any station that runs slower than the press is flagged and resized before the proposal is finalized, ensuring continuous operation without idle gaps between cycles.

Q: What pallet size is specified and does it match my existing curing area?
A: The standard pallet size for this line is 850 × 480 mm. Before production, we confirm this dimension against your curing rack spacing, yard layout, and forklift fork width. If your existing infrastructure requires a different pallet size, the frame and pallet feeder are adjusted to suit, and the revised specification is recorded in your order documentation.

Q: Can I start with semi-automatic pallet handling and upgrade later?
A: Yes. The line can be configured with manual pallet return at the start, and the automatic stacker and pallet feeder added later as production volume grows. The PLC control system supports both modes, and the upgrade involves mechanical additions rather than a full control replacement, keeping the investment incremental.

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