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How Much Foam Can a Vertical Foaming Machine Make per Batch? The IF-FV01/02 Capacity Guide

How much foam a vertical foaming machine can make per batch: 150 and 180 kg tiers at 11-15 kW, high-low speed stirring, and a capacity selection model for growing foam workshops.
Aug 7th,2026 5 Views
MATTRESS MACHINERY SOLUTIONS

How Much Foam Can a Vertical Foaming Machine Make per Batch? The IF-FV01/02 Capacity Guide

How Much Foam a Vertical Foaming Machine Can Make per Batch: 150 and 180 kg Tiers at 11-15 kW, High-Low Speed Stirring, and a Capacity Selection Model for Growing Foam Workshops

150 or 180 kg per Batch High-Low Speed Stirring Two Capacity Tiers
150-180 kg
Foam per Batch
0-3,000 rpm
Mixing Speed
11-15 kW
Total Power
4-6 Mo.
Payback Window

Executive Commercial Highlight

The first question every foam workshop asks when it stops buying slab is the same one: how much foam can the machine actually make per batch? The answer decides the drum inventory, the mold table, the shift plan, and the size of the factory it can feed, and getting it wrong means either a machine that sits idle or a foam room that cannot keep the cutting line fed. The IF-FV01/02 Manual Vertical Foaming Machine answers the question with two capacity tiers: the IF-FV01 charges 150 kilograms of foam per batch on an 11-kilowatt drive, and the IF-FV02 charges 180 kilograms per batch on a 15-kilowatt drive, both mixing at up to 3,000 revolutions per minute with high-speed and low-speed stirring in a vertical tower layout. A batch is the unit the whole foam room is planned around: 150 or 180 kilograms of raw material charge becomes one molded block, and with two molds cycling, one operator runs four to six batches per shift, which is 600 to 1,080 kilograms of sponge per day. This guide works through the capacity math, the high-low speed stirring cycle, and the selection model that tells a growing workshop which tier to buy first.

1. Commercial Strategy: Which Capacity Tier Fits Your Foam Room

Foam capacity is measured in batches, not in machine speed, because the batch is the unit that ties the chemistry to the mold and the mold to the shift. A vertical foaming machine takes one weighed charge of polyol, isocyanate, water, and catalysts, mixes it to a full reaction in the foaming bucket, and pours it into a mold where it rises into a block. The IF-FV01 does that with 150 kilograms per charge and an 11-kilowatt drive; the IF-FV02 does the same with 180 kilograms and a 15-kilowatt drive. The factory does not choose a machine, it chooses a batch size, and the batch size must cover the largest mold the cutting room wants to fill in one pour, because a mold cannot be topped up mid-rise.

The selection rule is built on the monthly foam budget. A factory that consumes eight metric tons of foam per month runs roughly 45 batches of 180 kilograms, or 54 batches of 150 kilograms, and the smaller batch size simply means more batches in the month, not less foam. The real difference appears in the daily rhythm: with two molds cycling, the 180-kilogram tier produces about 1,080 kilograms per shift on four batches, while the 150-kilogram tier produces about 900 kilograms on the same shift plan, so the 180-kilogram machine is the choice for a factory that wants one shift to cover a full month's consumption with room for growth, and the 150-kilogram machine is the leaner entry point that still feeds a cutting line doing 300 to 400 mattresses per month.

The vertical layout changes the economics of the foam room itself. The IF-FV01/02 stands in a tower configuration roughly 3 meters high, which puts the mixing bucket at a height that lets gravity do the pouring: the charge flows from the bucket into the mold on the floor instead of being carried across the room, so the same operator moves less and the batch cycle stays tight. The footprint is a fraction of a horizontal mixer with the same capacity, which matters in existing factories where the foam room is a converted bay, and it leaves floor space for the drum storage and the mold table that the batch plan requires.

The upgrade path is what makes the two-tier line a safe first purchase. A workshop that starts with the IF-FV01 at 150 kilograms keeps the same drum stock, the same scale, the same batch sheet, and the same operator when it later adds an IF-FV02 for the second shift, because the chemistry is identical and only the charge weight changes. The IF-FV01/02 Manual Vertical Foaming Machine is therefore not a one-shot bet on a batch size, it is a platform that grows from 150 kilograms to 180 kilograms and from one machine to a battery of machines without changing the foam room's procedures.

2. The Vertical Foaming Workflow: High-Low Speed Stirring and Mold Pouring

The quality of a foam block is decided in the first minutes of the batch, and the stirring profile is the tool that decides it. The IF-FV01/02 mixes each charge in two phases: low-speed stirring blends the polyol, isocyanate, water, and catalysts into a uniform liquid without whipping air into the charge too early, and high-speed stirring, up to 3,000 revolutions per minute, drives the dispersion that makes the cell structure even. The two phases run on the built-in timing function, so the operator sets the seconds for each phase on the recipe sheet and the machine holds them batch after batch.

The vertical tower then does the pour. The mixed charge sits in the foaming bucket at the top of the tower, the mold sits on the floor beneath it, and the operator opens the discharge so the charge flows straight into the mold, which avoids the long transfer that horizontal machines need and keeps the reaction clock honest: the charge is in the mold in seconds, not in a ladle on the way across the room. The foam rises in the mold over the following minutes, sets, and demolds after the recipe's cure time, and the block goes to the cutting room with the same dimensions batch after batch.

One operator runs the whole cycle with two molds. While one mold cures, the operator weighs the next charge, runs the low-speed and high-speed phases, and discharges into the second mold, so the mixer is never waiting on the chemistry and the chemistry never waits on the operator. The vertical layout keeps the weighing station, the bucket, and the mold table within reach of one work position, which is why the documented output of the tier holds up in practice: four to six batches per shift with a single operator, and the second shift simply repeats the same sheet.

Operational Challenge: Buying Foam Because the Batch Size Was Never Planned
Workshops without a capacity model buy slab foam by default, store surplus blocks, and run a foam room sized by accident, with a mixer that is either too small for the molds or too large for the demand.
Infinity Solution: A Two-Tier Vertical Platform
The IF-FV01/02 offers 150 and 180 kg batches on 11-15 kW with high-low speed stirring in a 3 m vertical tower, so the factory picks the batch size its molds and shift plan actually need, and grows by adding machines on the same sheet.

3. Technical Specifications & Installation Requirements

The IF-FV01/02 is delivered in two tiers that share the same tower design, the same control panel, and the same foaming buckets. The table below summarizes the technical data for both models, so the selection can be made on one page.

Parameter IF-FV01 IF-FV02
Model IF-FV01 IF-FV02
Foaming Output 150 kg per batch 180 kg per batch
Foaming Bucket Diameter 450 mm / 500 mm Diameter 450 mm / 500 mm
Max Mixing Speed 0 - 3,000 r/min 0 - 3,000 r/min
Total Power 11 kW 15 kW
Machine External Size L1400 x W950 x H3000 mm L1400 x W950 x H3000 mm
Mixing Control High-low speed stirring, timing function High-low speed stirring, timing function
Operation Manual chemical charging, one operator Manual chemical charging, one operator

Installation takes one day in an operating factory. The tower needs a level bay with headroom above 3.1 meters, roughly 12 to 18 square meters when the drum storage and the mold table are included, and a power supply for the 11- or 15-kilowatt draw. The foaming room should hold 20 to 30 degrees Celsius, because the rise time of the recipe follows the room temperature, and the discharge area under the bucket must stay clear during the pour, which the SOP below enforces.

4. Featured Infinity Mattress Machinery & Equipment

IF-FV01/02 Manual Vertical Foaming Machine
VERTICAL FOAMING

IF-FV01/02 Manual Vertical Foaming Machine

Vertical manual foaming at 150 or 180 kg per batch with high and low speed stirring, a timing function, and a tower layout that pours straight into the mold.

View Details →
IF-FF2 Manual Foaming Machine
MANUAL FOAMING

IF-FF2 Manual Foaming Machine

The compact bench-top entry to in-house foaming: 180 kg batches at up to 3,000 r/min on 15 kW, for foam rooms with less headroom or a smaller bay.

View Details →
Foam Chemicals & Binder
RAW MATERIALS

Foam Chemicals & Binder

The polyols, isocyanates, catalysts, and binders that feed the foaming station, with purchasing guidance for factories that buy in drum volume.

View Details →

5. Financial Projection: The Growing Workshop Model

The model below follows a workshop that currently buys slab foam at ~$2.30 per kilogram and consumes roughly eight metric tons per month, which is the scale where in-house foaming becomes the obvious move: eight tons is about 45 batches of 180 kilograms, or about two batches a day on a lean shift plan. The projection assumes the IF-FV02 at 180 kilograms per batch, one operator, two molds, and a single shift of 22 working days.

  • Monthly Foam Volume: ~8,000 kg (about 45 batches of 180 kg, or 2 batches per day).
  • In-House Material Cost: ~$1.35 per kg blended recipe.
  • Cost of Bought Slab: ~$18,400 per month at ~$2.30/kg.
  • Materials Cost In-House: ~$10,800 per month.
  • Monthly Spread Saving: ~$7,600.
  • Operator Payroll: ~$500 per month.
  • Electricity: ~$150 per month (15 kW, about 4 hours of mixing per day).
  • Consumables (mold release, cleaning, PPE): ~$140 per month.
  • Net Monthly Saving at Full Ramp: ~$6,800.
  • CAPEX (IF-FV02, Molds, Scale, Ventilation): ~$7,200.
  • Payback Window: 4-6 Months, with the first two weeks run as a training ramp.
B2B ENGINEERING & TECHNICAL SPECIFICATION

IF-FV01/02 Manual Vertical Foaming Machine: foaming output of 150 kg per batch on the IF-FV01 and 180 kg per batch on the IF-FV02, foaming bucket diameters of 450 and 500 mm, maximum mixing speed of 0 to 3,000 revolutions per minute, total power of 11 kW on the IF-FV01 and 15 kW on the IF-FV02, machine external size of L1400 x W950 x H3000 mm for both tiers, high-low speed stirring with a built-in timing function, vertical tower layout with gravity discharge straight into the mold, manual chemical charging with one operator, one-day installation in an operating factory, bay of 12 to 18 square meters including drum storage and mold table, headroom above 3.1 meters, 20 to 30 degree Celsius operating room temperature, and compatibility with the IF-FF2 bench-top foaming machine and the Foam Chemicals & Binder raw material program.

The model assumes the recipe is stable from the first month, so the payback band of 4 to 6 months absorbs the training ramp, where the first batches carry scrap while the operator learns the two-phase timing and the density drifts with the room temperature. After the ramp, the saving compounds, and the platform grows: a second machine on the same sheet doubles the batch count without changing the procedures, which is the difference between buying a mixer and building a foam department.

6. Daily Operations & Safety Protocol (SOP)

  1. Pre-Shift Check: Verify the tower bolts, the bucket seating, and the discharge valve before any chemical is weighed.
  2. Chemical Check-In: Confirm drum labels and batch numbers against the batch sheet.
  3. PPE Before Pour: Gloves, goggles, and respiratory protection are worn before polyol or isocyanate is handled.
  4. Timing Verification: Confirm the low-speed and high-speed phase times match the recipe sheet.
  5. Discharge Area Clear: Confirm the mold is seated under the bucket and the pour zone is clear before the valve opens.
  6. Pour Discipline: Open and close the discharge in one motion; the reaction clock does not wait.
  7. Mid-Shift QC: Cut one cured block per shift, weigh the density sample, and log it against the target band.
  8. Nightly Cleanup: Scrape the bucket and mold, flush the discharge valve, and close the drums.

7. Frequently Asked Questions (FAQ)

Q1: How much foam can the vertical machine make in one batch?
The IF-FV01 charges 150 kilograms per batch and the IF-FV02 charges 180 kilograms, and with two molds cycling, one operator runs four to six batches per shift, which is 600 to 1,080 kilograms of sponge per day.
Q2: What is the difference between the IF-FV01 and the IF-FV02?
The capacity tier: 150 kilograms at 11 kW on the IF-FV01, 180 kilograms at 15 kW on the IF-FV02, with the same tower, buckets, mixing speed, and control panel on both.
Q3: Why does the machine have high and low speed stirring?
Low speed blends the chemicals into a uniform charge without whipping in air too early, and high speed drives the dispersion that creates an even cell structure; the timing function holds both phases batch after batch.
Q4: How much headroom does the vertical tower need?
The machine is roughly 3 meters tall, so the bay needs headroom above 3.1 meters, plus a level floor for the tower base and clear space under the discharge for the mold table.
Q5: Can one operator run the full batch cycle?
Yes. With two molds cycling, the operator weighs, mixes, and pours one batch while the previous one cures, and the vertical layout keeps weighing, mixing, and pouring within reach of one work position.
Q6: How do I decide between 150 kg and 180 kg?
Match the batch size to the largest mold the cutting room wants to fill in one pour, then to the shift plan: 180 kg produces about 1,080 kg per shift on four batches, 150 kg about 900 kg, and both tiers use the same chemistry and procedures.
Q7: Can I add a second machine later?
Yes. The IF-FV01 and IF-FV02 use the same bucket, scale, batch sheet, and procedures, so a second machine joins the same shift plan, and the workshop grows from one batch at a time to a battery without relearning anything.

8. Conclusion: A Capacity Decision, Not a Machine Decision

The question of how much foam a vertical foaming machine can make per batch is really a question about the shift plan, the mold table, and the drum inventory, and the IF-FV01/02 answers it in two tiers that share one platform. The IF-FV01 charges 150 kilograms on 11 kilowatts, the IF-FV02 charges 180 kilograms on 15 kilowatts, both mix at up to 3,000 revolutions per minute with high-low speed stirring and a timing function, and the 3-meter tower pours the charge straight into the mold, so one operator keeps four to six batches a day on the floor.

The decision rule for a growing workshop is simple: match the batch size to the mold, match the machine to the monthly foam budget, and keep the upgrade path open. If the foam room needs about 900 kilograms per shift, start with the IF-FV01; if it needs 1,080 and wants room to grow, take the IF-FV02; and either way the second machine can join the same sheet when the cutting line asks for it. Plan the batch, pick the tier, and the foam room stops buying slab and starts making its own material, with the payback in the ledger inside six months.

READY TO SIZE YOUR FOAM ROOM FOR IN-HOUSE PRODUCTION?

Contact our foam machinery engineers today for a capacity review of your monthly foam budget, a batch plan for 150 or 180 kg molds, the raw material list and costing sheet for your target density, and a factory-direct quotation for the IF-FV01/02.

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