Jangan pergi!

Anda belum menerima perhitungan gratis dan harga pastinya.
Silakan tinggalkan detail kontak Anda, para insinyur kami akan menyiapkan solusi khusus untuk proyek Anda.

Crusher Tons Per Hour: How to Read a Throughput Rating Before You Buy

Crusher Tons Per Hour: How to Read a Throughput Rating Before You Buy Direct answer: Tons per hour tph is a throughput rating measured under a defined set of

Direct answer: Tons per hour (tph) is a throughput rating measured under a defined set of conditions — feed material, closed-side setting, and screen configuration — not a fixed capability of the machine. If you compare offers by the headline tph alone, you risk oversizing or undersizing your plant. Before any equipment decision, you must state your feed conditions and desired product; only then does a tph figure become meaningful.

Why one tph number cannot describe your site

A crusher’s rated throughput is usually quoted for a reference material (for example, medium-hard limestone) with a given feed size and a specified discharge setting . Your material is unlikely to match that reference exactly, so actual output on your site will differ from the brochure value. Treat the published tph as a starting point for calculation rather than a contract guarantee.

Several variables change real output — my emphasis is on the ones buyers forget:

  • Moisture: wet fine material blinds screens and slows the crushing chamber; throughput loss begins before the crusher, at the hopper and feeder.
  • Distribusi ukuran partikel: a crusher fed with mostly undersized fines is not making crushing progress; oversize above the recommended spec breaks the throughput curve and raises operating pressures.
  • Closed-side setting (CSS): the tighter the CSS, the lower the throughput and the higher the energy consumed per tonne. A 10 mm change in CSS changes both product shape and production rate on most jaw and cone machines .

Your job as buyer is not to find the crusher with the largest number; it is to find the crusher whose throughput curve matches your material at your setting.

The first-cut calculation before you talk to a supplier

For a simple rough estimate of the hourly requirement, you need three inputs:

  1. Annual target — usable tonnage after allowed downtime, or yearly sales demand plus planned stockpiles of unsold fines.
  2. Operating hours — planned running hours per year, deducting maintenance, blasting days, weather stoppages, and changeouts. A quarry operating 5 days per week, one shift, often runs in the range of 1,800–2,200 hours per year ; a two-shift operation roughly doubles this. Confirm the local norm for your site rather than assuming.
  3. Average capacity factor — the plant rarely runs at peak. Feed starvation, crusher blockages, sampling stoppages, and truck queues all cut the average. A long-run average load factor below nameplate is normal engineering practice; the exact value for your operation must be estimated from site records or an agreed assumption.

The working formula is: required average tph = annual target ÷ planned operating hours . If your annual target is 300,000 tonnes and you plan 2,000 hours, the average must be 150 tph. Do not buy machinery sized for 150 tph at the average — you must also cover the peak short-term flows, which leads to the table below.

Throughput decision checklist

This table is not a specification sheet. Use it to collect the information you must supply before a supplier can calculate a realistic tph for your application.

ParameterWhat it controlsWhat you must confirm
Material type and abrasivenessLiner life, power draw, recommended crusher typeUnconfined compressive strength or work index from a lab test; site rock name is not enough
Maximum feed sizeCrusher inlet dimensions and feeder openingLargest stone dimension measured on site; do not use the rare outlier boulder — use the largest regular block
Feed bulk densityBelt speeds, hopper volume, stockpile volumeMeasured loose density in t/m³ for your specific rock
Moisture and clay contentScreen efficiency, bridging risk, washing needsPercentage of material passing 75 micron, and free moisture at seasonal worst
Required product specCSS, chamber choice, recirculation loadRequired top size, fines content, and flakiness index for your customer
Demand profileSurge capacity, stockpile conveyor sizingPeak hourly demand versus average; a short high-demand stint changes conveyor and crusher sizing more than annual average
Planned operating hoursCapacity factor and engine dutyShifts per day, seasonal weather stops, planned maintenance weeks

Fill this in before requesting a quote. A supplier who quotes you a tph without asking for this table cannot give you a reliable number.

Where the standard tph rating fails you

Every throughput rating carries a suitability boundary. A crusher rating assumes free-flowing, granular feed with a reasonable fines content and a manageable top size. The recommendation does not apply when:

  • Feed is sticky or clay-bound. When moisture rises and the clay content grows, throughput can drop substantially below rated output, and the problem usually appears in the feeder and screen before the crusher chamber. A conventional tph rating says nothing about your material’s behavior in that situation .
  • Feed contains rebar or long, slender steel (demolition or recycling). Impact and jaw machines can handle occasional steel with proper feeding discipline, but nominal throughput figures are never calculated with re-entrained ferrous content in mind.
  • Your product must be tighter than the machine’s economic setting. Chasing a very fine product at high purity will push you down the throughput curve and up the recirculation load.

In these cases, ask for test evidence from a pilot plant or a reference installation running the same material, not for a catalog number .

What the buyer must still provide for a final selection

No responsible supplier can fix your operating tph from the machine nameplate alone. The missing inputs for a final selection are:

  • Measured material conditions — rock type, strength, moisture, and maximum feed size from your source rather than assumptions
  • Line configuration — the sequence of feeder → crusher → screen → stockpiles and where the bottleneck will sit
  • Measured output data — if you already run a plant, a timed production record with sampling method and running conditions
  • Equipment operating history — hours accumulated, problems observed, corrective actions, and the results of those changes

If you have an existing site, measure instead of estimate. If this is a greenfield project, present your assumed conditions openly and ask the supplier to state which assumptions their calculation relies on.

A final note on duty: sizing for the peak hour rather than the average is standard for the surge bin and the main conveyor, but a crusher selected for a peak that occurs rarely will run uneconomically for the rest of the year. Separate the peak-sizing decisions (feeders, conveyors) from the crusher sizing decision, which should track the sustained average plus a modest margin.

For a practical walkthrough of which machine family matches your material, start from the SUHMAN product catalog — but bring your material data to that conversation. To discuss your site layout and annual plan directly, go through the SUHMAN contact page and state your measured feed conditions in your first message. General notes on crushing and screening practice are collected on the SUHMAN blog, and a longer explanation of how SUHMAN positions itself as an equipment supplier is on the company page.

FAQ — Crusher Throughput Questions from Quarry Owners

How much should I derate a quoted tph for my real material?

There is no universal percentage, because the derate depends on moisture, clay content, crushability, and the setting you run . A reasonable first step is to compare suppliers who can produce throughput data from a test with your material rather than a reference rock. If no such data exists, build your schedule with a conservative average capacity factor and plan a site trial with a rental or short-term unit before committing.

Why do two crushers with the same rated tph perform differently on the same site?

The rated tph is reached at different conditions for different machines — the feed size distribution, the CSS at which the rating applies, and the screen recirculation logic are not identical across models. A machine rated at the same tonnage but fed with a tighter CSS will run closer to its limit and leave less margin for surges. Compare the full operating curve and power draw, not the single headline figure.

Should I size the crusher for peak hourly demand or the annual average?

Size the surge equipment — feeder, scalper, main conveyor — for the peak hour. Size the crusher itself for the sustained average plus a realistic operating margin; a crusher that only needs peak output during ten days of the year will burn excess fuel and wear liners at an uneconomical rate for the remaining weeks. State both the average and peak values when requesting a quote.

Do I use the same tph for a jaw crusher as for a cone or impact machine?

No. Each machine family rates throughput under its own reference conditions, and the numbers are not interchangeable. A jaw crusher rating applies to the primary reduction stage and is sensitive to feed entry constraints; a cone crusher rating assumes a certain feed grading going into the chamber and collapses if the feed contains excess fines; an impact crusher rating is strongly influenced by rotor velocity and the target reduction ratio . Match the machine family to the stage in your line — a primary jaw’s tph is not a substitute for a secondary cone’s tph in your line calculation.

What happens if I feed more tph than the crusher is rated to accept?

The material backs up into the feeder and hopper, the crusher begins to choke, and power draw rises while throughput falls. The symptom is a slowing rather than a faster plant, often accompanied by frequent stops to clear the chamber. Continuous overfeeding also shortens liner life and increases the risk of mechanical overload on the drive train. Protect the circuit with a properly sized feeder and a scalping screen upstream, and do not treat the crusher as the safety valve for the rest of the plant.

Bagikan cinta Anda