Reamer Feed and Speed Calculator

Reamer Feed and Speed Calculator

Estimate spindle speed, feed per minute, cutting time, stock allowance, and finish risk for machine reaming in common shop materials.

Reaming Presets
📏Inputs
Final hole size, not the drilled pilot size.
Calculator checks remaining stock per side.
Recommended RPM 0 spindle speed
Feed Rate 0.0 in/min
Cutting Speed 0 SFM
Total Cycle Time 0:00 all holes, cut time only

Calculation Breakdown

🧪Current Material and Tool Grid
B75 Typical Hardness
45-80 HSS SFM Range
140-220 Carbide SFM Range
0.010 Target Stock
📊Material Speed Reference
Material HSS Reamer SFM Carbide Reamer SFM Starting Feed per Rev
Aluminum 6061100–180250–4500.004–0.012 in/rev
Mild Steel 101845–80140–2200.002–0.008 in/rev
Stainless Steel 30425–4580–1400.001–0.005 in/rev
Free-Cutting Brass80–140180–3200.003–0.010 in/rev
Bearing Bronze60–110150–2600.002–0.008 in/rev
Gray Cast Iron50–90150–2600.002–0.007 in/rev
Prehard Tool Steel18–3560–1100.001–0.004 in/rev
Acetal / Nylon Plastic80–160180–3500.004–0.014 in/rev
🔧Stock Allowance Reference
Finished Diameter Typical Total Stock Stock per Side Use When
Under 1/4 in0.003–0.006 in0.0015–0.003 inSmall dowel and screw clearance holes
1/4 to 1/2 in0.006–0.015 in0.003–0.0075 inCommon chucking reamer work
1/2 to 1 in0.010–0.025 in0.005–0.0125 inBushings, sleeves, and bearing fits
Over 1 in1%–3% of diameter0.5%–1.5% per sideLarge shell, adjustable, or CNC reamers
Reamer Spec Grid
Reamer Type Common Flutes Best Fit Setup Note
Straight-Flute HSS4–8General shop holes, brass, cast ironUse rigid alignment and steady feed
Spiral-Flute HSS4–8Blind holes and ductile chipsPrefer coolant flow out of blind holes
Solid Carbide4–6Production holes and abrasive materialsNeeds rigid holder and low runout
Expansion Reamer6–10Fine size correctionAdjust in tiny increments only
Hand Reamer6–10Manual sizing and repair workUse cutting oil and avoid reverse cutting
🔍Finish and Troubleshooting Reference
Symptom Likely Cause Feed / Speed Move Setup Check
Chatter marksToo fast, too little stock, or poor rigidityReduce RPM 15%–30%; keep feed positiveCheck holder runout and pilot straightness
Bell-mouthed entryMisalignment or hand pressureUse steadier feed and floating holderChamfer lightly before reaming
Oversize holeRunout, built-up edge, or wrong stockSlow surface speed and improve lubricationIndicate reamer and inspect cutting edges
Torn finishDull tool or chips trapped in flutesIncrease lubrication; avoid dwellingClear blind holes before final pass
💡Reaming Tips
Stock allowance: Reamers usually need a drilled or bored hole that leaves a small, even amount of stock. Too little stock can rub; too much stock can overload the reamer and bell-mouth the entry.
Feed discipline: Reaming feed is commonly handled as feed per revolution. Keep the tool feeding through the cut, especially in blind holes, and avoid dwelling at the bottom.
Safety note: Always wear appropriate eye protection and follow machine guarding rules. Never exceed the maximum rated RPM of your reamer, holder, or machine setup; verify workholding, coolant, chip clearance, and spindle direction before starting.

You can tell the reamer is making a clean cut because it make a dull rumble rather than a high-pitched screech or grind, which ends most shop floor arguments. At this point you’ve got the hole drilled, put the reamer in the spindle, and now you’re guessing at how fast to go. That’s where the tool and material values goes into calculator (above) and let you do the math. You won’t have to guess at conversions or coefficients anymore. But knowing how numbers work will keep holes round and the tool sharp.

Reaming gets mistaken as drilling by machinists. The idea seems to be that if they go faster they’ll get there work done quicker. That’s not true for reaming, which is a finishing operation. You are taking a small amount of material off the inside wall of a hole. The multiple flutes shares the cut; there are a lot of cutting edges involved. Each one takes very little material away. Go too fast and you will create too much heat which then expand and destroys your tolerance before you extract your tool. This explains the large differences in speeds (table at the bottom of the page) between carbide and high speed steel. Because carbide can handle heat better, you can push it further but only if your machine have the rigidity to back it up. Even a slight bit of wavering in your spindle becomes vibration with the added speed.

Tips for Better Reaming

There are hidden variables. One of those is stock allowance. In order for tool to have something to bite into, you can’t run the reamer through and then polish the hole to size; you should of drill it out to somewhere close enough so the tool has some material to remove. If there isn’t enough stock, say only one thousandth of an inch left on each side of the diameter, the flutes will simply rub without cutting. That creates heat and wears down finish. On the other hand, too much stock overwhelms the small cutting edge which deflects or chips. The calculator compares your initial pilot hole diameter to the final desired size to show the risk regarding this balance. Does it tell you that you’re asking the tool to do more work than its capable of doing in one go? Most shop reamers prefer to take off three to six thousandths total. If you take off any more then that, you are likely better off boring the hole first to avoid bell-mouthed holes. Otherwise, the tool will break.

Feed rate is where intuition matter less. Positive and steady is what you want. Do not linger at the end of a blind hole. Dwell is defined as when the cutting edges aren’t advancing while they’re still spinning. So they become grinding stones on the unmoving metal. That tears up the finish and works hardens surface. The calculator figures your desired feed per revolution into an IPM rate that your CNC controller can make sense of. But in the real world it’s just this: keep it moving down there. Feel resistance? Slow down the RPM but don’t quit feeding. If you feed the material while the spindle stops spinning, you will ruin edge quality of stainless steel or any other gummy material.

Choosing a coolant is more complex than it seems. Standard flood coolant will do fine, but air-oil mist can be effective on harder alloys such as hardened steels and Inconel. Because of its low viscosity, it has an easier time getting through the tight confines of the flutes different than a heavier flood does at times. Brass and aluminum can be dry reamed carefuly, although buildup is likely sooner in those materials. The tool simply gums up.

If troubleshooting, check shape of the chips. Do they appear long and stringy? Then your feed rate may not be fast enough for the cutting speed and you’re allowing the tool to drag instead of shear. Ideally, short broken chips leave cleanly from the hole before the next pass pushes them back down the flute. That’s when you want to ream. Respecting the physics of a small cut will get those parameters correct. It doesn’t want to dwell; it wants to move forward. And it doesn’t want to rub; it wants to cut. Tune the RPM and feed until you hear that hum settle into the background and you’ll know you’ve hit the sweet spot. The holes will turn out round, the finish will be smooth, and the tools will last way longer than usual. A good part of the quality control check in the shop is that steady sound.

Reamer Feed and Speed Calculator

Author

  • Thomas Martinez

    Hi, I am Thomas Martinez, the owner of ToolCroze.com! As a passionate DIY enthusiast and a firm believer in the power of quality tools, I created this platform to share my knowledge and experiences with fellow craftsmen and handywomen alike.

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