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- Cutting Speeds. Determine the spindle speed for turning, milling, drilling, and reaming with these charts and cutting speed calculators. Turning: Milling Drilling & Reaming Top: Turning speeds are adjusted to the feed rate of the mini lathe (0.004/rev.), a depth of cut of 0.040, and a tool life of 180 minutes.
- All Harvey Tool products are fully-supported with their own Speeds & Feeds designed to provide the best tool possible for various applications. Save time and money by downloading and printing the Speeds and Feeds table for your specific tool, and simulate its running parameters and tool paths by accessing our complete library of simulation files.
- Feeds & speeds are Super Tool’s starting recommendation for catalog standards only. Factors such as machine, fixture and tooling rigidity. ALUMINUM BRONZE 40-175 200-600.002.006 37 29 24 21 24 22 20 18 16 BRASS ALLOY - LEADED AND FREE CUTTING. FEEDS & SPEEDS CHART FOR KEYSEATS - CARBIDE TIPPED. Created Date.
- Dec 24, 2014 George, I don't know what a slot mill is. I've been in machining nearly 40 years and cutting steels, brass, aluminum and other stuff. A general rule of thumb is the DOC to be half the tool diameter, even in steel. Aluminum is best with a 2 flute cutter but 3 is OK. Based on your machines parameters you have about.004 chipload - not bad.
- Find T-Slot Cutters at MSC Industrial Supply, serving the metalworking, safety, and MRO industries for over 75 years.
Oct 07, 2014 I am new to milling and machining in general and have a quesiton about cutting T-slots. I have 6061 aluminum and am using HSS T-slot cutter. I cut the neck diameter and depth to the appropriate size to accomodate the cutter, but when I switch to the slot cutter and begin cutting, the bit starts screatching as soon as I am a 1/2' into the peice (not even the full diameter of the cutter). Jun 24, 2013 Making a sacrificial aluminum T Slot table on a. Tips and Tricks for Fixturing and Deep Slot Aluminum Cutting. Simpsons36 6,482 views. The basics on a Speed square - Duration.
Speeds & FeedsSpeeds & Feeds - CarbideClimb MillingDrill Time FormulaTool Coatings
Speeds & Feeds
Modern milling cutters capable of operating at higher feeds and speeds, and moving more cubic inches of metal per minute, require greater machine rigidity and more power.
Therefore it is important to determine that enough power is available to handle the desired depth and width of cut at the higher feeds and speeds.
Therefore it is important to determine that enough power is available to handle the desired depth and width of cut at the higher feeds and speeds.
T= Number of teeth in cutter
D= Cutter diameter in inches
RPM= Revolutions per minute
SFM= Surface feet per minute
F= Feed in inches per minute
D= Cutter diameter in inches
RPM= Revolutions per minute
SFM= Surface feet per minute
F= Feed in inches per minute
f= Feed per tooth in inches
W= Width of cut
d= Depth of cut
HP= Motor horsepower
C= Machinability constant
W= Width of cut
d= Depth of cut
HP= Motor horsepower
C= Machinability constant
Machinability constant values for various materials are based on removing one cubic inch of metal per minute per horsepower with 60% power efficiency at the spindle nose and a 25% allowance for cutter dulling.
Aluminum, Magnesium, Dural – 4.0 plus
Brass – 2.5
Soft Bronze, Copper – 2.0
Cast Iron – 1.5
Steel up to 150 Brinell, Malleable Iron – 0.75
Steel, 300 Brinell, Hard Bronze – 0.6
Steel, 400 Brinell – 0.5
Aluminum, Magnesium, Dural – 4.0 plus
Brass – 2.5
Soft Bronze, Copper – 2.0
Cast Iron – 1.5
Steel up to 150 Brinell, Malleable Iron – 0.75
Steel, 300 Brinell, Hard Bronze – 0.6
Steel, 400 Brinell – 0.5
Climb Milling
In conventional milling, the cutter revolves opposite to the direction of table feed. Therefore the width of the chip starts at zero and increases to a maximum at the end of the cut. This can lead to accelerated tool wear under some conditions – conventional milling is recommended for hot rolled steel, surface hardened materials and steels with a surface scale. In climb milling, the cutter revolves in the same direction as the table feed. The tooth meets the work at the top of the cut, producing the thickest part of the chip first. In horizontal applications the resultant force created by climb milling can act as a clamping force, acting toward the machine table. It is important to make sure that the machine tool has no leadscrew backlash. Normally climb milling improves product surface finish and increases tool life.
Advantages of Climb Milling
Boeing company 3003 w casino rd everett wa. Longer Tool Life: Since the chips produced are deposited behind the cutter, tool life can be substantially increased.
Ease of Fixturing: Climb milling exerts a downward clamping force on the workpiece and not an upward force as in conventional milling, which results in simplified fixturing.
Improved Surface Finish: Since the chips are not carried by the cutter, less likelihood of marring the machined surface.
Lower Power Requirements: A higher rake angle can be utilized, lowering power consumption.
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Better Chip Evacuation: Easier and faster chip removal since chips are deposited behind the cutter.
Drill Time Formula
Speeds & Feeds – Formula
Find: | Have: | Formula: |
Revolutions per minute (RPM) | SFM | (SFM x 12) / (Diameter of drill x 3.1416) |
Surface feet per minute (SFM) | RPM | (Diameter of drill x RPM x 3.1416) / 12 |
Feed rate per RPM (FR) | SFM and FM | (Diameter of drill x FM x 3.1416) / (SFM x 12) |
Feed rate per RPM (FR) | RPM and FM | FM / RPM |
Feed rate per minute (FM) | FR and RPM | RPM x FR |
SFM | RPM and drill dia. | .26 x RPM x drill diameter |
RPM | SFM and drill dia. | 3.8 x (SFM / drill diameter) |
Drill Speeds
Material | SFM* |
Aluminum and Aluminum Alloys | 150-300 |
Brass and Bronze (free cutting) | 150-300 |
Brass and Bronze (high tensile) | 70-120 |
Cast Iron (soft) | 80-120 |
Cast Iron (medium) | 60-90 |
Cast Iron (hard) | 30-70 |
Copper | 70-100 |
Magnesium | 200-400 |
Nickel Base Alloys | 20-50 |
Plastic and Related Materials | 100-200 |
Wood | 200-300 |
*Surface feet per minute
Drilling Time Formula
Time (Minutes) = Travel(in.) / RPM x Feed (per rev.)
Travel = Sum of: Depth of Hole, 1/3 Drill Diameter, Approach Clearance, Over Travel (through cavities) / Total Travel (in.)
Drill Speeds (Steel)
Material | SFM* |
Alloyed – under 200 B.H. | 60-90 |
Alloyed – 200 – 300 B.H. | 40-70 |
Alloyed – over 300 B.H. | 20-30 |
Cast and Forged | 40-70 |
Heat Treated – 35 – 40 R.C. | 30-40 |
Heat Treated – 40 – 45 R.C. | 20-30 |
Heat Treated – over 45 R.C. | 10-20 |
Mild – .2 – .3 Carbon | 70-100 |
Mild – .4 – .5 Carbon | 50-80 |
Stainless – 300 Series | 20-50 |
Stainless – 400 Series | 30-70 |
Tool – over 1.0 Carbon | 40-60 |
Titanium Alloys | 20-50 |
*Surface feet per minute
Drill Feeds
Diameter (in.) | Light Feeds | Heavy Feeds |
1/8 | .0005 – .0010 | .0015 |
3/16 | .0010 – .0015 | .0020 |
1/4 | .0015 – .0020 | .0025 |
5/16 | .0020 – .0025 | .0030 |
7/16 | .0025 – .0030 | .0035 |
1/2 | .0035 – .0040 | .0045 |
5/8 | .0045 – .0050 | .0055 |
3/4 | .0055 – .0060 | .0065 |
The above are suggested ranges. Due to many variable in an operation, more optimum speed may be established through trial.
Tool Coatings
TiN – General purpose coating for Steels, Stainless Steels and Inconel. Excellent wear characteristics in roughing applications.
TiCN – High performance in Die and Mold Steels, Hardened Materials, Steels and Stainless Steel. Ability to run at increased Feeds and Speeds over TiN coated tools.
TiALN – Best results in Dry Milling applications at high temperatures. Heroes of the storm free hero rotation slot. Works well in Hardened Materials, Titanium Alloys, Stainless Steels, Cast Irons, Graphite and HSM applications.
KEO…
T Slot Cutter Speeds And Feeds Aluminum Prices
Is the recognized world leader in performance solid cutting tools since its inception back in the 1940s, with plants located in Warren, Michigan, and sister company KEO Milling Cutters, in Athol, Massachusetts. 9,000+ Standard tools are produced here and ready to ship! Click one of the listings on the navigation bar above to solve your cutting tool needs or use the search option at the top if you have a specific KEO tool number in mind.
A Name You Can Trust
The KEO brand is synonymous with quality and our products are used by the most successful machining businesses around the world. Over seventy years of commitment to providing the best value is evident in our extensive product offering and our competitive pricing. Whether we are producing our standard catalog offering or quickly turning a special order for our customers, all tools are produced here in the USA by our highly skilled and prideful associates. In today’s global market you need quality, precision and speed; that’s what you get from KEO, an American made product and a name you can trust.