Blade speed chart, Chip inspection chart – Grizzly G0717 User Manual

Page 33

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Model g0717 (Mfg. since 9/10)

-31-

figure 36. dry cutting blade speed chart.

Copper

Alloy

229~482

(70) (147)

203~213

(62) (65)

85-203

(26) (62)

220

(67)

220~534

(67) (163)

203

(62)

85

(26)

321

(98)

180~220

(54) (67)

95~213

(29) (65)

242

(75)

65~85

(20) (26)

180~220

(54) (67)

75~118

(25) (36)

246

(75)

108~225

(33) (75)

196~354

(60) (108)

203

(62)

111~321

(34) (98)

150~203

(46) (62)

Aluminum

Alloy

Thin

Tube

Angle

Steel

Carbon

Steel

Speed FPM

(M/Min)

Speed FPM

(M/Min)

Speed FPM

(M/Min)

Speed FPM

(M/Min)

Material

Material

Material

Material

Tool Steel

Mold Steel

High-Speed

Tool Steel

Alloy

Steel

Water

Hardened

Tool Steel

Stainless

Steel

CR Stainless

Steel

Free Machining

Stainless Steel

Gray

Cast Iron

Ductile

Austenitic

Cast Iron

Malleable

Cast Iron

Plastics

Cold-Work

Tool Steel

Hot-Work

Tool Steel

Oil-Hardened

Tool Steel

CUTTING SPEED RATE RECOMMENDATION

the chart in

figure 36 offers blade speed guidelines for various metals in feet per minute (FpM) and meters

per minute (M/Min). Choose the closest available speed on the machine, then adjust the feed rate as neces-
sary, using the appearance of the chips produced as a guide. refer to the Chip inspection Chart above for
recommendations on adjusting feed rate or blade speed based on the appearance of the chips produced.

Blade speed Chart

Chip

appearance

Chip

Description

Chip

Color

Blade

speed

feed Rate/

pressure

Other

actions

thin & Curled

silver

good

good

hard, thick &

short

Brown or Blue

increase

decrease

hard, strong &

thick

Brown or Blue

increase

decrease

hard, strong,

Curled & thick

silver or light

Brown

good

decrease

slightly

Check Blade

pitch

hard, Coiled &

thin

silver

increase

decrease

Check Blade

pitch

straight & thin

silver

good

increase

powdery

silver

decrease

increase

Coiled, tight &

thin

silver

good

decrease

Check Blade

pitch

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

thin & curled

short, hard & thick

thick, hard & strong

thick, hard & strong

thin & straight

powdery

thin & curled tightly

hard & thin

figure 35. Chip inspection chart.

the best method for choosing the cutting speed and feed rate for a cutting operation is to inspect the chips
created by the cut. these chips are indicators of what is commonly referred to as the "chip load." refer to
the chip inspection chart below to evaluate chip characteristics and determine whether to adjust feed rate/
pressure, blade speed, or both.

Chip inspection Chart

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