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Tungsten Steel Ball Nose Milling Cutter 45 Degree 2 Flute Ballnose Endmill

Shenzhen Bwin Precision Tools Co., Ltd.
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Address: No.1613, honghai Bldg., Songgang Rd., Baoan Area ,Shenzhen , China

Contact name:Judy Le

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Shenzhen Bwin Precision Tools Co., Ltd.

Tungsten Steel Ball Nose Milling Cutter 45 Degree 2 Flute Ballnose Endmill

Country/Region china
City & Province shenzhen
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Product Details

Characteristic:

  • High-quality raw materials
  • Sharp blade
  • Milling stability
  • Smooth chip removal
  • Good finish

 

Description:

  • The HRC45 2F ball nose endmill  is made of ultra-fine tungsten steel base material, with higher wear resistance and strength, and focuses on high-quality and high-speed cutting; Imported grinding machine and superfine grinding wheel are adopted to ensure the finished product rate. Super capacity chip removal at the edge, smooth cutting, high efficiency machining, high accuracy and luster of the workpiece; Chamfer design not only facilitates installation, but also the chuck fits the machine tool, making milling more stable! So as to protect the machine tool and increase its service life.

 

Milling parameters:

HRC45 Carbide End Mill
 
Tool lengthfz&v
Short

1

Long10.9
Overlength0.8
Speciality0.6
TypeMaterial

Strength

N/mm²

 

Hardness

HRC

Cooling
Air

Dry cutting

Lubricating fluid
PPI

P1.1

Non alloy structural steel, free cutting structural steel, carburized steel and quenched and tempered steel<700
P1.2quenched and tempered steel                                       <1200
P2P2.1Alloyed nitrided steel, carburized steel and quenched and tempered steel<900
P2.2Tool steel, bearing steel, spring steel and high-speed steel<1400 
P3P3.1Tool steel, bearing steel, spring steel and high-speed steel<900
P3.2Tool steel, bearing steel, spring steel and high-speed steel<1500 

 

Sloting
Vc
(m/min)
fz(mm/Tooth)
Diameter
246810121620
1120.010.0180.0260.0340.0410.0480.060.069
920.010.0170.0250.0320.0380.0450.0560.065
1000.010.0180.0260.0340.0410.0480.060.069
720.0090.0150.0220.0280.0340.040.050.058
640.010.0180.0250.0320.0390.0450.0570.066
560.0090.0160.0230.0290.0360.0410.0520.06

 

Roughing
Vc
(m/min)
fz(mm/Tooth)
Diameter
246810121620
2280.0180.0310.0450.0570.0700.0810.1010.118
2080.0170.0290.0420.0540.0650.0710.0950.11
1840.0180.0310.0450.0570.0700.0810.1010.118
1440.0150.0260.0370.0480.0580.0680.0850.098
1320.0170.030.0420.0540.0660.0770.0960.112
1120.0150.0270.0390.050.0600.070.0880.102

 

Finish
Vc
m/min
fz(mm/Tooth)
Diameter
2468101214161820
3320.0280.050.070.0910.110.1280.1440.160.1730.186
2720.0260.0460.0660.0850.1030.120.1350.150.1620.173
3040.0280.050.070.0910.110.1280.1440.160.1730.186
2120.0230.0410.0590.0760.0920.1070.1210.1340.1450.155
1960.0270.0470.0670.0860.1040.1220.1370.1520.1650.177
1680.0240.0430.0610.0790.0950.1110.1250.1390.1500.161
 
Note:
  • If the following carbide end mill cannot meet your requirements, we support OEM customized production. The diameter of 0.2mm to 25mm, the total length of 50mm to 200mm, 4F, 5F, 6F, 8F and logo can be customized, including inch size end milling cutter. Please contact us to select or customize non-standard carbide end mill according to your needs.
SpecificationFlute Dia(φ)Flute Length (C)Shank Dia(D)Overall Length(L)
R0.5*2*d4*50L0.52450
R0.75*3*d4*50L0.753450
R1*4*d4*50L14450
R1.25*5*d4*50L1.255450
R1.5*6*d4*50L1.56450
R1.75*7*d4*50L1.757450
R2*8*d4*50L28450
R2.5*10*d5*50L2.510550
R3*12*d6*50L312650
R4*16*d8*60L416860
R5*20*d10*75L5201075
R6*24*d12*100L62412100
R7*28*d14*150L72814150
R8*32*d16*100L83216100
R9*36*d18*100L93618100
R10*40*d20*100L104020100
 
Notice:
  • Minimize the use of tool tips to process workpieces: at the position of the ball head tool tip, the processing linear speed is 0 during actual processing, that is, the tool is not actually cutting, but grinding. In actual processing, the coolant can not be added to the cutting area at all, which further leads to greater cutting heat ratio and reduced tool life.
  • For straight wall processing, use contour contour processing method: try to reduce the phenomenon of ball end cutter processing downward along the straight wall. Relatively speaking, it is a very good method to process upward along the straight wall, but it is difficult to separate them in actual processing. Let's compare the differences between the two.
  • Machining straight wall with contour can reduce downward machining. If you can use "cutting from bottom to top", this phenomenon can be avoided. When using "cutting from bottom to top", first consider whether the cutting capacity of the cutter is too large. If there are relatively large residues left at the root of the curved surface after machining above, the cutting capacity of the cutter may be too large. This will not protect the tool but destroy it.
  • The ball end milling cutter shall pay attention to the processing of deep grooves: when processing deep grooves, the cutter may sink. Because the chip holding groove of the ball end milling cutter is relatively small, it is easy to break the cutter when processing sticky materials (such as red copper) and the feed speed is fast. Therefore, pay attention to chip removal when using ball end cutter for machining.

 

Applications:

Pre-hardened Steel, stainless steel, Die steel, steel plate, Heat-resistant steel,pipe, copper and aluminum, cast iron, Nonferrous Metal, Wood, Plastic,FRP and sO on. General-purpose operation slotting, rilling, profiling.

Cnc Milling Cutter 6mm 3 4 Flute Tungsten Solid Carbide High Feed Endmill End Mill

FAQ

Q1. The tool breaks when cutting in or pulling out the workpiece

The feed rate and cutting depth can be reduced, and the cutting edge length can be shortened to the minimum of the necessary length.

 

Q2. Tool breaks during normal machining

Reduce the feed rate and cutting depth.

The tool shall be passivated.

Replace the clamp or spring collet.

The tool with high cutting edge number changes the tool with low cutting edge number to improve chip removal and prevent chip blockage.

Replace dry milling with wet milling (using cutting fluid), and use it with vortex tube gun to reduce tool temperature and avoid tool overheating.

If the wet milling fluid supply direction is changed from the front to the oblique rear or transverse top, the coolant flow should be sufficient.

 

Q3. The tool breaks when the feed direction changes

(1) Use arc interpolation (NC machine tool), or temporarily stop (temporarily) feeding.

(2) Reduce (decrease) the feed before and after the direction change.

(3) Replace the clamp or spring collet.

 

Q4. Problem: Part of the blade tip breaks

Chamfer the corners with manual grinding.

Change down milling to up milling.

 

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