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Carbide T-Slot Cutter 2/4-flute / Ball

Carbide T-Slot Cutter 2/4-flute / Ball

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Product Description

[Features]
·Custom dimensions can also be specified for T-slot balls
·It is also possible to specify alteration machining of flank R shape (KR) and flank chamfer edge shape (KC)

Carbide T-Slot Cutter, 2-Flute / 4-Flute, Ball:Related Image
Part Number
STSBEM4-[3-4/0.1]-[1-2/0.1]-2-1.5-[0.5-5/0.05]
STSBEM6-[5-6/0.1]-[1-5/0.1]-[2-6/1]-[3-4/0.1]-[0.5-5/0.05]
STSBEM8-[6.1-8/0.1]-[1-5/0.1]-[2-8/1]-[4-6/0.1]-[0.5-5/0.05]
STSBEM10-[8.1-10/0.1]-[1-5/0.1]-[2-10/1]-[5-7/0.1]-[0.5-5/0.05]
STSBEM12-[10.1-12/0.1]-[1-5/0.1]-[2-12/1]-[6-8/0.1]-[0.5-5/0.05]
STSBEM16-[12.1-16/0.1]-[1-5/0.1]-[2-16/1]-[8-12/0.1]-[0.5-5/0.05]
STSBEMW4-[3-4/0.1]-[1-2/0.1]-2-1.5-[0.5-5/0.05]
STSBEMW6-[5-6/0.1]-[1-5/0.1]-[2-6/1]-[3-4/0.1]-[0.5-5/0.05]
STSBEMW8-[6.1-8/0.1]-[1-5/0.1]-[2-8/1]-[4-6/0.1]-[0.5-5/0.05]
STSBEMW10-[8.1-10/0.1]-[1-5/0.1]-[2-10/1]-[5-7/0.1]-[0.5-5/0.05]
STSBEMW12-[10.1-12/0.1]-[1-5/0.1]-[2-12/1]-[6-8/0.1]-[0.5-5/0.05]
STSBEMW16-[12.1-16/0.1]-[1-5/0.1]-[2-16/1]-[8-12/0.1]-[0.5-5/0.05]
Part NumberPriceMinimum Order Qty.Volume DiscountDays to ShipSố ngày giao hàngShank Diameter d
(mm)
Number of Flutes Overall Length L
(mm)

-

1 Piece(s) 6 Day(s) or more 42 Flutes50

-

1 Piece(s) 6 Day(s) or more 62 Flutes60

-

1 Piece(s) 6 Day(s) or more 82 Flutes60

-

1 Piece(s) 6 Day(s) or more 102 Flutes80

-

1 Piece(s) 6 Day(s) or more 122 Flutes80

-

1 Piece(s) 6 Day(s) or more 162 Flutes100

-

1 Piece(s) 6 Day(s) or more 44 Flutes50

-

1 Piece(s) 6 Day(s) or more 64 Flutes60

-

1 Piece(s) 6 Day(s) or more 84 Flutes60

-

1 Piece(s) 6 Day(s) or more 104 Flutes80

-

1 Piece(s) 6 Day(s) or more 124 Flutes80

-

1 Piece(s) 6 Day(s) or more 164 Flutes100

Loading...Tải…

  1. 1

Specifications

Carbide T-Slot Cutter, 2-Flute / 4-Flute, Ball:Related Image

[ ! ]Even if dimensions within the specifiable range are specified, depending on the combination of each dimension some products may be unable to be manufactured.

Model Number   Flute Diameter
D
0.1 mm Increment Designation
Flute Width

0.1 mm Increment Designation
Neck Length
1
1 mm Increment Designation
Neck Diameter *
d
1
0.1 mm Increment Designation
Ball Part
R
0.05 mm Increment Designation
Overall Length
L
Shank Diameter
d
STSBEM
(2 Flutes)
STSBEMW
(4 Flutes)
4 3.0 ~4.0 1.0 ~ 2.0 2 1.5 ℓ/2 ≤ R ≤ 5 50
6 5.0 ~6.0 1.0 ~ 5.0 2 ~6 3.0 ~ 4.0 ℓ/2 ≤ R ≤ 5 60
8 6.1 ~8.0 1.0 ~ 5.0 2 ~8 4.0 ~ 6.0 ℓ/2 ≤ R ≤ 5 60
10 8.1 ~ 10.0 1.0 ~ 5.0 2 ~ 10 5.0 ~ 7.0 ℓ/2 ≤ R ≤ 5 80
12 10.1 ~ 12.0 1.0 ~ 5.0 2 ~ 12 6.0 ~ 8.0 ℓ/2 ≤ R ≤ 5 80
16 12.1 ~ 16.0 1.0 ~ 5.0 2 ~ 16 8.0 ~ 12.0 ℓ/2 ≤ R ≤ 5 100

* Please be aware that manufacturing may not be possible if the selected neck diameter does not satisfy the "2 ≤ D-d1" condition.

Alterations

Initial Additional Processing How to Order / Charge Details  P.656

Machining Shape Code Specifications
Carbide T-Slot Cutter, 2-Flute / 4-Flute, Ball:Related Image KR Initial Curved Processing
KR = 0.05 mm Increment Designation
[ ! ]0.10 ≤ R ≤ (ℓ-0.2) / 2
Carbide T-Slot Cutter, 2-Flute / 4-Flute, Ball:Related Image KC Initial C-Surface Processing
KC = 0.05 mm Increment Designation
[ ! ]0.10 ≤ C ≤ (ℓ-0.2) / 2

Carbide T-Slot Cutter, 2-Flute / 4-Flute, Ball:Related Image

Basic InformationThông tin cơ bản

Material Ultrafine Particulate Carbide

Frequently asked question (FAQ)FAQ

Question:Question: What are the key advantages of using a Carbide T-Slot Cutter compared to high-speed steel cutters?
Answer:Answer: The Carbide T-Slot Cutter 2/4-Flute / Ball offers significantly higher wear resistance, thermal stability, and rigidity compared to HSS tools. The carbide construction allows for higher cutting speeds and feed rates, ensuring long tool life and excellent dimensional accuracy, especially in high-load or high-temperature machining environments.
Question:Question: How should I choose between a 2-flute and a 4-flute Carbide T-Slot Cutter?
Answer:Answer: The 2-flute cutter is recommended for softer materials or when efficient chip evacuation is needed, such as in aluminum or resin machining. The 4-flute cutter, on the other hand, is ideal for harder materials and finishing operations that require superior surface quality and reduced chatter due to its increased contact points.
Question:Question: What materials can be effectively machined using the Carbide T-Slot Cutter 2/4-Flute / Ball?
Answer:Answer: This cutter is designed for a wide range of materials including general steels, hardened steels, stainless steels, aluminum alloys, copper alloys, and engineering plastics. Its ball-end geometry allows it to perform well in contouring and profile applications where smooth transitions are required.
Question:Question: What is the purpose of the ball-end design in a T-Slot Cutter?
Answer:Answer: The ball-end geometry helps reduce cutting edge stress concentration and enhances the smoothness of the machined surface. It is particularly advantageous when machining curved profiles, fillets, or 3D contours, as it minimizes tool deflection and improves tool life during deep or angled slot cutting.
Question:Question: Can the Carbide T-Slot Cutter be customized for specific machining requirements?
Answer:Answer: Yes. Users can specify custom T-slot ball dimensions, as well as optional flank R (KR) or flank chamfer edge (KC) modifications. These customizations allow for better control of edge strength and cutting efficiency depending on the specific application, material hardness, and slot depth.
Question:Question: How does the shank diameter affect the rigidity and performance of the T-Slot Cutter?
Answer:Answer: A larger shank diameter provides greater rigidity and vibration resistance, which enhances dimensional accuracy and surface finish during cutting. For fine or shallow slotting, smaller diameters (e.g., 4 mm or 6 mm) offer better flexibility, while larger diameters (e.g., 12 mm or 16 mm) are suited for deep or heavy-load cutting operations.
Question:Question: What precautions should be taken when using a Carbide T-Slot Cutter 2/4-Flute / Ball?
Answer:Answer: To ensure optimal performance, the cutter should be operated with appropriate feed rates and spindle speeds based on material type. Proper coolant application is recommended to control heat buildup. Avoid excessive radial loads to prevent premature wear or chipping, especially in high-speed, deep-slot applications.

Check other FAQ (4 items) HideĐóng.