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R490-08T308-PM Square Carbide Face Milling Inserts

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R490-08T308-PM Square Carbide Face Milling Inserts

R490-08T308-PM Square Carbide Face Milling Inserts
R490-08T308-PM Square Carbide Face Milling Inserts R490-08T308-PM Square Carbide Face Milling Inserts

Large Image :  R490-08T308-PM Square Carbide Face Milling Inserts

Product Details:
Place of Origin: China
Brand Name: CROSS
Model Number: R490-08T308-PM
Payment & Shipping Terms:
Minimum Order Quantity: 50 pcs
Price: 0.5$-1.8$ psc
Packaging Details: 10pc/pp bag, carton for outsdie packing Box color: red, white, blue
Delivery Time: 7~45 days
Payment Terms: By 30% Telegraphic in advance, L/C, D/A, D/P, T/T, Western Union, MoneyGram

R490-08T308-PM Square Carbide Face Milling Inserts

Description
Coating: Pvd/cvd Workpiece: Mold Steel Tool Steel And Stainless Steel
Packing: In One Carton Or As Your Wish Type: Face Milling Inserts Series
Package: 10pcs/plastic Box Grade: HPO4P4、HPO2P5
High Light:

R490-08T308-PM Face milling inserts

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HPO4P4 square carbide inserts

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R490-08T308-PM square carbide inserts

R490-08T308-PM​​​ Cnc Carbide Inserts For Face milling inserts series

 

Face milling inserts series:

  • Processing object: Roughing of mold steel tool steel and stainless steel
  • Features: light cutting, anti-collapseperformance, high efficiency of roughing
  • Common specifications:SEKT/SEMT/R210/R245/R490
  • Commonly used grades:HPO4P4,HPO2P5

 

Company Profile:

We are a trading company with two factories in Sichuan. China.

Manufacturer with eight years experience in the production of carbide cutting tools,

Including carbide turning, milling, threading, grooving inserts, carbide end mills, drills, etc.

Complete specification of carbide milling inserts.

Currently, we have more than two-thousand different products from major brands all over the world.

Sandvik, Iscar, Mitsubishi, Kyocera, Chloe, Sumitomo, etc.

 

Milling Application Tips:

 

  • Check power capability and machine rigidity and ensure that the machine can make the most of the required tool diameter.
  • Cutting on the spindle with the shortest possible tool overhang.
  • Use the correct tool pitch for cutting to minimize the number of inserts involved in the cut to avoid vibration, while on the other hand, for narrow workpieces or when milling exceeds space, make sure the inserts are adequate.
  • Follow blade maintenance recommendations and monitor tool wear.
  • If you need to consider the use of coolant, milling without coolant can generally be done very well.
  •  
  • Technical Information:

  • Milling is the most flexible machining method available, and it can process almost any shape.
    Milling completes metal cutting by rotating a multi-cutting tool to perform a programmable feed motion in almost any direction along the workpiece. This cutting action makes milling an effective general-purpose machining method.
    The choice of machining methods on multi-spindle machines is no longer easy to choose: in addition to all conventional applications, milling is undoubtedly competitive for machining holes, cavities and surfaces commonly used for turning or thread turning. .
    The disadvantage of milling flexibility is that there are many variables in the process, the factors to be considered increase, the situation is more complicated, and the optimization brings more challenges.
    Modern milling is a very common method of machining. With the continuous development of machine tools, milling has evolved into a versatile method for processing a large number of different structural products.

  • Milling performs metal cutting by rotating multi-cutting tools to perform programmable feed movements in almost any direction on the workpiece. This cutting action makes milling an effective general-purpose machining method. The choice of machining methods for multi-spindle machines is no longer easy: in addition to all conventional applications, milling is undoubtedly competitive for machining holes, pockets and surfaces typically used for turning or threading. The disadvantage of milling flexibility is that there are many variables in the processing process, more factors to be considered, the situation is more complicated, and the optimization brings more challenges. Modern milling is a very common machining method. With the continuous development of machine tools, milling has developed into a general method for machining a large number of products of different structures. The development of modern tools also offers more possibilities to increase productivity, reliability and quality consistency through indexable inserts and solid carbide technology. With a certain cutting method, each cutting edge of the tool can remove a certain amount of metal, making chip formation and chip evacuation less of a priority. The most common milling applications can be used to generate planes. However, with the continuous increase in the number of five-axis machining centers and multi-tasking machines, other machining methods and surface machining methods have also been greatly developed. From a part perspective or from a toolpath perspective, the main types of milling operations include:
  1. Face milling
  2. Shoulder milling
  3. Cavity milling
  4. Profile milling
  5. Groove milling
  6. Turning
  7. Thread milling
  8. Slope milling
  9. Large feed milling
  10. Plunge milling
  11. Parting
  12. Spiral interpolation milling
  13. Circular interpolation milling
  14. Cycloidal milling

tips:

1.As cutting tools prices often fluctuate, the price on the site is not necessarily the current price. Contact us prior to purchase to confirm exact stock and price
 

2, due to the wide variety of cutting tools, if you need other models, please contact us.

3.Support multiple payment channels, 30 % advance payment

4. The minimum order quantity is 50 pieces and the package can be customized ( minimum order 500 pieces )

 

R490-08T308-PM Square Carbide Face Milling Inserts 0R490-08T308-PM Square Carbide Face Milling Inserts 1

Contact Details
Sichuan keluosi Trading Co., Ltd

Contact Person: Mr. yuan

Tel: +86 18797881202

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