SECOMAX™ Ceramic inserts
22:41

Seco Tools is now complementing the existing CS100 Ceramic range with a range of competitive Whisker Ceramic grooving inserts, CW100.

Seco Tools has been successfully active within the Aerospace and Power Generation segments for many years offering high performance solutions for components such as shafts, engine parts, landing gears etc. The addition of Ceramic products will now further enhance our portfolio and strengthen our position as a full line supplier.

The features of these inserts come together in a product line that offers optimized wear resistance and toughness in machining of nickel-based heat resistant superalloys.

CW100 (Whisker)

The wear resistance of the aluminium oxide, combined with the toughness of the ultra-strong whiskers, comes together in a product with increased wear resistance, fracture toughness and notch wear resistance in machining of superalloys at high speed.

Grade CW100 has the following features:

  • Excellent wear and thermal shock resistance
  • Superior notch wear resistance
  • Outstanding fracture resistance
Grade CW100 is a whisker reinforced ceramic for grooving inserts while CS100 is a SiAlON type ceramic for ISO inserts.


 

For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.


Product Manager:
Anders Wickman
Product Manager SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS AB
737 82 Fagersta, Sweden
Office +4622340254
Mobile +46703431200
e-mail:anders.wickman@secotools.com
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Some basics of cutting with ceramics
22:41

There are some basics when it comes to applying ceramic cutting materials into a metal working process that needs to be considered. Our ceramics, CS100 and CW100, are designed to be used for roughing of heat resistant super alloys, HRSA, and to be successful in applying them, these basics needs to be addressed to get the maximum tool life.

For example, always use a radial path with a radius bigger than the inserts radius when machining into a shoulder to avoid breakage. The feed should also be reduced to about 50 % when machining into the corner.


Ceramics tend to get big notch wear and to maximize the tool life, two very important techniques for roughing can be used. By varying the depth of cut when several passes are needed, the notch wear can be spread out on a bigger part of the cutting edge and the tool life can be heavily increased. Start with the biggest depth of cut and decrease the depth for every pass and keep the depth of cut constant during each pass. The other technique for spreading out the notch wear is ramping. It means that the depth of cut is varied during each pass, starting the first cut with a big depth of cut and decreases it. The next cut is started with a low depth of cut and is increased during the whole cut.


 
These are just some tips and tricks when machining with ceramics to avoid some easy mistakes.

For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.




Author:
Stefan G Larsson
Product Specialist SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS AB
737 82 Fagersta, Sweden
Office +4622340572
Mobile +46761367807
e-mail:stefan.g.larsson@secotools.com
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Turning of crushing cones in austenitic manganese steel
22:40



The two main application areas for CBN are:
  • machining of hardened steel
  • machining of grey cast iron
There are several types of hardened steels including case hardened steels (in gears, shafts etc), through hardened steels (in bearings etc) and tool steels (in moulds, dies, rolls etc).Grey cast iron is not hardened, but highly abrasive, and can be found in automotive brake components (brake discs, brake drums etc).

Normally CBN only works when the steel component is hardened, with a hardness above 50 HRC. One exception are the so called austenitic high manganese steels. These are steels with a manganese content of 11% or more, originally invented by Sir Robert Hadfield. In its original state, the material is usually around 250 HB, but the hardness is increased significantly through deformation hardening when used, without any loss of toughness. The hardness is also very difficult to measure with high accuracy due to the high level of work hardening.

The application areas for these materials are in the mining industry, such as in components for cement mixers, rock crushers, railway switches and crossings, crawler treads for tractors, teeth for excavators and other high impact and abrasive environments.

The deformation hardening will affect the material also during machining, and this impacts the selection of materials that can be used for machining.

Cutting data when using carbide has to be very low, cutting speeds in the range of 20 to 30 m/min is normal. By instead using CBN, cutting speeds can be increase to 200 m/min, which significantly improves productivity.

One typical application where Seco Tools has a long experience and has been very successful is turning of crushing cones.


 These components are usually cast, and machining include one or more roughing cuts depending on the stock allowance, and one finishing cut. Seco Tools’ grade CBN500 has been developed to meet the challenges when machining these materials.

CBN500 is a high cBN-content grade with high wear resistance and high toughness. Other application areas for CBN500 include machining of hardened chrome irons and rough machining of hardened steel components.

Crushing cones are usually machined with round inserts or large nose radii inserts. A round insert has the advantage of multiple “edges”. At a depth of cut of 2 mm, there are six usable edges per side (twelve edges in total) on a round R...12-insert.

A typical example is shown below, where they were using carbide. The cutting speed is low, and they have to do several insert changes during the cut. The much higher cutting speed with CBN reduces significantly the machining time and the machining down time due to tool change. Due to the high wear resistance of CBN500, typical tool lives in these materials are up to 60 minutes time-in-cut.

What used to require 20 pcs of carbide inserts, can now be done with one single CBN insert. This means that not only are the components machined much faster, the insert cost per part is also lower. By using CBN, the productivity is increased, and the tooling cost is reduced.


 
For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.

Author:
Henrik Sandqvist
Product Specialist SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS Shanghai CO., Ltd. Level 2, Building 8, 456 HongCao Rd., Shanghai 200233, China
Office: +86 21 5426 5849
Mobile: +86 186 167 90063
e-mail: henrik.sandqvist@secotools.com
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SECOMAX™ CBN500 – Invented for white cast iron machining
04:28

White cast irons (chrome irons and chilled cast irons) are challenging to machine due to the presence of large abrasive carbides, inherent sand inclusions as well as casting pores and uneven depth of cut.

SECOMAX™ CBN500 has a patented AlN/(Co,W) binder, superior cBN particle distribution and significant improvements in particle to particle bonding, which come together in a product which offers improved toughness and wear resistance in machining white cast irons (chrome irons).

SECOMAX™ CBN500 has also proved successful in the machining of the following materials.

  • High Manganese steels
  • Hard steels (roughing)



With SECOMAX™ CBN500 have the next step in increased cutting tool performance and productivity, been taken in machining of white cast irons.

For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.




Author:
Per Ola Jönander
Product Specialist SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS AB
737 82 Fagersta, Sweden
Office +4622340818
Mobile +46703163555
e-mail:perola.jonander@secotools.com
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Finish milling of ductile iron with PCBN
03:59

Grey cast iron and ductile (nodular) cast iron are the two main types of cast iron used in today’s industry. The main difference is how the graphite appears. In grey cast iron, the graphite is in the form of flakes, while in ductile iron, the graphite is in the form of nodules. The composition is basically the same, but the demand for purity requires the Sulphur content to be very low in nodular iron.      


Both grey cast iron and ductile cast iron are very abrasive materials, but ductile iron is regarded as the more difficult one to machine. Ductile iron components can be various housings, shafts and other components mainly for the automotive segment.


Generally ductile iron is machined with carbide inserts, both roughing and finishing. When there are high requirements on dimensional tolerances and surface finish, PCBN can be an alternative for the finishing tool. The higher wear resistance of PCBN allows for longer tool life with maintained edge quality, resulting in superior tolerances and surface finish.


Rough milling is best done with wear resistant carbide grade. Seco’s range of milling grades for ductile cast iron include MP1500 and MK2050.




For finish milling, Seco’s CBN200C is the preferred grade. Grade CBN200C combines the optimum balance between substrate, coating and edge preparation for successful finish machining of high quality ductile iron components.

Depth of cut should be kept as low as possible, 0.1-0.3 mm. Cutting data is similar for carbide and PCBN, about 500 m/min, and feed rates will in finishing depend on surface finish requirement, but is in the range of 0.1 – 0.2 mm/tooth. Wiper technology will allow for higher feed rates while maintaining surface finish.

For more information, please contact your local Seco representative, or our PCBN team.

Author:
Henrik Sandqvist
Product Specialist SECOMAX PCBN/PCD
SECO TOOLS Shanghai CO., Ltd. Level 2, Building 8, 456 HongCao Rd., Shanghai 200233, China
Office: +86 21 5426 5849
Mobile: +86 186 167 90063
e-mail: henrik.sandqvist@secotools.com

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Seco Helix™ wiper – The winning concept
05:05

Wiper technology is now an established method for decreasing cycle times and increasing productivity. However, the increased cutting forces associated with wiper inserts can sometimes create vibration and chatter.

One way to reduce cutting forces is to reduce the wiper radius. This solution will give less cutting forces but also worse surface finish.

The Seco way, named Helix™ wiper (-WZP) is a clever system of changing the angle of the chamfer at different intersections of the wiper area and nose radius. This unique and patented design allows you to enjoy all the high feed rate benefits of wiper technology in setups where in the past a wiper insert have resulted in chatter.

Helix™ wiper (-WZP) will reduce the radial cutting forces up to 30% and the surface finish will be the same as for standard wiper.

  For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.



Author:
Per Ola Jönander
Product Specialist SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS AB
737 82 Fagersta, Sweden
Office +4622340818
Mobile +46703163555
e-mail:perola.jonander@secotools.com
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PCBN solid inserts for finish hard turning
23:17

Base on requirements from customers, the evolution of PCBN has led to the development of different PCBN insert types. What is commonly referred to as the PCBN “format” is how the PCBN appears. As shown below, there are four main groups.

Tipped inserts

A small PCBN-tip is brazed onto a carbide insert. The tips can be on one side or on both sides of the insert.

Multi-bar inserts

PCBN bars are brazed onto a carbide insert. These inserts are double sided, and therefore only available as negative inserts.


Full faced inserts

These inserts have full PCBN-layer on one side of the inserts.

  

Solid inserts

The whole insert is made of PCBN. All corners on the insert can be used.


 

The most common application area for PCBN is hard turning of case hardened steel components, and traditionally tipped inserts are used. By converting to solid inserts, a much more cost efficient production can be achieved. On a solid insert the cost per edge is considerably lower than on a tipped insert.

Depending on if you are doing a copying operation, a straight internal, external or facing operaton, you might need a different shape of the insert. Rigidity and stability of the setup will also influence the choice of insert shape.

For these reasons, solid inserts are available in six different shapes from Seco Tools:
  • TNGN11.. fixed pocket position, 6 edges/insert
  • CNGN09.. fixed pocket position, 4/8 edges/insert
  • DNGN11.. fixed pocket position, 4 edges/insert
  • SNGN06/09.. fixed pocket position, 8 edges/insert
  • RNGN09.. can be rotated freely in the pocket, depth of cut will determine number of edges/insert
  • WNGA06.. fixed pocket position, 6 edges/insert

To improve productivity and efficiency in the operation even more, wiper geometries are available on several of these shapes.

A round insert has the largest “nose radius” of all inserts, and this will act as wiper, improving surface finish significantly. A round insert will also give maximum number of edges per insert. The table below shows the number of edges per side at different depth of cuts.


 


In an existing operation, it is not always easy to change tool holders, and presenting a solution with solid inserts is often met with skepticism, but after explaining the advantages with:
  • number of edges per insert
  • parts per insert
the initial reaction is often replaced by a keen interest. This has been the case at many customers over the years that these inserts have been available, and after implementation, it has helped them to improve efficiency, productivity and cost effectiveness. A few examples are shown below where tool life per insert has been increased significantly.

Hard turning of a gear bore was previously done with a CNGA120408 insert with 4 edges, with a total tool life of 800 components per insert. By changing to a solid round insert in CBN060K, tool life was increased to 3,200 components per insert (16 edges per insert). A rigid setup and a stable tool holder design eliminated the risk for vibrations.

Old solution:                                          New “Solid” solution:
CNGA120408                                         RNGN090300S-01525
Competitor PCBN                                   CBN060K
4 edges/insert                                          16 edges/insert
Tool life: 800 parts/insert                        Tool life: 3,200 parts/insert

 




















Hard turning of another gear bore was previously done with a CCGW090308 insert with 2 edges, with a total tool life of 166 components per insert. By changing to a solid triangular insert in CBN060K, tool life was increased to 858 components per insert (6 edges per insert). A rigid setup and a stable tool holder design eliminated the risk for vibrations.

Old solution:                                           New “Solid” solution:
CCGW09T308                                         TNGN110308S-01525
Competitor PCBN                                    CBN060K
2 edges/insert                                            6 edges/insert
Tool life: 166 parts/insert                         Tool life: 858 parts/insert

 
















Another advantage of solid inserts, the possibility to “plunge” a feature instead of using conventional axial turning will be discussed in a coming newsletter.

For more information, please contact your local Seco representative, or our Advanced material (PCBN/PCD/CERAMIC) team.

Author:
Henrik Sandqvist
Product Specialist SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS Shanghai CO., Ltd. Level 2, Building 8, 456 HongCao Rd., Shanghai 200233, China
Office: +86 21 5426 5849
Mobile: +86 186 167 90063
e-mail: henrik.sandqvist@secotools.com
Product Manager:
Anders Wickman
Product Manager SECOMAX PCBN/PCD/CERAMIC
SECO TOOLS AB
737 82 Fagersta, Sweden
Office +4622340254
Mobile +46703431200
e-mail:anders.wickman@secotools.com

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