We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for blade.
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blade Product List and Ranking from 100 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

blade Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. OLFA CORPORATION Osaka//Trading company/Wholesale
  2. アルスコーポレーション Osaka//Manufacturing and processing contract
  3. 貝印刃物 特殊刃物営業部 Gifu//Machine elements and parts
  4. 4 近畿刃物工業 Osaka//Manufacturing and processing contract
  5. 5 東京製作所 Tokyo//Machine elements and parts

blade Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. What is the difference between a white blade (gray blade) and a black blade? OLFA CORPORATION
  2. When should I replace the blade of the cutter? OLFA CORPORATION
  3. [For foreign matter contamination measures] Blade without break line (large) OLFA CORPORATION
  4. 4 Super hard bamboo cutting blade 日光製作所
  5. 5 DIA-KEY Printed Dresser Replacement Blade 森一産業

blade Product List

31~60 item / All 278 items

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[Production Example] Non-woven Fabric Mask Manufacturing Machine Ear Strap (Ear Hook) Cutting Blade

We will introduce a case where the shape was adjusted so that the upper and lower blades of the scissors make contact at a point, improving cutting performance and extending lifespan!

We received an inquiry about the scissors-type blade used for continuously cutting the ear straps of masks in non-woven fabric mask manufacturing machines, and we would like to introduce a case we have developed. The conventional blades had issues with low durability and were prone to leaving uncut sections. Therefore, while maintaining the conventional shape, we improved the blade shape and material. For the blade material, we adopted a steel type with excellent wear resistance and adjusted the shape so that the upper and lower blades of the scissors make proper point contact, enhancing cutting performance and extending lifespan. 【Case Overview】 ■Issues - Conventional blades have low durability - Prone to leaving uncut sections ■Processing Details - Adopted a steel type with excellent wear resistance for the blade material - Adjusted the shape for proper point contact between the upper and lower blades of the scissors *For more details, please download the PDF or feel free to contact us.

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[Production Example] Sulfur-Cured Rubber / Raw Rubber Cutting Blade

By applying a fluorine-based resin coating to the blade, we have achieved higher release properties and improved the cleanliness of the cutting surface. Here is an example!

We would like to introduce a case where we addressed concerns regarding cutting uncured rubber and raw rubber. This time, the consultation was about rubber in a sheet form. Uncured rubber has a high viscosity, making it prone to deformation, and when cut by sliding, there is a tendency for the workpiece to stick to the blade. Using a Thomson blade for a push-cut or pressing a round blade against it are effective methods. Additionally, it is important not to apply excessive force. By applying a fluorine-based resin coating to the blade, the release properties are improved, resulting in cleaner cut surfaces. 【Case Overview】 ■ Issue: Prone to deformation and tendency for the workpiece to stick to the blade when cut by sliding ■ Processing Details: Coated the blade with a fluorine-based resin ■ Result: Improved release properties, resulting in cleaner cut surfaces *For more details, please download the PDF or feel free to contact us.

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[Production Example] Non-woven Fabric Cutting Octagonal Blade

We would like to introduce a case where an octagonal blade with an outer diameter of 200φ or more was manufactured for cutting non-woven fabric rolls!

Here is an introduction to a case where we manufactured and delivered an octagonal blade for cutting non-woven fabric used in textiles. In textile cutting applications, there are more examples of using round blades, but by using a polygonal shape, the blade engages more with the fibers, increasing straightness and allowing for more efficient cutting. In the case of polygonal blades, each edge needs to be sharpened individually, but we can accommodate special sizes and shapes. We can suggest blades suitable for your needs and applications, so please feel free to contact us with your requests. 【Case Overview】 ■ Product: Octagonal blade with an outer diameter of over 200φ ■ Purpose: Cutting non-woven fabric used in textiles *For more details, please download the PDF or feel free to contact us.

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[Production Example] Cutting Saw Blade for Packaging Materials and Cushion Packaging Materials

We will introduce a case that reduced resistance on the blade and improved the way it penetrates the workpiece!

We would like to introduce a case where we received a request from a fiber machinery manufacturer to produce and deliver a circular blade for cutting cushioning material for packaging all at once. Since the workpiece was made of thick kraft paper, we arranged the saw blades in a V-shape to reduce the resistance on the blades compared to a straight alignment, thereby improving the penetration into the workpiece. Although the increased blade length affects the stroke length of the cylinder, this method is sometimes used for workpieces such as coated paper. 【Case Overview】 ■ Purpose - To cut cushioning material for packaging all at once ■ Processing Details - By arranging the saw blades in a V-shape, we reduced the resistance on the blades compared to a straight alignment, improving the penetration into the workpiece. *For more details, please download the PDF or feel free to contact us.

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[Production Example] Carbide Round Blade for Cutting Film and Copper Foil Composite Material Sheets

We will introduce a case where even with blade wear, the impact on cutting performance is reduced, allowing for stable cutting even with composite materials!

We would like to introduce a case study in response to the inquiry regarding the high wear rate and frequent blade replacements of existing circular blades when cutting rolls of copper foil film at various stages of processing. We propose a carbide circular blade made from ultra-fine particle alloy, featuring a double-edged design. By altering the cutting angle at the start and the angle at the blade's base, we have reduced the impact on cutting performance even as the blade wears, enabling stable cutting even with composite materials. As a result, we have achieved more than double the lifespan compared to conventional blades, thereby reducing the frequency of replacements. [Case Overview] ■ Issue - Existing circular blades wear out quickly, leading to high replacement frequency. ■ Proposal - A carbide circular blade made from ultra-fine particle alloy with a double-edged design. *For more details, please download the PDF or feel free to contact us.

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[Production Example] Carbide Circular Blade for Cutting Solar Panel Film

We will introduce a case where the sharp edge is maintained even after continuous cutting, allowing for a clean cut surface!

We would like to introduce a case study in response to the request to minimize the irregularities on the cutting surface during the process of cutting thin film used for solar panels into long lengths. We selected a long-lasting, high-hardness carbide circular blade and adjusted the blade angle and thickness to suit the workpiece, allowing for cutting without applying unnecessary stress to the film. Since the sharp edge is maintained even during continuous cutting, the cutting surface can be kept clean. This method can also be applied to other functional films (such as PET and EVA). 【Case Overview】 ■ Challenge - To minimize irregularities on the cutting surface during the process of cutting thin film into long lengths. ■ Processing Details - Selected a long-lasting, high-hardness carbide circular blade. - Adjusted the blade angle and thickness to suit the workpiece, allowing for cutting without applying unnecessary stress to the film. *For more details, please download the PDF or feel free to contact us.

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[Production Example] Catheter Tube Medical Blade

We will introduce a case where the adoption of super hard materials has significantly improved the durability of the blade!

We would like to introduce a case in which we received an inquiry from a medical device manufacturer regarding the desire to "cut a silicone tube with a diameter of less than 1mm, without burrs, and at an angle." The tubes used for catheters are extremely thin and are inserted into narrow internal pathways such as blood vessels, making them critical components that require high safety standards. An angled cut expands the cross-section, so the thickness of the blade and the angle of the cutting edge are directly linked to the quality. In response, we proposed a thin-blade design of a carbide round blade, which achieved an extremely smooth cutting surface while suppressing deformation of the tube. Additionally, the use of carbide material significantly improved the durability of the blade. 【Case Overview】 ■ Challenge: To cut a silicone tube with a diameter of less than 1mm, without burrs, and at an angle ■ Proposal: Thin-blade design of a carbide round blade ■ Processing Details: Achieved an extremely smooth cutting surface while suppressing deformation of the tube ■ Result: The use of carbide material significantly improved the durability of the blade *For more details, please download the PDF or feel free to contact us.

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[Production Example] Food Machinery Large Diameter Round Blade for Processed Meat Slicing

We will introduce a case of selecting materials with excellent corrosion resistance and manufacturing large-diameter round blades for food processing applications!

We would like to introduce a case where we received a request from a food manufacturer to produce and deliver a carbide round blade for slicing processed meat. Due to the food processing application, we previously used stainless steel blades, but we changed the material to carbide to minimize wear on the cutting edge. Since this is for food use, we selected materials that are excellent in corrosion resistance. The outer diameter is 300mm to slice large workpieces all at once. We also accept requests for special materials and large-diameter blades like this case, so please feel free to consult us. 【Case Overview】 ■ Purpose of Use - Slicing processed meat ■ Processing Details - Changed the material to carbide to minimize wear on the cutting edge - Selected materials that are excellent in corrosion resistance for food use - The outer diameter is 300mm to slice large workpieces all at once *For more details, please download the PDF or feel free to contact us.

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[Production Example] Cutter Blade for Film Roll Width Cutting

We present a case that achieved approximately 20 times the durability compared to existing carbon steel cutter blades!

We received inquiries about extending the lifespan of blades used for cutting film rolls and would like to introduce a case we developed. The customer's current product was a carbon steel cutter blade, but due to rapid wear and high replacement frequency, we proposed a carbide blade. Compared to the existing carbon steel cutter blade, we achieved approximately 20 times the durability. Our company produces some carbide cutter blades in small quantities, allowing us to offer them with short lead times and at low prices. [Case Overview] ■ Issue: Extending the lifespan of blades used for cutting film rolls ■ Proposal: Carbide blades ■ Result: Achieved approximately 20 times the durability compared to existing carbon steel cutter blades *For more details, please download the PDF or feel free to contact us.

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[Production Example] Special Saw Blade for Continuous Cutting of Cardboard

We will introduce examples that emphasize a smooth cutting balance, contributing to improved cutting efficiency and durability!

We would like to introduce a case in which a customer consulted us, stating, "With the current blade, frequent blade replacements are necessary, which incurs effort and cost." We proposed a saw blade optimized for the angle and shape specifically for cardboard. The pitch of the blade was set to a balanced intermediate setting, ensuring that the blade does not penetrate too deeply into the cardboard and cuts smoothly. Additionally, we optimized the angle of the blade for smooth cutting through front and back movement using a cylinder. As a result, we were able to contribute to improved cutting efficiency and durability. [Case Summary] ■ Issues - The current blade requires frequent replacements, leading to effort and cost. - We want to achieve both a clean cutting surface and minimal waste. ■ Processing Details - The pitch of the blade was set to a balanced intermediate setting, ensuring that the blade does not penetrate too deeply into the cardboard and cuts smoothly. - The angle of the blade was optimized for smooth cutting through front and back movement using a cylinder. *For more details, please download the PDF or feel free to contact us.

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[Industrial Blade Example] Food Machinery Vegetable Cutting Guillotine Blade (Curved Blade)

A case that achieved both improved cutting quality and enhanced maintainability!

We would like to introduce a case where we received a request to enhance maintenance while stabilizing cutting quality with a guillotine blade for vegetable cutting. Although cutting is possible with a straight blade, due to user requests indicating that the wider cutting area tends to scatter dirt, we designed it with a curved blade type. By narrowing the blade shape, the cutting point became clearer, allowing for more precise force application and smoother cutting compared to conventional methods. 【Results】 - By narrowing the blade shape, the cutting point became clearer, allowing for more precise force application and smoother cutting than before. - Achieved both improved cutting quality and enhanced maintenance. *For more details, please download the PDF or feel free to contact us.

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[Industrial Blade Example] Round Blade for Cutting Seaweed, Thin Blade Specification

We propose appropriate blade specifications based on the characteristics of the material! Achieving both efficiency and quality is possible.

We would like to introduce a case where we received a consultation about wanting to cut multiple layers of seaweed cleanly without breaking the material. The customer's issue was that the stacked seaweed was breaking due to the resistance of the blade, resulting in the generation of fine powder. In response, Arus set the thickness of the round blade as thin as possible within the range that would not cause warping, tailored to the delicate characteristics of the seaweed. Additionally, by incorporating a V-shaped groove at the blade tip, we proposed a design that allows the blade to naturally penetrate the seaweed, minimizing resistance. [Case Overview] ■ Issue: Stacked seaweed breaks due to blade resistance, generating fine powder ■ Response: - Set the thickness of the round blade as thin as possible within the range that would not cause warping - Proposed a design that incorporates a V-shaped groove at the blade tip, allowing the blade to naturally penetrate the seaweed and minimize resistance ■ Result: Even with fragile seaweed, cutting could proceed smoothly, significantly reducing the generation of fine powder. *For more details, please download the PDF or feel free to contact us.

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  • Other cutting tools
  • blade

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[Industrial Cutting Tool Example] Guillotine Blade (Hardened Treatment Product)

No worries about peeling like a coating, and durability remains stable for a long time!

We would like to introduce a case where we received an inquiry from a hygiene product manufacturer regarding "the cutting blades for packaging coating sheets wear out quickly." We proposed a guillotine cutter blade (slide cutter) treated with special nitriding. Unlike simple surface treatments, this process allows for hardness to be imparted to the deeper layers of the blade. As a result of adopting our solution, the frequency of blade replacements was significantly reduced compared to conventional methods, and additionally, the blades can be reused through repeated sharpening, leading to a reduction in running costs. 【Case Overview】 ■ Issue: The cutting blades for packaging coating sheets wear out quickly. ■ Proposal: Guillotine cutter blade (slide cutter) treated with special nitriding. ■ Results: - Significantly reduced the frequency of blade replacements compared to conventional methods. - Led to a reduction in running costs. *For more details, please download the PDF or feel free to contact us.

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[Industrial Blade Example] Circular Blade for Clothing Waste Cutting Machine

A case where a stable delivery response has become possible due to a system of consistent domestic manufacturing!

We would like to introduce a case where a customer expressed concerns about using overseas-made round blades, citing unstable delivery times and insufficient durability. In our company, we have redesigned the blade angle to match the fiber structure of the clothing and optimized the sharpening roughness of the blade edge to enhance wear resistance. Our consistent manufacturing system within the country has also made it possible to ensure stable delivery times. 【Case Overview】 ■ Issue: Using overseas-made round blades, but delivery times are unstable and durability is insufficient. ■ Response: Redesigned the blade angle to match the fiber structure of the clothing and optimized the sharpening roughness of the blade edge. *For more details, please download the PDF or feel free to contact us.

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[Industrial Cutting Tool Example] Glass Tube Cutting Blade

The grit size of the abrasive can also be adjusted according to the cutting conditions and materials!

We would like to introduce a case where we received an inquiry about a blade used for cutting glass tubes in the fields of science and medicine. When cutting, applying impact poses a risk of breaking, so the cutting is done with a finely pitched blade. In this case, we proposed a method using a diamond electroplated blade, which has diamond abrasives bonded to the cutting edge. [Case Overview] ■ Proposed a method using a diamond electroplated blade with diamond abrasives bonded to the cutting edge. *For more details, please download the PDF or feel free to contact us.

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[Industrial Blade Example] Carbide Cutter Blade for Cutting Magnetic Sheets

We can provide at a reduced cost through mass production, and we also accommodate small lot orders!

Regarding the cutting blades for magnet sheets (steel rubber sheets), we would like to introduce a case we received inquiries about. Due to the presence of iron powder, standard carbon steel cutter blades wear out quickly, losing their sharpness after just a few minutes of continuous cutting. Therefore, we at Arus proposed blades made from ultra-fine particle alloy. These blades have a durability that is 10 to 20 times greater than that of standard razor blades, making it easy to cut not only the relevant sheets but also functional fibers such as aramid fibers. [Case Summary] ■ Proposal: Blades made from ultra-fine particle alloy ■ Product Features: 10 to 20 times the durability of standard razor blades, easily cuts functional fibers such as aramid fibers. *For more details, please download the PDF or feel free to contact us.

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[Industrial Cutting Tool Example] Carbide Cutter for Cutting Aluminum and Urethane Composite Materials

Based on our extensive experience, we propose cutting tools that are suitable for your needs and applications!

We would like to introduce a case where a carbide cutter blade was supplied for cutting polyurethane insulation material that has aluminum foil laminated on the surface. While standard blade materials can cut polyurethane without any issues, we prioritized the hardness of the blade due to the aluminum composite material and selected carbide alloy. If conditions are met, using a carbide blade can provide durability up to 20 times that of carbon steel (SK material). At Arus, based on our extensive track record, we propose blades suitable for our customers' requests and applications. If you have any concerns about cutting, please feel free to contact us. [Case Overview] ■ Supplied carbide cutter blades for cutting polyurethane insulation material with aluminum foil laminated on the surface. ■ Selected carbide alloy due to the emphasis on blade hardness for the aluminum composite material. *For more details, please download the PDF or feel free to contact us.

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4-flute radius end mill, short blade (high hardness)

100% German materials, applicable from 45HRC to 70HRC.

1. The base material uses ultra-fine particle carbide made in Germany. 2. Base material hardness: 94HRA (HV30 = 1930N/mm²). 3. Flexural strength: over 3900N/mm² (TRS > 3900N/mm²). 4. Processed using a CNC 5-axis controlled grinding machine made by Walter in Germany. 5. ALDURA coating. 6. Recommended for high hardness and high-speed cutting processing.

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4-flute square end mill long blade (high hardness)

100% German materials, applicable from 45HRC to 70HRC.

1. The base material uses ultra-fine particle carbide made in Germany. 2. Base material hardness: 94HRA (HV30 = 1930N/mm²). 3. Flexural strength: over 3900N/mm² (TRS > 3900N/mm²). 4. Processed using a CNC 5-axis controlled grinding machine made by Walter in Germany. 5. ALDURA coating. 6. Recommended for high hardness and high-speed cutting processing.

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Electrode material cutting blade

Achieving both improved cutting surface quality and cost reduction!

1. High-quality cutting that suppresses burrs, coating material peeling, and leftover cuts! Cutting defects such as burrs in electrode cutting can lead to short circuits and a decline in electrode quality. Our company leverages its experience and know-how from supplying blades to other fields and cutting various electrode materials to optimize not only blade design but also cutting conditions and methods, contributing to problem-solving with a comprehensive proposal. 2. Cost reduction through our unique joining technology! Our proprietary joining technology allows for the bonding of rare metals only to the cutting edges necessary for cutting, proposing blades with minimized initial costs. Since it is not brazing, it does not use metals like copper, preventing the risk of short circuits in electrodes. Additionally, by reducing the amount of rare metals used, we create environmentally friendly products. 3. Reduced downtime through increased longevity with carbide! By adopting our joining technology, it becomes possible to use wear-resistant carbide. This leads to improved productivity by maintaining good cutting surfaces for longer and reducing downtime. We will confirm the workpiece and processing conditions and conduct cutting tests using in-house testing machines to propose suitable blade specifications and cutting methods.

  • Other cutting tools
  • Secondary Cells/Batteries
  • Lithium-ion battery
  • blade

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Slitter knife lower blade

Custom and standard products for slitter knife lower blades.

For ultra-hard products, we accept orders starting from 10 pieces. Please feel free to contact us if you have any requests. *For more details, please refer to the PDF document or feel free to reach out to us.

  • Other machine elements
  • cutter
  • blade

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Slitter knife upper blade

Custom and standard upper blades for slitter knives.

Regarding super hard products, we accept orders starting from 10 pieces. Please feel free to contact us if you have any requests. *For more details, please refer to the PDF document or feel free to reach out to us.*

  • Other machine elements
  • cutter
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Saw blade

Custom and standard saw blades.

This is a type of blade that pierces and cuts materials such as paper and film with a serrated edge. The materials that can be processed include SKS-51, SKS, SUS440C, and other stainless steels. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other machine elements
  • cutter
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Test piece cutting blade. Fire-forged cutting blade.

A fire-forged cutting die suitable for materials that cannot be pierced with a Thomson blade, such as hard or thick materials, and for cutting multiple layers of material stacked together.

High durability, renowned cutting performance JIS/ISO test piece cutting blades. The smoothness of the material cutting surface makes it difficult to break, and the rubber test evaluation values are 5-20% higher than those of competitors, with less variation in the values. The dimensional accuracy of the center of the dumbbell test piece is 0.03 to 0.08. ◎ Ultimate standard products, traditional items with blade finishes ranging from soft like a Japanese sword to thicker materials. ◎ Ultimate S-2, a product with increased strength, featuring blade finishes comparable to Japanese swords, suitable for hard materials like plastic, high-hardness rubber, hard urethane, and rigid PVC. ◎ Ultimate S-3, a patented and know-how-involved cutting blade with high hardness and a finish comparable to Japanese swords, is the world's highest quality product that can cut through high-performance fibers such as carbon fiber and aramid mixed with plastic or rubber. Various specifications are available, including attachments for press machines and built-in springs for material ejection, along with a newly developed patented design for a safety ejection cutting blade to prevent injuries from the blade. For those who need detailed company information, please reply by email, and we will send it in PDF format.

  • Other inspection equipment and devices
  • blade

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Puradani Trading Co., Ltd. Precision Engraving Type Product Guide

Lower cost, durability, and wear resistance compared to conventional sculpting types! High precision and complex shape processing are also possible.

The "Precision Engraving Molds" have been consistently developed, manufactured, and sold by Uratani Shoji Co., Ltd. since its founding, receiving high praise while maintaining high quality. The precision and fine processing and engraving techniques cultivated through UC high-speed combination stamps, manual numbering, titanium seals SIGN&LOGOS, OP, UL (patented) type mold date marks, and various custom-made stamps have been poured into the existing product group known as "cutting molds," representing a new field for Uratani Shoji. These molds feature precision engraving that pursues a commitment to the cutting edges of each mold, which could not have been achieved solely with the latest numerical control machinery. [Examples of Production Molds and Products] [Precision Engraving Molds] ○ Soap cutting molds ○ Plastic washer cutting molds [Cut Products] ○ Copper, Kapton tape combination ○ PET film, double-sided tape bonding For more details, please contact us or download the catalog.

  • Marking machine
  • Other markings
  • blade

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Shimoda Dragonfly Dedicated Pull Plate Saw Blade (Recycled Material)

An unprecedented comfortable user experience!

■Pull Board Born from Saw Blades This pull board is made from recycled band saws. The elasticity of the material creates a comfortable experience unlike anything you've experienced before. ■New Sensation of Elasticity The appropriate flexibility reduces strain on your hands and improves work efficiency.

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Ultra-hard end mill | Unequal lead | 3-flute for aluminum

Gühring, which has been in business for over 120 years and operates globally from Germany, has developed an unequal lead square end mill for aluminum.

Gühring's end mill product range includes various shapes such as square, ball, and radius, achieving high-speed and high-efficiency machining through the adoption of unequal pitch and unequal lead. Additionally, it offers a wide lineup that allows selection according to a broad range of work materials, from general steel to stainless steel and difficult-to-machine materials. Among them, the end mills for aluminum feature a three-flute square shape. There are regular, long, and long-neck types in the lineup. In addition to aluminum, high-speed machining of non-ferrous metals and plastics is possible. The adoption of unequal lead suppresses vibrations during machining, enabling stable processing. *For more details, please refer to the PDF materials or feel free to contact us.*

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Super hard end mill | Ramping | High-efficiency uneven lead 4-flute

Over 125 years of establishment, Gühring, which operates globally from Germany, has developed the carbide roughing / high-efficiency uneven lead 4-flute 'RF 100 U'.

The high-efficiency, unequal lead type carbide 4-flute roughing end mill 'RF 100 U' can be universally applied to various types of workpieces. The adoption of a new asymmetric flat knuckle shape provides a good intermediate finish. The wide groove width design significantly improves chip evacuation. The special roughing shape greatly reduces cutting resistance, resulting in a tool life improvement of up to 60% compared to conventional tools. It is ideal for machining on machines with low rigidity or under unstable clamping conditions. *For more details, please refer to the PDF document or feel free to contact us.*

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Ultra-hard end mill | Ramping | Unequal lead 3-flute for aluminum

Gühring, which has been in business for over 125 years and operates globally from Germany, has developed the carbide roughing/aluminum unequal lead three-flute cutter 'RF 100 A'.

High-efficiency unequal lead type carbide 3-flute roughing end mill 'RF 100 A' for aluminum alloy machining. The adoption of a new asymmetric flat knuckle shape provides a good mid-finish surface. The wide groove width design significantly improves chip evacuation. The special roughing shape greatly reduces cutting resistance, resulting in a tool life improvement of up to 60% compared to conventional tools. It is ideal for machining on machines with low rigidity or under unstable clamping conditions. *For more details, please refer to the PDF document or feel free to contact us.*

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