Flow Waterjet Announces Promotion of New President

Okuma’s MA-12500HW horizontal machining tungsten carbide inserts center is designed to provide a balance of speed and cutting power in difficult materials like cast iron and aluminum alloys. This makes it well suited for large-part aerospace machining, the company says. The W axis allows for a longer tool stroke to machine complex, difficult-to-reach part features with a maximum tool length of 1,100 mm.

Built on an integral bed and base and designed with reinforcing ribs for increased stability and load carrying capacity, the MA-12500H incorporates Okuma’s Thermo-Friendly Concept to ensure thermal stability and machining accuracy. The machine is available with the standard 50-taper, 6,000-rpm, 60/50-hp spindle; a 12,000-rpm wide-range spindle; or a 4,500-rpm heavy-duty spindle.

Maximum load capacity is 11,000 lbs. X-, Y- and Z-axis travels measure 86.61" × 58.07" × 64.9Indexable Carbide Inserts 6", respectively, providing sufficient space for parts as large as 78.72" in diameter and 58.07" high. Rapid traverse is 1,653 ipm. The machine uses a 0.001-degree B-axis rotary table and a 49.21" square pallet along with a parallel-type two-pallet automatic pallet changer. A 171-tool matrix automatic toolchanger (ATC) is available as an option instead of the 81-tool matrix ATC.

The Carbide Inserts Website: https://www.estoolcarbide.com/coated-inserts/

What are the common challenges or limitations associated with using CBN inserts

carbide cutting tools are widely used in various industries, including automotive, aerospace, TNMG Insert construction, and metalworking. They are known for their hardness, wear resistance, and ability to withstand high temperatures, making them ideal for cutting, drilling, and shaping hard materials such as metal, wood, and composites.

The global carbide cutting tools market has been experiencing steady growth over the years. The market size was valued at around USD 10 billion in 2020, and it is expected to continue growing at a CAGR of around 6% from 2021 to 2026.

The automotive industry is one of the major consumers of carbide cutting tools, driven by the need for precision machining and the growing demand for lightweight materials. Other significant end-use industries include aerospace, defense, construction, oil and gas, and general manufacturing.

Carbide cutting tools encompass a wide range of products, including inserts, end mills, drills, burrs, and reamers, among others. These tools are available in various shapes, sizes, and coatings to suit different cutting applications.

The global market for carbide cutting tools is geographically SDMT Insert diverse, with key regions including North America, Europe, Asia Pacific, and Rest of the World. Asia Pacific is the largest market, driven by the presence of major manufacturing industries in countries like China, Japan, and South Korea.

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The Carbide Inserts Website: https://www.cuttinginsert.com/product/vcgt-insert/

How could solid carbide end mills be advanced ?

Cutting tools are available in a variety of specifications, designs, and materials in the modern machining and engineering sector.Carbide cutting toolsare one of the most popular tools on the market now.

Carbide cutting tool are cutters manufactured of carbide material,which strengthens the tool and allows for improved cutting performance.it makes cutting tools can withstand higher operating temperatures while maintaining cutting performance. Because of its physical qualities, carbide material provides greater benefits to tooling.

The main reason for carbide cutting tools use more widely is its cost saving.

Its cost-effectiveness due to its durability and high-speed machining capacity, in other saying ,the end user do not have to VCGT Insert change cutting tools as frequently since carbide cutting tools are wear-resistant and have a longer tool life time, resulting in lower costs.

Besides, carbide materials enable cutting tool cutting speeds and feed rates to be increased. The time it takes to complete a work cycle is reduced when this attribute is present. Reduced tool change and work cycle results in lower costs and higher production, which is one of the main reasons why carbide cutting tools are preferred over other cutter types.

We,Zhuzhou Estool is a professional manufacture for carbide cutting tools ,including carbide rods ,carbide saw tips and customized carbide EDJ Grooving tools .any needed ,welcome to contact us for more details ,thanks!

The Carbide Inserts Website: https://www.cuttinginsert.com/product/cvd-coated-insert/

Tungsten Supply and Deman

As a strategic metal, Carbide Inserts tungsten is widely used in metallurgical machinery, petroleum chemistry, aerial and space industries and national defence engineering. So, today we are going to talk about tungsten supply and demand.

China has rich tungsten resources. During the past 10 years, China supplys more tungsten than the demand. By the end of 1998, China’s tungsten production capacity exceeded 35,000 tons. In recent years, the global demand for tungsten has been about 31,000 tons, whild China’s tungsten production in 1998 amounted to about 22,000 tons, making up 71% of the global tungsten demand.
VNMG Stainless Steel Inserts
At present, China’s domestic tungsten demand is about 8,000 tons and most of its tungsten is exported. While, excess tungsten exports have caused a decline in the global tungsten price, which is unfavorable to the development of China’s tungsten industry.
Varied international and domestic tungsten markets make it difficult to accurately predict the future demand for tungsten.
It is necessary to maintain and give full play to tungsten superiority tungsten carbide inserts to guarantee a sustainable development of China’s tungsten industry.
Above is about tungsten supply and demand.
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Tungsten Manufacturer & Supplier: – https://www.estoolcarbide.com

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The Carbide Inserts Website: https://www.cuttinginsert.com/product/epnw-milling-insert/

Dirks: Interpretation of Law Could Result in Tighter Gun Control

Aluminium was once more costly than gold. Napoleon III, emperor of France, reserved cutlery made from it for his most favoured guests, and the Washington monument, in America’s capital, was capped with it not because the builders were cheapskates but because they wanted to show off. How times change. And in aluminium’s case they changed because, in the late 1880s, Charles Hall and Paul Héroult worked out how to separate the stuff from its oxide using electricity rather than chemical reducing agents. Now, a small British firm, hope to do much the same with tantalum, titanium and a host of other recherché and expensive metallic elements including neodymium, tungsten and vanadium.

The effect could be profound. Tantalum is an ingredient of the best electronic capacitors. At the moment it is so expensive ($500-2,000 a kilogram) that it is worth using only in things where size and weight matter a lot, such as mobile phones. Drop that price and it could be deployed more widely. Neodymium is used in the magnets of motors in electric cars. Vanadium and tungsten give strength to steel, but at great expense. And the strength, lightness, high melting point and ability to resist corrosion of titanium make it an ideal material for building aircraft parts, supercars and medical implants—but it can cost 50 times as much as Carbide Grooving Inserts steel. Guppy Dhariwal, Metalysis’s boss, thinks however that the company can make titanium powder (the product of its new process) for less than a tenth of such powder’s current price.

The difference between its process and that of Hall and Héroult (and why electrolysis has not previously been used to make metals such as tantalum and titanium) is that the Hall-Héroult method requires both input oxide and output metal to be in liquid form. That demands heat. But aluminium has a fairly low melting point and its oxide can be dissolved in a substance called cryolite that also has a low melting point, so the amount of heat needed is manageable. Titanium and tantalum are not so obliging. The company trick is to do the electrolysis on powdered oxides directly, without melting them.

This was shown Carbide Inserts to be possible in 1997 when researchers at Cambridge University found that immersing small samples of certain oxides in baths of molten salt and passing a current through them transformed the material directly into metal. Metalysis was set up in 2001 to commercialise the idea and in 2005 the firm moved to Wath-upon-Dearne, a village near Sheffield, in South Yorkshire, in order to tap the local engineering skills that once made the county (home of silver plate, stainless steel and the Bessemer converter) the California of metallurgy. These skills turned a technique that could produce a few grams of metal in a laboratory into a process that operates on an industrial scale.

 

Tungsten Metals Manufacturer & Supplier: Chinatungsten Online – https://www.estoolcarbide.com
Tel.: 86 592 5129696; Fax: 86 592 5129797
Email: https://www.estoolcarbide.com
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The Carbide Inserts Website: https://www.cuttinginsert.com/product/sngx-insert/