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Applications of Tungsten Carbide Rod

Wet Milling: To have the WC&Co mixture even distribution and combination and ensure uniform grain size, Tungsten carbide rod powder mixed with cobalt powder and other additive milling in alcohol.

Blending pressing binder and drying: The mostly used pressing binder in the manufacture of cemented carbide rod, such as rubber, paraffin wax, PEG, SBS and so on. The WC&Co mixture material will dried in the process before press.

Pressing to rods: There are two way to press with different advantages. Extrusion way, best way to press long length rods from 300-330mm. Automatic press, best way to press short rods (45-100mm length).

Drying shaped rods: Firstly, it should be naturally dried. Second, drying in oven.

Sintering: Sintered under 6Mpa pressuer and 1400℃+ .

Anlysis: Inspection with hardness, TRS, Metallographic, Coercive force, density etc.

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Applications of Solid Carbide Boring Bar Blank

1. High Rigidity

Improve surface finish and perpendicularity. Made of pure tungsten carbide material, excellent rigidity, good shock absorption, no distortion as lateral stiffness too large.

2. High Precision

Improve dimensional precision. To extend the processing depth, enhance the accuracy of processing & to achieve long, ultra-deep,ultra-high precision machining possibilities.

3. High Efficiency

No welding fracture concerns, emphasizing the variability of the replaceable tool head, a solid carbide boring bar blank can reach dozens of combinations, widely used in Rough & precision processing industrial.

4. Reduce Cost

Extending the tool life. The Holder can be exchangeable even if the cutter is damaged and Easy and convenient to replace. The tip and the Holder are screwed and run in reverse direction to the spindle.

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Is woodworking insert tooling right for you?

More and more woodworkers today are turning to woodworking insert tools because they offer an attractive combination of value, versatility and quality. But what exactly is woodworking insert tooling?

The cutting edges are manufactured separately from the tool bodies and joined later. Other types of tooling typically have cutting edges that are permanently attached to the body, usually by a silver solder braze joint. Woodworking insert tooling is joined to a tool post by some type of mechanical clamp or screw.

Carbide difference

A different grade of carbide can be used for woodworking insert tooling. The grade of carbide is most often a much better grade, because it’s mechanically clamped and doesn’t have to be brazed. In brazing, the material used to braze the knives to the tool post attaches to the carbide in the knife, changing the carbide slightly.

With brazing you can’t always get the angles you need in machining different types of hard woods, soft woods, composites or whatever. With woodworking insert tooling you get a better finish.

Woodworking insert advantages also extend beyond the cutting edge. Because woodworking inserts are attached to tool bodies mechanically, manufacturers can use different, lighter metals for tool bodies. Light-metal tool bodies minimize tool weight when addressing weight-sensitive tool applications.

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Tungsten Carbide Cutting Wheel

Tungsten carbide cutting wheel is a replacement wheel for manual tile cutters. Replacing the scoring wheel will help maintain optimal cutting performance. The tungsten carbide cutting wheel is titanium-coated for extreme durability and accurate cuts over a long life.

For cutting floor and wall tile with score and snap manual tile cutters.

Titanium-coated tungsten carbide for accurate and durable cutting.

Tungsten carbide cutting wheel for smooth scoring.

Replacing a worn scoring wheel will help maintain the tile cutter’s performance.

Original equipment replacement part includes a tungsten carbide cutting wheel and screw.

Tool tip: Always take a spare tungsten carbide cutting wheel to the job site so you will be ready to replace a worn wheel without interruption.

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What Are the Uses of Carbide Rods?

What are carbide rods?

Carbide rods are made of WC as the main raw material, plus other precious metals and paste phases, which are pressed and sintered by powder metallurgy. Carbide rods have the characteristics of high hardness and high strength, and they penetrate into all areas of our lives.

Uses of carbide rods:

1. Carbide rods are used in the field of mechanical production and processing

Micro-drills in the PCB industry, electrode rods in the optoelectronic communication industry, cemented carbide drill bits, milling cutters, reamers, ejector rods, push rods, wear-resistant precision parts, integral CNC milling cutters and machining tools with holes in the machining industry.

The difference between the alloy grades of the carbide rods processed with 45 degrees and 55 degrees: When processing HRC45 material, consider using BT45 grade. For processing 55 degree materials, consider using BT55 grade.

2. Carbide rods are used as punches

Commonly used as a core rod. When it comes to punching needles, I have to explain the stamping die. Punching needles are an indispensable accessory when the stamping die is working. It is installed on the stamping die for continuous blanking, stamping, and punching operations to separate or plastically deform the processed materials, so as to obtain the desired finished product or semi-finished product.

3. Carbide rods in furniture industry

Commonly used in computer engraving sharp knives.

4. Carbide rods are used in the medical equipment industry

Commonly ones are integral cemented carbide steel burs for dentistry.

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Application Of Customized Carbide Saw Tips

Carbide saw tips brazed on the teeh of the metal blades, it can be done by normal brazing procss and also laser brazing process. The blade with carbide saw tips normally used for machining wood (nature wood, plywood, MDF, etc.) and also used for machining metal, like cast iron, Stainless steel, aluminum.

Besides the standard types of saw tips, it also have many customized saw tips which done by clients’ design for special using purpose.

Grade range “K” is the normal grades for carbide saw tips, but also have other grade like range “P” for stainless steel, aluminum and some other material.

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Mechanical Seal Ring Design Considerations

The mating pair of counter-rotating seal rings are the heart of the mechanical seal and designers must consider many overlapping physical systems affecting their performance.

There are many factors to consider when designing a resilient mechanical seal ring. This article will look specifically at how mechanical loads, thermal loads, and seal ring deformation all impact a success mechanical seal design.

Mechanical Loads

Designing for resilience starts with determining the loads applied to the mechanical seal rings. Mechanical loads are exerted by other components and by the surrounding fluid pressure.

To maintain the required static equilibrium, fluid pressure and spring force applied on the rear of the mechanical seal ring is supported on the other end by a mix of fluid film pressure and contact between the two seal faces. Fluid pressure applied on the front and rear faces of the mechanical seal ring exerts axial forces that will either open or close the seal faces against each other. Most of the pressure gets “canceled out” (is acting equally on both sides), what matters are the boundaries on either side of the mechanical seal ring where pressure is being sealed.

Thermal Loads

Though viscous shear does take over as the predominant heat-generating mechanism above high viscosities and/or high surface speeds, it is material-to-material friction contact that generates the bulk of the heat load in most mechanical seal applications.

The heat generated by friction between the faces is carried away to a minimal extent by the normal liquid leakage, but mainly it is absorbed by the two mechanical seal ring materials and transferred to the surrounding fluids by convection. After settling into an equilibrium with the surrounding environment and the face heat load, a mechanical seal ring has a temperature distribution that is typically hottest on the ID of the face, cooler on the OD of the face where the fluid flow is, and coolest in the rear of the mechanicalseal ring furthest away from the face.

This temperature gradient causes the mechanical seal ring to expand unevenly, resulting in distortions and internal stresses. Thermal shocks from sudden temperature increases will produce radial stress cracks that cause the seal to fail—some materials like tungsten carbide are particularly susceptible as compared to silicon carbides. Pressure and temperature caused deformations of the face profile can further increase heat generation between the faces. In the worst cases, instability could occur leading to repeated opening and closing of the faces, chipping along the edges, and seal failure.

Seal Ring Deformation

Deflections caused by mechanical and thermal loads can be roughly described as rotations of the cross-section around its centroid. Tangential loads from anti-rotation devices can also significantly flex the seal faces. If you were to greatly exaggerate the actual deformation, the cylindrical ring would look either like an expanding or reducing funnel. Care is taken when designing the seal to make as stiff a shape as possible and to ensure that when deflections happen, they are in the direction that is beneficial to the function of the mechanical seal.

If the seal section rotates so that the faces are converging on the low-pressure side, then more fluid can enter the sealing gap which increases the fluid film pressure, reduces contact, wear, and heat-generation between the faces. This is the characteristic V-gap. However, too dramatic a relative angle between the faces will increase the pressure gradient factor above the balance ratio and result in excessive leakage and seal failure.

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Carbide Preform for the Cutting Tool Industry

Initially focused on the cutting tool industry, we supply carbide preforms for rotary cutting tools.

We also supplies gear cutters that are required for the production of spiral gears. Another product group comprises gear hobbing mill blanks that are used in the production of straight-tooth gears. Principal customers are drive-train manufacturers.

Straight cutting blades and rotary cutters for granulating extruded plastic materials are also part of our offering.

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Application on Mechanical Seal Ring

Silicon carbide ceramics have good chemical resistance, high strength, high hardness, good wear resistance, low friction coefficient and high temperature resistance, so it is an ideal material for manufacturing mechanical seal ring.

The sintering temperature vacuum sintering furnace can reach up to 2400C with high temperature uniformity. Nitrogen argon gas can be used to protect the furnace.The silicon carbide products produced have high compactness and great bending strength.

Chemical corrosion resistance is good, is made of silicon carbide mechanical seal ring products essential production equipment.

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Carbide Preform Blanks For Cutting Tools

We specializing in carbide preform blanks for the rotary tooling industry Carbide Technologies can produce custom blanks to customer specifications in a wide variety of configurations.

We custom tungsten carbide preforms are guaranteed to perform for you.

Here, some of the uses of carbide preforms blanks is for cutting tools, EDM blanks, die and bushings, knives, punches, wear parts and special wear blanks. We are your one stop source for carbide preform blanks or anything for your blanks needs, let us be the place for your.