K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

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Customization: Available
Voltage: 220V/380V
Customized Support: OEM
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  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
  • K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
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  • Overview
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  • FAQ
Overview

Basic Info.

Model NO.
carbide ball
Material
Wc 94%, Co 6%
Transport Package
Export Packing
Specification
As Your Request
Trademark
ZUANXIN
Origin
Shandong, China
Production Capacity
5000/Month

Product Description

Product Description

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

Wear-Resistant Alloys: An Introduction
Wear-Resistant Alloys are a class of materials specifically engineered to withstand surface degradation and material loss caused by mechanical wear. This wear can result from abrasion (scraping), erosion (impact by particles), adhesion (galling and seizing), and impact.

Their primary function is to extend the service life of industrial equipment, reduce downtime, and improve operational efficiency in demanding environments.

The Science of Wear Resistance
Wear resistance is not a single material property like density; it's a complex system behavior. The key to a material's wear resistance lies in its ability to resist plastic deformation and fracture. This is primarily achieved through:

High Hardness: Resists penetration and abrasion by hard particles.

Work Hardening: The ability to become harder and tougher at the surface when impacted or stressed (e.g., Hadfield manganese steel).

Toughness: Resists chipping, cracking, and spalling under impact loads.

Microstructure: The presence of hard carbides (e.g., chromium, tungsten, vanadium carbides) embedded in a tough metallic matrix is a common feature.

Major Types of Wear-Resistant Alloys
Wear-resistant alloys are typically based on ferrous metals (iron and steel) or non-ferrous metals, each tailored for specific wear mechanisms.

Alloy Type / Base Key Characteristics Common Grades / Examples Primary Applications
Martensitic Steels High hardness and good strength; achieved through heat treatment (quenching & tempering). AR400, AR500, 4140, 4340 Mining buckets, crusher liners, bulldozer blades, wear plates.
Austenitic Manganese Steel "Hadfield Steel". Extremely tough and work-hardening. Upon impact, its surface hardness increases dramatically while the core remains tough. A128 Grade C, MN13, MN18 Jaw crusher liners, railroad frogs, rock drill bits, crawler tracks.
High-Chromium White Cast Iron Exceptional abrasion resistance due to a high volume of hard chromium carbides. Can be brittle under impact. Ni-Hard, A532 Slurry pump casings, mill liners, pulverizer rolls, shot blasting equipment.
Carbide Composites Not a monolithic alloy, but a critical wear-resistant material. Hard tungsten carbide particles embedded in a tough metal matrix (like cobalt or nickel). Tungsten Carbide-Composites, Stellite (Cobalt-based) Hardfacing wires, wear plates, cutting tools, drill bits, valve seats.
Cobalt-Based Alloys Excellent resistance to a combination of wear, corrosion, and high temperatures (red-hardness). Stellite, Haynes alloys Gas turbine blades, high-temperature valves, saw tips, engine components.
Nickel-Based Alloys Similar to cobalt alloys, offering good wear and corrosion resistance, often used where cobalt is not suitable. Inconel, Colmonoy Chemical processing equipment, aerospace components, hardfacing overlays.

Common Application Methods
These alloys are not always used to make entire components. They are often applied in cost-effective ways to protect a base material:

Cast Components: The part (like a pump casing) is entirely cast from the wear-resistant alloy.

Wear Plates: Sheets of hardened steel (e.g., AR400) are bolted or welded onto vulnerable surfaces.

Hardfacing / Cladding: A layer of wear-resistant alloy is welded or fused onto the surface of a cheaper, tougher base metal. This is a very common and economical method.

Thermal Spray: A coating of the alloy is sprayed onto the surface to create a wear-resistant layer.

In summary, Wear-Resistant Alloys are a diverse and critical family of materials that form the backbone of heavy industry. The selection of the appropriate alloy depends on a precise understanding of the wear mechanism (abrasion, impact, etc.), the operating environment (including temperature and corrosion), and economic considerations.

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets
K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

 

Recommended Products

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

Company Profile

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting BulletsK20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting BulletsK20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

Packaging & Shipping

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

FAQ

K20 Tungsten Carbide Bearing Ball, 5.0 mm Tungsten Beads for Hunting Bullets

Q1: What is the Warranty for the tungsten carbide products ?

 

A1: We own high precision grading machine to control geometry dimensions and apply ultra fine grain size substrate coated with high performance coatings to guarantee the lifetime of our products, which can satisfy every working condition.If any quality problems on our side occurred in this period , we will take on the shipping cost and replacement.

Q2: Do you provide free samples?

 

A2: Yes, usually we provide free samples for testing under the condition of freight paid by customer.
 

Q3: What is your minimum order requirement?


A3: We will indicate the MOQ for each item in the quotation sheet. We accept the sample and trial order. If the quantity of single item can't reach the MOQ, the price should be sample price. 

Q4: What is the delivery time of your products?  


A4: It depends on the inventory availability.If items needed are in stock, the delivery time would be within 8 work days, but if not the delivery time would be around 20 work days.

Q5: Can you manufacture carbide Special-shaped products?


A5: Yes, we can. We can produce both standard end mills and special tools. We can make them according to your drawings and samples.

Q6: May I have my order working schedule ?


A6: Yes, we will send working schedule of your order each week. We will inspect and test all merchandise in case of damaging and missing parts before shipment. The detailed inspection pictures of the order will be sent to you for your confirmation before delivery.

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