Mining Pick Cutting Teeth And Sleeves
DaltronX specialises in manufacturing carbide cutting picks and sleeves for underground coal mining. Our tungsten carbide mining teeth and sleeves are expertly designed to meet the rigorous demands of continuous miners, road headers, and longwall shearers, making them the preferred choice for coal mining operations worldwide. Whether you’re working in underground or open cast mining, we provide the ideal solutions to meet your needs.
We manage the entire production process for our mining cutting picks, ensuring precise quality control at every step. With over 30 years of experience, we’ve fine-tuned our methods to create durable, efficient carbide tools that perform well in both surface and underground mining conditions. Explore our range of carbide mining picks and sleeves or work with our team to develop custom solutions for your specific mining requirements.
Mining Teeth Shank Systems
Our mining shank system includes carbide cutting picks and holders in 20mm, 22mm, 25mm, 30mm, and 35mm sizes. Designed for a secure fit, these systems reduce machine wear and are ideal for continuous miners, longwall shearers, and road headers in both underground and surface mining operations.
20mm Cutting Pick And Sleeves
7mm Carbide OD
54mm Reach
20mm ID
40mm/27mm Step Shank
20mm ID
35mm/27mm Step Shank
20mm ID
28mm Shank
25mm Cutting Pick And Sleeve
16mm Carbide OD
73mm Reach
Standard Profile
25mm ID
Press Fit
30mm Cutting Picks And Sleeves
16mm Carbide OD
86mm Reach
Slimline Profile
16mm Carbide OD
82mm Reach
Slimline Profile
16mm Carbide OD
82mm Reach
Standard Profile
20.5mm Carbide OD
76mm Reach
Standard Profile
19mm Carbide OD
81mm Reach
Standard Profile
16mm Carbide OD
82mm Reach
Slimline Profile
13mm Carbide OD
85mm Reach
Slimline Profile
19mm Carbide OD
81mm Reach
Standard Profile
16mm Carbide OD
86mm Reach
Slimline Profile
16mm Carbide OD
82mm Reach
Standard Profile
21mm Carbide OD
76mm Reach
Standard Profile
22mm Carbide OD
84mm Reach
Standard Profile
30mm ID
Press Fit
30mm ID
Press Fit with Clip
30mm ID
Press Fit
30mm ID
Press Fit
Half Moon Clip
30mm ID
52mm/40mm Step Shank
30mm ID
44mm Shank
Loose Fit
30mm ID
51mm Shank
Loose Fit
35mm Cutting Picks And Sleeves
19mm Carbide OD
102mm Reach
Standard Profile
19mm Carbide OD
85mm Reach
Standard Profile
16mm Carbide OD
101mm Reach
Slimline Profile
16mm Carbide OD
82mm Reach
Standard Profile
20.5mm Carbide OD
90mm Reach
Standard Profile
14.5mm Carbide OD
102mm Reach
Slimline Profile
35mm ID
Press Fit
35mm ID
Loose Fit with Clip
Mining Sales Team
UNDERGROUND MINING CATALOGUE
faq
Our advanced brazing techniques and precision cold-formed body design ensure even wear distribution, enhanced rotation, and a longer tool lifespan. With superior head hardness and a design that redirects debris away from sensitive parts, our picks promote reliable, efficient cutting with reduced vibration and minimal risk of damage.
Independent field tests in South African coal mines show that DaltronX cutting picks boost performance by 20-30%. They increase tonnage per pick, reduce downtime, and enhance productivity due to their design and efficient handling of different coal strengths. This results in big cost savings for our customers.
Yes, our range of mining cutting teeth are compatible with all major underground and surface mining machines, including continuous miners, longwall shearers, and road headers.
Yes, if you don’t find a product that meets your requirements, we can manufacture custom solutions based on your specifications. Alternatively, our technical mining applications team can visit your site to recommend the most suitable cutting teeth for based on specific needs.
Lead times for manufacturing and delivery depend on order size and any customization needs. We keep strategic stock levels of key mining carbide cutting picks to ensure fast response times for urgent orders. Once an order is placed, we will provide a specific timeline to meet your operational demands efficiently.
DaltronX uses cold forging to produce cutting teeth with a denser grain structure, resulting in superior durability, precision, and a smoother surface finish. This process offers better strength and performance than hot forging, making it ideal for demanding applications.
