Solid Carbide Jobber & Stub Drills
Engineered for high-rigidity setups, offering high beam strength and reduced deflection during short-hole production.

Bauron manufactures solid carbide and HSS-Co industrial drills engineered for rapid penetration, accurate hole positioning, and controlled chip evacuation across CNC machining environments.
Holemaking is often one of the highest-volume machining operations in a shop, making tool stability, drill-point geometry, and thermal control critical to productivity. Bauron combines micro-grain carbide substrates with PVD coating options for application-specific drilling requirements.
Whether executing deep-hole drilling, step-drilling multi-diameter bores, or working in tough superalloys, the tool geometry can be selected to reduce secondary spotting, minimize burr formation, and maintain controlled diametrical tolerances.
Engineered for high-rigidity setups, offering high beam strength and reduced deflection during short-hole production.
Built with internal helical coolant channels that deliver high-pressure fluid directly to the cutting point to flush chips and lower cutting-zone heat.
Designed to drill, chamfer, and counterbore in a single spindle pass, shortening machine cycle times.
Optimized with parabolic flute geometries to clear long chips continuously while reducing frequent pecking cycles.
Precision-ground small-diameter drills developed for micro-fluidics, medical device components, and electronic PCB hole arrays.
Select a product to review its applications, features, technical specifications, material options, FAQs, and interactive 3D model.
High-helix flutes, 118° to 130° point angles, polished flute channels, and DLC coating options help reduce galling and chip welding.
Heavy web cores, 135° to 140° split points, and heat-resistant AlTiN or nACo PVD coating options support machining of 316L, Inconel, and titanium.
Flat point profiles with reinforced corner chamfers help resist abrasive margin wear during dry or wet machining.
Specialized dagger or double-angle drill points shear abrasive fibers to help reduce exit-layer delamination.
When standard drills cannot satisfy complex multi-step blueprints or unique depth-to-diameter ratios, Bauron can review custom drill tooling requirements with machine shops and production teams.
Discuss a Custom DrillInternal coolant channels deliver high-pressure fluid directly to the drill chisel point. This cools the active cutting zone, reduces thermal wear, and flushes chips through the flutes to help prevent chip packing in deep-hole drilling.
Custom drill designs can merge multiple operations—such as drilling, reaming, and chamfering—into a single tool pass. This can reduce tool changes and cycle times while improving hole-to-hole concentricity.
A 135° to 140° split-point angle is commonly recommended for stainless steel and titanium. The flatter point shortens chip length, while the split point reduces axial thrust forces and helps prevent the tool from walking.
Bauron can review both small-batch custom prototype requirements and larger-volume production applications. Submit the material, geometry, tolerances, and expected production volume for an engineering assessment.
Explore the industrial drill catalog or submit custom drill requirements based on your technical drawing, workpiece material, machine, and production targets.
Bauron provides direct design and engineering support for application-specific tooling requirements. Share your custom geometry, coating needs, tolerances, and production goals for technical review.