High Quality QL50 130mm Shank Adaptor Drill Steel Foot Valve Carbide Tungsten Bit
Professional DTH bit designed for construction, quarry, and top hammer drilling applications.
DTH Bits for Mining & Blast Hole Drilling
Down-the-Hole (DTH) bits are essential components for mining, quarry drilling, water well drilling, and blast hole applications where high penetration rates and reliable performance are critical.
DTH bits are engineered for efficient rock penetration, extended service life, and stable operation in demanding hard rock environments.
Product Specifications
| Bit Dia. (mm) |
Bit Dia. (inch) |
Front Buttons |
Gauge Buttons |
Flushing Holes |
Weight (kg) |
Part Number |
| Spherical Concave Face |
| 130 | 5.125 | 4x14, 3x14 | 8x16 | 2 | 14.5 | 4148301347 |
| 133 | 5.25 | 4x14, 3x14 | 8x16 | 2 | 14.5 | 4148301348 |
| 140 | 5.5 | 4x14, 4x14 | 8x16 | 2 | 15.5 | 4148301349 |
| 146 | 5.75 | 4x14, 4x14 | 8x16 | 2 | 15.6 | 4148301350 |
| 152 | 6 | 4x16, 4x16 | 8x18 | 2 | 16.5 | 4148301351 |
| Ballistic Convex Face |
| 130 | 5.125 | 3x14, 4x14 | 9x16 | 3 | 14.5 | 4148301352 |
| 133 | 5.25 | 3x14, 4x14 | 9x16 | 3 | 14.5 | 4148301353 |
| 140 | 5.5 | 3x16, 4x16 | 9x16 | 3 | 15.5 | 4148301354 |
| 146 | 5.75 | 3x16, 4x16 | 9x16 | 3 | 15.6 | 4148301355 |
| 152 | 6 | 3x16, 5x16 | 9x18 | 3 | 16.5 | 4148301356 |
| Spherical Flat Face |
| 130 | 5.125 | 7x14 | 8x16 | 2 | 14.5 | 4148301357 |
| 133 | 5.25 | 7x14 | 8x16 | 2 | 14.5 | 4148301358 |
| 140 | 5.5 | 7x14 | 7x18 | 2 | 15.5 | 4148301359 |
| 140 | 5.5 | 8x14 | 9x16 | 3 | 15.5 | 4148301360 |
| 146 | 5.75 | 8x14 | 9x16 | 3 | 15.6 | 4148301361 |
| 152 | 6 | 8x16 | 9x18 | 3 | 16.5 | 4148301362 |
Design & Manufacturing
- Materials: High-quality alloy steel with premium tungsten carbide buttons
- Durability: Designed to withstand heavy impact drilling and abrasive rock formations
- Optimized button arrangement: Improves energy distribution, maintains hole straightness, and reduces vibration
DTH Drilling System Advantages
In DTH systems, the hammer sits directly behind the bit, transferring impact energy efficiently to the rock surface. This design minimizes energy loss and boosts productivity compared to conventional methods.