Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer

Product Details
Customization: Available
Type: Core Drill
Usage: Coring
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Registered Capital
20000000 RMB
Plant Area
>2000 square meters
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
  • Optimal Rock Fragmentation Reduced Drilling Time Diamond Drill Reamer
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Basic Info.

Model NO.
AQ, BQ, NQ, PQ, HQ, SQ, , HQ3, PQ3. NTW, HTW, HQ3
Certification
CE, ISO
Application
Reaming
Industry
Geological Survey
Payment Term
Tt or LC
Product Name
Reaming Shell/Reamer
Thread Type
Pi, Metric, Dcdma etc.
Surface Finish
Smooth
Material
Diamond
Coating
Natural Diamond or Man-Made Diamond
Heat Resistance
High
Cutting Edge
Sharp
Transport Package
Nude/Wooden Case/Carten
Specification
PQNQHQNTWHTWNQ3HQ3
Trademark
BEST
Origin
China
HS Code
82071910
Production Capacity
500000 Pieces/Year

Product Description

Product Description:

  1. Equipment Maintenance: Regularly inspect and maintain the drilling equipment, including the diamond reaming shells, drill bits, and core barrels. This helps identify and address any issues or signs of wear and tear, ensuring optimal performance and longevity of the tools.

  2. Drilling Plan Optimization: Continuously evaluate and optimize the drilling plan based on the geological data obtained from core samples. Adjust the positioning and spacing of drill holes, as well as the selection of diamond reaming shells, to maximize the efficiency of the drilling process and improve data accuracy.

  3. Core Sample Storage and Retrieval: Establish a systematic process for storing and retrieving core samples obtained with diamond reaming shells. This includes proper labeling, cataloging, and storage conditions to ensure easy access and preservation of the samples for future analysis or reference.

  4. Geophysical Surveys: Combine the data gathered from diamond reaming shells with geophysical surveys to enhance the understanding of the subsurface geology. Integrating geophysical information with core samples can provide a more comprehensive geological model for mining operations.

  5. Real-Time Monitoring and Data Acquisition: Consider utilizing technologies that allow for real-time monitoring of drilling parameters and data acquisition during the drilling process. This can provide immediate feedback on drilling performance, core recovery, and geological information, enabling prompt adjustments and decision-making.

  6. Collaboration with Engineers: Foster collaboration between drilling teams and mining engineers. Engage engineers in the planning and execution of drilling operations to ensure alignment with mine design objectives and optimize the use of diamond reaming shells for efficient resource extraction.

  7. Risk Management: Conduct a thorough risk assessment before drilling operations and implement appropriate risk management measures. Address potential hazards such as unstable ground conditions, equipment failure, or adverse weather conditions to mitigate risks and ensure the safety of personnel and equipment.

  8. Cost Optimization: Continuously evaluate the cost-effectiveness of using diamond reaming shells in drilling operations. Consider factors such as tool lifespan, core recovery rates, drilling efficiency, and overall project economics to make informed decisions and optimize cost management.

  9. Research and Development: Stay informed about research and development initiatives in the field of drilling technology, including advancements in diamond reaming shell design and materials. Explore opportunities to collaborate with research institutions or industry experts to leverage cutting-edge technologies and enhance drilling performance.

  10. Regulatory Compliance: Adhere to applicable mining and drilling regulations, permits, and environmental guidelines. Stay updated with regulatory requirements and ensure compliance throughout the drilling process, including the use of diamond reaming shells.

  11. Quality Management Systems: Implement quality management systems to maintain consistent quality standards in drilling operations. This includes adherence to industry best practices, regular audits, and continuous improvement initiatives to optimize the use of diamond reaming shells and ensure reliable results.

  12. Sustainability Considerations: Integrate sustainability principles into drilling operations. Evaluate energy consumption, waste management, and water usage, aiming to minimize the environmental footprint associated with diamond reaming shell usage in mining activities.

  13. Knowledge Sharing and Lessons Learned: Encourage knowledge sharing among drilling teams and mining professionals. Document lessons learned from previous drilling operations involving diamond reaming shells and disseminate best practices to drive continuous improvement and knowledge transfer within the organization.

Model or type:
 

Specifications

ITEM DIAMOND BIT Reaming shell
"Q" Series
Wireline assembly
Size Bit Outer Diameter Bit Inner Diameter
mm inch mm inch mm inch
AQ 47.60 1.88 26.97 1.06 48.00 1.89
BQ 59.50 2.35 36.40 1.43 59.90 2.36
NQ 75.30 2.97 47.60 1.88 75.70 2.98
HQ 95.58 3.77 63.50 2.50 96.00 3.78
PQ 122.00 4.80 84.96 3.35 122.60 4.83
Metric T2 Series 36 36.0 1.417 22.0 0.866 36.3 1.429
46 46.0 1.811 32.0 1.260 46.3 1.823
56 56.0 2.205 42.0 1.654 56.3 2.217
66 66.0 2.598 52.0 2.047 66.3 2.610
76 76.0 2.992 62.0 2.441 76.3 3.004
86 86.0 3.386 72.0 2.835 86.3 3.398
101 101.0 3.976 84.0 3.307 101.3 3.988

T Series
TAW 47.6 1.875 23.2 1.31 48.0 1.89
TBW 59.5 2.345 44.9 1.77 59.9 2.36
TNW 75.3 2.965 60.5 2.38 75.7 2.98
 
Reaming classification
T series T36,T46,T56,T66,T76,T86
Cable series AWL,BWL,NWL,HWL,PWL(Front end,rear end)
WT series RWT,EWT,AWT,BWT,NWT,HWT(single tube/double tube)
T2/T series T256,T266,T276,T286,T2101,T676,T686,T6101,T6116,T6131,T6146,T6H
WF series HWF,PWF,SWF,UWF,ZWF
WG series EWG,AWG,BWG,NWG,HWG(single tube/double tube
WM series EWM,AWM,BWM,NWM
Others NMLC,HMLC,LTK48,LTK60,TBW,TNW,ATW,BTW,NTW,AQTK
NXD3,NXC,T6H,SK6L146,TT46,TB56,TS116,CHD101

 

FAQ:


Q1: What is the role of flushing water in diamond reaming shell operations?
A1: Flushing water, often used in conjunction with drilling fluid, can help cool the cutting elements, carry away cuttings, and assist in maintaining the integrity of the diamond reaming shell's cutting performance.

Q2: Are diamond reaming shells suitable for deep drilling projects?
A2: Yes, diamond reaming shells can be used in deep drilling projects, provided the necessary equipment, drilling parameters, and safety considerations are taken into account.

Q3: Can diamond reaming shells be used in environmentally sensitive areas?
A3: Yes, diamond reaming shells can be used in environmentally sensitive areas, but it is importantto implement proper environmental management practices, such as containment and proper disposal of drilling fluids and cuttings, to minimize any potential impact.

Q4: What is the typical lifespan of a diamond reaming shell?
A4: The lifespan of a diamond reaming shell can vary depending on factors such as formation hardness, drilling conditions, and maintenance practices. On average, a diamond reaming shell can last for several drilling runs to several hundred meters of drilling.

Q5: Can diamond reaming shells be used in geothermal drilling?
A5: Yes, diamond reaming shells can be used in geothermal drilling projects, where the drilling process involves reaching deep into the Earth's subsurface to access geothermal energy resources.

 

 

 

 

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