Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration

Product Details
Customization: Available
Type: Core Drill
Usage: Coring
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Registered Capital
20000000 RMB
Plant Area
>2000 square meters
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
  • Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
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Basic Info.

Model NO.
T256,T266,T276,T286,T2101,T676,T686,T6101,T6116,T6
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:

Reaming Shell Wear Indicators: Over time, diamond reaming shells experience wear due to the abrasive nature of drilling operations. To monitor wear and determine when a reaming shell needs replacement or maintenance, wear indicators are often incorporated into the design. These indicators can be visual markers or measuring devices that allow operators to assess the condition of the reaming shell and take appropriate action.

Reaming Shell Compatibility: Diamond reaming shells are designed to be compatible with specific core bits and drilling systems. It is important to ensure that the reaming shell selected is compatible with the core bit in terms of size, thread type, and connection method. Compatibility ensures proper assembly, effective drilling performance, and prevents issues such as thread damage or misalignment.

Reaming Shell Quality Assurance: Quality assurance processes are implemented during the manufacturing of diamond reaming shells to ensure consistent quality and performance. This includes strict adherence to industry standards, rigorous inspection of raw materials, quality control checks at various stages of production, and comprehensive testing of finished reaming shells. Quality assurance measures help maintain product reliability and customer satisfaction.

Reaming Shell Repair and Refurbishment: In some cases, reaming shells can be repaired or refurbished to extend their lifespan and reduce costs. Repair processes may involve replacing worn or damaged parts, re-impregnating diamond segments, or restoring the integrity of the reaming shell body. Proper repair and refurbishment techniques can help rejuvenate reaming shells and make them suitable for continued use.

Reaming Shell Recycling and Disposal: At the end of their lifespan, diamond reaming shells should be disposed of or recycled responsibly. Recycling programs may exist to extract valuable materials, such as steel and diamonds, from used reaming shells. Proper disposal methods ensure minimal environmental impact and compliance with local regulations regarding waste management and recycling.

Reaming Shell Field Testing: Before being deployed in actual drilling operations, reaming shells often undergo field testing to evaluate their performance under real-world conditions. Field tests provide valuable feedback on cutting efficiency, core recovery, flushing effectiveness, and overall durability. This information helps manufacturers refine their designs and make necessary improvements.

Reaming Shell Maintenance Training: Proper maintenance of reaming shells requires training and knowledge. Manufacturers often provide training programs and resources to drilling operators on how to perform routine maintenance tasks, such as cleaning, inspection, and re-impregnation of diamond impregnations. Maintenance training ensures that reaming shells are properly cared for, optimizing their performance and lifespan.

Reaming Shell Research and Development: Continuous research and development efforts in the field of diamond reaming shells drive innovation and improvement. Manufacturers, drilling companies, and research institutions invest in R&D to develop new materials, optimize design parameters, explore new manufacturing techniques, and enhance the overall performance of reaming shells. These advancements contribute to more efficient and productive drilling operations.

Reaming Shell Geosteering Applications: Geosteering is a technique used in directional drilling to navigate the drill bit within a specific geological formation. Diamond reaming shells can play a role in geosteering by providing real-time geological information as the drilling progresses. By analyzing the core samples obtained through reaming shells, geologists can make informed decisions regarding the drilling direction and adjust the trajectory to target specific zones of interest.

Reaming Shell Automation and Robotics: The integration of automation and robotics technologies is transforming the drilling industry, and diamond reaming shells can be part of these advancements. Automated systems can control the deployment and operation of reaming shells, optimizing drilling parameters, and improving overall efficiency. Robotic systems can also be employed for reaming shell maintenance and inspection, reducing manual labor and enhancing safety.

In summary, diamond reaming shells are subject to wear indicators, compatibility requirements, quality assurance processes, and can undergo repair or refurbishment. Responsible recycling and disposal methods are necessary at the end of their lifespan. Field testing, maintenance training, and ongoing research and development contribute to the advancement of reaming shell technology. Reaming shells also have applications in geosteering, and automation and robotics are increasingly being integrated into drilling operations, including the use of reaming shells.

 

Model or type:

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: How is the diamond-impregnated matrix applied to the reaming shell?
A1: The diamond particles are embedded into a metallic or resinous matrix through a specialized manufacturing process.

Q2: What sizes are available for diamond reaming shells?
A2: Diamond reaming shells come in various sizes to match different core bit and core barrel dimensions.

Q3: Can diamond reaming shells be customized for specific drilling projects?
A3: Yes, manufacturers can provide customized diamond reaming shells based on specific project requirements.

Q4: How do I select the right diamond reaming shell for my drilling application?
A4: Consider factors such as rock formation, borehole size, drilling method, and required core quality when selecting a reaming shell.

Q5: What is the expected lifespan of a diamond reaming shell?
A5: The lifespan depends on factors like drilling conditions and maintenance, but it can typically range from tens to hundreds of meters drilled.

 

 

 

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Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration


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Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration
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Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration

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Improved Borehole Quality Rapid Reaming Speed Diamond Reaming Shell for Mining Exploration

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