Casing System

The casing system means that the casing tube penetrates with drill bits at the same time. The casing tube provides the enforcement to the hole wall and prevent the hole from collapsing during drilling. Symmetric casing system can drill holes at any angle (including the horizontal direction) to a depth of more than 100 meters. As an efficient drilling system, the system is composed of pilot bit, ring bit, casing shoe, casing and so on.

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Introduction

The casing system means that the casing tube penetrates with drill bits at the same time. The casing tube provides the enforcement to the hole wall and prevent the hole from collapsing during drilling. It is composed of two parts: the casing and the drill bit.
  • Casing shoe: It is an integral part of casing drilling, used to connect the casing and the drill bit and drag the casing  to drill synchronously with the drill bit; it is generally connected with the casing by thread or welding.
  • Casing: It is also called casing. When drilling, the drill bit drives the casing shoe and casing to advance together, and the casing acts as a wall to prevent the hole from collapsing. In terms of structure. It is divided into two types: MF thread connection and joint connection.

Features

  • It has a wide range of applications and mature construction technology; almost all complex geology that is not easy to form holes can be constructed with casing systems, which can be used for anchoring, pile foundation support, and water well/geothermal well engineering; in addition, it can be used with DTH drills and top hammer drills.
  • Large drilling diameter and deep drilling depth. The maximum drilling diameter is more than 1 meter and the drilling depth can reach hundreds of meters with large construction equipment.
  • Fast drilling speed and good hole quality. Under complex geological conditions, the casting acts as retaining wall support, avoiding jamming and loss of high-pressure gas in rock crevices, improving the slag removal effect and drill bit service life.
  • According to design requirements, the casing can be pulled out and used repeatedly after drilling, or it can be left in the hole without pulling out as an bolt.

1. According to the classification of construction equipment, it includes top hammer casing systems and DTH casing systems.

The composition of the top hammer casing systems: casing drill bit + casing shoe + casing + coupling (Note: MF casing needn’t coupling) + drill pipe (including a coupling sleeve) + centralizer, etc.

Top hammer casing systems are mostly used for small and medium-sized shallow hole construction with a hole diameter of φ90-150mm and a hole depth of fewer than 30 meters.

The composition of DTH casing systems: casing drill bit + casing shoe + casing + coupling (note: MF casing needn’t coupling) + DTH hammer + drill pipe + centralizer, etc.

2. According to the structure of the drill bit, it can be classified into eccentric casing system, symmetric casing system, and dual power head rotary percussion casing system. Symmetric casing systems include symmetric casing system with reamer, symmetric casing system with wings, and symmetric casing system with slide blocks according to the drill bit structure.

Eccentric Casing System

Applicable geology: It is suitable for covering layers with mostly loose materials on the surface of the formation, such as soil, clay, weathered rock, sand and gravel, etc.

Scope of work: It is suitable for drilling geothermal wells, water wells, small and medium-sized grouting holes for construction, mini-piles, etc.

Features:

  1. As the main tool for drilling wells, it can ensure the drilling and wall protection at the same time, which can significantly shorten the time of passing through the overburden layer.
  2. The eccentric casing system is one of the fastest and most economical casing systems when using casing retaining walls permanently or temporarily in geological conditions such as mud, silt, and gravel.
  3. The eccentric structure has uneven force when drilling and the straightness of the hole is relatively poor. It is mostly used for the construction of small and medium-diameter water wells, geothermal wells, and micro piles with a shallow drilling depth (within 40m) with a diameter of 350mm or less.
  4. The structure has good strength and can withstand heavy loads.
  5. The drilling angle is mostly vertical, which is not suitable for inclined hole drilling.
  6. It is not suitable for drilling in geological conditions with large isolated rocks.

Symmetric Casing System

Symmetric casing system can drill holes at any angle (including the horizontal direction) to a depth of more than 100 meters. As an efficient drilling system, the system is composed of pilot bit, ring bit, casing shoe, casing and so on.

Symmetric Casing System With Reamer

Applicable geology: It is suitable for covering layers with complex geological conditions, such as pebble layers, cracks, boulders, construction backfills, etc.

Scope of work: It is mainly used for pile foundation and anchoring projects.

Features:

  1. Simple structure, stable and reliable performance, easy to unlock and re-lock, low failure rate.
  2. Stable, low vibration and low noise drilling, and the straightness of the hole is the best, which can be used for large-diameter and deep-hole construction.
  3. Uniform drilling force and not easy to get stuck, and drilling can be done at any angle without being affected by terrain conditions.
  4. Suitable for a wide range of geological conditions.
  5. High structural strength, can bear large load, high drilling efficiency.
Symmetric Casing System With Wings

Applicable geology: It is suitable for covering layers with mostly loose materials on the surface of the formation, such as soil, clay, weathered rock, sand and gravel, etc.

Scope of work: It is suitable for drilling geothermal wells, water wells, small and medium-sized grouting holes in buildings, micro piles, etc.

Features:

  1. There are various types, which can be selected according to different geological and construction conditions.
  2. The symmetric structure bears more uniform force when drilling with good guiding performance, and the hole straightness is relatively good, and can be used for construction not larger than φ600 mm hole.
  3. Stable drilling and not easy to get stuck. It can be used for drilling at different angles.
  4. It can also drill the geological conditions of boulders.
  5. The product structure is relatively complex, and the wings has poor strength, thus only can bear less load.
Symmetric Casing System With Slide Blocks

Applicable geology: It is suitable for covering layers with mostly loose materials on the surface of the formation, such as soil, clay, weathered rock, sand and gravel, etc.

Scope of work: It is suitable for drilling geothermal wells, water wells, small and medium-sized grouting holes in buildings, micro piles, etc.

Features:

  1. The structure is simple, greatly reducing the probability of structural failure, and the operation is more convenient.
  2. The symmetric structure bears more uniform force when drilling with good guiding performance, and the hole straightness is relatively good, and can be used for construction not larger than φ800 mm hole.
  3. Stable drilling and not easy to get stuck. It can be used for drilling at different angles.
  4. It can also drill the geological conditions of boulders.
  5. The slide blocks have poor strength, thus only can bear less load.

1. What is the role of the centralizer in the drilling construction process?

Play the role of connecting drill pipe;

The centralizer keeps the drill pipe always in the center of the casing.

2. How many ways are there to connect the casing and the casing shoe?

There are 4 types to connect the casing and the casing shoe, namely,  sleeve weld connection, butt welding connection, left-hand thread connection, and right-hand threaded connection.

3. How many ways are there to connect the casing and the casing?

The two ways of connecting the casing to the casing are the MF thread connection and joint connection. Joint connection keeps high connection strength. MF thread connection always be used while drilling depth of thick-walled, small, and medium-diameter shallow holes, the joint connection is mostly used for thin-walled and large and medium-diameter casing deep hole drilling, and used for reused casings.

Product Parameters

Outer Dia.
(mm)
Wall Thickness
(mm)
Reamed Dia.
(mm)
Max step size of Guide Device Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
108 7 117 92 85 DHD3.5 12
114 6.5 125 99 90 DHD3.5 14
127 9.5 138 106 98 DHD3.5 15.5
146 10 155 123.5 115 DHD340/SD4/QL40 27
168 10 180 146 136 DHD350/SD5/QL50/M50 42
178 10 192 156 146 DHD350/SD5/QL50/M50 44
178 10 196 161 153 DHD350/SD5/QL50/M50 48
194 10 206 172 160 DHD360/SD6/QL60/M60 61.7
219 10 237 196 185 DHD360/SD6/QL60/M60 75.1
245 10 263 222 208 DHD380/SD8/QL80 109.3
273 10 305 251 239 DHD380/SD8/QL80 135.8
325 10.5 350 302 280 DHD380/DHD112/NUMA100 225.5

Butt Weld Symmetric Bit

Connection Type Outer Dia.
(mm)
Wall Thickness
(mm)
Pilot Bit Dia.
(mm)
Reamed Dia.
(mm)
Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
Butt Weld 76 8 58 86 45 R32 3.2
Butt Weld 89 8 70 95 50 T38/R38 5.8
Butt Weld 114 10 92 122 80 T38/R38 7.5
Butt Weld 114 10 92 122 80 DHD3.5 10
Butt Weld 127 10 105 138 93 T45 10
Butt Weld 127 10 105 138 93 DHD3.5 16
Butt Weld 140 10 118 152 102 T45/T51 15
Butt Weld 140 10 118 152 102 DHD340/SD4/QL40 21
Butt Weld 146 10 124 158 110 DHD340/SD4/QL40 22
Butt Weld 168 10 146 184 130 DHD350/SD5/QL50/M50 27

Sleeve Weld Symmetric Bit

Connection Type Outer Dia.
(mm)
Wall Thickness
(mm)
Pilot Bit Dia.
(mm)
Reamed Dia.
(mm)
Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
Sleeve Weld 76 8 57 88 39 R32 3.2
Sleeve Weld 89 8 70 102 58 T38/R38 5.8
Sleeve Weld 114 9 94 128 74 T38/R38 7.5
Sleeve Weld 114 10 92 128 74 DHD3.5 10
Sleeve Weld 127 10 105 142 93 T45 10
Sleeve Weld 127 10 105 142 93 DHD3.5 16
Sleeve Weld 140 10 116.5 161 99 T45/T51 15
Sleeve Weld 140 10 116.5 161 99 DHD340/SD4/QL40 21
Sleeve Weld 146 10 123 165 110 DHD340/SD4/QL40 22
Sleeve Weld 168 10 141 188 127 DHD350/SD5/QL50/M50 27
Sleeve Weld 178 10 155 198 136 DHD350/SD5/QL50/M50 32.5
Sleeve Weld 194 12.7 166 214 145 DHD360/SD6/QL60/M60 42.5
Sleeve Weld 219 12.7 191 243 170 DHD360/SD6/QL60/M60 58

Threaded Type Symmetric Bit

Connection Type Outer Dia.
(mm)
Wall Thickness
(mm)
Pilot Bit Dia.
(mm)
Reamed Dia.
(mm)
Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
Left-handed 108 7 92 118 75 DHD3.5 10.1
Left-handed 114 6.5 99 126 82 DHD3.5 13.8
Left-handed 127 9.5 106 138 86 DHD3.5 18
Left-handed 140 9 120 151 101 DHD340/SD4/QL40 21
Left-handed 146 10 124 156 105 DHD340/SD4/QL40 23.5
Left-handed 168 10 146 184 125 DHD350/SD5/QL50/M50 27.5
Left-handed 178 10 156 192 140 DHD350/SD5/QL50/M50 42
Left-handed 194 10 172 206 148 DHD360/SD6/QL60/M60 57.5
Left-handed 219 10.5 196 234 170 DHD360/SD6/QL60/M60 75
Left-handed 245 12.7 218 260 186 DHD380/SD8/QL80 105
Left-handed 273 12.7 245 298 203 DHD380/SD8/QL80 122
Left-handed 325 12.7 295 350 255 DHD380/NUMA100 135
Left-handed 406 12.7 378 438 340 DHD112/QL120/SD12 420
Left-handed 508 12.7 478 538 445 SD18/NUMA180/TH18K 522
Connection Type Outer Dia.
(mm)
Wall Thickness
(mm)
Wings No. Hole Dia.
(mm)
Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
Left-handed 114 6.5 2 125 90 DHD3.5 15
Left-handed 146 10 2 157 117 DHD340/SD4/QL40 20.3
Left-handed 168 10 2 180 136 DHD350/SD5/QL50 33.4
Left-handed 178 10 2 195 142 DHD350/SD5/QL50 38.8
Left-handed 194 10 2 206 160 DHD350/SD5/QL50 46.4
Left-handed 219 10 2 237 187 DHD360/SD6/QL60/M60 72
Left-handed 240 10 2 265 211 DHD380/SD8/QL80 102
Left-handed 273 10 2 308 236 DHD380/SD8/QL80 125
Left-handed 323 10 3 360 282 DHD380/NUMA100 138
Connection Type Outer Dia.
(mm)
Wall Thickness
(mm)
Slide Blocks
No.
Hole Dia.
(mm)
Max O.D of Normal
Bits
(mm)
Type of Hammer Weight
(kg)
Left-handed 168 6 2 185 140 DHD350/SD5/QL50/M50 30
Left-handed 178 10 2 195 146 DHD350/SD5/QL50/M50 35
Left-handed 183 10 2 200 150 DHD350/SD5/QL50/M50 39
Left-handed 194 7 2 209 165 DHD360/SD6/QL60/M60 48
Left-handed 219 10 3 234 185 DHD360/SD6/QL60/M60 61
Left-handed 245 10 3 260 210 DHD380/SD8/QL80 88
Left-handed 273 10 3 305 240 DHD380/SD8/QL80 96.5
Left-handed 325 10 3 346 282 DHD380/SD8/QL80 115
Left-handed 355 10 3 376 305 DHD112/NUMA120 214
Left-handed 406 13 4 432 360 DHD112/NUMA125/QL120 254
Left-handed 460 12 4 485 412 TH14/NUMA125 415
Left-handed 480 12.7 4 505 432 TH14 455
Left-handed 508 12.7 4 534 454 NUMA125/TH18K 630
Left-handed 560 12.7 4 590 510 NUMA125/TH18K 730

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