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Soil Nail Slope Stabilization Solutions

Common Engineering Issues with Soil Nail Projects

A soil nail wall is constructed in stages as excavation proceeds. Stability of each stage is affected by the ground conditions, construction sequencing, timing of installation, groundwater conditions and facing performance. Some typical issues encountered are listed below.

  • Maintaining stability during staged excavation
  • Short stand-up time of exposed soil face
  • Layered soils/weathered rock
  • Loose granular soils
  • Soft/sensitive cohesive soils
  • Existing fill/construction debris
  • Groundwater inflow into drill holes
  • Surface water runoff across crest of wall
  • Collapse of drill holes prior to bar installation/grouting
  • Inadequate coverage of grout
  • Variable soil–grout bond resistance
  • Obstructions/buried utilities
  • Limited access for drilling equipment
  • Property-line restrictions on nail length
  • Adjacent buildings, roads or foundations
  • Construction surcharge above excavation crest
  • Corrosion potential with aggressive soils/groundwater
  • Nail head connection to facing
  • Differential movement of facing
  • Verification of nail pullout resistance
  • Use of temporary vs. permanent facing
  • Long-term drainage and maintenance considerations

Successful soil nail projects take into consideration the overall system. Bar strength does not determine stability of the wall or soil–grout bond strength.

 

Wanfeng Soil Nail Support System

Wanfeng provides steel reinforcement and connection products that can be components of an engineered soil nail wall.

Threaded bars are used as tensile reinforcing elements. Bars are generally placed into drilled holes and grouted throughout the required length. Bearing plates, nuts and nail-head details are used to connect bars to the wall facing. Welded wire mesh can be used to reinforce the initial shotcrete facing if required.

Additional components may include:

  • Nail holes drilled and grouted
  • Centralizers
  • Drainage strips
  • Weep outlets
  • Initial shotcrete facing
  • Permanent reinforced-concrete facing
  • Facing reinforcement
  • Head studs or alternative nail-head connector detail
  • Surface-water diversion methods
  • Temporary excavation support methods
  • Instrumentation and monitoring systems

Purpose of Soil Nail Systems

Engineered soil nail walls can be used to:

  • Reinforce the soil mass being retained
  • Develop tension as movement occurs
  • Increase resistance along potential slip surfaces
  • Connect the reinforced soil mass to the facing
  • Support construction of staged, top-down excavation
  • Spread local nail- head point loads
  • Control localized ravelling of the wall face
  • Provide temporary or permanent earth retention
  • Maintain drainage outlets behind the wall facing
  • Quality assurance of material and installation documentation

Engineering Disclaimer

Final wall geometry, excavation lift heights, nail diameter and length, spacing, inclination angle, grout-hole diameter, required bond length, nail-head connections, facing details, drainage systems and construction sequence should be designed or reviewed by experienced geotechnical and structural engineers.

Design considerations should include but not be limited to: ground investigation results, groundwater conditions, surcharge loads, overall stability of the system, internal stability of soil nails, facing capacity, pullout resistance, seismic demand, adjacent structures and utilities, and required design life.

While Wanfeng can provide steel reinforcement and connection products to meet specified requirements, we do not assume the responsibility of the engineer’s soil nail wall design or the contractor’s responsibility for drilling and grouting, facing construction and field quality control testing.

 

Soil Nails Are Not the Same as Ground Anchors

Characteristic Soil nail Prestressed ground anchor
Typical structural behavior Generally passive; resistance develops with ground deformation Actively prestressed to apply load
Typical grouting Commonly grouted along the nail length Usually incorporates defined bond and free lengths
Construction arrangement Closely spaced reinforcement installed with staged excavation Often wider-spaced anchors connected to structural facing or walers
Load application Typically not locked off at a high prestress Tested and locked off at a specified load
Facing interaction Commonly connected to reinforced shotcrete or permanent facing Commonly connected to walers, beams or structural facing
Design terminology Soil nail bar and nail head Tendon, bond length, free length and anchor head

PASSIVE SOIL NAILED SYSTEMS AND PRESSTRESSED GROUND ANCHOR SYSTEMS

(The two systems should not be used interchangeably.) Project drawings should specifically show if a component is to be used as a passive soil nail or a prestressed ground anchor.

 

Recommended Products

1.Threaded Soil Nail Bars

Steel bars used as the primary tension element of the soil nail assembly.

Essential information

  • Dia. of bar
  • Length of bar
  • Steel type
  • Yield & Ultimate Strength

Other information

  • Thread type & pitch
  • Threaded length
  • Coupler details
  • Corrosion protection, if any

2.Coupled Soil Nail Bars

Threaded bars coupled using approved couplers when bar length requirements for shipping, drill rig access or maximum nail length requires bars to be installed in sections.

Essential information

  • Dia. of bar
  • Length of section
  • Coupler details
  • Min. Connection Strength

Other information

  • Thread type
  • Coupler length of engagement
  • Steel type
  • Surface Finish

NOTE: The coupled connection must be capable of meeting or exceeding the project specified tensile requirement. Do not determine coupler strength by looking at bar strength only.

3. Hollow or Self-Drilling Soil Nail Bars

Bars with a hollow threaded center that can be used to drill, provide reinforcement and inject grout into ground conditions where maintaining a c perl hole is restrictive or not possible.

Essential information

  • OD of Bar
  • Bar & thread details
  • Yield & Ultimate Strength
  • Comaptible drill-bit size

Other information

  • ID of Bar (inside diameter)
  • Coupler details, if any
  • Sacrificial Drill Bit
  • Corrosion protection, if any

NOTE: Only include hollow/self drilling soil nail bars if Wanfeng has confirmed production availability and all technical specifications have been confirmed. These bars should not be included just to fill a SEO category.

4. Soil Nail Bearing Plates

Steel plate located at the soil nail head used to transfer load from the threaded bar to the wall-facing connection.

Essential information

  • Plate dimensions
  • Plate thickness
  • Dia. of hole
  • Steel type

Additional information

  • Flat top or domed top
  • Plate-load test data
  • Washer Details
  • Surface Finish

5. Soil Nail Nuts and Washers

Details used to secure bearing plates or other approved soil nail head details to the threaded bar. Thread must be compatible.

Essential information

  • Thread Type & Size
  • Nut dimensions
  • Steel type
  • Proof or Ultimate Load

Additional information

  • Washer dimensions
  • Bearing Surface
  • Coating
  • Compatibility with Bar Dia.

6.Centralizers and Spacers

Parts used to ensure the correct bar position and grout cover is maintained within a drilled hole.

Essential information

  • Bar diameter the Centralizer/Spacer will fit on
  • Minimum and Maximum hole diameter
  • Outside dimensions of Centralizer/Spacer
  • Material

Additional information

  • Spacing
  • Attachment to bar
  • Clearance for grout to flow around centralizer
  • Weathering or other Durability requirement

7. Welded Wire Mesh

Steel mesh that can be used as part of the initial or final facing if specified within the approved design details.

Essential information

  • Wire diameter
  • Mesh size
  • Dimensions of Mesh Panel
  • Weld strength

Additional information

  • Overlap Details
  • Edge Wire Details
  • Coating
  • What type of Facing can this be used with

NOTE: Mesh reinforcement does not define the strength capacity of a facing. Shotcrete thickness, concrete compressive strength, reinforcement layout, nail-head connection and construction joints need to be engineered together as a complete system.

8.Nail-Head Connection Components

Project specific steel details that connect the soil nail bar to the selected facing. These components can consist of multiple parts.

Essential information

  • Type of connection
  • Dimensions of component
  • Steel type
  • Working or Design load

Examples of Components:

  • Bearing Plates
  • Nuts and Washers
  • Head Studs
  • Reinforcing Bars
  • Connection Brackets

NOTE: Only show connection components that Wanfeng has the capability to produce to meet drawing specifications and have tested for approval.

 

Soil Nail Application Selection Matrix

Typical ground or project condition Typical requirement Product or system response that may be relevant
Stiff cohesive soil with temporary face stability Conventional staged installation Fully grouted threaded soil nail bars with engineered facing
Weathered rock or mixed soil and rock Reinforcement through variable material Drilled and grouted bars selected for the actual ground
Dense granular soil with sufficient short-term stability Control of ravelling and prompt facing installation Soil nails with closely coordinated excavation and initial facing
Ground prone to borehole collapse Installation method capable of maintaining or forming the hole Casing, specialized drilling or verified self-drilling system
Variable fill or buried obstructions Adaptable drilling and verified bond resistance Investigation, trial nails and project-specific drilling method
Groundwater entering the wall Drainage and controlled construction conditions Drain strips, outlets, surface-water control and suitable corrosion protection
Aggressive soil or groundwater Increased corrosion protection Encapsulated, coated or otherwise protected nail system as specified
Limited delivery or handling length Sectional bar installation Coupled threaded bars with verified connection capacity
Temporary soil nail wall Construction-stage performance Components designed for the specified temporary exposure period
Permanent soil nail wall Long-term strength, facing and durability Verified corrosion protection, permanent facing and documentation
Significant surcharge behind the wall Increased structural and global-stability demand Project-specific geotechnical and structural design
Seismic loading Verified seismic performance Project-specific analysis and appropriately detailed components
Soft clay, organic soil or very loose saturated ground Potentially unsuitable conventional soil nailing conditions Specialist assessment or an alternative retaining system
Nails extending beyond the property boundary Legal and geometric constraint Revised layout or alternative support system approved by the engineer

Soil Nail Selection Guide

Selection Warning

This guide is intended as a general guide only. It does not determine if soil nailing is applicable to your project.

Where:

  • Long-term maintenance of an excavated face is not possible.
  • Groundwater control is not possible.
  • The presence of loose clean granular materials.
  • Soils are predominantly soft/sensitive
  • Predominantly voids/changeable fill.
  • Conflict with underground utilities.
  • Required nail lengths exceed property limits.
  • Large deformations are unacceptable.
  • Global stability considerations make failure by other modes more likely.

Special designs are required and could be considered for an alternative retention system.

 

Typical Soil Nail Wall Construction Sequence

A typical soil nail wall construction sequence may involve the following activities:

  • Excavate to the first approved excavation lift.
  • Inspect exposed ground and verify conditions to design assumptions.
  • Advance drill holes to required positions, angles and lengths.
  • Install soil nail bars with approved centralizers.
  • Place grout pipe and apply specified grout procedure.
  • Install Drainage.
  • Install first reinforced facing.
  • Install bearing plates, nuts and tighten nail- head connections as required.
  • Perform any required verification or proof testing.
  • Repeat above steps for each lift of excavation.
  • Install permanent facing if required.
  • Complete drainage exits, as-built documentation and final inspection.

Construction Sequence Warning

Actual Lift Heights, Unsupported Exposure Time, drilling sequence, Grouting procedures and Timing of Facing installation are to be detailed in the approved design and method statement.

Wanfeng will not specify the amount of soil that can be exposed prior to completion of the next stage of support.

 

Temporary and Permanent Soil Nail Systems

Design consideration Temporary soil nail wall Permanent soil nail wall
Service period Defined construction duration Full project design life
Facing Commonly temporary reinforced shotcrete Engineered permanent facing system
Corrosion protection Based on actual exposure and ground conditions Designed for long-term soil and groundwater exposure
Drainage Required for construction-stage conditions Must remain functional and maintainable
Documentation Construction and installation records Permanent works records and compliance documentation
Testing As specified in the temporary works design Verification, proof and acceptance requirements defined by the permanent design
Inspection Construction-stage inspections Long-term inspection and maintenance plan
Structural contribution Limited to the approved temporary design Verified for long-term strength, serviceability and durability

Temporary nuts/bolts should not be used as part of permanent structures unless the material, installation, corrosion protection and performance meets the requirements for permanent construction.

 

Special Fabrication for Soil Nail Projects

If provided with approved soil nail schedules and drawings, Wanfeng can determine the manufacturability of the nails.

Items that can be customized:

  • Bar size
  • Length / Partial Length
  • Thread type, pitch, direction
  • Fully-threaded or Partially threaded
  • Steel type
  • Yield Stress/ Ultimate Strength
  • Coupler dimensions and embedment
  • Bearing plate dimensions and thickness
  • Plate hole size
  • Nut/Washer Combination
  • Centralizer Dimensions
  • Nail-head metal parts
  • Wire Mesh size / hole size
  • Hot-Dip galvanizing
  • Epoxy-Coated or project specific coating
  • Marking
  • Heat/Batch Numbers
  • Packaging for ease of installation
  • Inspection and Test Reports

Dimensions, tolerances, material specifications, stresses, coatings and test documentation shall be clearly defined on an approved drawing or technical specification prior to fabrication.

 

Manufacturing & Quality Control Procedures

1. Raw Materials Inspection

  • Material certificate review
  • Steel grade verification
  • Heat-number identification
  • Chemical composition check where required
  • Incoming diameter / dimensional inspection
  • Surface-defect inspection

2. Bar and Thread Inspection

  • Bar diameter
  • Overall and sectional length
  • Straightness
  • Thread profile
  • Thread pitch
  • Threaded length
  • Thread gauge inspection
  • Nut / coupler fit

3. Mechanical Testing and Connection Inspection

Where required and contractually obligated:

  • Yield- strength testing
  • Ultimate tensile- strength testing
  • Elongation testing
  • Full bar tensile test
  • Coupler connection testing
  • Nut proof-load testing
  • Bearing- plate load testing
  • Weld test of fabricated head components
  • Mesh weld shear test

4. Dimensional Inspection

  • Plate length / width
  • Plate thickness
  • Hole diameter
  • Nut and washer dimensions
  • Coupler length
  • Centralizer dimensions
  • Mesh aperture and panel sizes
  • Nail head component sizes

5. Surface Treatment Inspection

  • Surface preparation inspection
  • Coating thickness measurement
  • Coating continuity
  • Fit of thread after coating
  • Repair of allowable coating damage
  • Packaging protection of coated components

6. Identification and Final Inspection

  • Heat / batch number
  • Product Marking
  • Inspection documentation
  • Quantity confirmation
  • Drawing and purchase-order identification
  • Packaging inspection
  • Shipping-document information

7. Certificates and Test Reports

Where standards or third party testing are claimed, the following website information should include:

  • Certificate or report number
  • Issuing party
  • Manufacturer
  • Applicable Product
  • Property that was tested
  • Standards used
  • Issue date and valid dates
  • Downloadable file copy

ASTM, EN, ISO, BS, AS/NZS or project standards should ONLY be referenced if conformance can be provied for the actual product supplied.

 

Corrosion Protection

Specify the required corrosion protection based on ground conditions, groundwater chemistry, desired service life and project requirements. Possible protection options include:

  • Grout cover
  • Hot-dip galvanized steel
  • Epoxy-coated bars
  • Encapsulation
  • Sheathing
  • Combined or multi-layer protection
  • Protected nail-head details

Important Limitation

The overall corrosion-protection system includes more than the finish on the steel bar. Corrosion resistance may also depend on:

  • Grout quality and continuity
  • Required grout cover
  • Bar centralization
  • Coupler detailing
  • Encapsulation joints
  • Nail-head protection
  • Facing details
  • Drainage
  • Damage during handling and installation

Do not substitute one coating for another that is specifically required by the project without engineering approval. Only publish a “double corrosion protection” claim when the entire assembly and all supporting documentation meet the project definition.

 

Field Verification and Testing

Tests completed during manufacturing will only verify component properties. Field testing verifies available soil–grout bond resistance.

Verification methods may include (and should be included in the project quality plan):

  • Trial installations
  • Verification nails
  • Proof testing
  • Supplemental testing
  • Drill logs
  • Grout records
  • Bar and coupler identification
  • Nail length and inclination records
  • Grout-volume monitoring
  • Facing- thickness checks
  • Drainage inspection
  • Nail- head connection inspection
  • Survey and movement monitoring

 

Factory Testing vs. Field Testing

Test or inspection Typical location Primary purpose
Steel tensile test Factory or approved laboratory Verify bar material properties
Coupler tensile test Factory or approved laboratory Verify connection capacity
Plate dimensional inspection Factory Verify drawing compliance
Coating inspection Factory Verify specified coating properties
Soil nail verification test Project site Assess installation method and ground bond behavior
Proof test Project site Confirm performance of selected production nails
Grout and installation records Project site Document installed construction quality

 

FAQ

1.What is a soil nail wall?

A soil nail wall is a reinforced soil mass typically constructed top down in lifts. Steel bars are placed into drilled and grouted holes and connected to a reinforced facing to support the retained soil.

2. How is a soil nail different from a rock bolt?

A soil nail is used to reinforce soil or weathered material and relies on the surrounding grout and wall facing for resistance. A rock bolt is typically used to reinforce blocks of rock or rock discontinuities. Both can use threaded steel bars but design assumptions and overall system requirements vary.

3. Are soil nails prestressed?

Conventional soil nails are typically passive reinforcement and not stressed to high levels of prestress. Resistance is gained through deformation of the reinforced groundmass. Prestressed anchors are a different type of retaining system.

4. Are soil nail bars typically fully grouted?

Fully grouting conventional soil nail bars along their length is common. However, the method of grouting, hole diameter, required cover and bond resistance should be defined in the project specification and confirmed in the field.

5. Can soil nail bars be coupled?

Yes. Sectional bars can be joined using compatible couplers where allowed by the design. The entire coupler connection should meet the specified load requirement and be installed with the proper thread engagement.

6. Can soil nailing be used where groundwater is present?

Groundwater may have the potential to affect excavation stability, drilling rates, grouting capabilities, corrosion and facing pressures. Assessment may allow for drainage or dewatering solutions to be used or another retaining option may be necessary.

7. What corrosion protection options are available?

Options may include galvanizing, epoxy coating, encapsulation or a combination of systems depending on project requirements and verified manufacturing capabilities. The chosen method should protect the entire nail assembly and not just the exposed portion of the bar.

8. Can Wanfeng produce soil nails from just drawings?

Wanfeng can verify approved bar, plate, nut, coupler, centralizer and nail head drawings for manufacturing feasibility. All final dimensions, loads, coatings, tolerances and tests should be confirmed prior to production.

 

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