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HSS Size Chart 2026 – Square, Rectangular & Round Dimensions

HSS Size Chart – Square, Rectangular & Round HSS Dimensions | ConcreteCalculate.com
Structural Steel Reference

HSS Size Chart
Square, Rectangular & Round Dimensions

How Hollow Structural Section designations work, the critical difference between nominal and design wall thickness, and how square, rectangular, and round HSS sizes are organized under current AISC and ASTM standards.

AISC Shapes Database v16.0 ASTM A500 & A1085 Nominal vs Design Wall Section Property Reference

An HSS size chart identifies sections; it does not select them for you

This chart explains HSS designations, outside dimensions, and the nominal-versus-design wall thickness distinction that governs structural calculations. It is not a substitute for AISC design requirements or licensed structural engineering. For official dimensions and section properties, always consult the current AISC Shapes Database rather than a hand-built table.

HSS Size Chart, Quick Reference

Square, rectangular, and round HSS are presented as three separate reference tables because combining them into one large table makes the chart harder to use. All dimensional and section-property data should ultimately be verified against the current AISC Shapes Database v16.0, which aligns with the 16th Edition Steel Construction Manual.

Square HSS, Example Designations

HSS DesignationOutside Size B × HNominal Wall tnomDesign Wall tdes (A500)
HSS 2×2×1/82 in. × 2 in.0.125 in.0.116 in.
HSS 4×4×1/44 in. × 4 in.0.250 in.0.233 in.
HSS 6×6×3/86 in. × 6 in.0.375 in.0.349 in.
HSS 8×8×1/28 in. × 8 in.0.500 in.0.465 in.

Round HSS, Example Designations

HSS DesignationOutside DiameterNominal Wall
HSS 4.000×0.2264.000 in.0.226 in.
HSS 5.563×0.2585.563 in.0.258 in.
HSS 8.625×0.3228.625 in.0.322 in.

These examples illustrate designation format only

Design wall thickness values shown above use the 0.93 factor for illustration. Full area, weight, and section property tables (A, I, S, r, J) for every published HSS size must come directly from the current AISC Shapes Database, not from a hand-reconstructed table, since AISC accounts for corner geometry and standardized production data that a simple formula cannot replicate accurately.

What Is HSS?

Hollow Structural Section is a structural steel tube manufactured in square, rectangular, round, and occasionally special shapes.

ASTM A500 covers cold-formed welded and seamless structural tubing used in buildings, bridges, and general structural applications.

Why HSS Is Used

HSS offers high torsional efficiency, a clean architectural appearance, compression efficiency, biaxial symmetry for square and round sections, an enclosed shape, and connection versatility. This page focuses on dimensions and sizing rather than full structural design guidance.

An infographic detailing three types of structural HSS (Hollow Structural Sections): square, rectangular, and round steel tubing. The image features cross-sectional photos of each tube alongside diagrams explaining how dimensions are specified using outside dimensions and nominal wall thickness.
Hollow Structural Sections (HSS) are manufactured in three primary shapes for construction and engineering: square, rectangular, and round. Regardless of the profile, structural HSS measurements are always specified by their outside dimensions (OD) and nominal wall thickness.

Square vs Rectangular vs Round HSS

ShapePrimary GeometrySymmetryTypical Structural StrengthsCommon Considerations
Square HSSB = HTwo-axis symmetryColumns, frames, bracesConnections
Rectangular HSSB ≠ HTwo principal axesBeams, lintels, framingStrong vs weak axis
Round HSSDiameter DRadial symmetryColumns, braces, exposed steelConnection geometry

This comparison helps readers choose which reference table to use; it does not by itself determine structural suitability for a project.

How to Read an HSS Designation

Understanding designation format is essential for using any HSS table correctly.

Square / Rectangular

HSS 5×4×3/8 means an outside depth of 5 in., an outside width of 4 in., and a nominal wall thickness of 3/8 in.

Round

HSS 5.563×0.258 means an outside diameter of 5.563 in. and a wall thickness of 0.258 in.

Why Round HSS Looks Different

Round sections commonly use decimal outside-diameter and wall notation, reflecting standardized round tube sizing, while square and rectangular HSS commonly use fractional wall designations that match typical nominal thickness increments.

HSS shape and dimension anatomy Square HSS, rectangular HSS, and round HSS shown with outside width B, outside height H, outside diameter D, nominal wall thickness, inside dimensions, and rounded corner labeled Square HSS B H tnom Rectangular HSS B H Round HSS D (outside diameter) Inside dimensions are smaller than outside dimensions; corners are rounded, not sharp
All three HSS shapes are designated by outside dimensions and nominal wall thickness, not inside dimensions.

HSS Outside Dimensions vs Inside Dimensions

An HSS designation uses outside dimensions.

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Conceptual approximation only

Binside ≈ B − 2t and Hinside ≈ H − 2t. But HSS corners are rounded, so actual internal geometry is not a perfect sharp-corner rectangle. Do not use this simple subtraction for precise connection fabrication where corner geometry matters.

Why Inside Dimensions Matter

Inside dimensions affect connection plates, through-bolts, concrete filling, internal diaphragms, and sleeves or inserts.

HSS Nominal Wall Thickness Chart

Common nominal wall designations found across current U.S. HSS datasets.

FractionDecimal Equivalent
1/80.125 in.
3/160.1875 in.
1/40.250 in.
5/160.3125 in.
3/80.375 in.
1/20.500 in.
5/80.625 in.
3/40.750 in.
7/80.875 in.
11.000 in.

Actual wall availability depends on HSS size and specification. ASTM A500 allows specified wall thickness up to 1.000 in. and total section perimeter up to 88 in. Do not assume every wall thickness exists for every outside size.

Nominal Wall vs Design Wall Thickness

Probably the page’s most important technical section.

ASTM A500

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Formula

tdes = 0.93 tnom. ASTM A500 permits wall thickness to be up to 10% less than specified nominal thickness, so AISC requires structural calculations to use 93% of nominal wall thickness rather than the full nominal value.

Example: 3/8 in. Nominal Wall

Given: tnom = 0.375 in.
1
tdes = 0.93 × 0.375 = 0.349 in.
Result: for a 14x14x3/8 HSS, the design wall thickness used in structural calculations is 0.349 in., not the full 0.375 in. nominal value.

ASTM A1085 Exception

Formula

tdes = tnom. Because ASTM A1085 has tighter wall thickness tolerances than A500, AISC permits the full nominal wall thickness to be used for design. AISC 360 extends this same treatment to ASTM A1065 jumbo HSS as well, since it shares comparable tolerance requirements.

Nominal versus design wall thickness comparison An HSS wall cross section comparing ASTM A500, where design thickness equals 0.93 times nominal, versus ASTM A1085, where design thickness equals the full nominal thickness ASTM A500 t_nom = 0.375 in. t_des = 0.349 in. t_des = 0.93 × t_nom ASTM A1085 t_nom = 0.375 in. t_des = 0.375 in. t_des = t_nom
ASTM A500 requires a 7% reduction for design wall thickness. ASTM A1085 and A1065 allow the full nominal wall thickness because of tighter manufacturing tolerances.

Square HSS Sizes

Small Square HSS

Examples around 1½×1½, 2×2, 2½×2½, and 3×3 in.

Medium Square HSS

Examples around 4×4, 5×5, 6×6, and 8×8 in.

Large Square HSS

Examples around 10×10, 12×12, 14×14, and 16×16 in. and larger. STI states domestic ASTM A500 production is available up to approximately 22×22 in. square HSS, though exact producer availability must be verified. Larger jumbo square sections fall under ASTM A1065.

Rectangular HSS Sizes

Small, Medium, and Large Rectangular HSS

Rectangular sections may have dramatically different Ix versus Iy, Sx versus Sy, and radii of gyration depending on orientation. STI states domestically produced ASTM A500 rectangular HSS can extend to dimensions around 34 in. by 10 in., subject to the 88-in. perimeter limit and actual producer capability.

Round HSS Sizes

STI reports domestically produced ASTM A500 round HSS availability up to approximately 28 in. outside diameter, subject to producer availability.

ColumnDescription
ODOutside diameter
Nominal / Design WallNominal thickness and the reduced design thickness for calculations
Area, WeightCross-sectional area and weight per foot
I, S, rMoment of inertia, section modulus, radius of gyration

Avoid confusing round HSS with nominal pipe sizes; see the section below.

HSS vs Structural Pipe

A very important search-intent distinction.

CategoryDesignation Logic
HSSActual outside dimensions in the designation, typically ASTM A500 or A1085
Structural pipeNominal pipe size and schedule conventions, typically ASTM A53, where dimensions do not follow the same designation logic

AISC’s basic design reference lists HSS separately from ASTM A53 structural pipe. For pipe dimension references, see the Pipe Schedule Chart and Steel Pipe Weight Chart.

HSS Dimensions in Inches and Millimeters

Dual-unit reference for outside width, outside depth, outside diameter, and wall thickness.

ASTM A500 explicitly states that its inch-pound and SI systems may be independently standardized and should not simply be mixed for specification compliance. Use the unit system matching the governing project specification.

HSS Cross-Sectional Area Chart

Gross area Ag is a key published section property.

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Conceptual formula

For sharp-corner rectangular tubing: A ≈ BH − (B − 2t)(H − 2t). Actual published HSS properties account for rounded corners and standardized geometry, so use AISC/STI published section properties rather than a sharp-corner approximation for structural design.

HSS Weight per Foot Chart

One of the most searched practical HSS properties.

ColumnDescription
HSS SizeFull designation including wall
WallNominal wall thickness
AreaGross cross-sectional area
Weight lb/ft, kg/mNominal weight per unit length

Weight is approximately W ≈ Aρ, where A is cross-sectional area and ρ is steel density, but official AISC tabulated weight should be used for reference tables rather than hand calculations. For weight calculations on specific projects, see the steel weight calculator or metal weight calculator.

HSS Moment of Inertia Ix and Iy

Moment of inertia measures resistance to bending deformation about the strong (x-x) and weak (y-y) axes.

ShapeRelationship
Square HSSIx = Iy, for ideal symmetric geometry
Rectangular HSSUsually Ix ≠ Iy, depending on orientation
HSS section properties explained A rectangular HSS cross section with the x-x axis, y-y axis, and centroid labeled, along with callouts for moment of inertia, section modulus, and radius of gyration x-x axis y-y axis centroid Iₓ, Sₓ, rₓ about x-x axis Iₜ, Sₜ, rₜ about y-y axis
The x-x and y-y axes pass through the centroid. Moment of inertia, section modulus, and radius of gyration are calculated about each axis separately.
Cross-section diagram of a square Hollow Structural Section (HSS) detailing wall thickness (t), nominal outside dimensions (OD), and inside and outside corner radii (ri/ro) alongside structural engineering terminology.
Hollow Structural Section (HSS) specifications rely on precise measurements of wall thickness and corner radii. This diagram highlights key cross-sectional properties, including workable flat width and typical corner radii approximations, which are essential for calculating section properties and designing accurate structural steel connections.

HSS Section Modulus Sx and Sy

Section modulus relates to flexural stress and bending capacity, and appears alongside moment of inertia in HSS tables.

This section is meant to help readers interpret the main HSS table columns, not to serve as a complete bending-capacity guide. For beam-specific reference, see the Beam Size Chart or Beam Deflection Chart.

HSS Radius of Gyration rx and ry

Radius of gyration matters for column slenderness, buckling, and member-axis comparison.

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Formula

r = √(I ÷ A). AISC’s current Basic Design Values references HSS slenderness using Lc/r. Detailed column capacity calculations are outside the scope of this size chart.

HSS Torsional Properties

Torsional behavior is one reason HSS is frequently selected over open structural shapes.

Relevant properties include the torsional constant J and the general closed-section efficiency of square, rectangular, and round HSS compared with open shapes. Advanced torsion design is outside the scope of this size chart.

HSS Corner Radius and Workable Flat

A genuinely HSS-specific topic and an important differentiator for this chart.

Square and rectangular HSS corner geometry affects width-thickness ratios, section properties, and usable flat area for connections. STI references corner-radius conventions such as an approximate 1.5t assumption for some slenderness calculations and roughly 2.25t for workable flat, among other averaged corner assumptions used in section-property calculations.

Outside Corner Radius

The rounded exterior corner of the HSS section.

Inside Corner Radius

The rounded interior corner, which reduces usable interior space near each corner.

Workable Flat

The usable flat portion of a face available for connections, smaller than the full face width because of corner rounding. A 6-in.-wide HSS face does not provide a full 6-in. flat connection surface.

HSS Width-to-Thickness and Diameter-to-Thickness Ratios

These ratios affect local buckling, compactness or slenderness classification, effective area, and bending or compression behavior.

ShapeRatio
Square / rectangularb/t, h/t
RoundD/t

AISC calculates the flat width b as b = B − 3t, using the design wall thickness t, not the nominal wall thickness. STI emphasizes that AISC width-thickness calculations use design wall thickness for this reason. This page does not publish a universal maximum HSS ratio, since applicable limits depend on the specific loading case and AISC provision being checked.

HSS Size Availability vs Published Size

A section appearing in an AISC database or permitted by an ASTM specification does not necessarily mean it is available everywhere.

Design-table existence does not guarantee that every mill produces a size, every service center stocks it, or it is available locally. STI provides an HSS Capability Tool specifically because producer availability varies by size.

Regularly Produced vs Mill Order

Some sizes are regularly produced; others may require a special mill order with longer lead times.

Regional Service-Center Availability

Stocked inventory varies by region and distributor. Confirm current availability directly with a service center before finalizing a project specification.

Common HSS Stock Lengths

Kept brief, since this is a size page, not a length page.

STI identifies common A500 stock lengths such as 20 ft, 24 ft, 40 ft, and 48 ft, while stressing that actual service-center stock varies by size, wall, and region.

ASTM A500 HSS Sizes and Grades

The primary material-specification section for ordinary HSS.

The current active specification, ASTM A500/A500M, covers cold-formed welded and seamless round, square, rectangular, and special-shape structural tubing, with perimeter up to 88 in. and specified wall thickness up to 1 in.

Grade B vs Grade C

STI states Grade C is the predominant domestic material and recommends it as the default structural HSS grade. Grade C has a minimum yield strength Fy of 50 ksi and a minimum tensile strength Fu of 62 ksi for HSS shapes.

ASTM A1085 HSS Sizes

An alternative material specification with tighter dimensional controls.

The current ASTM A1085/A1085M specification covers welded cold-formed HSS with a perimeter of 88 in. or less and a specified nominal wall thickness from approximately 0.148 in. through 1.000 in., with tighter dimensional and mass controls than A500. The major sizing and design advantage is that tdes = tnom under AISC/STI design practice. AISC publishes separate square, rectangular, and round A1085 dimension and property databases.

Jumbo HSS and ASTM A1065

Justified because some users searching an HSS size chart need sections beyond ordinary A500 limits.

ASTM A1065 is a jumbo HSS specification covering larger square and rectangular sections that fall outside the standard ASTM A500 size range, extending up to a 200-in. perimeter and 1-in. wall thickness. ASTM A1065 does not include round HSS. Ordinary A500 or A1085 size charts should not be stretched beyond their standard scope; do not mix A1065 shapes into an ordinary HSS table without clearly identifying them as jumbo sections.

How to Choose an HSS Size

This needs strong safety framing.

Selection can depend on axial load, bending, shear, torsion, unbraced or effective length, slenderness, local buckling, connection design, fire requirements, corrosion, architectural dimensions, and availability.

Key message

An HSS size chart identifies available sections and properties; it does not determine the correct structural member size by itself. Structural selection must follow AISC design requirements and project engineering by a licensed professional.

HSS Size by Structural Application

Columns

Square and round HSS are common where biaxial behavior and appearance matter. See the Column Size Chart.

Beams and Headers

Rectangular HSS may be oriented to take advantage of the stronger axis.

Braces and Trusses

Round, square, and rectangular HSS all appear depending on connection and design requirements.

Canopies, Frames, and Architecturally Exposed Steel

HSS is often selected for its clean appearance in exposed applications.

Sign Supports and Miscellaneous Structures

Additional applications with their own project-specific design requirements.

Do not select a specific size, such as HSS 6x6x1/4, for a column without structural analysis.

Structural steel framework under construction showing an 8x8-inch square HSS column anchored with a welded base plate, joined by a bolted connection to a 10x6-inch rectangular HSS beam and a 6x6-inch HSS diagonal brace.
Hollow Structural Sections (HSS) provide high strength-to-weight ratios for modern steel construction. This framework illustrates how square HSS columns, rectangular HSS beams, and HSS bracing seamlessly integrate using welded base plates and bolted connections, highlighting the importance of factoring in wall thickness and fabrication tolerances for proper fit-up and structural integrity.

HSS vs Wide-Flange, Channel, and Pipe Sections

A useful shape-selection comparison without ranking one universally.

PropertyHSSW-ShapeChannelPipe
Closed sectionYesNoNoYes
Biaxial efficiencyGood square/roundAxis-dependentAxis-dependentGood
Torsional behaviorStrong relative advantageLowerLowerStrong
Connection accessibilityCan be challengingEasier flange/web accessOpenSimilar closed-section issue
Designation systemOutside dims × wallNominal depth × weightC designationNPS/schedule

See the Structural Steel Shapes Chart, Steel I-Beam Chart, Steel Beam Size Chart, and Pipe Schedule Chart for shape-specific reference.

HSS versus pipe versus W-shape cross sections Scaled cross section outlines comparing a square HSS, a round pipe, and a wide flange W-shape to illustrate their different designation systems and geometries HSS B × H × t Pipe NPS & schedule W-Shape depth × weight
HSS, pipe, and W-shapes use fundamentally different designation systems, which is why the same nominal dimension does not mean the same thing across shape types.

HSS Connection and Detailing Considerations

Physical size does not tell the full story.

Connection suitability depends on workable flat, wall thickness, local wall yielding, punching or shear-type local limit states, through-bolts, plates, weld access, and HSS-to-HSS connections. STI specifically warns that connection suitability can depend strongly on slender HSS walls and connection type. This section is not a complete HSS connection design guide.

AISC 16th Edition HSS Tables and Shape Database

The main authoritative data source for HSS dimensions and section properties.

AISC’s current Shapes Database v16.0 corresponds to the 16th Edition Steel Construction Manual, includes U.S. customary and metric dimensions and properties, adds new shapes introduced in the 16th Edition, and follows AISC EDI naming conventions. This should be the primary numerical source for detailed HSS tables. Do not manually reconstruct hundreds of HSS section properties from formulas when AISC publishes them directly.

Common HSS Size Chart Mistakes

Confusing HSS with pipe

Designation logic differs fundamentally between the two.

Treating HSS dimensions as inside dimensions

HSS designations always use outside dimensions.

Misreading rectangular HSS orientation

HSS 6x4x1/4 lists depth before width; orientation matters for axis properties.

Assuming nominal wall equals A500 design wall

The 0.93 factor applies for design calculations under A500.

Forgetting the 0.93 factor for A500

A common source of undersized design wall assumptions.

Applying the 0.93 reduction automatically to A1085

A1085 and A1065 use the full nominal thickness instead.

Assuming every published size is locally stocked

AISC database inclusion does not guarantee stock availability.

Assuming every wall is available for every outside dimension

Wall availability is size-specific, not universal.

Ignoring corner radii

Corner geometry affects section properties and inside dimensions.

Treating full face width as workable flat

Corner rounding reduces the usable connection surface.

Using nominal dimensions to approximate section properties

AISC tabulated data should be used instead of hand formulas.

Confusing section modulus with moment of inertia

These are related but distinct section properties.

Ignoring strong/weak axes on rectangular HSS

Ix and Iy differ for non-square sections.

Confusing ASTM material grade with HSS size

Grade governs strength; size governs dimensions.

Assuming larger outside size always means higher capacity

Wall thickness, slenderness, and material also govern capacity.

Ignoring wall slenderness/local buckling

Width-thickness ratios affect compactness classification.

Using ordinary A500 charts for jumbo A1065 sections

Jumbo sections require their own specification reference.

Selecting HSS from size alone without structural design

Size charts identify options; they do not replace engineering analysis.

Mixing inch and metric values carelessly

ASTM treats inch-pound and SI systems as independently standardized.

HSS Size Chart Limitations

Read before specifying HSS on a project

HSS tables identify dimensions and properties, not required structural size. Availability varies by manufacturer and region. AISC database sizes do not guarantee local stock. ASTM A500 and A1085 use different wall-thickness design treatment. Nominal wall thickness is not always design wall thickness. Section properties should be taken from current AISC/STI data. Corner geometry affects section properties and connections. Round HSS should not be confused with nominal pipe. Local buckling, global buckling, bending, shear, torsion, and connections must all be checked where relevant. Member capacity depends on material specification, unbraced or effective length, loading, and boundary conditions. Seismic, fire, or fatigue applications can introduce additional requirements. Project structural drawings and licensed-engineer design govern actual HSS selection.

Frequently Asked Questions

What does HSS mean in structural steel?
HSS stands for Hollow Structural Section, a structural steel tube manufactured in square, rectangular, and round shapes and commonly produced to ASTM A500 or ASTM A1085.
What sizes does HSS come in?
HSS is available in a wide range of square, rectangular, and round outside dimensions and wall thicknesses, published in the current AISC Shapes Database. Not every size is produced or stocked by every mill or service center.
How is HSS size written?
Square and rectangular HSS are written as outside depth by outside width by nominal wall thickness, for example HSS 6x6x1/4. Round HSS is written as outside diameter by wall thickness, for example HSS 5.563×0.258.
What does HSS 6x6x1/4 mean?
HSS 6x6x1/4 designates a square HSS with an outside dimension of 6 inches by 6 inches and a nominal wall thickness of 1/4 inch.
What does HSS 8x4x3/8 mean?
HSS 8x4x3/8 designates a rectangular HSS with an outside depth of 8 inches, an outside width of 4 inches, and a nominal wall thickness of 3/8 inch.
Is HSS measured by inside or outside dimensions?
HSS designations use outside dimensions. Inside dimensions are smaller and are not a simple sharp-corner subtraction, since HSS corners are rounded.
Is HSS wall thickness nominal or actual?
The wall thickness in an HSS designation is the nominal wall thickness. For structural design calculations, AISC requires a separate design wall thickness, which differs from nominal depending on the material specification.
Why is A500 HSS design thickness 0.93 times nominal?
ASTM A500 permits a wall thickness tolerance of up to 10 percent below nominal. AISC accounts for this by requiring the design wall thickness for ASTM A500 HSS to be taken as 0.93 times the nominal wall thickness.
Does ASTM A1085 use the full wall thickness?
Yes. Because ASTM A1085 has tighter wall thickness tolerances than A500, AISC allows the full nominal wall thickness to be used as the design wall thickness for A1085 and A1065 HSS.
What is the largest square HSS size?
Under ASTM A500, domestically produced square HSS is generally available up to approximately 22 inches by 22 inches, subject to the 88 inch perimeter limit and actual producer capability. Larger jumbo square HSS sizes are covered separately under ASTM A1065.
What is the largest rectangular HSS size?
Under ASTM A500, domestically produced rectangular HSS can extend to dimensions around 34 inches by 10 inches, subject to the 88 inch perimeter limit and actual producer capability. Larger jumbo rectangular sizes fall under ASTM A1065.
What is the largest round HSS size?
Domestically produced ASTM A500 or A1085 round HSS is generally available up to approximately 28 inches outside diameter, subject to producer availability.
What is jumbo HSS?
Jumbo HSS refers to larger square and rectangular sections covered by ASTM A1065, which extends beyond the standard ASTM A500 size range up to a 200 inch perimeter and 1 inch wall thickness. ASTM A1065 does not include round HSS.
Is HSS the same as square tubing?
Square HSS is a type of square structural tubing, but the term HSS specifically refers to hollow structural sections produced to a structural steel specification such as ASTM A500 or A1085, with published dimensions and section properties for structural design.
Is round HSS the same as pipe?
No. Round HSS uses a designation based on actual outside diameter and wall thickness, while structural pipe typically follows nominal pipe size and schedule conventions that do not correspond directly to actual dimensions.
What does lb/ft mean in an HSS table?
lb/ft is the nominal weight of the HSS section per linear foot, based on the steel cross-sectional area and material density, as published in the AISC Shapes Database.
What are Ix, Sx, and rx?
Ix is the moment of inertia about the x-x axis, a measure of resistance to bending deformation. Sx is the section modulus about the x-x axis, related to bending stress capacity. rx is the radius of gyration about the x-x axis, used in column slenderness and buckling calculations.
How do I choose an HSS size for a column or beam?
HSS size selection requires structural analysis of axial load, bending, shear, unbraced length, connection design, and other project-specific factors, following AISC design requirements. A size chart identifies available dimensions and properties; it does not determine the correct member size by itself.

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