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	<title>Structural Connectors &#8211; The Backyard Standard</title>
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		<title>Deck Joist Hangers Explained (2026): Types, Load Ratings, Fasteners, and Best Options</title>
		<link>https://thebackyardstandard.com/deck-joist-hangers/?utm_source=rss&#038;utm_medium=rss&#038;utm_campaign=deck-joist-hangers</link>
		
		<dc:creator><![CDATA[The Backyard Standard]]></dc:creator>
		<pubDate>Wed, 25 Mar 2026 02:47:38 +0000</pubDate>
				<category><![CDATA[Decking]]></category>
		<category><![CDATA[Deck Building]]></category>
		<category><![CDATA[Deck Construction]]></category>
		<category><![CDATA[Deck Framing]]></category>
		<category><![CDATA[Deck Hardware]]></category>
		<category><![CDATA[Deck Joists]]></category>
		<category><![CDATA[Structural Connectors]]></category>
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					<description><![CDATA[Deck joist hangers are metal connectors that support deck joists where they attach to a ledger board or beam. This guide explains how joist hangers work, what fasteners to use, and how to install them correctly for safe deck framing.]]></description>
										<content:encoded><![CDATA[
<div class="bys-hero">
  <div class="bys-tag">Deck Hardware</div>

  <h1>Deck Joist Hangers: Types, Fasteners, Corrosion Protection &amp; Structural Load Explained</h1>

  <p>
    Deck joist hangers are one of the most important structural connectors in deck framing, but they are also one of the most misunderstood hardware components in residential deck construction.
  </p>

  <p>
    A joist hanger is not simply a metal bracket that “holds a board in place.” It is a load-rated structural connector engineered to transfer joist loads into a ledger, beam, rim, or header.
  </p>

  <p>
    That makes joist hanger selection a structural decision — not just a hardware purchase.
  </p>

  <p>
    Choosing the correct hanger depends on:
  </p>

  <ul>
    <li>joist size</li>
    <li>connection geometry</li>
    <li>required load capacity</li>
    <li>corrosion exposure</li>
    <li>approved fasteners</li>
  </ul>

  <div class="bys-note">
    <p>
      A joist hanger only achieves its rated capacity when it uses the exact approved fasteners and full fastening pattern required by the manufacturer.
    </p>
  </div>

</div>



<h2>Quick Answer: What Is a Deck Joist Hanger?</h2>

<div class="bys-card">

  <p>
    A deck joist hanger is a load-rated metal connector used to support the end of a joist when the joist attaches to the face of another structural member rather than bearing directly on top of it.
  </p>

  <p>
    Common applications include:
  </p>

  <ul>
    <li>joists attaching to a ledger board</li>
    <li>flush beam framing</li>
    <li>rim or header framing</li>
    <li>angled joist layouts</li>
  </ul>

  <p>
    Joist hangers must:
  </p>

  <ul>
    <li>fit the joist correctly</li>
    <li>meet required load capacity</li>
    <li>use approved fasteners</li>
    <li>provide appropriate corrosion resistance</li>
  </ul>

</div>

<h2>Why Deck Joist Hangers Matter</h2>

<div class="bys-card">

  <p>
    Joist ends are high-consequence structural connection points.
  </p>

  <p>
    Even when joists are properly sized, an underspecified or improperly fastened hanger can weaken the framing system significantly.
  </p>

  <h3>Common joist hanger failures include:</h3>

  <ul>
    <li>wrong fasteners</li>
    <li>missing nails or screws</li>
    <li>undersized connectors</li>
    <li>corrosion</li>
    <li>field-modified hangers</li>
    <li>improper installation geometry</li>
  </ul>

  <div class="bys-note">
    <p>
      In deck framing, the connection is often the weak point — not the lumber itself.
    </p>
  </div>

</div>

<h2>How Joist Hangers Transfer Structural Load</h2>

<div class="bys-card">

  <p>
    Deck framing follows a structural load path:
  </p>

  <div class="bys-note">
    <p>
      deck boards → joists → joist hanger → ledger or beam → posts and footings
    </p>
  </div>

  <p>
    The joist hanger transfers the joist’s end reaction into the supporting framing member through:
  </p>

  <ul>
    <li>hanger geometry</li>
    <li>connector steel</li>
    <li>approved fasteners</li>
  </ul>

  <p>
    Because the connector itself carries load, hanger choice directly affects structural performance.
  </p>

  <p>
    Related:
    <a href="/deck-framing-layout/"><strong>Deck Framing Layout</strong></a>.
  </p>

</div>

<h2>When Joist Hangers Are Required</h2>

<div class="bys-card">

  <p>
    Joist hangers are commonly required when the joist attaches to the face of another framing member rather than bearing directly on top of support framing.
  </p>

  <h3>Common deck applications include:</h3>

  <ul>
    <li>joists attached to ledger boards</li>
    <li>flush beam framing</li>
    <li>header or rim framing</li>
    <li>angled joist layouts</li>
    <li>special framing conditions</li>
  </ul>

  <p>
    By contrast, joists that bear fully on top of a beam may use different connection methods that rely on bearing support plus tie-down hardware instead of hangers.
  </p>

</div>

<h2>Main Types of Deck Joist Hangers</h2>

<div class="bys-grid">

  <div class="bys-card">

    <div class="bys-tag">Most Common</div>

    <h3>Face-Mount Hangers</h3>

    <p>
      Standard 90-degree joist connections into the face of a ledger or beam.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Appearance / Clearance</div>

    <h3>Concealed-Flange Hangers</h3>

    <p>
      Useful where visible side flanges are undesirable or edge clearance is limited.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Tight Framing</div>

    <h3>Inside-Flange Hangers</h3>

    <p>
      Helpful where beam or ledger edge clearance prevents standard side flanges.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Angled Layouts</div>

    <h3>Skewed Hangers</h3>

    <p>
      Designed for angled joists and diagonal framing conditions.
    </p>

  </div>

</div>

<h2>Face-Mount vs Concealed-Flange Hangers</h2>

<div class="bys-table-wrap">
<table class="bys-table">
<thead>
<tr>
<th>Hanger Type</th>
<th>Best Use</th>
<th>Main Advantage</th>
</tr>
</thead>
<tbody>
<tr>
<td>Face-mount</td>
<td>Standard joist framing</td>
<td>Simple and cost-effective</td>
</tr>
<tr>
<td>Concealed-flange</td>
<td>Exposed edges or limited clearance</td>
<td>Cleaner appearance</td>
</tr>
<tr>
<td>Inside-flange</td>
<td>Tight beam or ledger conditions</td>
<td>Improved edge clearance</td>
</tr>
<tr>
<td>Skewed</td>
<td>Angled joists</td>
<td>Maintains rated geometry</td>
</tr>
</tbody>
</table>
</div>

<h2>Why Skewed Hangers Exist</h2>

<div class="bys-card">

  <p>
    Standard joist hangers are designed for square framing connections.
  </p>

  <p>
    When joists meet the support member at an angle, a standard hanger no longer aligns correctly with the framing geometry.
  </p>

  <h3>Skewed hangers are commonly used for:</h3>

  <ul>
    <li>picture-frame deck layouts</li>
    <li>diagonal framing</li>
    <li>angled deck corners</li>
    <li>non-square deck designs</li>
  </ul>

  <div class="bys-note">
    <p>
      Standard joist hangers should never be field-bent or modified to “fake” an angled connection.
    </p>
  </div>

</div>

<h2>How to Size a Deck Joist Hanger Correctly</h2>

<div class="bys-card">

  <p>
    Correct sizing depends on three primary factors:
  </p>

  <ol>
    <li>joist size</li>
    <li>connection geometry</li>
    <li>required load capacity</li>
  </ol>

  <p>
    The hanger must match the nominal joist size exactly.
  </p>

  <p>
    For example:
  </p>

  <ul>
    <li>2×8 joist → 2×8 hanger</li>
    <li>2×10 joist → 2×10 hanger</li>
    <li>double joist → double-member hanger</li>
  </ul>

  <div class="bys-note">
    <p>
      “Close enough” sizing is not acceptable for structural connectors.
    </p>
  </div>

</div>

<h2>Minimum Vertical Capacity Requirements</h2>

<div class="bys-card">

  <p>
    Joist hangers must meet minimum vertical load capacities appropriate for the joist being supported.
  </p>

</div>

<div class="bys-table-wrap">
<table class="bys-table">
<thead>
<tr>
<th>Joist Size</th>
<th>Typical Minimum Vertical Capacity*</th>
</tr>
</thead>
<tbody>
<tr>
<td>2×6</td>
<td>~400 lb</td>
</tr>
<tr>
<td>2×8</td>
<td>~500 lb</td>
</tr>
<tr>
<td>2×10</td>
<td>~600 lb</td>
</tr>
<tr>
<td>2×12</td>
<td>~700 lb</td>
</tr>
</tbody>
</table>
</div>

<div class="bys-note">
  <p>
    *General residential guidance derived from prescriptive deck framing recommendations. Final capacity requirements depend on actual loading conditions and approved manufacturer data.
  </p>
</div>

<h2>Why Hanger Depth Matters</h2>

<div class="bys-card">

  <p>
    Hanger depth affects how much of the joist receives structural support.
  </p>

  <p>
    Shallow hangers provide less bearing support and lower vertical capacity.
  </p>

  <p>
    Structural guidance commonly requires joist hangers to be at least:
  </p>

  <div class="bys-note">
    <p>
      approximately 60% of the joist depth
    </p>
  </div>

  <p>
    Undersized or shallow hangers can weaken the connection even when the joist itself is properly sized.
  </p>

</div>

<h2>Joist Hanger Fasteners Explained</h2>

<div class="bys-card">

  <p>
    Joist hanger capacity depends heavily on the approved fasteners used during installation.
  </p>

  <p>
    The connector’s published load rating assumes:
  </p>

  <ul>
    <li>approved fastener type</li>
    <li>approved fastener length</li>
    <li>correct installation pattern</li>
    <li>all required holes filled</li>
  </ul>

  <div class="bys-note">
    <p>
      Random deck screws are not automatically acceptable substitutes for approved joist hanger fasteners.
    </p>
  </div>

</div>

<h2>Why Every Fastener Hole Matters</h2>

<div class="bys-card">

  <p>
    Joist hangers are tested using full fastening patterns.
  </p>

  <p>
    Leaving holes empty reduces the connector’s structural capacity.
  </p>

  <h3>Common installation mistakes include:</h3>

  <ul>
    <li>missing nails</li>
    <li>undersized nails</li>
    <li>using drywall screws</li>
    <li>using random coated deck screws</li>
    <li>mixing incompatible fasteners</li>
  </ul>

  <p>
    Even a strong hanger can underperform significantly if the fastening schedule is incomplete.
  </p>

</div>

<h2>Galvanized vs Stainless Steel Joist Hangers</h2>

<div class="bys-card">

  <p>
    Corrosion protection is extremely important because joist hangers are exposed to outdoor moisture and pressure-treated lumber chemicals.
  </p>

</div>

<div class="bys-table-wrap">
<table class="bys-table">
<thead>
<tr>
<th>Environment</th>
<th>Typical Connector Category</th>
</tr>
</thead>
<tbody>
<tr>
<td>Standard exterior residential deck</td>
<td>Exterior-rated galvanized hanger</td>
</tr>
<tr>
<td>Coastal or salt exposure</td>
<td>Stainless steel hanger</td>
</tr>
<tr>
<td>Severe corrosion environment</td>
<td>Stainless steel hanger and fasteners</td>
</tr>
</tbody>
</table>
</div>

<div class="bys-card">

  <p>
    Corrosion risk increases in:
  </p>

  <ul>
    <li>coastal climates</li>
    <li>salt exposure</li>
    <li>wet environments</li>
    <li>aggressive pressure-treated lumber conditions</li>
  </ul>

  <div class="bys-note">
    <p>
      Stainless steel connectors should generally use stainless steel fasteners to avoid incompatible-metal corrosion issues.
    </p>
  </div>

</div>

<h2>Real-World Framing Scenarios</h2>

<div class="bys-grid">

  <div class="bys-card">

    <div class="bys-tag">Standard Ledger</div>

    <h3>Use Face-Mount Hangers</h3>

    <p>
      Standard square joists framing into a ledger or beam.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Flush Beam</div>

    <h3>Use Inside-Flange Hangers</h3>

    <p>
      Tight beam-edge conditions where side flanges interfere.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Angled Deck</div>

    <h3>Use Skewed Hangers</h3>

    <p>
      Picture-frame layouts or diagonal framing conditions.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Exposed Trim</div>

    <h3>Use Concealed-Flange Hangers</h3>

    <p>
      Cleaner appearance where exposed flanges are undesirable.
    </p>

  </div>

</div>

<h2>Joist Hanger Cost</h2>

<div class="bys-card">

  <p>
    Individual joist hangers are relatively inexpensive, but the total connector package can become significant because every joist end may require hardware.
  </p>

</div>

<div class="bys-table-wrap">
<table class="bys-table">
<thead>
<tr>
<th>Hanger Type</th>
<th>General Cost Trend</th>
</tr>
</thead>
<tbody>
<tr>
<td>Standard galvanized face-mount</td>
<td>Lowest cost</td>
</tr>
<tr>
<td>Concealed- or inside-flange</td>
<td>Moderate cost increase</td>
</tr>
<tr>
<td>Skewed hangers</td>
<td>Significantly higher cost</td>
</tr>
<tr>
<td>Stainless steel hangers</td>
<td>Premium cost category</td>
</tr>
</tbody>
</table>
</div>

<div class="bys-card">

  <p>
    Specialty hangers cost more because of:
  </p>

  <ul>
    <li>complex geometry</li>
    <li>additional engineering</li>
    <li>smaller production volume</li>
    <li>corrosion-resistant materials</li>
  </ul>

</div>

<h2>Recommended Deck Joist Hanger Hardware &amp; Tools</h2>

<div class="bys-card">

<p>
Joist hangers only perform as intended when paired with the correct connector, approved fasteners, and proper installation practices. These are some of the most useful hardware products for residential deck framing projects.
</p>

<h3>Simpson Strong-Tie LUS Series Face-Mount Joist Hangers</h3>

<p>
The industry standard for most residential deck framing applications. Available in multiple sizes to match common joist dimensions and widely used by contractors throughout North America.
</p>

<p>
<a href="https://amzn.to/4ekOPyp" target="_blank" rel="nofollow sponsored noopener">
View Simpson Strong-Tie LUS Joist Hangers →
</a>
</p>

<h3>Simpson Strong-Tie SD Connector Screws</h3>

<p>
One of the most popular approved fasteners for many Simpson connector applications. Designed specifically for structural connectors and often easier to install than traditional hanger nails.
</p>

<p>
<a href="https://amzn.to/4xGAZ0S" target="_blank" rel="nofollow sponsored noopener">
View Simpson SD Connector Screws →
</a>
</p>

<h3>Simpson Strong-Tie Stainless Steel Joist Hangers</h3>

<p>
Recommended for coastal environments, waterfront properties, salt exposure, and other severe-corrosion conditions where galvanized connectors may not provide adequate long-term protection.
</p>

<p>
<a href="https://amzn.to/44ib6XI" target="_blank" rel="nofollow sponsored noopener">
View Stainless Steel Joist Hangers →
</a>
</p>

<h3>Metabo HPT 30° Framing Nailer</h3>

<p>
A favorite among professional deck builders. Greatly speeds installation of framing hardware, structural connectors, and deck framing components on larger projects.
</p>

<p>
<a href="https://amzn.to/4" target="_blank" rel="nofollow sponsored noopener">
View Metabo HPT Framing Nailer →
</a>
</p>

<h3>DEWALT DW088LG Green Cross-Line Laser Level</h3>

<p>
Useful for establishing level beams, framing lines, ledger elevations, and overall deck layout accuracy before hanger installation begins.
</p>

<p>
<a href="https://amzn.to/4a7lxAU" target="_blank" rel="nofollow sponsored noopener">
View DEWALT Green Laser Level →
</a>
</p>

<div class="bys-note">
<p>
Disclosure: As an Amazon Associate, The Backyard Standard may earn from qualifying purchases at no additional cost to you.
</p>
</div>

</div>

<h2>Common Deck Joist Hanger Mistakes</h2>

<div class="bys-card">

  <ul>
    <li>using random deck screws</li>
    <li>leaving fastener holes empty</li>
    <li>field-bending or cutting hangers</li>
    <li>undersized connectors</li>
    <li>using interior-rated hardware outdoors</li>
    <li>mixing incompatible metals</li>
    <li>using single hangers for doubled joists</li>
  </ul>

</div>

<h2>Failure Scenarios</h2>

<div class="bys-grid">

  <div class="bys-card">

    <div class="bys-tag">Fasteners</div>

    <h3>Wrong Fastener Type</h3>

    <p>
      Unapproved screws or nails may reduce load capacity dramatically.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Installation</div>

    <h3>Missing Fasteners</h3>

    <p>
      Leaving holes empty weakens the tested load path.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Corrosion</div>

    <h3>Hardware Deterioration</h3>

    <p>
      Corrosion can weaken the connector and surrounding fasteners over time.
    </p>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Improvisation</div>

    <h3>Modified Hangers</h3>

    <p>
      Cutting or bending hangers changes their tested structural behavior.
    </p>

  </div>

</div>

<h2>How to Choose the Right Deck Joist Hanger</h2>

<div class="bys-grid">

  <div class="bys-card">

    <div class="bys-tag">Best for Most Decks</div>

    <h3>Choose Standard Face-Mount Hangers If:</h3>

    <ul>
      <li>framing is square</li>
      <li>edge clearance is normal</li>
      <li>cost efficiency matters</li>
      <li>appearance is not critical</li>
    </ul>

  </div>

  <div class="bys-card">

    <div class="bys-tag">Special Conditions</div>

    <h3>Choose Specialty Hangers If:</h3>

    <ul>
      <li>joists are angled</li>
      <li>framing is tight</li>
      <li>appearance matters</li>
      <li>members are doubled</li>
    </ul>

  </div>

</div>

<h2>Frequently Asked Questions</h2>

<div class="bys-card">

  <h3>Are joist hangers required on a deck ledger?</h3>
  <p>
    Usually yes when joists frame into the face of the ledger rather than bearing on top of a support member.
  </p>

  <h3>Can deck screws be used in joist hangers?</h3>
  <p>
    Only if the manufacturer specifically approves that exact screw for the connector and application.
  </p>

  <h3>Do joist hangers need every hole filled?</h3>
  <p>
    Required holes generally need the specified fasteners because connector capacity is based on the tested fastening pattern.
  </p>

  <h3>Do I need stainless steel joist hangers?</h3>
  <p>
    Not always. Exterior-rated galvanized connectors are common for standard decks, while stainless steel is often preferred for coastal or severe-corrosion environments.
  </p>

  <h3>Can a joist hanger be bent to fit?</h3>
  <p>
    No. Use a manufacturer-approved skewed or specialty hanger instead.
  </p>

  <h3>What happens if the hanger is too small?</h3>
  <p>
    The connection may lack proper depth, bearing support, or vertical load capacity.
  </p>

  <h3>Can joist hangers rust?</h3>
  <p>
    Yes. Corrosion risk depends on moisture exposure, treated lumber chemistry, and connector coating type.
  </p>

</div>

<h2>Final Verdict</h2>

<div class="bys-card">

  <p>
    Deck joist hangers are small components with major structural importance.
  </p>

  <p>
    Proper hanger selection depends on:
  </p>

  <ul>
    <li>joist geometry</li>
    <li>load capacity</li>
    <li>connection type</li>
    <li>approved fasteners</li>
    <li>corrosion protection</li>
  </ul>

  <p>
    Homeowners who treat joist hangers as engineered structural connectors rather than generic brackets make safer hardware decisions and build stronger deck framing systems.
  </p>

  <div class="bys-note">
    <p>
      In deck framing, joist hangers are not accessory hardware — they are part of the structural load path.
    </p>
  </div>

</div>

<h2>Sources &amp; Technical References</h2>

<div class="bys-card">

  <p><strong>Last reviewed: May 2026</strong></p>

  <ul>
    <li>
      <a href="https://awc.org" target="_blank" rel="noopener nofollow">
        American Wood Council
      </a>
    </li>

    <li>
      <a href="https://www.strongtie.com" target="_blank" rel="noopener nofollow">
        Simpson Strong-Tie
      </a>
    </li>

    <li>
      <a href="https://www.decks.com" target="_blank" rel="noopener nofollow">
        Decks.com
      </a>
    </li>

    <li>
      <a href="https://www.finehomebuilding.com" target="_blank" rel="noopener nofollow">
        Fine Homebuilding
      </a>
    </li>

  </ul>

</div>

<h2>Related Deck Framing Guides</h2>

<div class="bys-grid">

  <a href="/deck-ledger-board/" class="bys-related-card">
    <div class="bys-tag">Ledger Connection</div>
    <h3>Deck Ledger Board</h3>
    <p>Learn how ledger boards attach decks to houses and transfer structural loads.</p>
  </a>

  <a href="/deck-beam-span-chart/" class="bys-related-card">
    <div class="bys-tag">Beams</div>
    <h3>Deck Beam Span Chart</h3>
    <p>Understand how beam span and tributary load affect structural framing.</p>
  </a>

  <a href="/deck-joist-span-chart/" class="bys-related-card">
    <div class="bys-tag">Joists</div>
    <h3>Deck Joist Span Chart</h3>
    <p>Learn how joist span affects deck stiffness, hanger load, and framing design.</p>
  </a>

  <a href="/deck-framing-layout/" class="bys-related-card">
    <div class="bys-tag">System Design</div>
    <h3>Deck Framing Layout</h3>
    <p>See how joists, beams, posts, and hardware work together structurally.</p>
  </a>

  <a href="/deck-flashing/" class="bys-related-card">
    <div class="bys-tag">Water Protection</div>
    <h3>Deck Flashing</h3>
    <p>Learn how flashing protects framing and ledger connections from moisture damage.</p>
  </a>

  <a href="/deck-blocking/" class="bys-related-card">
    <div class="bys-tag">Rigidity</div>
    <h3>Deck Blocking</h3>
    <p>Understand how blocking improves framing stiffness and load distribution.</p>
  </a>

  <a href="/composite-decking-installation-cost/" class="bys-related-card">
    <div class="bys-tag">Installation</div>
    <h3>Composite Decking Installation Cost</h3>
    <p>See how framing complexity and hardware affect total installation pricing.</p>
  </a>

  <a href="/composite-decking-guide/" class="bys-related-card">
    <div class="bys-tag">Start Here</div>
    <h3>Composite Decking Guide</h3>
    <p>Learn how decking materials, framing systems, and installation details work together.</p>
  </a>

</div>



<div class="nfd-container nfd-p-md nfd-wb-blog__blog-1 wp-block-group"><div class="wp-block-group__inner-container is-layout-constrained wp-block-group-is-layout-constrained">
<div class="wp-block-query is-layout-flow wp-block-query-is-layout-flow"><ul class="columns-3 nfd-gap-xl wp-block-post-template is-layout-grid wp-container-core-post-template-is-layout-0fed8f92 wp-block-post-template-is-layout-grid"><li class="wp-block-post post-2064 post type-post status-publish format-standard has-post-thumbnail hentry category-decking tag-deck-framing tag-deck-maintenance tag-deck-planning tag-deck-repair tag-deck-replacement tag-deck-safety">
<figure style="margin-bottom:24px;aspect-ratio:3/2" class="nfd-rounded wp-block-post-featured-image"><a href="https://thebackyardstandard.com/deck-repair-vs-replace/" target="_self"><img data-recalc-dims="1" decoding="async" loading="lazy" width="1100" height="733" src="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/07/Deck-Repair-vs-Replace.png?resize=1100%2C733&#038;ssl=1" class="attachment-post-thumbnail size-post-thumbnail wp-post-image" alt="Deck Repair vs Replace: When to Fix Your Deck and When to Start Over (2026)" style="width:100%;height:100%;object-fit:cover;" srcset="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/07/Deck-Repair-vs-Replace.png?w=1536&amp;ssl=1 1536w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/07/Deck-Repair-vs-Replace.png?resize=300%2C200&amp;ssl=1 300w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/07/Deck-Repair-vs-Replace.png?resize=1024%2C683&amp;ssl=1 1024w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/07/Deck-Repair-vs-Replace.png?resize=768%2C512&amp;ssl=1 768w" sizes="auto, (max-width: 1100px) 100vw, 1100px" /></a></figure>

<h3 style="font-style:normal;font-weight:500;margin-top:var(--wp--preset--spacing--20);margin-bottom:var(--wp--preset--spacing--20)" class="nfd-text-lg nfd-text-contrast nfd-text-balance wp-block-post-title"><a href="https://thebackyardstandard.com/deck-repair-vs-replace/" target="_self">Deck Repair vs Replace: When to Fix Your Deck and When to Start Over (2026)</a></h3>

<div style="text-transform:uppercase" class="nfd-text-faded nfd-text-xs wp-block-post-date"><time datetime="2026-07-15T17:03:03-04:00">July 15, 2026</time></div>
</li><li class="wp-block-post post-2061 post type-post status-publish format-standard has-post-thumbnail hentry category-decking tag-deck-building tag-deck-construction tag-deck-framing tag-deck-structure tag-decking-materials">
<figure style="margin-bottom:24px;aspect-ratio:3/2" class="nfd-rounded wp-block-post-featured-image"><a href="https://thebackyardstandard.com/deck-beam-size-chart/" target="_self"><img data-recalc-dims="1" decoding="async" loading="lazy" width="1100" height="733" src="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Beam-Size-Chart.png?resize=1100%2C733&#038;ssl=1" class="attachment-post-thumbnail size-post-thumbnail wp-post-image" alt="Deck Beam Size Chart (2026): Common Beam Sizes Explained" style="width:100%;height:100%;object-fit:cover;" srcset="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Beam-Size-Chart.png?w=1536&amp;ssl=1 1536w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Beam-Size-Chart.png?resize=300%2C200&amp;ssl=1 300w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Beam-Size-Chart.png?resize=1024%2C683&amp;ssl=1 1024w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Beam-Size-Chart.png?resize=768%2C512&amp;ssl=1 768w" sizes="auto, (max-width: 1100px) 100vw, 1100px" /></a></figure>

<h3 style="font-style:normal;font-weight:500;margin-top:var(--wp--preset--spacing--20);margin-bottom:var(--wp--preset--spacing--20)" class="nfd-text-lg nfd-text-contrast nfd-text-balance wp-block-post-title"><a href="https://thebackyardstandard.com/deck-beam-size-chart/" target="_self">Deck Beam Size Chart (2026): Common Beam Sizes Explained</a></h3>

<div style="text-transform:uppercase" class="nfd-text-faded nfd-text-xs wp-block-post-date"><time datetime="2026-06-24T21:41:37-04:00">June 24, 2026</time></div>
</li><li class="wp-block-post post-2055 post type-post status-publish format-standard has-post-thumbnail hentry category-decking tag-deck-building tag-deck-building-timeline tag-project-timeline">
<figure style="margin-bottom:24px;aspect-ratio:3/2" class="nfd-rounded wp-block-post-featured-image"><a href="https://thebackyardstandard.com/deck-building-timeline/" target="_self"><img data-recalc-dims="1" decoding="async" loading="lazy" width="1100" height="733" src="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Building-Timeline.png?resize=1100%2C733&#038;ssl=1" class="attachment-post-thumbnail size-post-thumbnail wp-post-image" alt="Deck Building Timeline: Planning, Permits &amp; Construction Schedule (2026)" style="width:100%;height:100%;object-fit:cover;" srcset="https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Building-Timeline.png?w=1536&amp;ssl=1 1536w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Building-Timeline.png?resize=300%2C200&amp;ssl=1 300w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Building-Timeline.png?resize=1024%2C683&amp;ssl=1 1024w, https://i0.wp.com/thebackyardstandard.com/wp-content/uploads/2026/06/Deck-Building-Timeline.png?resize=768%2C512&amp;ssl=1 768w" sizes="auto, (max-width: 1100px) 100vw, 1100px" /></a></figure>

<h3 style="font-style:normal;font-weight:500;margin-top:var(--wp--preset--spacing--20);margin-bottom:var(--wp--preset--spacing--20)" class="nfd-text-lg nfd-text-contrast nfd-text-balance wp-block-post-title"><a href="https://thebackyardstandard.com/deck-building-timeline/" target="_self">Deck Building Timeline: Planning, Permits &amp; Construction Schedule (2026)</a></h3>

<div style="text-transform:uppercase" class="nfd-text-faded nfd-text-xs wp-block-post-date"><time datetime="2026-06-23T15:28:53-04:00">June 23, 2026</time></div>
</li></ul></div>
</div></div>
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