Howe truss
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A Howe truss is a truss bridge consisting of chords, verticals, and diagonals whose vertical members are in tension and whose diagonal members are in compression. The Howe truss was invented by William Howe in 1840, and was widely used as a bridge in the mid to late 1800s.
Development
The earliest bridges in North America were made of wood, which was abundant and cheaper than stone or masonry. Early wooden bridges were usually of the Towne lattice truss or Burr truss design. Some later bridges were McCallum trusses (a modification of the Burr truss). About 1840, iron rods were added to wooden bridges. The Pratt truss used wooden vertical members in compression with diagonal iron braces. The Howe truss used iron vertical rods in tension with wooden diagonal braces. Both trusses used counter-bracing, which was becoming essential now that heavy railroad trains were using bridges.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
In 1830, Stephen Harriman Long received a patent for an all-wood parallel-chord truss bridge. Long's bridge contained diagonal braces which were prestressed with wedges. The Long truss did not require a connection between the diagonal and the truss, and was able to remain in compression even when the wood shrank somewhat.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
William Howe was a construction contractor in Massachusetts when he patented the Howe truss design in 1840.[1] That same year, he established the Howe Bridge Works to build bridges using his design.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The first Howe truss ever built was a single-lane, Script error: No such module "convert". bridge in Connecticut carrying a road.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The second was a railroad bridge over the Connecticut River in Springfield, Massachusetts. This bridge, which drew extensive praise and attention,[1] had seven spans and was Script error: No such module "convert". in length.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Both bridges were erected in 1840.[1]Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". One of Howe's workmen, Amasa Stone, purchased for $40,000Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". ($Expression error: Unrecognized punctuation character "[". in Template:Inflation-year dollars) in 1842 the rights to Howe's patented bridge design. With his financial backer, Azariah Boody, Stone formed the bridge-building firm of Boody, Stone & Co.,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". which erected a large number of Howe truss bridges throughout New England.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Howe made additional improvements to his bridge, and patented a second Howe truss design in 1846.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Bridge design
The Howe truss bridge consists of an upper and lower chord,Template:Efn each chord consisting of two parallel beams and each chord parallel to one another. The webTemplate:Efn consists of verticals, braces, and counter-braces. Vertical posts connect the upper and lower chords to one another, and create panels. A diagonal brace in each panel strengthens the bridge, and a diagonal counter-brace in each panel enhances this strength.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Howe truss bridges may be all wood, a combination of wood and iron, or all iron.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Whichever design is used, wooden timbers should have square ends without mortises and tenons.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The design of an all-metal Howe truss follows that of the wooden truss.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The truss
The parallels in each chord are usually built up out of smaller beams, each small beam fastened to one another to create a continuous beam.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". In wooden Howe trusses, these slender beams are usually no more than Script error: No such module "convert". wide and Script error: No such module "convert". deep.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". In iron trusses, the upper chord beams are the same length as the panel. Upper chord beams are usually made of cast iron, while the lower chord beams are of wrought iron.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". A minimum of three small beams are used,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". each uniform in width and depth.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Fishplates are usually used to splice beams together.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". (Lower chord beams may have eyes on each end, in which case they are fastened together with bolts, pins, or rivets.)Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". In wooden trusses, cotters and iron bolts are used every Script error: No such module "convert". to connect the beams of the upper chord to one another.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn In the lower chord of a wooden bridge, clamps are used to couple beams together.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Although generally of the same length,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". beams are positioned so that a splice (the point where the end of two beams meet) is near the point where two panels meetScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". but not adjacent to the splice in an adjacent pair of beams.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The individual small beams which make up a parallel in a chord are separated along their long side by a space equal to the diameter of the vertical posts,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". usually about Script error: No such module "convert"..Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". This allows the vertical posts to pass through the parallel in the chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Batten platesTemplate:Efn are placed diagonally between the members of a chord, and nailed in place to reduce bending and to act as a shim to provide ventilation between chord members.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The middle third of the lower chord is always reinforced by one or more beams bolted to the chord. This reinforcement is generally one-sixth the width of the cross-section of the lower chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". If a wood chord needs to be strengthened even more, additional slender beams may be bolted to the middle third of the each side of the lower chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". When construction is complete, the upper chord of a Howe truss bridge will be in compression, while the lower chord is in tension.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The web
Vertical posts connect the upper and lower chords, and divide the truss into panels.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The Howe truss usually uses iron or steel verticals.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". These are straight and round,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". slightly reduced in circumference at the ends, and a screw thread added.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The vertical usually passes through the center of the angle blockScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". and then through space left in the upper and lower chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". A nut is used to secure the vertical post to the chord. Special plates or washers of wood or metal are used to help distribute the stress induced by the vertical post onto the chords.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn Vertical posts are in tension,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". which is induced by tightening the nuts on the vertical bars.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Braces are diagonal beams which connect the bottom of a vertical post to the top of the next vertical post.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". They are placed in the same plane as the chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Unlike iron or steel braces which are built up, wooden braces are cut to length.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Where the parallel in a chord has a thickness of x number of beams, each brace should have a thickness of x – 1 beams.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn The depth-to-width ratio of each member of a diagonal brace should be no greater than that of the brace as a whole.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Braces may be a single piece, or several pieces spliced together with fishplate.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Braces are in compressionScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". due to the tightening of the nuts on the verticals.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Counter-braces are diagonal beams which connect the bottom of a vertical post to the top of the next vertical post, and run roughly perpendicular to braces.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". They are placed in the same plane as the chord,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". are generally uniform in size,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". and should have a thickness one beam less than a brace.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Unlike braces, counter-braces are a single piece.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Generally speaking, a bridge of six panels or less (about Script error: No such module "convert". long) needs no counter-bracing. An eight-panel truss requires counter-braces in every panel but the end panels, and these should be at least one-fourth as strong as the braces. A 10-panel truss requires counter-braces in every panel but the end panels, and these should be at least one-half as strong as the braces. A Howe truss bridge can be strengthened to achieve a live load to dead load ratio of 2-to-1. If this ratio is 2-to-1 or greater, then a six-panel truss must have counter-braces and these must at least one-third as strong as the braces. The counter-braces in an eight-panel truss must be at least two-thirds as strong as the braces, and the counter-braces in a 10-panel truss must be at least equal in strength to the braces.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". If rapidly moving live loads of any ratio are expected on the Howe truss, then the counter-braces used in the center panel should be equal in strength to the braces, and the panel next to the end panel should have counter-braces at least one-half as strong as the braces.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Where diagonal braces and counter-braces meet, they are usually bolted together.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Braces and counter-braces are held in place with angle blocks.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Angle blocks are triangular in cross-sectionScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". and should be the same heightScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". and width as the parallel of the chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Angle blocks may be made of wood or iron,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". although iron is usually used for permanent structures.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Angle blocks are attached upside-down to the upper chord, and right-side-up to the lower chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Angle blocks have lugs—flanges or projections used for carrying, seating, or supporting something.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The ends of the braces and counter-braces should cut or cast to rest squarely against the angle block.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The upper lug may be a single flange that fits into a groove cut into the surface of the diagonal,Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". or there may be two to four lugs which form an opening into which the brace and counter-brace are seated. The diagonals are kept in place by tightening the nuts on the vertical posts.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Cleats can be nailed to a wooden angle block to help keep braces and counter-braces seated. Alternatively, a hole may be drilled in the lug and brace/counter-brace and a dowel inserted to hold the beam in place.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn Iron angle blocks should have a hole cast in the upper lugs so that a bolt may pass through the lug and brace/counter-brace, securing the braces in place.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The lower lugs in an angle block also have holes cast in them, to permit the angle block to be bolted to the chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Two or more holes are cast through the center of the angle block, to allow the vertical posts to pass through and be anchored on the other side of the chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
End panels are the four panels on either side of the end of a Howe truss bridge. These should be the same height as the chords, but not more.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The upper chord does not extend past the portalScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". (the space formed by the last four vertical posts at either end of the bridge).Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The end panels need only a brace, connected from the top of the last vertical post to the end of the lower chord.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Struts are used to connect the two parallels of the chords to prevent lateral bending and reduce vibration. Two diagonals, connecting to the top of the vertical posts, are used. One of the diagonals should be a single piece, while the other is framed into the first piece or made of two pieces connected to it.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". X-braces,Template:Efn usually made of slender metal rods with threaded ends, are installed between vertical posts to help reduce sway.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Knee braces,Template:Efn usually flat bars with eyelets on either end, are used to connect the last strut and last vertical posts on both ends of the bridge.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Individual panels may be prefabricated off-site.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". When panels are connected to one another on-site, shims are used to pack any spaces and bolted in place.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn
The deck
Floor beams extend between the parallels of a chord and are used to support the stringers and decking. Floor beams may sit atop the chord below them, or they may be hung from the vertical posts. Floor beams generally have the greatest depth of any beam in the bridge. Floor beams are usually placed where two panels meet. If they are placed somewhere mid-panel, the chord must be reinforced to resist bending, buckling, and shear stress.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Stringers are beams set on top of the floor beams, parallel to the chords. A stringer may have a depth-to-width ratio anywhere from 2-to-1 to 6-to-1. A ratio greater than 6-to-1 is avoided in order to avoid buckling. In practice, most wood stringers are Script error: No such module "convert". in width due to limitations in milling. There are usually six stringers in a bridge.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Building the deck for a railroad bridge requires that a stringer lie directly beneath each rail, and that a stringer support each end of the railroad ties. Ties are usually Script error: No such module "convert". in cross-section, and Script error: No such module "convert". in length. They are set directly on top of the stringers, about Script error: No such module "convert". apart. Guard rails Script error: No such module "convert". in cross-section are set Script error: No such module "convert". from the center of the ties, and bolted to every third tie.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Physics of a Howe truss bridge
The inner truss of a Howe truss is statically indeterminate. There are two paths for stress during loading, a pair of diagonals in compression and a pair in tension. This gives the Howe truss a level of redundancy which allows it to withstand excessive loading (such as the loss of a panel due to collision).Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Prestressing is critical to the proper function of a Howe truss. During its initial construction, the diagonals are connected only loosely to the joints, and rely on prestressing, done at a later stage, to perform correctly. Moreover, diagonals in tension can only withstand stress below the prestressing level. (The size of the member does not matter due to the loose fitting of the diagonal to the joint.) Proper prestressing during construction is therefore critical in the correct performance of the bridge.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Maximum stress is placed on the center of the chords when a live load reaches the center of the bridge, or when the live load extends the length of the bridge. Both the vertical posts and braces at the end of the bridge suffer the highest amount of stress.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The stress affecting counter-braces depends on the ratio of live load to dead load per unit of length, and how the live load is distributed across the bridge. A uniform distribution of live load will put no stress on the counter-braces, while putting live load on only a portion of the bridge will create maximum stress on the center counter-braces.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Because of the stress placed on the bridge, the Howe truss is suitable for spans Script error: No such module "convert". in length or less.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". No provision is made in a Howe truss for expansion or contraction due to changes in temperature.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Howe truss bridges in use
The Howe truss was highly economical due to its ease of construction. The wooden pieces can be designed using little but a steel square and scratch awl, and the truss can be framed using only an adze, auger, and saw.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Panels could be prefabricated and transported to the construction site, and sometimes even entire trusses could be manufactured and assembled off-site and transported by rail to the intended location.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Some sort of falsework, usually in the form of a trestle, is required to erect the bridge.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
The development of the Pratt and Howe trusses spurred the construction of iron bridges in the United States. Until 1850, few iron bridges in the country were longer than Script error: No such module "convert".. The simple design, ease of manufacture, and ease of construction of the Pratt and Howe trusses spurred Benjamin Henry Latrobe II, chief engineer of the Baltimore and Ohio Railroad, to build large numbers of iron bridges. After two famous iron bridge collapses (one in the United States, the other in the United Kingdom), few of these were built in the North. This meant most iron bridges erected prior to the American Civil War were located in the South. About 1867, a surge in iron bridge building occurred throughout the United States. The most commonly used designs were the Howe truss, Pratt truss, Bollman truss, Fink truss, and Warren truss.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn The Howe and Pratt trusses found favor because they used far fewer members.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The wooden covered bridge at Bridgeport Stage Park, California, uses a Burr arch in combination with the Howe truss to achieve a Script error: No such module "convert". span. Built in 1962, it is the world's longest single-span covered wooden bridge.
The only maintenance a Howe truss requires is adjustment of the nuts on the vertical posts to equalize strain.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The diagonals in a wooden Pratt truss proved difficult to keep in proper adjustment, so the Howe truss became the preferred design for a wooden bridgeScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". or for a "transitional" bridge of wood with iron verticals.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Engineering professor Horace R. Thayer, writing in 1913, considered the Howe truss to be the best form of wooden truss bridge, and believed it to be the most commonly used truss bridge in the United States at that time.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
All-iron Howe trusses began to be built about 1845.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". Examples include a Script error: No such module "convert". iron Howe truss was built for the Boston and Providence RailroadScript error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".[2] and a Script error: No such module "convert". railroad bridge over the Ohio and Erie Canal in Cleveland.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".[3]
Iron, however, was the preferred bridge for automobile and railroads, and the Howe truss did not adapt well to all-iron construction.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The Pratt truss's single diagonal bracing system meant less cost, and its ability to use wrought-iron stringers under railroad rails and ties, led bridge builders to favor the Pratt over the Howe.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".Template:Efn Heavier live loads, particularly by railroads, led bridge builders to favor plate girder and Towne lattice bridges for spans less than Script error: No such module "convert"., and Warren girder bridges for all other spans.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
Use in architecture
Trusses have been widely used in architecture since ancient times.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters". The Howe truss is widely used in wood buildings, particularly in providing roof support.Script error: No such module "Footnotes".Script error: No such module "Check for unknown parameters".
See also
- White Mountain Central Railroad, a heritage railroad in New Hampshire with what "appears to be the only Howe railroad bridge left in the world"[4] (although the active Amtrak Susquehanna River Bridge is also described as a "Howe deck truss" bridge).
References
- Notes
- Citations
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Bibliography
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