US3117656A - Framework structures and elements for use therein - Google Patents

Framework structures and elements for use therein Download PDF

Info

Publication number
US3117656A
US3117656A US30395A US3039560A US3117656A US 3117656 A US3117656 A US 3117656A US 30395 A US30395 A US 30395A US 3039560 A US3039560 A US 3039560A US 3117656 A US3117656 A US 3117656A
Authority
US
United States
Prior art keywords
anchor plate
angle
strip
strips
bolt
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US30395A
Other languages
English (en)
Inventor
Kinnear James Edward
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wagon Repairs Ltd
Original Assignee
Wagon Repairs Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Wagon Repairs Ltd filed Critical Wagon Repairs Ltd
Application granted granted Critical
Publication of US3117656A publication Critical patent/US3117656A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B96/00Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture
    • A47B96/14Bars, uprights, struts, or like supports, for cabinets, brackets, or the like
    • A47B96/1408Bars, uprights, struts, or like supports, for cabinets, brackets, or the like regularly perforated
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T403/00Joints and connections
    • Y10T403/44Three or more members connected at single locus
    • Y10T403/447Mutually contacting

Definitions

  • This invention relates to framework structures built up from elements provided with perforations through which the elements can be bolted together, and also to elements for use in such structures.
  • the invention has for its primary object to effect improvements in such structures and elements, and more especially in respect of the jointing of the elements in the structures, whereby highly satisfactory structures can be built up more rapidly and easily than hitherto, whilst at the same time efiecting considerable economy in the quantity of metal (or other material), of which the elements are made, needed for a given structure.
  • a framework structure includes two strips each having a row of aligned equally spaced elongated slots, the two strips being arranged with their lengths at right angles to one another, and a generally triangular anchor plate having three bolt-holes spaced at the corners of a right-angled triangle, the length of each of the shorter sides of which is not less than that required to accommodate two bolts respectively passing through the adjacent ends of two consecutive slots in the strips and is not greater than that required to accommodate two bolts passing through the remote ends of such two consecutive slots, the anchor plate being sandwiched between the strips and being bolted to them by three bolts passing through its three holes and through the slots in the strips.
  • Each of the two slotted strips preferably consists of an angle strip having an L-shaped cross-section, with two rows of similar strips, one in each of the two webs.
  • the slots in the two rows may be positioned in register with one another, or alternatively the slots in the two rows may be positioned in staggered relationship with one another, so that the mid-point of a slot in one web is in register with the mid-point of a space between slots in the other web.
  • the non-engaging webs of the two strips preferably project on the same side of the engaging webs.
  • the slots are preferably so positioned in the webs of the angle strips that the space between the free edge of the web and the nearer side edge of a slot is less than that between the other slot edge and the inner surface of the other web of the strip.
  • the bolt-hole triange of the anchor plate preferably consists of an isosceles right-angled triangle, and in such case it is usually most convenient for the length of each of the shorter sides of such triangle to be equal to the pitch of the slots in the angle strips, that is to the distance of any point of one slot to the corresponding point of the next slot.
  • bolts and nuts of ordinary construction can be used for securing the slotted strips and anchor plates together, it is preferred to employ for this purpose a bolt comprising a threaded shank for receiving a nut, a head,
  • the bolt-holes of the anchor plate at least at the two acute corners of the triangle preferably have fiat sides such that the shoulder on the bolt when engaged therein will be substantially prevented from rotating relatively to the anchor plate.
  • the axial length of the shoulder on the bolt is preferably greater than the thickness of the anchor plate, so that the shoulder can engage through the bolt-hole in the anchor plate into a slot in the strip to be bolted to the anchor plate, thereby substantially preventing relative rotation between the anchor plate and the strip.
  • the thickness of a slotted strip is preferably greater than the axial length of the shoulder on the bolt.
  • an angle strip according to one such further feature comprises two similar webs at right angles, each having a row of aligned equally spaced elongated slots,
  • angle strip can be cut to length, as required, and in practice it is found that a range of specified lengths differing from one another in small steps will be adequate to meet the large majority of requirements.
  • the angle strip is preferably provided with cutting marks adjacent to the mid-points of the spaces between the slots, with or Without further cutting marks adjacent to the midpoints of the lengths of the slots. It is intended that normally the strips should only be cut to length at such cutting marks.
  • An anchor plate for use with such angle strips, comprises a plate of generally triangular form having bolt-holes spaced at the corners of a right-angled triangle, whose shorter sides each have a length not less than that required to accommodate two bolts respectively passing through the adjacent ends of two consecutive slots in the angle strips and not greater than that required to accommodate two bolts passing through the remote ends of such slots.
  • the shorter sides of the bolt-hole triangle are preferably each equal to the pitch of the slots in the angle strips.
  • Such an anchor plate may be strengthened along the middle portion of its hypotenuse by means of a flange or rib.
  • a shelf element comprising a rectangular sheet which constitutes the surface of the shelf and has at each edge a turned-down flange provided at each end with two slots shaped and spaced similarly to the slots in the strips, for securing to a slotted strip by means of an anchor plate sandwiched between such flange and the strip.
  • Each shelf flange is preferably of double thickness formed by bending the material back on itself, the slots passing through both layers.
  • FIGURES l and 2 show respectively in elevation and in end view a preferred form of slotted angle strip
  • FEGURE 3 illustrates a modified form of angle strip
  • FIGURES 4 to 7 respectively illustrate four alternative ways of bolting angle strips together to form useful girder-like members.
  • FIGURE 8 shows a shnple form of anchor plate
  • FIGURES 9 and 10 are views at right angles illustrating the use of the anchor plate at a right-angled joint between two angle strips
  • FIGURES 11 and 12 illustrate two modified forms of anchor plate
  • FIGURE 13 shows an ex extension of the arrangement of FIGURES 9 and 10 to make a three-dimensional joint
  • FIGURES 14 and 15 illustrate the mounting of a shelf element, FIGURE 15 being a sectional view on the line 15-15 of FIGURE 14,
  • FIGURES 16 and 17 respectively show side and end elevations of a preferred form of bolt
  • FIGURE 18 shows a preferred form of anchor plate for use with the bolt of FIGURES l6 and 17,
  • FIGURE 19 is a sectional view illustrating the bolting of the anchor plate of FIGURE 18 to an angle strip.
  • the basic elements from which a framework structure can be built up consist of slotted angle strips and triangular anchor plates, together with the necessary bolts and nuts for securing them together.
  • Each angle strip A as shown in FIGURES 1 and 2, consists of a strip of steel, of any desired length and having a width which may for example be of the order of three inches, bent through a right angle along its centre line so as to form an angle strip of L-shaped crosssection.
  • Each of the two webs A A has a row of aligned elongated slots A extending along its whole length, the slots all being of the same length and being equally spaced from one another.
  • the slot wi th is chosen to suit the bolts used, say of a quarter of an inch diameter, with just sufficient clearance for ready and easy insertion of the bolts.
  • the slots A in the two webs A A of the angle strip A may be arranged in staggered relationship (that is such that if the angle strip were transversely cut through the mid-point of the length of one slot A in one web A the cut would pass through the mid-point of a space between two consecutive slots A in the other web A it will usually be preferable, as in FIGURE 1, to arrange the two rows of slots A in register with one another, that is such that a transverse cut through the mid-point of a slot A in one .web A would also pass through the mid-point of a slot A in the other web A
  • the row of slots A in each web is located slightly nearer to the free edge of the web than to the inside surface of the other web.
  • angle strips A should be cut to the desired length for use, and for this purpose cutting marks A are provided on the webs adjacent to the midpoints of the spaces between the slots A to indicate where the strips should preferably be cut. If these cutting marks A are strictly adhered to, the available lengths of strip after cutting will differ from one another in regular steps equal to the pitch of the slots, and this has been found to provide an adequate range of possible variation for the large majority of practical uses.
  • the preferred pitch for the slots is of the order of two inches.
  • the length of the space between consecutive slots should be less than twice the distance between the inner side edge of one slot and the inside surface of the other web of the strip.
  • This anchor plate B (as shown in FIGURE 8) consists of a flat thin steel plate of generally triangular shape having three bolt-holes B B B located at the corners of a right-angled triangle. Whilst it is not essential that the bolt-hole triangle should be isosceles, it is usually preferable that it should be so, and the length of each of the shorter sides of such triangle should then be such that the two bolts through its holes can engage in two consecutive slots A in one of the angle strips A.
  • the minimum distance between the two bolt-hole centres in the anchor plate B is equal to that between bolt centres at the adjacent ends of two consecutive slots A and the maximum distance is that between bolt centres at the remote end of two consecutive slots.
  • the preferred distance between bolt centres of either shorter side of the bolt-hole triangle of the anchor plate B is equal to the pitch of the slots A in the strips A, this arrangement giving maximum adjustability of the position of the joint along the length of one angle strip.
  • the corners of the anchor plate B are rounded about the adjacent bolt-hole centres, the radius of such rounding being less than the distance between the slot centre line of a strip A and the inner surface of the other Web of the strip.
  • this anchor plate B In use (as shown in FIGURES 9 and 10) this anchor plate B is sandwiched between the engaging Webs C and D of the two angle strips C D to be bolted together, and the three bolts E E E provide an adequate joint for securing the two strips rigidly in position at right angles to one another.
  • the resistance to buckling can be still further increased by providing the middle portion of the hypotenuse of the triangle (that is the part within the exposed small triangle) with a flange B (FIGURE 11) formed by turning part of the edge of the plate through a right angle or by pressing a rib B (FIGURE 12) of curved sect-ion extending in the direction of the hypotenuse.
  • small projections can be formed by punching in the lines of the shorter sides of the bolt-hole triangle in the anchor plate to engage with the edges of the slots in the angle strips, in order to hold the parts of the joint properly in position while the bolts are being inserted and tightened up. It is important to ensure that any such projections are so arranged as not to prevent the plate from being usable at all corners, whether right-handed or left-handed.
  • a three-dimensional joint (see FIGURE 13), wherein the lengths of three angle strips are mutually at right angles, is formed from the two-dimensional joint of FIGURES 9 and 10, by bolting the webs F and F of the third angle strip F to the two non-engaging webs C and D in the simple joint, two further anchor plates G and H being sandwiched between the engaging webs in the manner above described.
  • FIGURES 14 and 15 show a preferred form of shelf element and method of mounting it.
  • the shelf element comprises a rectangular steel sheet I with a turned-down flange l at each edge.
  • Each flange l is of double thickness formed by bending back the metal on itself, as shown at J in order to provide added strength.
  • Each double flange J is provided at each end with two slots J of the same shape and spacing as the slots in the angle strip.
  • the shelf element is supported at each of its four corners by means of an angle strip K fitting outside the corner and extending with its length at right angles to the shelf surface, FIGURES 14 and 15 showing the mounting at one corner.
  • Each web K or K of the angle strip is bolted to one of the shelf ages I with an anchor plate L or M sandwiched between, in a manner similar to that described with reference to FIGURES 9 and 10. If the shelf element J is attached, as shown, to the top end of each supporting angle strip K, it can be used as a table, and in such case it will be clear that the angle strips could be attached inside the corners of the shelf element instead of outside, if preferred.
  • This bolt consists of a screw-threaded shank N of usual form, a head N preferably having a smoothly rounded surface, and between the head and the shank an integral square shoulder N
  • the size of the square shoulder N is such that it will fit within any one of the slots in the angle strips with only just enough clearance to permit of its ready insertion and withdrawal, and it will be appreciated that when so inserted it will act substantially to prevent any relative rotation between the bolt and the angle strip, so that the nut on be tightened on the threaded shank N without any need to hold the bolthead N against rotation.
  • the axial length of the square shoulder N is preferably made less than the thickness of a web of an angle strip, so that it will not interfere with the screwing of the nut into the desired tight clamping engagement.
  • FIGURE 18 illustrates the preferred form of anchor plate for use when the bolt of FIGURES l6 and 17 is employed.
  • This anchor plate 0 differs from that shown in FEGURE 8 solely in that the bolt-holes O and O at the acute corners of the right-angled triangle are made square to suit the square shoulder N on the bolt. Since the axial length of the shoulder N is less than the thickness of the web of an angle strip, and the anchor plate is always sandwiched between such webs, it will be clear that the shoulder N can never penetrate through a web into the bolt-hole O at the right-angle corner of the triangle.
  • this hole 0 is made quite thin and the axial length of the shoulder N on the bolt is made greater than the thickness of the anchor plate and less than that of the angle strip web.
  • the square shoulder N will penetrate right through the bolt-hole O or O in the anchor plate into engagement in a slot in the angle strip. This has the advantage of substantially locking the anchor plate and the angle strip against relative rotation.
  • edges of the square bolt-holes O O in the anchor plate are of course parallel to the shorter sides of the rightangled triangle, so as to be in the correct orientation relatively to the angle strip slots.
  • a framework structure built up from perforated elements bolted together, and including two angle strips arranged with their lengths at right angles to one another and each having an L-shaped cross section with a single row of aligned equally spaced elongated slots in each of the two webs of the strip, one end portion of one of the webs of one of said strips lying in a plane parallel to and overlapping one web of the other strip with the non-overlapping webs of said angle strips projecting in the same direction away from said overlapping webs, a generally triangular fiat anchor plate sandwiched between and directly supported against buckling by the overlapping webs of the two strips and having three bolt holes spaced at the corners of a right-angled triangle, the length of each of the shorter sides of which is not less than that required to accommodate two bolts respectively passing through the adjacent ends of two consecutive slots in the strips and is not greater than that required to accommodate two bolts respectively passing through the remote ends of such two consecutive slots, and three bolts passing respectively through the three bolt holes in the anchor plate and also through slots in the
  • a third similar angle strip having its webs. bolted to the non-overlapping webs of said two angle strips so as to extend at right angles thereto, and at least one similar angle plate sandwiched between a web of said third strip and the web to which it is bolted.
  • a framework corner construction of the type comprising perforated angle strips, said corner construction including two L-sectioued flanged members arranged with their lengths at right angles and their meeting ends secured together with one end portion of one of the flanges of one of said strips lying in a plane parallel to and overlapping one flange of the other strip with the non-overlapping flanges of said angle strips projecting in the same direction away from said overlapping strips and a flat anchor plate sandwiched between and supported by both of said last-mentioned flanges, said anchor plate having at least three perforations spaced at the corners of a right-angled triangle having its two shorter sides respectively extending parallel to the lengths of the flanged members, each flanged member having at least two spaced perforations one of which registers with the righ-angle corner perforation of the anchor plate and the other of which registers with one of the other corner perforations of the anchor plate, and fastening members extending through said registering perforations and securely clamping said
  • a framework structure built up of perforated elements bolted together, and including two angle strips arranged with their lengths at right angles to one another and each having an L-shaped cross-section with a single row of perforations in each of its two webs, a generally triangular anchor plate sandwiched between webs of the two angle strips and having three bolt holes spaced at the corners of an isosceles right-angled triangle and registering with perforations in the angle strips, and three bolts passing respectively through the three bolt holes of the anchor plate and through the registering perforations in the angle strips for tightly bolting the webs of the angle strips together with the anchor plate sandwiched between them, the thickness of the anchor plate being less than that of the webs of the angle strips and the size of the anchor plate hearing such relationship to the webs of the angle strips that only a small portion of the anchor plate adjacent to the middle portion of the hypotenuse of the bolt-hole triangle is unsupported by engagement with an angle strip web, the lengths of the end portions of such hypotenuse supported by engagement with the angle strip webs
  • each of the bolts used for bolting the angle strip Webs and the anchor plate together comprises a threaded shank for receiving a nut, a head, and an integral shoulder of square section between the head and the shank such that when the shoulder is engaged within a flat-sided bolthole in the anchor plate rotation of the bolt relatively to the anchor plate is prevented.
  • a corner joint for a framework structure built up from perforated elements bolted together said corner joint including two angle strips arranged with their lengths at right angles to one another and overlapping at their adjacent ends, each angle strip having an L-shaped crosssection with a single row of aligned slots in each of the two webs thereof, a generally triangular anchor plate of thickness less than that of the angle strip webs which is sandwiched between the parallel portions of the latter at their overlapping ends and has three bolt holes spaced at the corners of a right-angled triangle and registering each with a different slot of said angle strips, the bolt holes at the two acute corners of such triangle being square in shape and the bolt hole at the right angled corner being round and being large enough to receive the threaded shank of a bolt, and three bolts passing respectively through the three bolt holes in the anchor plate and also through different slots in the angle strips for bolting the strips and the anchor plate together, each such bolt comprising a threaded shank for receiving a nut, a head, and an integral shoulder between the head and the corner

Landscapes

  • Body Structure For Vehicles (AREA)
  • Handcart (AREA)
  • Joining Of Building Structures In Genera (AREA)
US30395A 1952-01-14 1960-04-04 Framework structures and elements for use therein Expired - Lifetime US3117656A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB1035/52A GB764391A (en) 1952-01-14 1952-01-14 Improvements in or relating to framework structures and elements for use therein

Publications (1)

Publication Number Publication Date
US3117656A true US3117656A (en) 1964-01-14

Family

ID=9715005

Family Applications (1)

Application Number Title Priority Date Filing Date
US30395A Expired - Lifetime US3117656A (en) 1952-01-14 1960-04-04 Framework structures and elements for use therein

Country Status (3)

Country Link
US (1) US3117656A (da)
DK (1) DK106291C (da)
GB (1) GB764391A (da)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3581814A (en) * 1969-05-09 1971-06-01 Richard A Jackson Radiator compression strap
US4347015A (en) * 1980-11-03 1982-08-31 General Electric Company Structural frame corner assembly for electrical switchboards and the like
US20070175648A1 (en) * 2003-04-03 2007-08-02 Melquisedec Francisquini Improvement to metallic cross sections for the manufacture of housing for electrical panels
USD1074389S1 (en) * 2023-04-17 2025-05-13 Brandon Lineker Botting Brace

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2322894B (en) * 1997-03-08 2001-09-05 Stephen Kenneth Brunton Improved stirrup for lift thresholds
FI108293B (fi) * 1998-11-20 2001-12-31 Kone Corp Kiinnityskappale

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB190321621A (en) * 1903-10-08 1903-12-03 August Ludorff Improvements in Maroons.
US1242202A (en) * 1916-02-14 1917-10-09 American Mechanical Toy Company Structural device.
US1246453A (en) * 1914-05-04 1917-11-13 Daniel J Murnane Metal frame.
US1369109A (en) * 1918-04-03 1921-02-22 Claudius H Huston Metal article and method of jointing the same
US1917764A (en) * 1932-05-13 1933-07-11 Howie Alexander Container composed of structural members
US2167525A (en) * 1935-08-08 1939-07-25 Western Electric Co Cabinet
GB620696A (en) * 1946-06-28 1949-03-29 Demetrius Comino Improvements in constructional elements consisting of metal bars of angle section
US2573305A (en) * 1950-10-14 1951-10-30 Benjamin B Bronstein Leg lock construction means for metal tables
US2699233A (en) * 1949-01-31 1955-01-11 Robert R Cameron Muntin bar construction
US2932369A (en) * 1955-10-26 1960-04-12 Fils Jacques Huguenin Joint structure for frame members

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB190321621A (en) * 1903-10-08 1903-12-03 August Ludorff Improvements in Maroons.
US1246453A (en) * 1914-05-04 1917-11-13 Daniel J Murnane Metal frame.
US1242202A (en) * 1916-02-14 1917-10-09 American Mechanical Toy Company Structural device.
US1369109A (en) * 1918-04-03 1921-02-22 Claudius H Huston Metal article and method of jointing the same
US1917764A (en) * 1932-05-13 1933-07-11 Howie Alexander Container composed of structural members
US2167525A (en) * 1935-08-08 1939-07-25 Western Electric Co Cabinet
GB620696A (en) * 1946-06-28 1949-03-29 Demetrius Comino Improvements in constructional elements consisting of metal bars of angle section
US2699233A (en) * 1949-01-31 1955-01-11 Robert R Cameron Muntin bar construction
US2573305A (en) * 1950-10-14 1951-10-30 Benjamin B Bronstein Leg lock construction means for metal tables
US2932369A (en) * 1955-10-26 1960-04-12 Fils Jacques Huguenin Joint structure for frame members

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3581814A (en) * 1969-05-09 1971-06-01 Richard A Jackson Radiator compression strap
US4347015A (en) * 1980-11-03 1982-08-31 General Electric Company Structural frame corner assembly for electrical switchboards and the like
US20070175648A1 (en) * 2003-04-03 2007-08-02 Melquisedec Francisquini Improvement to metallic cross sections for the manufacture of housing for electrical panels
USD1074389S1 (en) * 2023-04-17 2025-05-13 Brandon Lineker Botting Brace

Also Published As

Publication number Publication date
DK106291C (da) 1967-01-16
GB764391A (en) 1956-12-28

Similar Documents

Publication Publication Date Title
US6430890B1 (en) Web stiffener
US3043408A (en) Metallic framing element
US2144350A (en) Fastening means
US3981250A (en) Adjustable shelving
US3284971A (en) Structural elements for metal framing systems
US3222095A (en) Lock for telescoping rods
US3241422A (en) Vector seal fastener
DE2118104A1 (de) Baukonstruktion
US3117656A (en) Framework structures and elements for use therein
US2494882A (en) Sheet metal nut
US3255797A (en) Structural assemblies
DE60030839T2 (de) Halterungselemente für bauplatten
US3648426A (en) Constructional elements
US2661821A (en) Fastener
US1733693A (en) Toggle bolt
US3315721A (en) Clinch nut
US2718289A (en) Nailable structural member
AT412565B (de) Vorrichtung zum befestigen eines trägerprofils auf einem blechdach
US3082807A (en) Plastic nut having metallic insert imbedded therein
US1999219A (en) Store front construction
US2444276A (en) Shear-resisting joint element
US317448A (en) Feedeeic h
US3261309A (en) Framework structures
US3077959A (en) Pressure fitting
US2152521A (en) Method of locking screws