[0001] The present invention relates to arches for use in buildings, in particular, brickwork
arches. Such arches may be suitable for location over architectural features such
as windows, doors panels etc., and may have various shapes from flat to semicircular,
gothic and many other decorative forms.
[0002] In the past, arches have been made by various methods. In perhaps their simplest
form, arches have comprised a series of upright or "soldier" bricks arranged side-by-side
over the feature. In such an arrangement, the arch has no load-bearing properties
and must therefore be supported either by a lintel beneath or by a rod passing through
the bricks from one end of the arch to the other or by some other means. This would
constitute a flat arch. This basic design might be varied by using suitably tapered
bricks to arrive at a trapezium-shaped arch having a flat top and bottom.
[0003] Other forms of arch are curved, for example, semi-circular arches. These use tapered
bricks arranged in a semi-circle above the feature. Semi-circular arches in the past
have relied on their massive bulk for their load bearing properties and are therefore
only a practical solution when used in double thicknesses. They are not a practical
proposition as a single layer, since they cannot use a rod passing down the centre
of the bricks for support nor a semi-circular lintel.
[0004] It is possible to use pre-cast arches, however, these are expensive and very diffiuclt
to handle on-site. Furthermore, they either require a complicated metal reinforcement
system or a load bearing feature above.
[0005] When an arch is required having a form which is neither flat nor semi-circular, problems
may arise from a load-bearing point of view. For example, a shallow curved arch suffers
all the drawbacks of a semicircular arch but in addition, may have very poor load-bearing
characteristics, and so metal angle supports from above may be required, and these
are very cumbersome.
[0006] British Patent No. 1066853 shows a wall construction which has a facing layer. The
facing layer comprises a number of units made up of brick-like elements. The facing
units are connected to the wall by ties comprising an anchor and bolting rod. These
extend between vertically adjacent units.
[0007] It is an object of the present invention to provide a system for a curved architectural
arch which exhibits considerable load bearing characteristics and which can be used
in single course brickwork.
[0008] According to the invention, there is provided an architectural arch comprising a
series of bricks and a series of ties interconnecting the bricks, adjacent bricks
being formed with opposed openings, characterised in that the arch has a curved form
and in that each tie comprises a pin and an anchor, the pin of a tie being located
in the opposed openings of adjacent bricks, the openings being in the form of bores
extending through the thickness of the bricks, each brick including two bores, one
spaced above the other when the brick is in the position in which it is used, whereby
each adjacent pair of bricks is interconnected by a separate pin, and the anchor of
each tie extends away from its respective pin and between the respective adjacent
bricks to provide means for connecting the arch to a structure, the ties connecting
a brick to a first adjacent brick on one side and to a second adjacent brick on the
other side being offset from one another.
[0009] The bricks may be of any suitable material and may be cuboidal, or may have any other
suitable profile, e.g. trapezium-shaped. In this way, a pin extends into one bore
from one side of a brick while another pin extends into the other bore from the other
side of the brick, and so on. Thus, each pin supports effectively half of the two
adjacent bricks into whose bores it extends.
[0010] Preferably, each brick has in each side face, a central rebate which is open at the
top. Thus, when two bricks are placed together, with a layer of mortar between them,
and a tie in position with the pins extending into the corresponding bores, the two
rebates form a recess into which a grout can be poured. The bores in the bricks are
appreciably larger than the size of the pins so that the grout can fill the bores,
surrounding the pins. The grout therefore serves to bond the two adjacent bricks together.
This allows the mortar layer between the bricks to be quite thin which is frequently
preferred for aesthetic reasons.
[0011] The bricks may be manufactured quite simply. First they are formed as cuboids, preferably
by extrusion. The rebates may then be formed and bores drilled through. They may subsequently
be formed with inclined faces so that a curved or semi-circular arch can be built.
Naturally, any radius of arch curvature can be produced by adjusting the inclination
of the faces.
[0012] The pins and anchors are preferably made of stainless steel. The grout is preferably
a run-grout which may incorporate styrene-butadiene rubber.
[0013] In practice, a curved arch may be constructed as follows. A former is placed in position.
A brick with the required profile is placed on the former and a layer of mortar is
placed on the side surface of the brick. A tie is located with its pin level with
one of the brick bores and the position of the anchor is marked on the structure behind
the arch, which structure might be concrete downstand beam or part of a floor structure.
A hole is then drilled in the structure at the marked position and the tie is located
with the pin in the brick bore and the anchor in the newly drilled hole. The anchor
is grouted in position.
[0014] A second brick is then mortared and placed in position adjacent the first with the
remainder of the pin of the tie extending into the corresponding bore in the second
brick. The recess formed by the two rebates is filled with grouting and the whole
process is repeated, with the next tie being located relative to the other bore in
the second brick. In this way, a load-bearing arch can be constructed with adjacent
bricks being interconnected by staggered pins. It will be appreciated that a considerable
span can be achieved.
[0015] However, the present invention allows an arch to be constructed in an even simpler
fashion. The precise position of the ties relative to the bricks resulting from the
location of the pins in the brick bores means that the position of the anchors relative
to the structure as a whole can be predetermined. Thus, the holes necessary for location
of the anchors can be drilled into the supporting structure in advance. The bricks
and ties can then simply be mortared and grouted in position one after the other.
Sufficient on-site tolerance is provided by the size of the pins relative to the brick
bores.
[0016] Alternatively, it is possible to fix the ties in position, with the anchors set into
the structure prior to the construction of the arch, due to the predetermined positions
of the ties. To construct the arch it will then simply be necessary to mortar the
bricks, locate them with the pins in the appropriate bores, and grout them in position.
[0017] The invention may be carried into practice in various ways and some embodiments will
now be described by way of example with reference to the accompanying drawings in
which:-
Figure 1 is an isometric sketch of a brick for use in accordance with the invention;
Figure 2 is an isometric sketch of an alternative form of brick;
Figure 3 is a side view of the brick of Figure 2;
Figure 4 is a front view of the brick of Figure 2;
Figure 5 is an isometric sketch of a tie;
Figure 6 is a vertical section through a structure with a brick and tie in position;
and
Figure 7 is a schematic view of part of an arch in accordance with the invention.
[0018] The brick 11 has a top surface 12, a bottom surface 13, a front face 14, a rear face
15, and two side faces 16, 17. The side faces 16, 17 each have a recess 18, 19 which
are open at the top surface 12 only. Two bores 21, 22 extend from one recess 18 to
the other 19.
[0019] The brick 31 shown in Figures 2 to 4 is similar to the brick 11 except that the side
faces 36, 37 are tapered. Thus, the brick 31 is wide from side to side at the top
12 than at the bottom 13. The degree of taper will be determined by the required radius
of curvature of the arch to be constructed.
[0020] The tie 41 shown in Figures 5 and 6 is made of stainless steel and consists of a
pin 44, 45, a flat perpendicularly extending shank 42, and an anchor portion 43. The
anchor portion 43 is serrated.
[0021] The construction of an arch is shown in Figures 6 and 7. The bricks 31 are positioned
on a former 51 and the ties 41 are located with one end 44 of the pin extending into
one of the bores, in this case the upper bore 22. The serrated anchor portion 43 extends
into a suitable hole 52 drilled into a concrete downstand beam 53.
[0022] A second brick 31 (not shown in Figure 6) is positioned with its side face 37 adjacent
the side face 36 of the first brick 31 and with a thin layer of mortar 54 between
them. The hole 52 is filled with grouting and the recess formed by the two adjacent
rebates 18, 19 is also filled with grouting so that the shank 42 and the pins 44,
45 are encased, and the two bricks 31 are securely bonded. The next tie 41 is located
with its pin in the lower bore 21 of the second brick 31 and so on, as shown in Figure
7. In this way, the arch form shown in Figure 7 is built up and the former can then
be removed.
1. An architectural arch comprising a series of bricks (11) and a series of ties (41)
interconnecting the bricks (11), adjacent bricks (11) being formed with opposed openings
(21,22), characterised in that the arch has a curved form and in that each tie (41)
comprises a pin (44,45) and an anchor (43), the pin (44,45) of a tie (41) being located
in the opposed openings (21,22) of adjacent bricks (11), the openings (21,22) being
in the form of bores extending through the thickness of the bricks, each brick including
two bores, one spaced above the other when the brick is in the position in which it
is used, whereby each adjacent pair of bricks (11) is interconnected by a separate
pin (44,45), and the anchor (43) of each tie (41) extends away from its respective
pin and between the respective adjacent bricks (11) to provide means for connecting
the arch to a structure (53), the ties (41) connecting a brick to a first adjacent
brick on one side and to a second adjacent brick on the other side being offset from
one another.
2. An arch as claimed in Claim 1 characterised in that the bricks (11) have a trapezium-shaped
crosssection (31).
3. An arch as claimed in Claim 1 or Claim 2 characterised in that each brick has in each
side face, a central rebate (18,19) which is opened at the top whereby, when two bricks
are placed together the two rebates form a recess.
4. An arch as claimed in any preceding Claim characterised in that the bores in the bricks
are appreciably larger than the size of the pins whereby space is left for grout to
fill the bores surrounding the pins.
5. An arch as claimed in any preceding claim characterised in that the pins and anchors
are made of stainless steel.
1. Arc architectural comprenant une série de briques (11) et une série de fiches (41)
reliant les briques (11) entre elles, des briques adjacentes (11) étant percées d'ouvertures
opposées (21, 22), caractérisé en ce qu'il présente une forme courbe et que chaque
fiche (41) comprend une broche (44, 45) et un organe d'ancrage (43), la broche (44,
45) d'une fiche (41) étant mise en place dans les ouvertures opposées (21, 22) de
briques adjacentes (11), les ouvertures (21, 22) ayant la forme de trous traversant
l'épaisseur des briques, chaque brique comprenant deux trous, espacés l'un au-dessus
de l'autre lorsque la brique se trouve dans sa position d'utilisation, les briques
(11) adjacentes de chaque paire étant reliées par une broche séparée (44, 45), et
l'organe d'ancrage (43) de chaque fiche (41) partant de sa broche et s'étendant entre
les briques adjacentes respectives (11) de manière à procurer un moyen pour relier
l'arc à une structure (53), les fiches (41) reliant une brique, d'un côté, à une première
brique adjacente et, de l'autre côté, à une seconde brique adjacente, étant décalées
l'une par rapport à l'autre.
2. Arc suivant la revendication 1, caractérisé en ce que les briques (11) ont une section
transversale de forme trapézoïdale (31).
3. Arc suivant la revendication 1 ou 2, caractérisé en ce que chaque brique présente,
dans chaque face latérale, une rainure centrale (18, 19) qui s'ouvre dans la face
supérieure de la brique, les deux rainures formant un logement lorsque deux briques
sont juxtaposées l'une contre l'autre.
4. Arc suivant l'une quelconque des revendications précédentes, caractérisé en ce que
le calibre des trous dans les briques est considérablement supérieur à celui des broches,
afin de laisser de la place au ciment pour qu'il remplisse les trous autour des broches.
5. Arc suivant l'une quelconque des revendications précédentes, caractérisé en ce que
les broches et les organes d'ancrage sont en acier inoxydable.
1. Architekturbogen mit einer Reihe von Steinen (11) und einer Reihe von Verbindungsstücken
(41), welche die Steine (11) miteinander verbinden, wobei benachbarte Steine (11)
mit einander gegenüberliegenden Öffnungen (21, 22) ausgebildet sind, dadurch gekennzeichnet, daß der Bogen eine gekrümmte Form aufweist und jedes Verbindungsstück (41) einen
Dorn (44, 45) sowie einen Anker (43) umfaßt, wobei der Dorn (44, 45) eines Verbindungsstückes
(41) in den einander gegenüberliegenden Öffnungen (21, 22) benachbarter Steine (11)
angeordnet ist, die Öffnungen (21, 22) die Form von Bohrungen haben, die sich durch
die Dicke der Steine hindurch erstrecken, wobei jeder Stein zwei Bohrungen aufweist,
deren eine im Abstand über der anderen angeordnet ist, wenn der Stein sich in seiner
Gebrauchslage befindet, wobei ferner jedes nebeneinanderliegende Paar von Steinen
(11) durch einen separaten Dorn (44, 45) miteinander verbunden ist und der Anker (43)
jedes Verbindungsstückes (41) sich von seinem jeweiligen Dorn weg- und zwischen den
jeweils benachbarten Steinen (11) erstreckt, um Mittel zur Befestigung des Bogens
an einer Konstruktion (53) auszubilden, wobei die Verbindungsstücke (41), die einen
Stein mit einem ersten benachbarten Stein auf der einen Seite und mit einem zweiten
benachbarten Stein auf der anderen Seite verbinden, zueinander versetzt angebracht
sind.
2. Bogen nach Anspruch 1, dadurch gekennzeichnet, daß die Steine (11) einen trapezförmigen
Querschnitt (31) aufweisen.
3. Bogen nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß jeder Stein auf jeder Seitenfläche
eine mittige Vertiefung (18, 19) aufweist, die nach oben geöffnet ist, wobei, wenn
zwei Steine aneinander liegen, die zwei Vertiefungen eine Kammer bilden.
4. Bogen nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die Bohrungen
in den Steinen deutlich größer sind als die Abmessungen der Dorne, wodurch Raum für
Vergußmittel zum Füllen der Bohrungen um die Dorne herum freigelassen wird.
5. Bogen nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, daß die Dorne
und Anker aus rostfreiem Stahl hergestellt sind.