[0001] The present invention relates to a strike plate adapted to being mounted with its
rear side against a surface of a stay and cooperating with a lock having a latch bolt
and a deadbolt, which are each movable between an extended and a retracted position.
The strike plate has a front side, having at least one sloping side for the automatic
depression of the latch bolt, and a slot, having a predetermined depth, two side walls,
and a bottom. The slot is adapted to receive the latch bolt and the deadbolt in their
extended position, the bottom of the slot having an opening at the level of the deadbolt.
[0002] Such strike plates are typically used at gates or doors in an enclosure, and are
already known from patent publications
EP 1 600 584 A1 and
US 6,684,669 B1. These known strike plates are mounted on a post and are adapted for locking the
gate or door, in conjunction with the latch bolt and the deadbolt. These known strike
plates consist mainly of two parts, namely a block and an angled section. The angled
section is made of metal, one leg fitting adjustably into the block, and the other
leg being provided as a striker for the gate. The block is made of cast aluminium,
with a slot for the latch bolt and the deadbolt. In particular, the block is made
of stainless cast aluminium because this is the simplest and cheapest way of obtaining
such a shape.
[0003] However, cast aluminum is a fragile material that can easily be broken. Therefore,
it is possible to force the strike plate by exerting sufficient force on the gate,
causing the strike plate to break, thereby enabling the deadbolt to be released out
of the slot, thus enabling the gate to be opened. This force can be exercised, for
example, by placing a crowbar between the gate and the post.
[0004] A further disadvantage of the already known strike plate is that the block, which
is made of cast aluminum, will wear out over time. In particular, due to the frequent
closing of the gate or door causing the latch bolt to scrape over the sloping side
of the block. This wear is of course undesirable and also hinders the gate or door
from closing automatically. A gate or door that automatically closes is already known
and can, for example, work with a hinge provided for that purpose, as in
patent publication EP 1 680 567 B1. A further disadvantage of the known strike plates is that the cast aluminium corrodes
quickly. As a result, the latch bolt can less easily slide over the sloping side of
the strike plate, hindering the automatic closing of the gate or door, and the gate
or door will often not close when this is done with a gate closer with spring. Certainly
in the case of children, it is important that the gate, whose lock is provided so
that children cannot release it, for example in a fence around a swimming pool, closes
in a reliable way.
[0005] In practice, the already known strike plates further have an opening in the bottom
of the slot, which extends up against the side of the angled section located immediately
behind it. The opening thus forms a cavity with a depth equal to the thickness of
the bottom of the slot, which in practice is approximately only 2 mm. This opening
provides a security in case the deadbolt cannot fully extend into the slot, for example,
if the gate and the post on which the strike plate is mounted connect with virtually
no play. It is therefore only in exceptional cases that the deadbolt will extend into
this slot in its extended position. However, this opening weakens the block further
so it becomes even easier to break the strike plate.
[0006] It is an object of the present invention to provide a strike plate that is better
resistant to breaking.
[0007] This object is achieved because the strike plate has a folded metal plate that forms
at least one of the two sidewalls of the slot, the bottom of the slot, and said sloping
side, the strike plate further including a spacer that is at least partially made
of plastic and provided to keep the bottom of the slot at a distance from said surface,
the spacer, together with the opening in the bottom of the slot, forming a cavity
provided for receiving the end of the deadbolt in its extended position and having
a depth which is at least 25 % of the total depth that is the sum of the depth of
said slot and the depth of said cavity.
[0008] A folded metal plate is less fragile than cast aluminium and thus breaks less easily.
The folded metal plate will also not wear out quickly because of the scraping of the
latch bolt over the folded metal plate due to the frequent closing of the gate or
door. Furthermore, the spacer provides support for the folded metal plate and allows
for a cavity to be provided into which the deadbolt can extend through the bottom
of the slot. This provides a safer strike plate, as the folded metal plate is not
only less fragile but can also not be unfolded by exerting a pressure on the deadbolt,
as this deadbolt extends into the bottom of the slot.
[0009] An alternative solution to increase the safety of the strike plate is to manufacture
it completely from stainless steel, instead of cast aluminium. However, stainless
steel is an expensive material which would of course result in an expensive strike
plate.
[0010] In an embodiment of the invention, the spacer comprises at least a first and a second
part, the first part being made of said plastic and attached to the rear side of said
folded metal plate and the second part comprising an angled section with a first leg
provided to be mounted between the first part of the spacer and said surface, and
a second leg protruding from the front of the strike plate beyond the slot of the
strike plate.
[0011] The second leg of the angled section forms a door stop for a gate or door with the
lock such that the latch bolt and deadbolt are immediately aligned correctly to be
extended into the slot and the cavity, respectively.
[0012] In an embodiment of the invention, the first part of the spacer has a grooved rear
and said first leg a grooved front, provided for engaging the grooved back of said
first part. In particular, said angled section is extruded from metal.
[0013] The grooved front and grooved rear ensure that the angled section cannot be moved
relative to the remaining part of the strike plate as a result of the stroke of the
gate or door. If the angled section is extruded from metal, this grooved back can
also be easily manufactured.
[0014] In an embodiment of the invention, the front side of the strike plate has a further
sloping side, said sloping side being provided for automatically depressing the latch
bolt when it is right handed and said further sloping side being provided for automatically
depressing the latch bolt when it is left handed. In particular, said folded metal
plate forms said further sloping side and both sidewalls of the slot.
[0015] In this embodiment, the strike plate is always suitable for both left-handed and
right-handed locks, without having to attach the strike plate to the post upside down.
In order to further strengthen the strike plate, the further sloping side is also
formed by the folded metal plate.
[0016] In an embodiment of the invention, the strike plate has a first and a second longitudinal
side extending along the slot, said sloping side being located on the first longitudinal
side and said further sloping side being located on the second longitudinal side,
and it being possible for said second leg of the angled section to protrude both on
the first and the second longitudinal side.
[0017] In this embodiment, it is possible to use the angled section for both left-handed
and right-handed locks by simply placing the angled section along the corresponding
longitudinal side of the strike plate. Neither in this embodiment does the strike
plate therefore ever need to be mounted upside down.
[0018] In an embodiment of the invention, the strike plate comprises a security mechanism
provided for cooperating with a protrusion on the lock to prevent the lock and strike
plate from being pulled apart, the security mechanism having a first and a second
longitudinal side extending in the longitudinal direction of the slot, the first longitudinal
side having an opening through which the protrusion of the lock can engage the security
mechanism, and the second longitudinal side being closed, and the security mechanism
being reversible relative to the folded metal plate to orient the first longitudinal
side depending on the left or right-handedness of the latch bolt.
[0019] In this embodiment, the strike plate comprises an additional security mechanism that
prevents the strike plate and lock from being pulled apart. Due to this additional
security mechanism, it is impossible to mount the strike plate in its entirety upside
down on the post. However, the reversibility of the security mechanism, in other words,
the fact that the security mechanism can be mounted in two different orientations,
ensures that the strike plate is still suitable for both left-handed and right-handed
locks.
[0020] The invention will hereafter be explained in further detail by way of the following
description and the accompanying drawings.
Figure 1 shows a perspective view of a strike plate of the present invention mounted
on a post.
Figure 2 shows a partially exploded view of the strike plate of Figure 1.
Figure 3 shows a further exploded view of a part of the strike plate of Figure 1.
Figure 4 shows a perspective view of the strike plate of Figure 1 in conjunction with
a gate with a lock in a closed position thereon.
Figure 5 shows a lock with a latch bolt, a deadbolt, and a protrusion. The protrusion
is optional and is provided for cooperating with a strike plate which, in contrast
to the strike plate shown in the previous figures, comprises a corresponding security
mechanism.
Figures 6a, 6b and 6c show a top view of the strike plate of Figure 4 and illustrate
the operation of the sloping side of the strike plate upon closing the gate.
Figures 7a and 7b each show a cross-section at different heights, at the height of
the latch bolt and at the height of the deadbolt, respectively, through the strike
plate and the gate of Figure 6c.
Figure 8 shows an exploded view of an alternative embodiment of a strike plate of
the present invention, provided with an additional security mechanism as also shown
in Figure 5.
[0021] Figure 1 shows a perspective view of a strike plate 1 according to the invention,
mounted on a surface 2 of a post. The strike plate 1 is mounted with its rear side
against the surface 2 of the post, and is attached thereto by two bolts 3 which pass
through the strike plate 1, and which are secured by means of a plug mechanism 4 through
openings 5 of the post provided for this purpose. In particular, the bolts 3 have
a conical head, which is recessed in conical recesses provided for this purpose around
the openings 5. This method of attachment is illustrated in the exploded view shown
in Figure 2.
[0022] In Figures 1 and 2, it is clearly visible that the front side of the strike plate
has a sloping side 7 and a slot 8. The slot 8 has a depth d
1 (Indicated in Figures 7a and 7b), two sidewalls 9 and a bottom 10. The function of
these elements is described below. Figures 1 and 2 show further that the strike plate
1 also comprises an angled section 11 whose first leg 12 is parallel to the surface
2 of the post and forms a part of the rear of the strike plate 1, and whose second
leg 13 forms a striker for closing a gate 6 as described below. The angled section
11 is extruded from metal and thus forms a single element, which increases the strength
of the strike plate 1.
[0023] Figure 3 shows a further exploded view of the part of the strike plate 1 without
the angled section 11. The strike plate 1 shown in Figure 1 thus consists of three
parts: the angled section 11, a folded metal plate 14, and a plastic part 15. As is
clear from Figure 3, the folded metal plate 14 forms one of the two sidewalls 9, a
portion of the other sidewall 9 and the bottom 10 of the slot 8. The folded metal
plate 14 also forms the sloping side 7 of the strike plate 1. However, the metal plate
14 can also form the entire other sidewall 9 of the slot 8. Since the strike plate
1 is provided for attachment to the surface 2 of a post or other support which is
in the open air, it is advantageous that the metal of the folded metal plate 14 is
stainless steel. Furthermore, it is advantageous for the strength of the strike plate
1 that the folded metal plate 14 is made of steel, in particular stainless steel.
[0024] The plastic part 15 is preferably made of thermoplastic plastic which is moulded
in the necessary shape. The shape of the front side of the plastic part 15 of the
strike plate 1 corresponds to the shape of the folded metal plate 14. In particular,
the metal plate 14 is also supported by the plastic part 15 at the height of the sloping
side 7 of the strike plate 1, so that the metal plate 14 can be deformed even less
easily. The rear of the plastic part 15 forms, together with the first leg 12 of the
angled section 11, the rear of the strike plate 1. Furthermore, the first leg 12 and
the plastic part 15 together form a spacer provided to keep the bottom 10 of the slot
8 at a distance from the surface 2 of the post. The advantages of such a spacer are
described below.
[0025] Figure 3 further shows that the folded metal plate 14 and the plastic part 15 each
have an opening 18, 19 in the bottom 10 of the slot 8 and further two openings 16,
17. The openings 16, 17 form openings through which the bolts 3 can be placed to secure
the strike plate 1 to the post as already described above. The opening 18 in the folded
metal plate 14, together with the opening 19 in the plastic part 15, and a recess
20 in the first leg 12 of the angled section 11 (indicated in Figure 2), together
form a cavity 21 of a certain depth d
2 (indicated in Figure 7b). This cavity 21 is thus formed by the spacer which consists
of the plastic part 15 and the first leg 12 of the angled section 11 and which forms
the necessary space between the bottom 10 of the slot 8 and the surface 2 of the post
where the cavity 21 is located. The function of the cavity 12 is described below.
[0026] Figure 3 further shows that the plastic part 15 has three protrusions 22 corresponding
to three round openings 23 in the folded metal plate 14 at the bottom 10 of the slot
8. These protrusions 22 are provided to secure the folded metal plate 14 to the plastic
part 15. To this end, the round openings 23 of the folded metal plate 14 are placed
on the protrusions 22, after which the tips of the protrusions 22 protruding through
the plate 14 are heated and plastically deformed so that the protrusions 22 become
stuck in the openings 23.
[0027] Figure 4 shows a perspective view of the strike plate 1 in conjunction with a gate
6 with a lock 24 in a closed position thereon. For the sake of clarity, only one tube
of the entire gate 6 is shown. The lock 24 is an externally mounted lock on a gate
6. It will be apparent to a person skilled in the art that the strike plate 1 can
also be used for a door in which the lock 24 is internally mounted or for a gate with
an internal lock 24. The lock 24 comprises a door handle 25 and a lock cylinder 27
which operate a latch bolt 26 and a deadbolt 28 (indicated in Figure 5), respectively,
and can move them between an extended and a retracted position. Both the latch bolt
26 and the deadbolt 28 have a 'throw length', i.e. the distance between the retracted
and extended position. It will be apparent to a person skilled in the art that the
door handle 25 and the lock cylinder 27 may be replaced by other mechanisms for operating
the latch bolt 26 and the deadbolt 28. It will also be apparent to a person skilled
in the art that the latch bolt 26 of the lock 24 is intended to be used frequently
for opening and closing the gate 6. In contrast, the deadbolt 28 is intended for securing
the gate 6 and the deadbolt 28 and the strike plate 1 must therefore be secured together
sufficiently such that the gate 6 cannot be easily broken open.
[0028] The lock 24 comprises a latch bolt spring to move the latch bolt 26 to its extended
position. The door handle 25 is thus provided for moving the latch bolt 26, against
the latch bolt spring, to its retracted position. The lock shown in Figure 5 also
comprises a protrusion 37 provided for cooperating with a security mechanism 38 as
described below. Such an externally mounted lock 24 with a latch bolt 26, a deadbolt
28, and a protrusion 37, is already known in the prior art, for example, from
patent publication US 6,684,669 B1.
[0029] Figures 6a, 1b and 6c show a top view of the strike plate 1 and the gate 6 to illustrate
closing the gate 6. Figure 6a shows the first contact between the gate 6 with the
lock 24 thereon and the strike plate 1 mounted on a post when closing the gate 6.
When closing the gate 6, the latch bolt 26 is in the extended position, unless the
door handle 25 is used to prevent this, and the deadbolt 28 is in its retracted position.
[0030] The latch bolt 26 has a sloping side 29 that strikes the sloping side 7 of the strike
plate 1. Due to the movement of the gate 6 and the sloping side 7, the latch bolt
26 is depressed, which is also helped by the sloping surface 29 of the latch bolt
26, as shown in Figure 6b. As soon as the latch bolt 26 is beyond the sloping side
7, the latch bolt 26 will slide back out due to the action of the latch bolt spring,
and extend into the slot 8 of the strike plate 1 and thus close the gate 6, as shown
in Figure 6c. To open the gate 6 again, it will then be necessary to use the door
handle 25 to move the latch bolt 26 back to the retracted position, after which it
will once again be out of the slot 8 and the gate 6 can therefore be opened again.
[0031] Figures 6a, 6b and 6c also show that the second leg 13 of the angled section 11 serves
as a striker for the gate 6. The second leg 13 extends from the front side of the
strike plate 1 to beyond the slot 8 of the strike plate 1 and thus forms a striker
for the gate 6 with the lock 24. The second leg 13 is provided with a strip 30 made
of rubber in order to thus reduce the possible impact of the gate 6 against the second
leg 13 and to avoid damage.
[0032] It will furthermore be apparent to a person skilled in the art that it is not necessary
for both the latch bolt 26 to have a sloping side 29, and the strike plate 1 to have
a sloping side 7. Either one will suffice to automatically press the latch bolt 26
when closing the gate 6. However, it is advantageous that both sloping elements 7,
29 are present, to allow more clearance between the post on which the strike plate
1 is mounted and the gate 6 with the lock 24. This advantage can be further enhanced
by the use of an adjustable latch bolt 26, where it is possible to adjust the distance
between the latch bolt 26 and the lock 24 as described, for example, in
patent publication EP 0 963 498 B1.
[0033] Figure 7a shows a cross-section at the height of the latch bolt 26 through the strike
plate 1 and the gate 6 in a closed position. This cross-section shows that the latch
bolt 26 extends into the slot 8 and substantially touches the bottom 10. Preferably,
the depth d
1 of the slot 10 will be substantially equal to the throw length of the latch bolt
26 and, more preferably, the depth d
1 of the slot 10 will be smaller than the throw length of the latch bolt 26. In Figure
7a, the depth d
1 of the slot 8 will be approximately 1.5 cm and be provided for a latch bolt 26 with
a throw length of approximately 1.8 cm, but depending on the throw length of the latch
bolt 26, this depth d
1 may vary. Figure 6a further shows that the plastic part 15 serves to support the
folded metal plate 14, in particular, also at the sloping side 7 of the strike plate
1. This support allows the deadbolt 26 to extend through the bottom 10 of the slot
8, resulting in a stronger strike plate 1 as described above.
[0034] A further important advantage of the plastic part 15 is that, in contrast to the
metal plate 14, it can have a grooved rear 31. The first leg 12 of the angled section
11 has a grooved front 32 engaging the grooved rear 31. This grooved front 32 is also
easy to manufacture, since the angled section 11 will preferably be extruded from
metal, in particular, stainless steel. The angled section 11 will furthermore also
have two elongated recesses 33 where the bolts 3 are located. The elongated recesses
33 make it possible to adjust the distance between the second leg 13 and a longitudinal
side of the strike plate 1. This is advantageous since it allows the strike plate
1 to be adjusted to the thickness of the gate 6 on which the lock 24 is mounted. The
grooved front 32 and the grooved rear 31 then ensure that the angled section 11 can
no longer move relative to the plastic part 15.
[0035] Figure 7b shows a similar cross-section as Figure 7a but at the height of the deadbolt
28. In this cross-section, it is immediately clear that the cavity 21, formed by the
opening 18 in the folded metal plate 14, the opening 19 in the plastic part 15, the
recess 20 of the angled section 11, and the surface 2 of the post, is provided for
receiving the deadbolt 28 in its extended position. Because the deadbolt 28 is in
the cavity 21 of the strike plate 1, it is very difficult to still force the lock
24, since a force exerted on the deadbolt 28 is passed directly to the entire strike
plate 1 and not only to a sidewall 9 of the slot 8, which is the case with the already
known strike plates.
[0036] As mentioned above, in practice, a certain amount of variation is possible in the
distance between the gate 6 and the post. The depth d
2 of the cavity 21 is therefore sufficiently large to accommodate the possible play.
More specifically, the depth d
2 of the cavity 21 should preferably be at least 25 % of the total depth D, which is
the sum of the depth d
1 of the slot 8 and the depth d
2 of the cavity 21, and more preferably, at least 35 % of this total depth D. Furthermore,
the depth d
2 of the cavity 21 should preferably be up to 55 %, and more preferably, up to 45 %
of the total depth D. In this way, the slot 8 will be deep enough to receive the latch
bolt 26 in its extended position. Furthermore, the total depth D should preferably
be between 2 and 3 cm, more preferably between 2.3 and 2.7 cm, and most preferably,
substantially 2.5 cm. This total depth D should preferably be substantially equal
to the throw length of the deadbolt 28. It will therefore be apparent to a person
skilled in the art that the total depth D of the strike plate 1 is dependent on the
throw of the deadbolt 28. Specifically, if the slot 24 used has a deadbolt 28 with
a throw length of 2.5 cm, the strike plate 1 will preferably have a total depth D
of substantially 2.5 cm.
[0037] The strike plate 1 as described above can be used both for a left-handed and a right-handed
gate 6 or door, since the strike plate 1 is symmetrical in its longitudinal direction;
in other words, the bottom and the top of the strike plate 1 are identical, such that
the strike plate 1 can be mounted upside down.
[0038] Figure 8 shows an exploded view of an alternative embodiment of a strike plate 1
provided to cooperate with a lock 24 having a latch bolt 26 and a deadbolt 28, as
well as a protrusion 37, which is shown in Figure 5. The protrusion 37 is provided
to cooperate with the security mechanism 38. Specifically, by closing the gate 6,
the protrusion 37 moves to the security mechanism 38 and they fit together because
the security mechanism 38 has a longitudinal side which is open. Once the gate 6 is
closed, the protrusion 37 and the security mechanism 38 ensure that it is not possible
to pull the gate 6 away from the post, as described in
patent publication US 6,684,669 B1. The security mechanism 38 is made of cast stainless metal for strength, in particular,
cast stainless steel.
[0039] Such a security measure 38 ensures that the strike plate 1 is no longer symmetrical
in its longitudinal direction; in other words, the bottom of the strike plate 1 is
no longer identical to the top of the strike plate 1, as was the case with the strike
plate shown in Figure 2. It is of course important that the strike plate 1 still be
suitable for both a left-handed and a right-handed gate 6. Therefore, in this embodiment,
the front side of the strike plate 1 has a second sloping side 34. Depending on whether
the gate 6 is left-handed or right-handed, either the sloping side 7 or the second
sloping side 34 is used to automatically press in the latch bolt 26. The second leg
13 of the angled section 11 is then placed along the sloping side 7, if the second
sloping side 34 is used to push in the latch bolt 26, and vice versa, if the sloping
side 7 is used to push in the latch bolt 26. However, to allow the double placement
of the angled section 11, the plastic part 15 is constructed differently and space
is now provided on both longitudinal sides for the placement of the first leg 12 of
the angled section 11. The space that is not used for the placement of the angled
section 11 is then sealed with a filling element 35. However, to ensure the strength
of the strike plate 1, the folded metal plate 14 in this embodiment still forms the
second sloping side 34 and both sidewalls 9.
[0040] To compare the strength of the strike plate 1 with the already known strike plates,
comparative tests have been performed. The already known strike plate is described
in
US 6,684,669 B1, in particular, in the exploded view shown in Figure 16 of
US 6,684,669 B1, and is made of cast aluminium with a wall thickness of substantially 3 mm. The strike
plate 1 of the present invention is shown in a similar exploded view shown in Figure
2 and the folded metal plate 14 is substantially made of stainless steel with a thickness
of approximately 1.5 mm. Both strike plates have the same overall dimensions, namely,
a length of substantially 16.5 cm, with a total depth D of 2.5 cm. The depth d
1 of the slot 8 in the already known strike plate is 1.8 cm and with the current strike
plate this depth d
1 is 1.5 cm, and the depth d
2 of the cavity is 2.5 cm. In the already known strike plate, the deadbolt 28 was extended
up to the bottom 10 of the slot 8, while in the present strike plate, the deadbolt
28 was extended up to the bottom of the cavity 21; in other words, 1 cm deep into
the cavity 21. The comparative tests were performed by applying a force to a lock
24 in a strike plate 1 as shown in Figure 4. The force was applied to the gate 6 in
the opening direction of the gate 6, in Figure 4 thus pushing the gate 6 away from
the striker, formed by the second leg 13 of the angled section 11. Specifically, the
force is transmitted via the deadbolt 28 to the sidewall 9 of the slot 8, which also
includes the sloping side 7 in the already known strike plate. In the current strike
plate, this force is transmitted to the cavity 21. These tests showed that the already
known strike plate broke at a force of approximately 3,000 N, while the strike plate
of the present invention did not even break at a force of approximately 15,000 N.
It is therefore clear that the current strike plate 1 is much stronger and thus more
secure against being broken.
1. Strike plate (1) adapted for being mounted on a surface (2) and cooperating with a
lock (24) having a latch bolt (26) and a deadbolt (28), which are each movable between
an extended and a retracted position,
said strike plate (1) being adapted to be mounted with its rear side against said
surface (2) and having a front side which has at least one sloping side (7) for automatically
depressing the latch bolt (26) and a slot (8) having a predetermined depth (d1), two sidewalls (9), and a bottom (10), said slot (8) being arranged to receive the
latch bolt (26) and the deadbolt (28) in their extended position, the bottom (10)
of the slot (8) having an opening (18) at the level of the deadbolt (28),
characterised in that the strike plate (1) comprises a folded metal plate (14) that forms at least one
of the two sidewalls (9) of the slot (8), the bottom (10) of the slot (8), and said
sloping side (7), the strike plate (1) further including a spacer that is at least
partially made of plastic and provided to keep the bottom (10) of the slot (8) at
a distance from said surface (2),
the spacer, together with the opening (18) in the bottom (10) of the slot (8), forming
a cavity (21) provided for receiving the end of the deadbolt (28) in its extended
position and having a depth (d2) which is at least 25 % of the total depth (D) that is the sum of the depth (d1) of said slot (8) and the depth (d2) of said cavity (21).
2. Strike plate (1) according to claim 1, characterised in that the spacer comprises at least a first (15) and a second part (11), the first part
(15) being made of said plastic and attached to the rear side of said folded metal
plate (14) and the second part (11) comprising an angled section with a first leg
(12) provided to be mounted between the first part (15) of the spacer and said surface
(2), and a second leg (13) protruding from the front of the strike plate (1) beyond
the slot (8) of the strike plate (1).
3. Strike plate (1) according to claim 2, characterised in that said angled section (11) is extruded from metal.
4. Strike plate (1) according to claim 2 or 3, characterised in that the first part (15) of the spacer (1) has a grooved rear (31) and said first leg
(12) has a grooved front (32) provided for engaging the grooved rear (31) of said
first part (15).
5. Strike plate (1) according to one of the previous claims 2 to 4, characterised in that the front side of the strike plate (1) has a further sloping side (34), said sloping
side (7) being provided for automatically depressing the latch bolt (26) when it is
right handed and said further sloping side (34) being provided for automatically depressing
the latch bolt (26) when it is left handed.
6. Strike plate (1) according to claim 5, characterised in that the strike plate (1) has a first and a second longitudinal side extending along the
slot (8), said sloping side (7) being located on the first longitudinal side and said
further sloping side (34) being located on the second longitudinal side, and it being
possible for said second leg (13) of the angled section (11) to protrude both on the
first and the second longitudinal side.
7. Strike plate (1) according to claim 5 or 6, characterised in that said folded metal plate (14) forms said further sloping side (34) and both sidewalls
of the slot (8).
8. Strike plate (1) according to one of the previous claims 5 to 7, characterised in that the strike plate (1) comprises a security mechanism (38) provided for cooperating
with a protrusion (37) on the lock (24) to prevent the lock (24) and strike plate
(1) from being pulled apart, the security mechanism (38) having a first and a second
longitudinal side extending in the longitudinal direction of the slot (8), the first
longitudinal side having an opening through which the protrusion (37) of the lock
(24) can engage the security mechanism (38), and the second longitudinal side being
closed, and the security mechanism being reversible relative to the folded metal plate
(14) to orient the first longitudinal side depending on the left or right-handedness
of the latch bolt (26).
9. Strike plate (1) according to one of the previous claims 1 to 8, characterised in that the bottom (10) of the slot (8) has at least one opening (23) and the spacer has
at least one protrusion (22), which is made of said plastic and which is fixed in
said opening (23) to secure the folded metal plate (14) to the spacer.
10. Strike plate (1) according to one of the previous claims 1 to 9, characterised in that the bottom (10) of the slot (8) has at least one further opening (16) provided for
screwing down the strike plate (1) to said surface (2), said further opening (16)
preferably having a conical recess provided for receiving a conical head of a bolt
(3).
11. Strike plate (1) according to one of the previous claims 1 to 10, characterised in that the folded metal plate (14) is made of stainless steel.
12. Strike plate (1) according to one of the previous claims 1 to 11, characterised in that the total depth (D) is between 2 and 3 cm, preferably between 2.3 and 2.7 cm, and
more preferably substantially 2.5 cm.
13. Strike plate (1) according to one of the previous claims 1 to 12, characterised in that the depth (d2) of the cavity (21) is at least 35 % of the total depth (D).
14. Strike plate (1) according to one of the previous claims 1 to 13, characterised in that the depth (d2) of the cavity (21) is up to 55 % and preferably up to 45 % of the total depth (D).
15. Strike plate (1) according to one of the previous claims 1 to 14, characterised in that said cavity (21) has no bottom and the depth (d2) of the cavity (21) is measured between the front side of the bottom (10) of the
slot (8) and said surface (2) when the strike plate (1) is mounted on said surface
(2).