[0001] THIS INVENTION relates to locking elements and assemblies thereof for drawer units, and more particularly,
drawer units embodying a plurality of superjacent drawers each of which is individually
mounted to be pulled outwardly, as and when required, to provide access to the drawer.
The invention also relates to drawer units embodying such locking elements and assemblies
thereof, whether the drawer unit forms a separate article of furniture, or is embodied
in an article of furniture having other uses.
[0002] In many cases where drawer units have a plurality of superjacent drawers, and the
drawers are adapted to hold heavy material, such as paper for example, it is desirable
that only one such drawer be permitted to be open at any one time. If two drawers
containing a considerable weight of material therein are open at the same time, there
is a danger that the unit can fall forwardly with consequent serious risk of damage
to property and personal injury.
[0003] The only mechanism of which applicant is aware for preventing the opening of a second
drawer, once a first one has been opened, is a mechanism in which each drawer is provided,
at each forward side thereof, with a fitting, usually an injection moulded plastics
fitting. Each such fitting co-operates with a longitudinally movable vertical locking
bar associated with the sidewalls of the drawer unit so as to move the locking bars
upon movement of a first drawer to open same. Each locking bar has inwardly directed
pins which co-operate with the fittings to achieve said longitudinal movement and
which have the added purpose of co-operating with formations associated with each
of the other drawers to lock them in the closed position. When the first drawer is
closed once more the fittings move the locking bars back to their unlocked position.
[0004] In addition, the locking bars are generally interconnected by a suitable mechanism
at their upper ends so that both operate in unison. A key operated lock, usually of
the push / pull or rotary type, is used to selectively lock all of the drawers in
a closed condition.
[0005] This whole mechanism has the serious disadvantage in that it is complex and costly.
There are two sets of each component (other than the key operated lock) and the interconnection
of the locking bars so as to be operable by means of a single key operated lock, is
relatively complex. Also, if perchance two drawers are opened simultaneously, and
one is then closed, the locking mechanism is returned to its unlocked position in
which it will be fouled by the fittings on the second drawer to be closed. There is
thus the possibility of permanent damage to the entire locking mechanism and, indeed,
the fittings and drawer.
[0006] It is the object of this invention to provide locking elements and assemblies thereof
for use in drawer units to achieve the aforesaid desirable results whilst being relatively
simple and comprising appreciably fewer component parts.
[0007] In accordance with one aspect of the invention there is provided a drawer unit comprising
a plurality of superjacent drawers, movable into and out of a housing therefor, and
wherein a single locking rod assembly is positioned at the rear of the drawers, the
locking rod having locking elements associated therewith for co-operation with formations
on each drawer, and wherein the elements and formations are adapted to move the locking
rod, when a first drawer is opened, to a position in which the locking elements and
formations on the other drawers co-operate to lock the other drawers in the closed
position, and to reverse the movement of the locking rod when said first drawer is
closed.
[0008] Further features of this aspect of the invention provide for the locking rod to be
located centrally across the width of the drawers at the rear thereof; for the locking
rod to be held captive by means of fittings secured to a rear wall or frame member
of the drawer unit; for the locking rod to be rotatable rather than longitudinally
movable; and for the locking rod to have key operated locking means associated therewith
for selectively locking all the drawers in a closed position by movement of the operating
rod.
[0009] Still further features of this aspect of the invention provide for the formations
associated with each drawer to be a pin or rod extending transversely to the direction
of movement of the drawers, and in particular, vertically; and for the said pins to
co-operate with cam surfaces provided in each locking element to effect required movement
of the operating rod.
[0010] In accordance with a second aspect of this invention there is provided a locking
element having means for enabling it to be mounted to a rotatable operating rod to
extend in a generally radial direction therefrom, and such that the locking element
has an axis of rotation adapted to be operatively coincident with that of an operating
rod; a slot or groove extending in a generally radial but sinuous direction relative
to the axis of rotation, the slot or groove having an access opening at its end radially
remote from the axis of rotation and communicating at its inner end with a transverse
locking notch, and wherein the slot or groove is adapted for co-operation with a locking
formation movable towards and away from the axis of rotation such that movement of
such formation away from the axis of rotation causes rotation of the locking element
in a direction which causes the locking notch to move into registration with the initial
position assumed by the formation.
[0011] Further features of this aspect of this invention provide for the locking element
to have a hole of non-circular shape in cross-section for receiving a complimentarily
shaped locking rod passing therethrough; for the slot or groove to extend up the entire
height of the locking element and to extend in a roughly spiral direction defining
cam faces to the slot for co-operation with an elongate locking formation, conveniently
in the form of pin having its axis parallel to that of the axis of rotation; and for
the locking element to have two basic angular positions, one in which a radially movable
locking formation with which the slot or groove co-operates is located in the inner
end of the slot (defining the unlocked position of the element) and one in which the
locking notch is located on said radius (corresponding to the locked condition of
the element).
[0012] Still further features of this aspect of the invention provide for the locking element
to have a shaped outer surface for co-operation with a spring loaded element to define
click stops in the said two angular positions; and for an additional face to communicate
with the outer access opening of the slot or groove for moving the element from the
unlocked position to the locked position if a co-operating formation approaches the
axis of rotation radially with that element in its unlocked position.
[0013] In order that the invention may be more fully understood one form of locking element
according to the invention, as well as an assembly embodying same, and a drawer unit
fitted with such assembly, will now be described with reference to the accompanying
drawings.
[0014] In the drawings :-
- FIG. 1
- is a schematic side sectional view of a drawer unit comprising four superjacent drawers
fitted with locking elements and an assembly thereof according to the invention;
- FIG. 2
- is an enlarged view of the rear end of a drawer illustrated in Figure 1;
- FIG. 3
- is a still further enlarged view of the locking element and co-operating locking pin
and showing further the mounting of the locking rod to the rear wall of the drawer
unit;
- FIGS 4a, b, c and d
- illustrate four different angular positions assumed by a locking element as its associated
drawer is opened (or in the reverse direction closed);
- FIG. 5
- illustrates the locked position of a locking element and associated locking pin;
- FIG. 6
- illustrates the operation of the additional cam face which enables a second drawer
to be closed in the event that two were opened simultaneously; and,
- FIG. 7a and b
- illustrate the two terminal positions of a locking element associated with a key operated
push type of lock for locking all the drawers in a closed position.
[0015] In the embodiment of the invention illustrated in the drawings a drawer unit, generally
indicated by numeral 1, has four superjacent drawers 2 mounted on their own slides
(not shown) so as to be movable into and out of a drawer cabinet 3 having top, bottom,
side and rear walls 4, 5, 6 and 7 respectively, in the usual manner.
[0016] A hexagonal cross-sectioned locking rod 8, rotatable about its own axis, is mounted
in spaced journals 9 secured to the rear wall 7 so that the locking rod 8 extends
vertically up the centre of the rear wall from substantially the bottom to the top
of the cabinet. The journals are each located roughly at the bottom of each drawer
unit, and an additional one above the top drawer unit, and each receives a circular
cross-sectioned extension 10 formed integral with a locking element 11 through which
the rod passes.
[0017] As shown more clearly in Figures 4, 5, 6 and 7 the hexagonal cross-sectional locking
rod passes through an hexagonal cross-sectioned hole 12 the axis of which defines
the axis of rotation 13 of the locking rod. In this manner all of the locking elements
11 are rotatable in unison with the locking rod and each other.
[0018] The locking element extends in a generally radial direction away from the axis of
rotation and away from the rear wall 7. A slot 14 extends outwardly in a spirally
radial direction from an inner end 15 to an outer end or access mouth 16. The slot
14 is shaped such that a transverse locking pin 17 which is movable in a radial direction
relative to the axis of rotation will, when moving radially outwardly, engage a locking
cam surface 18 to cause the locking element to rotate about the axis 13 from the position
illustrated in Figure 4a to the position illustrated in Figure 4d.
[0019] A locking pin 17 is attached to the rear 19 of each drawer so that the locking pin
moves radially when the drawer is opened.
[0020] Accordingly, and since all of the four locking elements rotate in unison, when the
one locking pin 17 attached to the one drawer being opened reaches the position illustrated
in Figure 4d where it is located in the mouth 16 of the slot in the element 11, all
of the other locking elements have assumed the position illustrated in Figure 5 with
the associated locking pins 17 located in a circumferentially offset locking notch
20 communicating with the inner end 15 of the slot. All other drawers are therefore
locked in the closed position whilst the one remains open.
[0021] When the open drawer is closed, its associated locking pin 17 enters the mouth 16
of the slot and engages a wall 21 of the slot which is inclined to the radius and
which then causes the locking element to rotate in the opposite direction to the ultimate
position where the locking pin 17 is located at the inner end of the slot as illustrated
in Figure 4a. Any one drawer may then be opened with the other locking elements rotating
to lock the other drawers in the closed position.
[0022] In the unlikely event that two drawers are pulled open simultaneously, and one drawer
is then closed, the locking element will be rotated to a position corresponding to
the unlocked position where the mouth 16 of the slot is no longer in alignment with
the radius passing through the axis 13 and along which the locking pin 17a (see Figure
6) will move to close the second drawer. The locking element is provided with a protective
cam face 22 adjoining the slot mouth which will cause, upon engagement by the locking
pin 17a, the locking element 11 to rotate to the locked position firstly and then,
subsequently, in consequence of engagement of the inclined surface 21 by the pin 17a,
the elements will rotate to the normal unlocked position.
[0023] It will be understood that the locking elements and assembly thereof which are described
above will be substantially less costly than the existing locking arrangement which
is used to prevent any drawer from being opened once a first drawer has been opened.
[0024] The locking elements and assemblies thereof according to this invention can also
be employed for locking all of the drawers in the closed position with the aid of
a push / pull type of key operated lock 23. It is generally preferred that with a
push / pull type of lock the innermost position desirably corresponds to the locked
position and, in order to accommodate this requirement, a locking element lla is inverted
and positioned on the operating rod so as to co-operate with a transverse locking
pin 17a carried on one end of an elongate, axially movable, rigid wire 24 attached
at its other end to the push / pull type lock 23.
[0025] With the lock in the outwardly extending position, which corresponds to the unlocked
condition of the drawers, the locking pin 17a will be in a position radially out of
contact with the locking element 11a. When it is pushed towards the element in consequence
of the lock being depressed to lock the unit, the locking pin 17a will firstly contact
the reverse directed inclined face 21 and rotate the locking element anti-clockwise
to the position illustrated in Figure 7b in which all the locking elements 11 are
in their locked positions. Thus a complete lock assembly is provided in extremely
simple manner simply by using an additional locking element 11.
[0026] It will thus be seen that the locking elements basically assume one of two angular
positions and it is preferred that a spring loaded roller, or like element 25 (see
Figure 7b), be engaged with a suitable formation 26 on the outer surface of the locking
element so as to provide two "click" stops to the locking rod in these two positions.
The "click" stops could be provided also by engaging the hexagonal rod with a suitable
spring loaded element.
[0027] It will be understood that the locking element described above will conveniently
be massed produced by injection moulding and leads to an extremely effective and inexpensive
locking assembly for a set of drawers.
[0028] Numerous variations may be made to the embodiment of the invention described above
without departing from the scope hereof, the specific embodiments simply being illustrative
of the invention.
1. A drawer unit (1) comprising a plurality of superjacent drawers (2), movable into
and out of a housing (3) therefor, and wherein a single locking rod assembly is positioned
at the rear (4) of the drawers, the locking rod (8) having locking elements (11) associated
therewith for co-operation with formations (17) on each drawer, and wherein the elements
and formations are adapted to move the locking rod, when a first drawer is opened,
to a position in which the locking elements and formations on the other drawers co-operate
to lock the other drawers in the closed position, and to reverse the movement of the
locking rod when said first drawer is closed.
2. A drawer unit as claimed in claim 1 in which the locking rod is located centrally
across the width of the drawers at the rear thereof.
3. A drawer unit as claimed in either of the preceding claims in which the locking rod
is held captive by means of fittings (9) secured to a rear wall (7) or frame member
of the drawer unit.
4. A drawer unit as claimed in any one of the preceding claims in which the locking rod
is rotatable to effect movement of the locking elements.
5. A drawer unit as claimed in any one of the preceding claims in which the locking rod
has a key operated locking means (23,24) associated therewith for selectively locking
all the drawers in a closed position by movement of the operating rod.
6. A drawer unit as claimed in any one of the preceding claims in which the formation
associated with each drawer is a pin (17) or rod extending transversely to the direction
of movement of the drawers.
7. A drawer unit as claimed in any one of the preceding claims in which each formation
co-operates with cam surfaces (18,21) provided in its co-operant locking element to
effect required movement of the operating rod.
8. A drawer unit as claimed in any one of the preceding claims in which each locking
element has means (12) for enabling it to be mounted to a rotatable operating rod
to extend in a generally radial direction therefrom, and such that the locking element
has an axis of rotation adapted to be operatively coincident with that of the operating
rod; a slot (14) or groove extending in a generally radial but sinuous direction relative
to the axis of rotation, the slot or groove having an access opening (16) at its end
radially remote from the axis of rotation and communicating at its inner end with
a transverse locking notch (20), and wherein the slot or groove is adapted for co-operating
with a locking formation (17) on a drawer movable towards and away from the axis of
rotation such that movement of such formation away from the axis of rotation of the
locking rod causes rotation of the locking element in a direction which causes the
locking notch to move into registration with the initial position assumed by the formation
so that the other drawers thereby become locked until the open drawer is closed.
9. A drawer unit as claimed in claim 8 in which the locking element has a hole (12) of
non-circular shape in cross-section for receiving a complimentarily shaped locking
rod (8) passing therethrough.
10. A drawer unit as claimed in either of claims 8 or 9 in which the slot or groove in
the locking element extends up the entire height of the locking element and extends
in a roughly spiral direction in plan view defining cam faces (18,21) to the slot
for co-operation with the elongate locking formation extending parallel to the axis
of rotation of the element.
11. A drawer unit as claimed in any one of claims 8 to 10 in which the locking element
has two basic angular positions, one in which the radially movable locking formation
with which the slot or groove co-operates is located in the inner end of the slot
(defining the unlocked position of the element) and one in which the locking notch
is located on said radius (corresponding to the locked condition of the element).
12. A drawer unit as claimed in any one of claims 8 to 11 in which the locking element
has a shaped outer surface (26) for co-operation with a spring loaded element to define
click stops in the said two angular positions.
13. A drawer unit as claimed in any one of claims 8 to 12 in which the locking element
has an additional face (22) to communicate with the outer access opening of the slot
or groove for moving the element from its unlocked position to the locked position
if a co-operating formation approaches the axis of rotation radially with that element
in its unlocked position.
14. A locking element (11) having means for enabling it to be mounted to a rotatable operating
rod to extend in a generally radial direction therefrom, and such that the locking
element has an axis of rotation adapted to be operatively coincident with that of
an operating rod; a slot or groove extending in a generally radial but sinuous direction
relative to the axis of rotation, the slot or groove having an access opening at its
end radially remote from the axis of rotation and communicating at its inner end with
a transverse locking notch, and wherein the slot or groove is adapted for co-operating
with a locking formation movable towards and away from the axis of rotation such that
movement of such formation away from the axis of rotation causes rotation of the locking
element in a direction which causes the locking notch to move into registration with
the initial position assumed by the formation.
15. A locking element as claimed in claim 15 and embodying any one or more of the features
defined in any one of claims 9 to 13.