Technical Field
[0001] The present invention relates to cooking ovens comprising doors equipped with glasses
detachable for cleaning purposes.
Background Art
[0002] It is known that glasses provided on the doors of cooking ovens are used to see the
oven's interior. The facts that the vapor resulting from a food or any particles spattering
from a food being cooked in the oven deposit on the door glass, and that such deposited
materials dry in time with the high internal temperature make it hard to clean off
such created dirt. Since such glasses are generally fixed to the door and cannot be
detached, the results obtained by externally-performed cleaning are generally unsatisfactory.
This fact results in the need of detaching the glasses from the oven door to have
them cleaned separately. On the other hand, even with screw-type connections provided
on such door glasses to make them attachable/detachable, the users face difficulties
or even fail in detaching/attaching such glasses to/from the oven doors.
With respect to the background art, the published patent application
EP1647775 discloses an oven door comprising a plurality of glasses and a spring-coupling apparatus
positioning these glasses. The solution brought with this application is oriented
to the assembly of glasses merely, whereas nothing is provided to easily remove and
assemble back the glasses for cleaning purposes. For this reason, an oven door with
easily removed glasses is provided with the present invention as disclosed in details
in the following paragraphs.
Brief Description of Invention
[0003] The subject oven door comprises a front panel equipped with an outer glass, glass
assembly profiles provided behind the panel, and a middle glass and inner glass assembled
to these profiles. The positioning of the inner glass and the middle glass is carried
out by means of said profiles and springs attached thereto (i.e. profiles). The glasses
are placed in channels and slots provided on the profile margins, whereas said springs
are used to make firm their positions. In this manner, any displacement of glasses
out of the user's will within said channel and slots are avoided. Thanks to this arrangement,
no auxiliary apparatus is required by the user to remove the glasses. In order to
remove the glasses, firstly the door is opened to a small extent, the inner glass
is driven upwards manually within its own channel, and the glass is released from
the connecting tabs provided on the lower part of the glass. Then the glass is lifted
upward from beneath and driven outward in a sloped manner so as to release the glass
from the upper connection tabs. Thus, the glass already released from the lower and
upper connection tabs is removed completely. The middle glass -if provided any on
the door-is detached and removed from the door in a similar manner. For attaching
the glasses back to the door, the steps indicated above are conducted reversely. The
glass is driven toward the upper connection tab in a sloped manner, then made horizontal,
and attached to the lower connection tab. These steps outline the assembly of glass
to the oven door. While detaching or attaching the glass, the force to be overcome
is only the spring force. The spring force is of such a magnitude that allows both
the fixation of glass in place, and the detachment of glass manually. Said spring
has a plate form so as to exert a downward force on the glasses from their upper margins.
In an exemplary embodiment of the present invention illustrated in annexed figures,
said springs are provided on the edge of said profiles, as one mutual spring couple
at least. Each individual spring is formed to exert force to at least one glass at
the same time (but to exert force to two glasses, i.e. the inner glass and middle
glass, in the exemplary embodiment of the present invention).
Objective of Invention
[0004] The objective of the present invention is to provide a cooking oven door equipped
with glasses which can manually and easily be detached and attached back without requiring
the use of any apparatus.
[0005] Another objective of the present invention is to provide the opportunity to detach
and remove only the inner glass and middle glass of the oven door without disassembling
any other part, and attaching back said glasses in the same manner.
[0006] A further objective of the present invention is to provide the opportunity to release
the glasses from their slots, or to fix them back by only driving said glasses for-
or backward.
[0007] Yet another objective of the present invention is to position at least one of the
springs that retain the glasses in place, so as to exert force to one glass or to
a plurality of glasses concurrently.
Description of Figures
[0008] Illustrative embodiments of the subject oven door are illustrated in annexed figures
briefly described hereunder.
Figure 1 is a front perspective view of the subject oven door.
Figure 2 is a top perspective view of an oven door brought to the horizontal position.
Figure 3 is a perspective view of the oven door without the inner glass.
Figure 4 is a perspective view of the oven door without the inner and middle glasses.
Figure 5 is a perspective view of the oven door without the inner and middle glasses
and without the upper profile.
Figure 6 is a perspective view of the oven door with one side profile and spring.
Figure 7 is a perspective view of the oven door with one side profile.
Figure 8 is a perspective view of the side profile.
Figure 9 is a perspective view of the upper profile.
Figure 10 is a perspective view of a spring couple.
Figure 11 is a perspective view illustrating the first step of detaching the inner
glass.
Figure 12 is a perspective view illustrating the second step of detaching the inner
glass.
Figure 13 is a perspective view of the middle glass, while it is not detached.
Figure 14 is a perspective view illustrating the first step of detaching the middle
glass.
Figure 15 is a perspective view illustrating the second step of detaching the middle
glass.
Figure 16 is a perspective view of the oven door with the glasses detached.
Figure 17 is another perspective view of the oven door with the glasses detached.
[0009] The parts in said figures are individually enumerated as following.
Oven door (1)
Front panel (2)
Side profiles (3, 3')
Upper profile (4)
Inner glass (5)
Middle glass (6)
Springs (7, 7')
Springs (8, 8')
Upper surface (30)
Settling surface (31)
Connection tab (32)
A couple of connection tabs (33a)
Outer connection tab (33a')
Inner connection tab (33a")
A couple of connection tabs (33b)
Outer connection tab (33b')
Inner connection tab (33b")
Hole (34)
Flap (35)
Surface (40)
Hole (44)
Side edges (51, 51')
Lower edge (52)
Upper edge (52')
Side edges (61, 61')
Lower edge (62)
Upper edge (62')
Frame (71)
Segments (72, 73)
Hole (74)
Hole (81)
Detailed Description of Invention
[0010] The oven door (1) illustrated in figures 1-17 comprises a front panel (2) provided
with an outer glass; side profiles (3, 3') and upper profile (4) provided behind the
panel (2) for glass assembly; an inner glass (5) attached to these profiles (3, 3',
4), at least one middle glass (6) between the outer glass and inner glass (5); and
at least one spring couple (7, 7') positioning said glasses (5, 6).
[0011] The side profiles (3, 3') among the profiles (3, 3', 4) illustrated in figures 4
to 9 are positioned on two sides at the rear of the panel (2), whereas the upper profile
(4) is positioned on the upper and rear part of said panel (2) so as to join the side
profiles (3, 3') from their upper parts. Said springs (7, 7'), on the other hand,
are positioned on the joining section of said side profiles (3, 3') with the upper
profile (4).
[0012] A settling surface (31) provided at one edge of the upper surface (30) of the illustrative
side profile (3) shown in Figure 8 is formed to hold the inner glass (5) and has a
stepwise formation relatively lower than the upper surface. The other side profile
(3') -in symmetry with said profile (3)- blocks the sidewise displacement of the upper
glass (5), once the side profiles (3, 3') are placed in the panel with their settling
surfaces (31) facing each other mutually. The lower part of each profile (3) is provided
with a "U" shaped connection tab (32), wherein the lower edge (52) of the inner glass
(5) is accommodated (Figure 11), and which is formed to block both the downward displacement
of the glass (5) and the outward displacement of the glass (5) in a direction perpendicular
to such downward displacement. The upper part of the inner glass (5) extends into
the interior of the upper profile (4). The configuration of the upper edge (52') of
the inner glass (5) that allows said edge (52') to remain under a surface (40) of
the upper profile (4) extending downwardly (illustrated in Figure 9) blocks it against
any displacement (Figure 11). The inner glass (5) is also subjected to the downward
force of springs (7, 7') provided at the upper part of profiles (3, 3') so that its
displacement in all directions is blocked. In this position, the inner glass (5) can
only displace a small distance toward the upper profile (4). This case, however, can
only occur if the force is overcome of the springs (7, 7') that exert force on the
upper edge (52') of the glass (5) (Figure 11).
[0013] The spring couple (7, 7') illustrated in Figure 10 is formed symmetrically, and as
indicated above are positioned on the joining section of said side profiles (3, 3')
with the upper profile (4). The spring (7, 7') body (71) is made from a curvature-bent
sheet-metal piece. Said spring body (71) is split into as many segments (72, 73) as
the number of glasses to be fastened so that one spring clamps at least one glass
(these segments are shown in two -72 and 73- in annexed figures); for instance, while
the upper edge (52') of the inner glass (5) is clamped by one segment (73), the upper
edge (62') of the middle glass (6) is clamped by another segment (72) (Figure 13).
[0014] Additionally, at least one assembly hole (74) is provided on said springs (7, 7').
Each assembly hole (74) is fastened to the holes (34) provided on the upper part of
the side profiles (3, 3') (illustrated in figures 6 and 8) by means of a connection
element passed through itself.
[0015] Said springs (7, 7') can also be positioned at other locations on the door (e.g.
on the upper profile (4) or at any point behind the front panel) so as to exert a
downward force on the upper edges (52', 62') of glasses (5, 6) in different embodiments
of the present invention. With respect to the assembly of said parts, the holes (44)
on two sides of the upper surface of the upper profile (4) are aligned to other holes
(34, 74) mentioned above.
[0016] Thanks to the segmented structure (72, 73) of springs (7, 7'), they can be attached
to the rear parts of more than one glass panel (two panels are shown in the figures),
e.g. one middle glass (6), in addition to the inner glass (5), can be used between
the front panel (2) and inner glass (5) (as illustrated in figures 13 to 15). The
middle glass (6) is positioned so that the side edges (61, 61') of this glass (Figure
13) become displaceable between the lower and upper tab couples (33a, 33b) (Figure
8) provided on the mutually-facing surfaces of the side profiles (3, 3'). One (33a)
of the connection tab couples (33a, 33b) is close to the upper profile (4) side of
the profile (3), while the other (33b) is relatively closer to the lower side. The
outer tab (33a') of the tab couple (33a) closer to the upper side is closer to the
upper side as compared to the inner tab (33a"). And the outer tab (33b') of the tab
couple (33b) which is closer to the lower side is more close to the lower side as
compared to the inner tab (33b"). The downward displacement of the middle glass (6)
is blocked by means of a flap (35) (Figure 8) provided at a point closer to the lower
part. Put differently, the lower edge (62) of the middle glass (6) (Figure 13) is
leaned on the flap (35) provided at each side profile (3, 3'). As illustrated in Figure
17, one spring couple (8, 8') is provided at the parts -where the side profiles (3,
3') combine with the front panel (2)- to exert force on the front surface of the middle
glass (6). Like the inner glass (5), the middle glass (6) is also displaceable toward
the interior of the upper profile (4) to a small extent. In order to have such a displacement,
the force exerted by the springs (7, 7', 8, 8') must be overcome. These springs (8,
8') are also shaped with a bent metal sheet formation and are fastened to the side
profiles (3, 3') by means of at least one hole (81) provided on themselves (Figure
7).
[0017] As mentioned above, there are springs (7, 7', 8, 8') provided on the side profiles
(3, 3') to be used for positioning the inner glass (5) and the middle glass (6) between
the profiles (3, 3', 4). The positions of the springs (8, 8') clamping the middle
glass can be altered as long as they fulfill their functions. In other words, each
spring (8, 8') can be assembled at other points on the relevant side profile (3, 3')
or directly at the rear of the front panel (2). Said glasses (5, 6) can only displace
a small distance toward one side, e.g. toward the upper profile (4) side at the examples.
In order to have such a displacement, however, the user must push the glasses (5,
6) at this direction so as to overcome the force of springs (7, 7', 8, 8').
[0018] In order to detach the inner glass (5) from the oven door (1), the following steps
(illustrated in figures 11 and 12) are to be taken. First of all, to remove the inner
glass (5), the glass (5) is driven toward the interior of the upper profile (4) (Figure
11). Once the lower part of the glass (5) is released from the connection tabs (32)
at the lower part of the side profiles (3, 3'), this lower part of the glass (5) is
moved away from the panel (2) (illustrated in Figure 12). Following this step, the
glass (5) is pulled downward until the upper edge (52') of the glass (5) is removed
from beneath the surface (40) of the upper profile (4) extending downwardly. Once
the glass (5) is released from beneath said surface (40), it becomes entirely detached
from the oven door (Figure 13).
[0019] For attaching back said glass (5), the above given steps are repeated in a reverse
order. In other words, the upper edge of the glass (5) is pushed in a sloped manner
toward beneath said surface (40) so that the springs (7, 7') exert force on the upper
edge (52') of the glass (5), and the lower part of the glass is brought close to the
panel (2). In this manner, the side edges of the glass (5) settle on the settling
surface (31) provided at the side profiles (3, 3'). In a final step, the glass (5)
is pushed downwards so that its lower edge become settled into the connection tabs
(32) -in this position, the upper edge (52') of the glass (5) still remains below
said surface (40). So the assembly of the upper glass (5) to the oven door (1) is
completed.
[0020] And to insert the middle glass (6) through the oven door (1), the following steps
(illustrated in figures 14 and 15) are to be taken. First of all, to remove the middle
glass (6), the glass (6) is driven toward the interior of the upper profile (4) (Figure
14). Once the upper surface of glass (6) is released from the outer connection tabs
(33b') at the lower edge (62) (figure 14), this lower part of the glass (6) is moved
away from the panel (2) (illustrated in Figure 15). After this step, the glass (6)
is pulled downward until the upper edge (62') of the glass (6) is removed from beneath
the outer tab (33a') at the upper part. Once the glass (6) is released from said tab
(33a'), it becomes entirely detached from the oven door (figures 16 and 17).
[0021] For attaching back said glass (6), the above given steps are repeated in a reverse
order. In other words, the upper edge (62') of the glass (6) is pushed in a sloped
manner between the inner and outer tabs (33a", 33a') of the tab couple (33a) at the
upper part so that the springs (7, 7') exert force on the upper edge (62') of the
glass (6), and the lower part of the glass (6) is brought close to the panel (2).
In this manner, the side edges (61, 61') of the glass (6) settle on the inner tab
couples (33a", 33b") provided at the side profiles (3, 3'). And as a final step, the
glass (6) is pushed downward so that the side edges of the glass are entirely positioned
between the tab couples (33a, 33b), and the lower edge (62) of the glass (6) is leaned
on said flap (35) -in this position, the springs (8, 8') exert force on the surface
of glass (6) facing the front panel (2). So the assembly of the middle glass (6) to
the oven door (1) is completed.
1. An oven door (1) comprising a front panel (2) provided with an outer glass; symmetrical
side profiles (3, 3') and an upper profile (4) provided behind said panel (2) and
used for glass assembly; an inner glass (5) attached to said profiles (3, 3', 4),
and at least one middle glass (6) provided between said outer glass and inner glass
(5); and at least one spring (7) positioning said glasses (5, 6), characterized in that
one each settling surface (31) with a stepwise formation is provided on both mutual
edges of both side profiles (3, 3') where two mutual side edges (51, 51') of the inner
glass (5) are settled;
one each "U" shaped connection tab (32) is provided at the lower part of profiles
(3, 3') where the lower edge (52) of the inner glass (5) is introduced;
the upper part (52') of the inner glass (5) remains beneath one surface (40) of the
upper profile (4) provided on the upper part of side profiles (3, 3');
the spring (7) is positioned so as to exert downward force on the upper edge (52')
of the inner glass (5); and
the inner glass (5) is displaceable once it (5) is pushed toward the upper profile
(4) until it becomes free from the lower connection tabs (32).
2. An oven door (1) according to Claim 1, wherein a flap (35) -onto which is settled
the lower edge (62) of the middle glass (6)- is provided on the lower part of each
side profile (3, 3') and on the side profiles' (3, 3') mutually facing surfaces; one
each lower/upper tab couple (33a, 33b) is provided on upper and lower sides of said
surfaces to position said middle glass (6) there between; and said spring (7) is positioned
so as to exert downward force on the upper part (62') of the middle glass (6).
3. An oven door (1) according to Claim 2, characterized in that -among the connection tab couple (33b) positioned relatively closer to the lower
side of each profile (3, 3')- an outer tab (33b') over the middle glass (6) is closer
to the lower side as compared to the inner tab (33b") positioned under the middle
glass (6).
4. An oven door (1) according to Claim 2, characterized in that -among the connection tab couple (33a) positioned relatively closer to the upper
side of each profile (3, 3')- an outer tab (33a') that becomes located over the middle
glass (6) is closer to the upper side as compared to the inner tab (33a") positioned
under the middle glass (6).
5. An oven door (1) according to Claim 3, characterized in that the middle glass (6) is displaceable toward the interior of the upper profile (4)
until the lower edge (62) of the middle glass becomes released from the outer connection
tab (33b'), once the middle glass (6) is pushed toward the upper profile (4).
6. An oven door (1) according to Claim 1, characterized in that said spring (7) has a plate-shaped body (71).
7. An oven door (1) according to Claim 6, characterized in that said body (71) has a plurality of segments, each such segment clamping one glass.
8. An oven door (1) according to Claim 6, characterized in that at least one assembly hole (74) is provided on said spring (7).
9. An oven door (1) according to Claim 8, characterized in that said spring (7) is attached to a hole (34) on at least one side profile (3) by means
of a connection element passed through each assembly hole (74).
10. An oven door (1) according to Claim 2, characterized in that one spring couple (8, 8') is provided at the section where each side profile (3,
3') combines or joins with the front panel (2) to exert force on the front surface
of the middle glass (6).
11. An oven door (1) according to Claim 10, characterized in that said springs (8, 8') have bent sheet-metal formations.
12. An oven door (1) according to Claim 10, characterized in that at least one hole (81) is provided on each spring (8, 8') for assembly to side profiles
(3, 3').