[0001] The present invention relates to evaporators for use in refrigerators.
[0002] With refrigerators having a freezer compartment and a storage compartment under the
freezer compartment, it is already known to provide an evaporator made of roll-bonded
aluminum material for the two compartments.
[0003] The roll-bonded material is prepared from a pair of upper and lower aluminum sheets
one of which bears a pattern of adhesion preventing agent printed on its inner surface,
by bonding the two sheets to each other under pressure and introducing a pressure
fluid into the nonbonded portion to bulge this portion in the form of a tube.
[0004] In the production process of the roll-bonded material, the fluid is forced in between
the two aluminum sheets at the nonbonded portion with one of the aluminum sheets held
with a die over the outer surface thereof, so that the bulged tube portion is protuberant
on only one surface of the material which is not held by the die.
[0005] When such a sheet of roll-bonded material having the bulged tube portion on one surface
thereof is used for providing an evaporator portion for the freezer compartment of
the refrigerator, an evaporator portion for the storage compartment under the freezer
compartment, and a connecting portion interconnecting the two evaporator portions,
it is likely that the evaporator portion especially for the bottom wall portion of
the freezer compartment will be positioned with its bulged tube refrigerant channel
portion facing outwardly (downwardly) of the freezer compartment. Since the refrigerant
channel of the evaporator portion for the rear wall of the storage compartment is
positioned on the same side as the refrigerant channel of the freezer evaporator portion,
the refrigerant channel then faces the interior (front side) of the storage compartment.
In the case where the evaporator portion is exposed inside the storage compartment,
the presence of the refrigerant channel in the form of bulged tube impairs the appearance.
If the evaporator portion is disposed on the rear side of the storage compartment
rear wall and held out of sight, no problem will arise as to the appearance, whereas
the bulged channel portion is then in contact with the rear surface of the storage
compartment rear wall. This reduces the contact area of the evaporator to entail the
problem of lower efficiency.
[0006] The main object of the present invention is to provide an evaporator which is free
of the above problems for use in refrigerators.
[0007] The present invention provides an evaporator for use in a refrigerator having a freezer
compartment and a storage compartment under the freezer compartment, the evaporator
comprising a freezer evaporator portion positionable at least on the bottom side of
the freezer compartment, a storage evaporator portion positionable on the rear side
of the storage compartment and a striplike connecting portion interconnecting the
two evaporator portions, the freezer and storage evaporator portions and the connecting
portion being formed by a sheet of roll-bonded material having a continuous refrigerant
channel in the form of a tube bulging on one surface thereof. The evaporator is characterized
in that the freezer evaporator portion is to be positioned with its refrigerant channel
portion facing outwardly of the freezer compartment, the connecting portion being
twisted at an intermediate part of its height to position the storage evaporator portion
with its refrigerant channel portion facing outwardly of the storage compartment.
[0008] According to the present invention, the freezer evaporator portion, the storage evaporator
portion and the connecting portion of the evaporator is formed by a sheet of roll-bonded
material having a tube portion bulged on one surface thereof. Nevertheless, the refrigerant
channel portions of the freezer and storage evaporator protions can both be arranged
as faced outward, with the flat surface of the evaporator positioned inside the storage
compartment. In the case where the evaporator is visible directly from inside the
storage compartment, the evaporator appears flat and neat because of the absence of
the bulged refrigerant channel portion. Alternatively when the evaporator is disposed
on the rear side of the storage compartment rear wall and made invisible from inside
the compartment, the flat surface of the evaporator portion is in contact with the
rear suface of the storage compartment rear wall. This gives a greatly increased contact
area to the evaporator portion to achieve a remardably improved efficiency.
[0009] The present invention will be described in greater detail with reference to the accompanying
drawings.
FIG. 1 is a sectional view schematically showing a refrigerator having an evaporator
embodying the invention;
FIG. 2 is a perspective view of the evaporator;
FIG. 3 is a plan view in development of the evaporator;
FIG. 4 is a fragmentary enlarged plan view of the evaporator of FIG. 3;
FIG. 5 is a view in section taken along the line V-V in FIG. 4; and
FIG. 6 is a plan view in development showing another evaporator embodying the invention.
[0010] Throughout the drawings, like parts are designated by like reference numerals.
[0011] With reference to FIGS. 1 and 2, a refrigerator has a freezer compartment 1 and a
storage compartment 2 under the compartment 1.
[0012] The refrigerator has an evaporator embodying the invention and comprising an evaporator
portion 11 for the freezer compartment 1, an evaporator portion 12 for the storage
compartment 2, and a connecting portion 13 interconnecting the two portions. The evaporator
is formed by a sheet of roll-bonded material 10 having a continuous refrigerant channel
14 in the form of a tube bulged on one surface of the material as seen in FIG. 3.
[0013] The evaporator portion 11 for the freezer compartment 1 is channel-shaped when seen
from one side and provided on the bottom side, rear side and upper side of the compartment
1. The evaporator portion 12 for the storage compartment 2 is in the form of a flat
plate and disposed on the rear side of the rear wall 2a of the storage compartment
2. The connecting portion 13 interconnecting the two evaporator portions 11, 12 is
in the form of a strip.
[0014] With the present embodiment, the sheet of roll-bonded material 10 having the bulged
tubular refrigerant channel 14 protuberant on one surface thereof is formed, in the
portion thereof having no refrigerant channel and closer to its one end than the central
portion thereof, with two cutouts 3, 3 opposed to each other and L-shaped and inverted
L-shaped, respectively, when seen from above. The cutouts 3, 3 have respective long
slit portions extending approximately in parallel to each other and respective short
slit portions extending outward away from each other. When thus cut out,the freezer
evaporator portion 11, the storage evaporator portion 12 and the striplike connecting
portion 13 interconnecting the portions 11, 12 are formed at the same time.
[0015] The refrigerant channel portion 14a of the freezer evaporator portion 11 and the
refrigerant channel portion 14b of the storage evaporator portion 12 are held in communication
with each other by forward and return refrigerant channel portions 14c, 14d of the
connecting portion 12. A refrigerant supply tube 15 and a refrigerant discharge tube
16 are connected to the respective ends of the channel portion 14a of the freezer
evaporator portion 11.
[0016] The roll-bonded sheet 10 is bent to form the freezer evaporator portion 11 which
is channel-shaped when seen from one side, with its channel portion 14a facing outward.
The striplike connecting portion 13 is then folded over rearwardly downward, and at
an intermediate part 13a of its height, the connecting portion 13 is twisted through
180 degrees within a horizontal plane, whereby the refrigerant channel portion 14b
of the storage evaporator portion 12 is turned over and caused to face outwardly of
the storage compartment 2 when the evaporator portion 12 is installed in place.
[0017] In this way, the bulged tubular channel portions 14a, 14b of the freezer and storage
evaporator portions 11, 12 can be both arranged as faced outward by twisting the striplike
connecting portion 13. Consequently, the flat surface of the evaporator portion 12
can be held in contact with the rear surface of the rear wall 2a of the storage compartment
2. This increases the area of contact between the rear wall 2a and the evaporator
portion 12 to achieve a greatly increased efficiency.
[0018] The intermediate part 13a of the connecting portion 13 to be twisted has opposite
side edges which are preferably tapered as seen in FIG. 4, because when the intermediate
part 13a is thus tapered and then twisted through 180 degrees within a horizontal
plane, the forward and return channel portions 14c, 14d will not be easily folded
in a collaped fashion but are more likely to remain unblocked.
[0019] With reference to FIG. 4, suppose the intermediate part 13a to be twisted has a length
L, and the larger width of the intermediate part 13a is W. When the intermediate part
13a is 150 to 300 mm in length L and 30 to 60 mm in width W, the effective taper of
the intermediate part 13a is 1.5/100 to 5/100. If the taper of the intermediate part
13a is in this range, the forward and return channel portions 14c and 14d remain unblocked
when the intermediate portion 13 is twisted.
[0020] With reference to FIG. 5, the roll-bonded material 10 for forming the evaporator
is prepared from a pair of upper and lower aluminum sheets 17, 18 one of which bears
a required pattern of adhesion preventing agent printed on its inner surface, by bonding
the two sheets to each other under pressure and introducing a pressure fluid into
the nonbonded portion to bulge this portion in the form of a tube and form the continuous
refrigerant channel 14.
[0021] FIG. 6 shows another embodiment of the present invention which differs from the above
embodiment in the pattern of refrigerant channel 14 of the roll-bonded material 10
for forming the evaporator. More specifically, the pattern of the bulged tubular refrigerant
channel 14 of the second embodiment is such that the refrigerant flows from the channel
portion 14a of the freezer evaporator portion 11 to the channel portion 14b of the
storage evaporator portion 12 through a single forward refrigerant channel portion
14c of the connecting portion 13 therebetween. A refrigerant supply tube 15 is connected
to one of the channel 14, i.e., to the outer end of the channel portion 14a of the
freezer evaporator portion 11, and a refrigerant discharge tube 16 is connected to
the other end of the channel 14, i.e., to the outer end of the channel portion 14b
of the storage evaporator portion 12.
[0022] According to the embodiments descirbed, the freezer evaporator portion 11 of the
evaporator is channel-shaped when seen sidewise and disposed on the bottom side, rear
side and upper side of the freezer compartment 1, but the freezer evaporator portion
11 may be provided at least on the bottom side of the freezer compartment 1.
[0023] Although not shown, the storage evaporator portion 12 of the evaporator of the present
invention is provided alternatively inside the storage compartment and made directly
visible. Even in this case, the flat side of the evaporator portion 12 is positioned
inside the storage compartment according to the present invention. The evaporator
portion 12 therefore will not appear unsightly.
1. An evaporator for use in a refrigerator having a freezer compartment (1) and a
storage compartment (2) under the freezer compartment, the evaporator comprising a
freezer evaporator portion (11) positionable at least on the bottom side of the freezer
compartment, a storage evaporator portion (12) positionable on the rear side of the
storage compartment and a striplike connecting portion (13) interconnecting the two
evaporator portions, the freezer and storage evaporator portions and the connecting
portion being formed by a sheet of roll-bonded material having a continuous refrigerant
channel in the form of a tube bulging on one surface thereof, characterized in that
the freezer evaporator portion (11) is positionable with its refrigerant channel portion
facing outwardly of the freezer compartment (1), the connecting portion (13) being
twisted at an intermediate part of its height to position the storage evaporator portion
with its refrigerant channel portion facing outwardly of the storage compartment.
2. An evaporator as claimed in claim 1, characterized in that the sheet of roll-bonded
material is formed, in the portion thereof having no refrigerant channel and closer
to its one end than the central portion thereof, with cutouts (3) opposed to each
other and L-shaped and inverted L-shaped respectively when seen from above to thereby
provide the freezer evaporator portion (11), the storage evaporator portion (12) and
the striplike connecting portion (13) interconnecting the two evaporator portions,
the freezer evaporator portion of the roll-bonded sheet being bent to a channel shape
when seen sidewise so as to be positioned on the bottom side, rear side and upper
side of the freezer compartment, the connecting portion being folded over rearwardly
downward and twisted through 180 degrees within a horizontal plane at the intermediate
part of its height.
3. An evaporator as claimed in claim 1, characterized in that the intermediate part
(13a) of the connecting portion (13) to be twisted has tapered opposite side edges
when seen from above.
4. An evaporator as claimed in claim 3, characterized in that the intermediate part
of the connecting portion (13) is 150 to 300 mm in length and 30 to 60 mm in the larger
width and has an effective taper of 1,5/100 to 5/100.