CN218296330U - Ice making box - Google Patents

Ice making box Download PDF

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Publication number
CN218296330U
CN218296330U CN202222256688.2U CN202222256688U CN218296330U CN 218296330 U CN218296330 U CN 218296330U CN 202222256688 U CN202222256688 U CN 202222256688U CN 218296330 U CN218296330 U CN 218296330U
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ice making
ice
box body
mold
making mold
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CN202222256688.2U
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张辰浩
钱凌波
于淼
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Abstract

The utility model discloses an ice making box, including box body and ice making mould, be equipped with the opening on the box body, the ice making mould is including the top surface that is equipped with a plurality of deicing mouth, be equipped with bearing structure in the box body, the horizontal projection of the top surface of ice making mould is located in the open-ended horizontal projection within range, when the box body was arranged in with top surface down state to the ice making mould, at least the top surface of ice making mould was located the box body and quilt the bearing structure part is supported to can produce whole deformation when making the ice making mould pressurized and be used for the deicing. The utility model provides an ice making box can realize the quick deicing of ice grid mould.

Description

Ice making box
Technical Field
The utility model belongs to the technical field of the ice-cube making technology and specifically relates to an ice-making box is related to.
Background
The ice box is a common ice making tool for households, and generally comprises a shell and an ice grid mold, wherein the ice grid mold is used for being placed in a freezing chamber of a refrigerator after being filled with water so as to form ice blocks by freezing the water in the ice grid mold into ice blocks. However, the existing ice grid mold has a problem that the ice blocks cannot be conveniently and quickly taken out of the ice grid mold after being frozen and formed in the ice grid mold.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an overcome not enough among the prior art, provide an ice-making box, can realize the quick ice-shedding of ice tray mould.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an ice making box, includes box body and ice making mould, be equipped with the opening on the box body, ice making mould is including the top surface that is equipped with a plurality of deicing mouth, be equipped with bearing structure in the box body, the horizontal projection of ice making mould's top surface is located open-ended horizontal projection within range, when ice making mould placed the box body in with top surface down state, at least ice making mould's top surface was located the box body and quilt the bearing structure part supports to can produce whole deformation when making ice making mould pressurized and be used for the deicing.
The utility model provides an ice making process of ice making box: the ice making mold is characterized in that ice making liquid such as water, fruit juice and the like is poured into the ice making mold from the ice removing port, the ice making mold for containing the ice making liquid is placed into the box body in a state that the top surface faces upwards, the ice making mold is taken out after the ice making box is frozen, the ice making mold is placed in the box body in a state that the top surface faces downwards, the ice making mold is extruded downwards, and ice cubes fall off by utilizing the integral deformation of the ice making mold, so that the rapid ice removing is realized.
Because the horizontal projection of ice making mould top surface is located box body open-ended horizontal projection within range, when the deicing, the top surface of at least ice making mould is located the box body and quilt bearing structure local support, because of the mouth that takes off the ice sets up in the top surface, the process of taking off the ice is accomplished in the box body, and the hand can not contact the ice-cube, prevents that the ice-cube from polluting, and the ice-cube can not splash outside the box body.
Because the top surface that at least makes the ice mould is located the box body and is supported by bearing structure part, the benefit of design like this lies in: firstly, an unnecessary structure does not need to be designed on the ice making mold, the external shape of the ice making mold is simplified, the attractiveness is improved, and the cleaning is convenient; thirdly, when the ice is removed, the part of the ice making mold, which is positioned in the box body, is restrained by the box body, so that the large-amplitude transverse deviation can not occur, and the ice making mold can not slide down from the box body no matter how the ice making mold is extruded.
The utility model provides an ice-making box makes the ice-making mould sink into the box body at least partially thereby reduce the height of ice-making box, and on the one hand, when the ice-making, the reduction of ice-making box overall height can realize that the conventional deicing operation that the mesa was pressed in place in to the current ice-making box is different from, for example both hands take up the ice-making box and centre gripping box body and ice-making mould from top to bottom (or be used for the deicing instrument of extrusion ice-making mould), and the user can enjoy different deicer's enjoyment; on the other hand, will make the ice mold and pour the water on the ice mold into with top surface state down in the box body after the deicing, the utility model discloses a scheme not only reduces the altitude requirement to ice making box parking space, also makes the box body can hold a plurality of ice molds, promotes the product practicality.
Preferably, the ice making mold comprises a forming part and surrounding edges arranged on the periphery of the forming part, when the ice making mold is placed upside down on the box body, the supporting structure at least supports the surrounding edges on two opposite sides of the ice making mold, and the forming part is separated from the supported part of the surrounding edges. The structure can make bearing structure be in the border position of box body, and the intermediate position in the box body can not set up bearing structure, makes the intermediate position in the box body more complete, makes things convenient for the ladle to stretch into and gets ice in the box body. And the edge position of the supporting structure at the box body can form a whole with the side wall of the box body, so that the structural strength of the supporting structure is increased.
Preferably, a line connecting the supported portions of the opposite side peripheral edges of the ice making mold passes through the center of the molding portion. The structure can ensure that the forming parts of the ice-making mould are symmetrically distributed at two sides of the connecting line of the supporting parts, and the two sides can be pressed at the same time of ice removal, so that the stress balance of the ice-making mould can be kept, and the position stability of the ice-making mould during ice removal is ensured; but also can increase the deformation of the ice making mould, thus being convenient for ice removal.
Preferably, the edge profile of the ice making mold is polygonal, and when the ice making mold is placed upside down on the box body, the supporting structure is supported at two diagonal positions in the ice making mold. The structure can enable the supporting structures to be far away from each other, so that the ice-making mold is stably supported by the supporting structures; and the support is arranged at the corner position, so that the support of the opposite side position can be reduced, and the position near the side can be more easily deformed during deicing and pressing, thereby facilitating deicing.
Preferably, the ice making mold is supported by the support structure when being placed in the box body in the forward direction. The structure can make the ice making mould placed in the box body in a forward direction, and the ice making mould is suspended in the box body, so that an ice storage space is formed below the ice making mould, and normal ice making and ice removing can be carried out even if ice blocks are left in the box body.
Preferably, the box body is further provided with an auxiliary supporting structure, the ice making mold is supported by the supporting structure and the auxiliary supporting structure together when being placed in the box body in the forward direction, and an avoiding gap is formed between the edge of the ice making mold and the auxiliary supporting structure when the ice making mold is placed in the box body in an inverted mode; or, be equipped with the brace rod on the lateral wall on the box body, be equipped with the connecting plate of downward bulge on the surrounding edge of ice-making mould, be equipped with the first supporting slot with the brace rod adaptation on the connecting plate, when ice-making mould forward place in the box body, the brace rod stretches into first supporting slot and supporting connection board. The auxiliary supporting structure and the supporting ribs can increase the stability of the ice making mold when the ice making mold is placed into the box body in the forward direction, and the auxiliary supporting structure and the supporting ribs are not in contact with the ice making mold during ice shedding, so that the deformation of the ice making mold is not influenced.
Preferably, one of the support structure and the supported part of the ice making mold is provided with a positioning groove, and the other is provided with a positioning column, and when the ice making mold is placed upside down in the box body, the positioning column is inserted into the positioning groove to position the supported part of the ice making mold. The positioning column extends into the positioning groove, so that the ice making mold can be limited when ice cubes are demoulded, the position stability of the ice making mold is guaranteed, and ice detachment is facilitated.
Preferably, the support structure comprises ribs and/or bosses provided on the inner wall of the box. The supporting structure is arranged at the edge of the box body and can form a whole with the side wall of the box body, so that the structural strength of the supporting structure is improved.
Preferably, the number of the ice making molds is multiple, and the ice making molds are stacked in the box body up and down; the upper end of the ice making mold is fixed with a stacking support plate, the lower end of the ice making mold is fixed with a stacking support groove, and when a plurality of ice making molds are stacked, the stacking support plate arranged on the ice making mold below is clamped into the stacking support groove arranged on the ice making mold above. The stacking support plate and the stacking support groove can ensure that the ice grids of the upper ice making mold and the lower ice making mold can not be stacked when the upper ice making mold and the lower ice making mold are stacked, and the relative positions of the two ice making molds are stable, so that the ice making effect is ensured.
Preferably, the ice making mold comprises a supporting portion and at least two forming portions, the supporting portion is arranged between the two forming portions, when the ice making mold is placed upside down on the box body, the supporting structure supports the supporting portion, and the forming portions are arranged in a suspended mode. The structure can ensure that the ice making mold has larger overall deformation by pressing the two forming parts when the ice is removed, so that ice blocks in the ice making mold are separated from the ice grids and fall into the box body, and the quick ice removal of the ice making mold is completed; and the two forming parts are far away from each other, so that larger deformation can be generated.
Preferably, the support structure comprises a plurality of bosses arranged on the bottom surface of the box body. The plurality of bosses can increase the supporting stability of the ice making mold during ice shedding.
Preferably, the length direction of the boss is parallel to the diagonal direction of the box body; or the length direction of the boss is parallel to the length direction of the box body; or the length direction of the boss is parallel to the width direction of the box body. The structure can support the ice making mould in going on in one direction, increases the support position, increases support stability, can press the ice making mould in the both sides of boss, and the boss of following a direction extension is less to the influence of ice making mould deformation, does not influence the deformation of ice making mould and takes off ice.
Preferably, the plurality of bosses are arranged on the bottom surface of the box body at intervals, and the supporting parts corresponding to the plurality of bosses are arranged between the two forming parts.
Preferably, the ice-making box further comprises an ice-removing component, and a bulge part for extruding the ice-making mold is arranged on the ice-removing component. The deicing component can demold ice cubes in the ice making mold through the bulge, so that the direct contact between hands and the ice making mold is avoided, and the ice making mold is more sanitary.
Drawings
FIG. 1 is an exploded view of a first configuration of the present invention;
FIG. 2 is an exploded view of a second configuration of the present invention;
FIG. 3 is a schematic view of the ice-making mold of the present invention in a reversed position in the box body;
fig. 4 is a sectional view illustrating a case in which an ice-making mold of the present invention is reversely placed;
fig. 5 is a sectional view of the ice-making mold according to the present invention when it is placed in the box body in a forward direction;
FIG. 6 is an enlarged view of a portion of FIG. 5 at A;
FIG. 7 is a schematic structural view of an ice-shedding component of the present invention;
fig. 8 is a schematic structural view of an ice-making mold in embodiment 3;
FIG. 9 is a schematic view of the structure of embodiment 3;
FIG. 10 is a first structural view of the cartridge in example 3;
FIG. 11 is a second construction diagram of the cartridge in embodiment 3;
FIG. 12 is a third schematic view of the cartridge in embodiment 3.
In the figure: box body 1, opening 1.1, bearing structure 1.2, supplementary bearing structure 1.3, brace rod 1.4, ice-making mould 2, top surface 2.1, the mouth of deicing 2.2, shaping portion 2.3, surrounding edge 2.4, supporting part 2.5, connecting plate 2.6, first supporting slot 2.7, constant head tank 3, reference column 4, pile up backup pad 5, pile up supporting slot 6, the part of deicing 7, bellying 7.1, keep off muscle 8, dodge hole 9, boss 10, protruding board 11.
Detailed Description
The invention is further described with reference to the accompanying drawings and specific embodiments.
Example 1:
as shown in fig. 1, fig. 2, fig. 3 and fig. 4, an ice making box comprises a box body 1 and an ice making mold 2, wherein an opening 1.1 is formed in the box body 1, the ice making mold 2 comprises a top surface 2.1 provided with a plurality of ice removing openings 2.2, a supporting structure 1.2 is fixed in the box body 1, the horizontal projection of the top surface 2.1 of the ice making mold 2 is located in the horizontal projection range of the opening 1.1, and when the ice making mold 2 is placed upside down in the box body 1 in a state that the top surface 2.1 faces downwards, at least the top surface 2.1 of the ice making mold 2 is located in the box body 1 and is locally supported by the supporting structure 1.2, so that the ice making mold 2 can be integrally deformed to remove ice when being pressed.
In the above technical solution, the ice making mold 2 is made of hard plastic, such as PE, PP, and the like. The ice making mould 2 is provided with a plurality of ice grids for making ice. The deicing port 2.2 is arranged on the ice tray, and is the deicing port 2.2 when the ice making die is used for deicing, and is the water filling port when the ice making die is used for adding water. The shape and size of the box body 1 are matched with those of the ice-making mold 2. The utility model provides an ice making process of ice making box: water, during ice making liquid such as fruit juice pours into ice making mould 2 into from taking off ice mouthful 2.2, the box body 1 is put into with top surface 2.1 state up to ice making mould 2 of splendid attire ice making liquid, treats that the ice making box accomplishes and takes out ice making mould 2 after freezing to with ice making mould 2 with top surface 2.1 state down inversion in box body 1, extrude ice making mould 2 downwards, utilize the whole deformation of ice making mould 2 to make the ice-cube drop, realize taking off ice fast.
Because the horizontal projection of 2.1 top surfaces of ice-making moulds is located the horizontal projection scope of 1.1 opening of box body 1, when the ice-removing, at least 2.1 top surfaces of ice-making moulds are located in 1 box body and are supported by 1.2 local support structures, because of the ice-removing opening 2.2 is arranged on 2.1 top surfaces, the ice-removing process is finished in 1 box body, the hand can not contact the ice block, the pollution of the ice block is prevented, and the ice block can not splash outside 1 box body.
Since at least the top surface 2.1 of the ice-making mold 2 is located in the case 1 and is partially supported by the support structure 1.2, this design is advantageous in that: firstly, an extra structure is not required to be designed on the ice making mold 2, the external shape of the ice making mold 2 is simplified, the attractiveness is improved, and the cleaning is convenient, secondly, the support structure 1.2 arranged in the box body 1 forms local support for the ice making mold 2, so that extra operation is not required when the ice making mold 2 is taken and placed, and the use by a user is convenient; thirdly, when the ice is removed, the part of the ice making mold 2, which is positioned in the box body 1, is restrained by the box body 1, so that the large-amplitude transverse deviation can not occur, and no matter how the ice making mold 2 is extruded, the ice making mold 2 can not slide off the box body 1.
The utility model provides an ice-making box makes the height that the ice-making mould 2 at least part sinks in box body 1 thereby reduces the ice-making box, and on the one hand, when taking off ice, the reduction of the whole height of ice-making box can realize the conventional ice-taking off operation that the mesa was pressed in place to the different ice-making box of current ice-making box, for example both hands take up the ice-making box and centre gripping box body 1 and ice-making mould 2 from top to bottom (or be used for the deicing instrument that extrudeing ice-making mould 2), and the user can enjoy different ice-taking off enjoyment; on the other hand, will make ice mold 2 with top surface 2.1 state down after the deicing and invert the water on box body 1 can driping ice mold 2, the utility model discloses a scheme not only reduces the high requirement to making ice box parking space, also makes box body 1 can hold a plurality of ice mold 2, promotes the product practicality.
Preferably, as shown in fig. 1, 2 and 7, the ice-making housing further includes an ice-removing member 7, and a protrusion 7.1 for pressing the ice-making mold 2 is provided on the ice-removing member 7. The ice removing component 7 can remove the mold of the ice in the ice making mold 2 through the bulge part 7.1, so that the direct contact of hands with the ice making mold 2 is avoided, and the ice removing component is more sanitary. When the ice making mold 2 is arranged on the box body 1 in an inverted mode, the deicing component 7 applies pressure above the ice making mold 2 for deicing, and the box body 1 is provided with a blocking rib 8 for limiting the downward pressing displacement of the deicing component 7. The stopper rib 8 can limit the pressing position of the deicing member 7 to prevent the ice making mold 2 from being excessively damaged by pressing. And the part of the ice making mold 2 supported by the support is provided with an avoiding hole 9 for avoiding the bulge part 7.1 when the ice making mold 2 is placed into the box body 1 in the forward direction. Dodge the groove and can dodge pressing the post, increase the space utilization in the direction of height in the box body 1.
The deicing component 7 may be a separate component, or may be an upper cover of the ice making housing.
Example 2:
as shown in fig. 1, 2, 3 and 4, in embodiment 1, the ice-making mold 2 includes a forming portion 2.3 and a peripheral edge 2.4 provided at a peripheral edge of the forming portion 2.3, and when the ice-making mold 2 is placed upside down in the case 1, the supporting structure 1.2 at least supports the peripheral edge 2.4 at two opposite sides of the ice-making mold 2, and a portion where the peripheral edge 2.4 is supported is spaced from the forming portion 2.3. The structure can make bearing structure 1.2 be in the border position of box body 1, and the intermediate position in the box body 1 can not set up bearing structure 1.2, makes the intermediate position in the box body 1 can be more complete, makes things convenient for the ladle to stretch into and gets ice in the box body 1. And the supporting structure 1.2 is positioned at the edge of the box body 1 and can form a whole with the side wall of the box body 1, so that the structural strength of the supporting structure 1.2 is increased.
Preferably, a line connecting portions where the opposite side peripheral edges 2.4 of the ice making mold 2 are supported passes through the center of the molding portion 2.3. The structure can ensure that the forming parts 2.3 of the ice-making mould 2 are symmetrically distributed at two sides of the connecting line of the supporting parts, and the two sides can be pressed at the same time of ice removal, thereby not only keeping the stress balance of the ice-making mould 2, but also ensuring the position stability of the ice-making mould 2 during ice removal; but also can increase the deformation of the ice making mould 2, which is convenient for ice removal.
In one embodiment, the edge profile of the ice making mold 2 is polygonal, and when the ice making mold 2 is placed upside down on the box body 1, the supporting structure 1.2 is supported at two diagonal positions in the ice making mold 2. The structure can make the supporting structures 1.2 far away from each other, so that the ice-making mold 2 is stably supported by the supporting structures 1.2; and the support is arranged at the corner position, so that the support of the opposite side position can be reduced, and the position near the side can be more easily deformed during deicing and pressing, thereby facilitating deicing.
Preferably, as shown in fig. 1, the ice making mold 2 has a quadrangular structure, the number of the support structures 1.2 is two, and two support structures 1.2 are disposed at opposite corners of the ice making mold 2. The quadrilateral structure is in a common shape, and is convenient to manufacture and use. Two bearing structure 1.2 set up on the diagonal angle of system ice mould 2, can make unsettled position keep away from each other, produce as big as possible deformation volume when pressing, are convenient for the ice-cube drawing of patterns, and two bearing structure 1.2 can form better support.
Preferably, as shown in fig. 1 and 2, the ice making mold 2 is supported by the support structure 1.2 when being placed in the box body 1 in the forward direction. The structure can enable the ice making mold 2 to be positively placed in the box body 1 and suspended in the air, an ice storage space is formed below the ice making mold, and normal ice making and ice removing can be carried out even if ice blocks are left in the box body 1.
In one embodiment, as shown in fig. 2, an auxiliary support structure 1.3 is further disposed on the box body 1, when the ice making mold 2 is placed in the box body 1 in the forward direction, the support structure 1.2 and the auxiliary support structure 1.3 support together, and when the ice making mold 2 is placed in the box body 1 in the upside-down direction, an avoiding gap is disposed between an edge of the ice making mold 2 and the auxiliary support structure 1.3. Auxiliary stay structure 1.3 can increase the stability of system ice mould 2 when system ice mould 2 forward is put into box body 1, and when just taking off ice not with system ice mould 2 contacts, does not influence system ice mould 2 deformation. The support structure 1.2 comprises a boss 10 for supporting the inverted ice making mold 2 and a boss plate 11 for supporting the right-side ice making mold 2. When the ice tray mold 2 is placed in the box body 1 in the forward direction, the third supporting member 7 is supported by the boss 10, and the second supporting member 4 is supported by the boss 11.
In another embodiment, as shown in fig. 1, a supporting rib 1.4 is provided on the upper side wall of the box body 1, a connecting plate 2.6 protruding downwards is provided on the surrounding edge 2.4 of the ice making mold 2, a first supporting groove 2.7 adapted to the supporting rib 1.4 is provided on the connecting plate 2.6, and when the ice making mold 2 is placed in the box body 1 in the forward direction, the supporting rib extends into the first supporting groove and supports the connecting plate. The support ribs 1.4 can increase the stability of the ice making mold 2 when the ice making mold 2 is placed into the box body 1 in the forward direction, and do not contact with the ice making mold 2 during ice shedding, so that the deformation of the ice making mold 2 is not influenced.
In one embodiment, the supporting structure 1.2 is provided with a positioning groove 3, the portion of the ice-making mold 2 supported by the supporting structure is provided with a positioning column 4, and when the ice-making mold 2 is placed upside down on the box body 1, the positioning column 4 is inserted into the positioning groove 3 to position the portion of the ice-making mold 2 supported by the supporting structure. The positioning column 4 extends into the positioning groove 3, so that the ice making mold 2 can be limited when ice cubes are demoulded, the position stability of the ice making mold 2 is guaranteed, and ice can be conveniently removed.
In another embodiment, as shown in fig. 1, the location groove 3 is provided at the location where the ice-making mold 2 is supported, the supporting structure 1.2 is provided with the location column 4, and when the ice-making mold 2 is placed upside down in the box body 1, the location column 4 is inserted into the location groove 3 to locate the location where the ice-making mold 2 is supported. The positioning column 4 extends into the positioning groove 3, so that the ice making mold 2 can be limited when ice cubes are demoulded, the position stability of the ice making mold 2 is guaranteed, and ice can be conveniently removed.
Preferably, as shown in fig. 1 and 2, the support structure 1.2 comprises ribs and/or bosses provided on the inner wall of the box 1. The supporting structure 1.2 is located at the edge of the box body 1 and can form a whole with the side wall of the box body 1, so that the structural strength of the supporting structure 1.2 is improved.
Preferably, as shown in fig. 5 and 6, the number of the ice-making molds 2 is plural, and the plural ice-making molds 2 are stacked up and down in the case 1; the upper end of the ice making mold 2 is fixed with a stacking support plate 5, the lower end of the ice making mold 2 is fixed with a stacking support groove 6, and when a plurality of ice making molds 2 are stacked, the stacking support plate 5 arranged on the lower ice making mold 2 is clamped into the stacking support groove 6 arranged on the upper ice making mold 2. The stacking of the plurality of ice making molds 2 can make full use of the space within the case body 1, improving ice making efficiency. The stacking support plate 5 and the stacking support groove 6 can prevent the ice grids of the upper and lower ice making molds 2 from being stacked when the upper and lower ice making molds 2 are stacked, and the relative positions of the two ice making molds 2 are stable, thereby ensuring the ice making effect. It will be appreciated that the positions of the stack support plate 15 and the stack support slot 14 can be equivalently interchanged to achieve the same technical result.
Example 3:
as shown in fig. 8 and 9, based on embodiment 1, the ice making mold 2 includes a supporting portion 2.5 and two forming portions 2.3, the supporting portion 2.5 is disposed between the two forming portions 2.3, when the ice making mold 2 is placed upside down on the box body 1, the supporting structure 1.2 supports the supporting portion 2.5, and the forming portions 2.3 are suspended. The structure can ensure that the ice making mold 2 generates larger overall deformation by pressing the two forming parts 2.3 when the ice is removed, so that ice blocks in the ice making mold 2 are separated from ice grids and fall into the box body 1, and the rapid ice removal of the ice making mold 2 is completed; and the two forming parts 2.3 are far away from each other, so that larger deformation can be generated.
Preferably, as shown in fig. 12, the support structure 1.2 comprises a plurality of bosses provided on the bottom surface of the casing 1. The plurality of bosses may increase the support stability of the ice-making mold 2 at the time of ice shedding. A plurality of boss interval sets up on 1 bottom surface of box body, and the supporting part 2.5 that corresponds with a plurality of boss all sets up between two wherein shaping portions 2.3.
In one embodiment, as shown in fig. 11, the length direction of the boss is parallel to the diagonal direction of the case body 1. In another embodiment, as shown in fig. 10, the length direction of the boss is parallel to the length direction of the case body 1. In another embodiment, as shown in fig. 12, the length direction of the boss is parallel to the width direction of the case 1. The structure can support ice-making mould 2 in going on in one direction, increases the support position, increases and supports stability, can press ice-making mould 2 in the both sides of boss, and the boss of extending along a direction is less to the influence of ice-making mould 2 deformation, does not influence the ice-making mould 2 deformation and takes off the ice.

Claims (14)

1. The utility model provides an ice making box, includes box body and ice making mould, be equipped with the opening on the box body, ice making mould is including the top surface that is equipped with a plurality of deicing mouth, a serial communication port, be equipped with bearing structure in the box body, the horizontal projection of the top surface of ice making mould is located open-ended horizontal projection within range, when ice making mould is arranged in the box body with top surface down state upside down, at least the top surface of ice making mould is located the box body and quilt bearing structure local support to can produce whole deformation when making ice making mould pressurized and be used for the deicing.
2. The ice making box of claim 1, wherein the ice making mold comprises a forming portion and a peripheral edge disposed on a peripheral edge of the forming portion, and when the ice making mold is placed upside down on the box body, the supporting structure at least supports the peripheral edge on two opposite sides of the ice making mold, and the peripheral edge is separated from the forming portion by the supporting portion.
3. An ice making box according to claim 2, wherein a line connecting the supported portions of the opposite side margins of the ice making mold passes through the center of the forming portion.
4. An ice making box according to claim 1, wherein said ice making mold is polygonal, and when said ice making mold is placed upside down on said box body, said support structure is supported at two diagonal positions in said ice making mold.
5. An ice making box according to claim 1, wherein said ice making mold is supported by said support structure when placed forwardly within said box.
6. The ice making box according to claim 1, wherein an auxiliary support structure is further arranged on the box body, the ice making mold is supported by the support structure and the auxiliary support structure when being placed in the box body in the forward direction, and an avoiding gap is arranged between the edge of the ice making mold and the auxiliary support structure when the ice making mold is placed in the box body in the inverted direction; or, be equipped with the brace rod on the lateral wall on the box body, be equipped with the connecting plate of downward bulge on the surrounding edge of ice-making mould, be equipped with the first supporting slot with the brace rod adaptation on the connecting plate, when ice-making mould forward place in the box body, the brace rod stretches into first supporting slot and supporting connection board.
7. The ice making box according to claim 1, wherein one of the supporting structure and the supported portion of the ice making mold is provided with a positioning groove, and the other is provided with a positioning post, and when the ice making mold is placed upside down in the box body, the positioning post is inserted into the positioning groove to position the supported portion of the ice making mold.
8. An ice making box according to claim 1, wherein said support structure comprises ribs and/or bosses provided on the inner wall of the box body.
9. The ice making box according to claim 1, wherein the number of the ice making molds is multiple, and the multiple ice making molds are stacked up and down in the box body; the upper end of the ice making mold is fixed with a stacking support plate, the lower end of the ice making mold is fixed with a stacking support groove, and when a plurality of ice making molds are stacked, the stacking support plate arranged on the ice making mold below is clamped into the stacking support groove arranged on the ice making mold above.
10. The ice making box of claim 1, wherein the ice making mold comprises a support portion and at least two forming portions, the support portion is disposed between two of the forming portions, the support structure supports the support portion when the ice making mold is placed upside down on the box body, and the forming portions are suspended.
11. An ice making box according to claim 10, wherein said support structure comprises a plurality of bosses provided on the bottom surface of the box body.
12. The ice making box of claim 11, wherein the length direction of the boss is parallel to the diagonal direction of the box body; or the length direction of the boss is parallel to the length direction of the box body; or the length direction of the boss is parallel to the width direction of the box body.
13. The ice making box of claim 11, wherein the plurality of bosses are spaced apart from each other on the bottom surface of the box body, and the supporting portions corresponding to the plurality of bosses are disposed between two of the forming portions.
14. The ice making box according to any one of claims 1 to 13, further comprising an ice removing member, wherein the ice removing member is provided with a protrusion for pressing the ice making mold.
CN202222256688.2U 2022-08-26 2022-08-26 Ice making box Active CN218296330U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222256688.2U CN218296330U (en) 2022-08-26 2022-08-26 Ice making box

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