CN110236414B - Push-in type high-body thermal insulation cabinet - Google Patents

Push-in type high-body thermal insulation cabinet Download PDF

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Publication number
CN110236414B
CN110236414B CN201910551640.4A CN201910551640A CN110236414B CN 110236414 B CN110236414 B CN 110236414B CN 201910551640 A CN201910551640 A CN 201910551640A CN 110236414 B CN110236414 B CN 110236414B
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China
Prior art keywords
tray
object placing
grid
bottom support
cabinet
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CN201910551640.4A
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CN110236414A (en
Inventor
贺涛
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Shenzhen Century Cookware Co ltd
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Shenzhen Century Cookware Co ltd
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J39/00Heat-insulated warming chambers; Cupboards with heating arrangements for warming kitchen utensils
    • A47J39/006Heat-insulated warming chambers; Cupboards with heating arrangements for warming kitchen utensils for either storing and preparing or for preparing food on serving trays, e.g. heating, thawing, preserving

Abstract

The invention discloses a push-in type high-rise heat preservation cabinet, which comprises a cabinet body and a cabinet door, wherein the front side and the rear side of the cabinet body are communicated to form an opening, a plurality of object placing units and a supporting component used for supporting the object placing units to be horizontally arranged are arranged in the cabinet body along the vertical direction, adjacent object placing units are in butt fit, the object placing units can be pushed out towards the opening direction, each object placing unit comprises a bottom support and a tray, the tray is arranged above the bottom support, a vertical grid is arranged on the surface of one side of the bottom support, opposite to the tray, of the bottom support, grid grooves matched with the grids are formed in the tray, the grids penetrate through the grid grooves and extend towards the direction of the adjacent upper object placing units, the object placing units further comprise driving mechanisms, and the tray can move towards or away. This high cabinet of push-in type puts the thing unit through setting up, forms a plurality of relatively independent spaces in same thing unit of putting, avoids influencing each other between the food, is favorable to improving the food quality after keeping warm.

Description

Push-in type high-body thermal insulation cabinet
Technical Field
The invention relates to kitchen equipment, in particular to a push-in type high-body heat preservation cabinet.
Background
The high-rise heat preservation cabinet is generally applied to kitchens of starred hotels or large hotels, and can be used for heat preservation of pot rice, heat preservation of soup, heat preservation of dishes, heating of pots, high-temperature disinfection of tableware, unfreezing of food and the like.
As shown in fig. 1, the push-in type high-rise thermal insulation cabinet in the prior art comprises a cabinet body 1 and a cabinet door 2 rotatably connected to one side of the cabinet body 1, wherein a partition is arranged in the cabinet body 1, the partition divides the internal space of the cabinet body 1 into an article placing area 4 and a circulation area 3, the circulation area 3 is arranged above the article placing area 4, a fan 5 is arranged in the circulation area 3, a plurality of horizontally arranged article placing discs 6 are arranged in the article placing area 4, the article placing discs 6 are erected in the article placing area 4 through brackets connected to the article placing discs 6 in the cabinet body 1, and articles to be thermally insulated or thawed are placed in the article placing discs 6.
Generally, articles to be preserved in temperature or thawed are placed in the article placing tray 6 in an unordered mode, different foods are affected mutually under the heating and heat preservation environment, the quality of the foods is reduced, and the defect of improvement exists.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a push-in type high-height cabinet, wherein a plurality of relatively independent spaces are formed in the same object placing unit through arranging the object placing units, so that mutual influence among foods is avoided, and the improvement of the quality of the heat-preserved foods is facilitated.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a push-in type high body thermal cabinet, includes the cabinet body and cabinet door, both sides link up in order to form the opening around the cabinet body, the cabinet is internal to be provided with a plurality of thing units and to be used for supporting the supporting component that the thing unit is the level setting of putting along vertical direction, and adjacent thing unit of putting is the butt cooperation, puts the thing unit and can release towards the opening direction, it includes collet and tray to put the thing unit, and the tray sets up in the collet top, the relative tray side surface of collet is provided with the grid of vertical form, set up the grid groove with grid matched with on the tray, the grid is worn to set up the grid groove and is put the thing unit direction towards adjacent upper strata and extend, puts the thing unit and still including actuating mechanism, the tray can be towards being close to or keeping.
By adopting the technical scheme, when the heat preservation cabinet normally preserves heat, the adjacent object placing units keep abutting and clinging to be beneficial to improving the space utilization rate of the interior of the cabinet body, when the food to be preserved is taken and placed, the cabinet door is opened, the object placing units containing the food to be preserved are pushed out towards the opening direction of any one side, and the object placing units on the upper layer adjacent to the object placing units are pushed out for a certain distance towards the opening direction of the other side, so that the two object placing units are staggered in the vertical direction, when the food is required to be taken and placed, the tray is controlled to move towards the direction far away from the collet through the driving mechanism, a certain space is formed between the collet and the tray, the position between the grid and the grid groove is relatively displaced, the grid is positioned in the space formed between the collet and the tray, the food is taken out of or placed on the tray, and because no partition of the, when needs heat preservation food, food is stable places behind the tray, through actuating mechanism control tray towards being close to collet direction displacement, and the collet draws close until hugging closely with the tray, and relative displacement takes place for the position between grid and the grid groove, and the grid extends to the tray top, forms a plurality of relatively independent spaces in same thing unit of putting, avoids influencing each other between the food, is favorable to improving the food quality after keeping warm.
Furthermore, the driving mechanism comprises micro air cylinders distributed at four corners below the tray, the micro air cylinders are vertically arranged, and the ejection ends of the micro air cylinders are connected with the tray.
Through adopting above-mentioned technical scheme, the micro cylinder simple structure, convenient operation, when the position between needs adjustment tray and the collet, the control micro cylinder ejecting end upwards extends or contracts downwards and can reach the adjustment purpose, and the micro cylinder in four corners is favorable to the evenly distributed of power, and then improves the stability of supporting.
Further, be provided with on the collet and hold the chamber, miniature cylinder with hold the chamber one-to-one and set up in holding the intracavity.
Through adopting above-mentioned technical scheme, at the in-process that keeps warm, microcylinder (including its ejecting end) draws in completely and holds the intracavity, and then ensures that the tray can keep the butt with the collet upper surface, and the collet supports the food weight of tray and top with it, avoids the ejecting end atress of microcylinder, is favorable to prolonging its life, and simultaneously, can also reduce the thickness of putting the thing unit as far as, can place more thing unit of putting in the internal portion of cabinet, is favorable to improving space utilization.
Furthermore, be provided with articulated seat and realize the rotation between the two through it between miniature cylinder ejection end and the tray and be connected.
Through adopting above-mentioned technical scheme, the setting of articulated seat can avoid tray and miniature cylinder ejecting end rigid fit, makes the hookup location possess certain activity space, is favorable to prolonging the thing unit life of putting.
Further, the supporting component comprises rolling grooves located on the left side and the right side of the object placing unit, and rolling wheels matched with the rolling grooves are arranged on the left side and the right side of the bottom support.
Through adopting above-mentioned technical scheme, when putting the thing unit and need shifting out or push, can realize through the cooperation of rolling groove and gyro wheel, rolling groove, gyro wheel simple structure, easily the installation is seted up.
Further, the collet includes the bottom plate, and the bottom plate edge upwards extends there is the safe edge, and when putting the thing unit and not release, the tray inlays and locates in the collet and with bottom plate looks butt.
Through adopting above-mentioned technical scheme, the safe edge can play certain the sheltering from about to the food on the tray on the one hand, avoids dropping, and the safe edge can also cooperate with the grid simultaneously, forms a plurality of relatively independent spaces of placing jointly.
Further, an inner cavity is formed in the bottom support, and an infrared heater is arranged in the inner cavity.
Through adopting above-mentioned technical scheme, infrared heater heats the heat preservation through the mode of radiation heat transfer, and infrared heater has better penetrating power, and heat conduction efficiency is higher, and the rapid and higher safety in utilization that has of intensification just lies in the collet inner chamber, and infrared heater that lies in the collet inner chamber not only can heat the heat preservation to this food in putting the thing unit, can also heat the heat preservation to the food in its adjacent lower intraformational thing unit of putting simultaneously.
Furthermore, an annular water filtering groove is formed in the edge of the inner side of the bottom support, and water filtering holes are formed in one side, close to the cabinet door, of the annular water filtering groove.
Through adopting above-mentioned technical scheme, when needs wash the collet or unfreeze food, the inside water of collet flows to drainage hole department along annular drainage groove, flows through the drainage hole, plugs up drainage hole with the stopper in the heat preservation process, when putting the thing unit and being released the internal portion of cabinet, extracts the stopper and carries out the inside clearance of collet.
Furthermore, the grid comprises a plurality of groups of first vertical plates and second vertical plates which are perpendicular to each other, and the groups of first vertical plates and the groups of second vertical plates integrally form at least one group of # -shaped structures.
Through adopting above-mentioned technical scheme, constitute the grid through a plurality of group's riser one and riser two jointly to form a plurality of relatively independent spaces, can place different food in the space, grid simple structure easily installs the constitution.
Furthermore, when the object placing unit is not pushed out, the grid is abutted against the object placing unit bottom support on the upper layer adjacent to the grid.
Through adopting above-mentioned technical scheme, the grid is put thing unit collet looks butt with the upper strata, makes the collet can play the effect of lid, and further improvement space independence can effectively reduce thermal scattering and disappearing simultaneously.
Compared with the prior art, the invention has the advantages that:
(1) the high-rise heat preservation cabinet is provided with the drawer type object placing units, and the adjacent object placing units are kept close to each other, so that the heat preservation cabinet has higher space utilization rate;
(2) the high-rise heat preservation cabinet is provided with the storage units, so that a plurality of relatively independent spaces are formed in the same storage unit, mutual influence among foods is avoided, and the quality of the heat-preserved foods is improved;
(3) this high-rise thermal cabinet puts the thing unit through setting up, puts the thing unit including collet, tray and grid, through adjusting the relative position between collet and the tray for the thermal cabinet is getting to put food and has better convenience.
Drawings
FIG. 1 is a front view of a push-in high-profile thermal chest of the prior art;
FIG. 2 is a schematic structural view of the present invention (mainly used to show the state of the thermal cabinet when the storage unit is pushed out);
fig. 3 is a front view of the present invention (a state where the cabinet door is opened);
FIG. 4 is a schematic view of a storage unit according to the present invention;
FIG. 5 is a schematic view of a portion of the storage unit of the present invention (primarily for the components inside the tray);
FIG. 6 is a schematic view of a partial structure of the storage unit according to the present invention (mainly used for showing the structure of the bottom plate surface under the tray);
fig. 7 is an enlarged view of fig. 6 at a (mainly for embodying the driving mechanism and the annular water drainage groove);
fig. 8 is a cross-sectional view of a soleplate of the invention (primarily intended to embody an infrared heater).
Reference numerals: 1. a cabinet body; 2. a cabinet door; 3. a circulation zone; 4. an article placement area; 5. a fan; 6. placing a tray; 7. an article placing unit; 71. a bottom support; 711. a base plate; 7111. an inner cavity; 712. protecting edges; 72. a tray; 721. a grid groove; 73. a grid; 731. a first vertical plate; 732. a second vertical plate; 81. a rolling groove; 82. a roller; 9. a handle; 10. an annular water filtering groove; 101. water filtering holes; 11. an accommodating chamber; 12. a micro cylinder; 13. a hinged seat; 14. an infrared heater.
Detailed Description
The invention is described in detail below with reference to the figures and examples.
As shown in fig. 2 and 3, a push-in type high-rise cabinet comprises a cabinet body 1, wherein the front side and the rear side of the cabinet body 1 are communicated with each other and form openings on two sides, a double-opening cabinet door 2 is rotatably connected to the opening, the inner space of the cabinet body 1 is separated into an article placing area 4 and a circulating area 3 through a partition plate, the circulating area 3 is positioned on the placing area, a fan 5 is arranged in the circulating area 3, an air outlet of the fan 5 faces the article placing area 4, a plurality of horizontal placing units 7 are arranged in the article placing area 4, and articles to be kept warm or thawed are placed in the placing units 7.
As shown in fig. 2 and 4, the storage unit 7 is of a drawer type structure as a whole, the left and right sides of the storage unit 7 are provided with the rollers 82, the inner wall of the cabinet body 1 is provided with the rolling grooves 81 matched with the rollers 82, the storage unit 7 can be horizontally pushed out through the arrangement of the rollers 82 and the rolling grooves 81, and the thermal insulation cabinet adopts a structure with openings at two sides, so that the storage unit 7 can be pushed out towards any side, and the front and rear sides of the storage unit 7 are provided with the handles 9 for facilitating force application.
As shown in fig. 4 and 5, the storage unit 7 comprises a bottom base 71, a tray 72 and a grid 73 which are horizontally arranged, the bottom base 71 is integrally in a box-shaped structure, the bottom base 71 comprises a bottom plate 711 and a protective edge 712 which vertically extends upwards along the edge of the bottom plate 711, the tray 72 is in a plate-shaped structure, the tray 72 is located in the range formed by the protective edge 712, the grid 73 vertically extends upwards and is fixedly connected to the bottom plate 711, the upper end of the grid 73 is abutted to the bottom support 71 of the adjacent upper-layer object placing unit 7, the grid 73 comprises a plurality of groups of vertical plates I731 and vertical plates II 732 which are vertically arranged, the vertical plates I731 and the vertical plates II 732 are vertically arranged, a single group of vertical plates I731 and the vertical plates II 732 are in an L-shaped structure, a certain interval space is kept between the vertical plates I731 and the vertical plates II 732, the plurality of groups of vertical plates I731 and the vertical plates II 732 form at least one group of # -shaped structures, and each single # -shaped structure comprises six groups of vertical plates I731 and vertical plates.
As shown in fig. 2, a grid slot 721 is formed in the tray 72, the grid 73 can be inserted into the grid slot 721, when the placement unit 7 is not pushed out, the grid 73 is inserted into the grid slot 721, the grid 73 is positioned above the tray 72, the tray 72 abuts against the bottom plate 711 of the bottom base 71, and at this time, the grid 73 and the protective edge 712 together form a plurality of relatively independent spaces.
Referring to fig. 6 and 7, a driving mechanism is disposed between the tray 72 and the bottom support 71 for realizing vertical displacement of the tray 72, the driving mechanism includes micro cylinders 12 distributed at four corners below the tray 72, the micro cylinders 12 are vertically disposed, and the ejecting end of the micro cylinders 12 is connected to the tray 72. When the position between the tray 72 and the bottom support 71 needs to be adjusted, the ejection end of the micro cylinder 12 is controlled to extend upwards or retract downwards to achieve the purpose of adjustment. Be provided with on collet 71 and hold chamber 11, miniature cylinder 12 and the chamber 11 one-to-one that holds just set up in holding the intracavity 11. In the heat preservation process, the micro cylinder 12 (including the ejecting end thereof) is completely folded in the accommodating cavity 11, so that the tray 72 can be kept abutted against the upper surface of the bottom support 71, and the bottom support 71 supports the weight of the tray 72 and the food above the tray.
In order to avoid a rigid connection between the microcylinder 12 and the tray 72, a hinge mount 13 is provided between the ejection end of the microcylinder 12 and the tray 72 and enables a rotational connection therebetween. When the surface weight of the tray 72 is uneven, the hinge base 13 can enable the connecting position to have a certain moving space, so that the purpose of prolonging the service life of the micro cylinder 12 is achieved.
As shown in fig. 6 and 7, when the food is thawed or the bottom base 71 needs to be cleaned, in order to facilitate cleaning, an annular water filtering groove 10 is formed in the inner side edge of the bottom base 71, and a water filtering hole 101 is formed in one side of the annular water filtering groove 10, which is close to the cabinet door 2. The inside water of collet 71 flows to drainage hole 101 department along annular drainage groove 10, flows out through drainage hole 101, and it can to plug drainage hole 101 with the stopper in the heat preservation process.
As shown in fig. 8, an inner cavity 7111 is provided in the bottom plate 711, an infrared heater 14 is provided in the inner cavity 7111, and heating and heat preservation are performed by the infrared heater 14, and the infrared heater 14 positioned in the inner cavity 7111 of the bottom plate 711 can heat and preserve heat of the food in the storage unit 7 of the main storage unit and can also heat and preserve heat of the food in the storage unit 7 of the adjacent lower layer because the adjacent storage units 7 are closely attached to each other.
The specific implementation process comprises the following steps: when the heat preservation cabinet is normally heat-preserved, the adjacent object placing units 7 are kept in a butting and clinging state, when the food to be heat-preserved is taken out, the food at the position can be vegetables and meat to be thawed or a soup cooking pot to be heat-preserved and heated, the cabinet door 2 is firstly opened, the object placing unit 7 containing the food to be heat-preserved is pushed out towards an opening direction of any one side, the object placing unit 7 at the upper layer adjacent to the object placing unit 7 is pushed out towards an opening direction of the other side for a certain distance, so that the two object placing units 7 are staggered in the vertical direction, the micro cylinder 12 controls the tray 72 to vertically move upwards, a certain space is formed between the bottom support 71 and the tray 72, the position between the grid 73 and the grid groove 721 is relatively changed, the grid 73 is positioned in the space formed between the bottom support 71 and the tray 72, and at the moment, the independent space generated, the food is taken out from the tray 72, and the taking and placing process is more convenient because the grid 73 is not used for separating;
when heat preservation food needs to be placed, the process is basically consistent with the process for taking out the food to be heat preserved, after the tray 72 is vertically pushed upwards by the micro cylinder 12, the food is stably placed on the upper surface of the tray 72, the position overlapping with the grid groove 721 in the vertical direction needs to be avoided in the placing process, the tray 72 is controlled to vertically move downwards through the micro cylinder 12, the bottom support 71 and the tray 72 are closed until being attached tightly, the position between the grid 73 and the grid groove 721 is changed relatively, the grid 73 extends to the upper side of the tray 72, a plurality of relatively independent spaces are formed in the same placing unit 7, mutual influence among the food is avoided, and the improvement of the quality of the heat preserved food is facilitated.
The above description is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments, and all technical solutions belonging to the idea of the present invention belong to the protection scope of the present invention. It should be noted that modifications and embellishments within the scope of the invention may occur to those skilled in the art without departing from the principle of the invention, and are considered to be within the scope of the invention.

Claims (6)

1. The push-in type high-body thermal insulation cabinet comprises a cabinet body (1) and a cabinet door (2), and is characterized in that the front side and the rear side of the cabinet body (1) are communicated to form an opening, a plurality of object placing units (7) and a supporting component used for supporting the object placing units (7) to be horizontally arranged are arranged in the cabinet body (1) along the vertical direction, the adjacent object placing units (7) are in butt joint fit, the object placing units (7) can be pushed out towards the opening direction, each object placing unit (7) comprises a bottom support (71) and a tray (72), the tray (72) is arranged above the bottom support (71), a vertical grid (73) is arranged on the surface of one side of the bottom support (71) opposite to the tray (72), grid grooves (721) matched with the grid (73) are formed in the tray (72), the grid (73) penetrates through the grid grooves (721) and extends towards the direction of the adjacent upper object placing units (7), the storage unit (7) also comprises a driving mechanism, and the tray (72) can move towards the direction close to or far away from the bottom support (71) through the driving mechanism; the driving mechanism comprises micro cylinders (12) distributed at four corners below the tray (72), the micro cylinders (12) are vertically arranged, and the ejection ends of the micro cylinders (12) are connected with the tray (72); the bottom support (71) is provided with accommodating cavities (11), and the micro cylinders (12) correspond to the accommodating cavities (11) one by one and are arranged in the accommodating cavities (11); a hinged seat (13) is arranged between the ejection end of the micro cylinder (12) and the tray (72) and is used for realizing the rotary connection between the ejection end of the micro cylinder and the tray; an inner cavity (7111) is formed in the bottom support (71), and an infrared heater (14) is arranged in the inner cavity (7111).
2. The push-in type high-body thermal insulation cabinet according to claim 1, wherein the supporting component comprises rolling grooves (81) at the left and right sides of the storage unit (7), and rollers (82) matched with the rolling grooves (81) are arranged at the left and right sides of the bottom support (71).
3. A push-in type high-profile thermal container according to claim 1, wherein the bottom base (71) comprises a bottom plate (711), the edge of the bottom plate (711) extends upward to form a protective edge (712), and the tray (72) is embedded in the bottom base (71) and abuts against the bottom plate (711) when the storage unit (7) is not pushed out.
4. The push-in type high-rise thermal insulation cabinet as claimed in claim 1, wherein the inner side edge of the bottom support (71) is provided with a circular water filtering groove (10), and one side of the circular water filtering groove (10) close to the cabinet door (2) is provided with a water filtering hole (101).
5. The push-in type high-rise thermal insulation cabinet as claimed in claim 1, wherein the grid (73) comprises a plurality of sets of first vertical plates (731) and second vertical plates (732) which are perpendicular to each other, and the plurality of sets of first vertical plates (731) and second vertical plates (732) integrally form at least one set of # -shaped structure.
6. A push-in high-profile thermal chest as claimed in claim 1, characterised in that the grid (73) abuts the bottom support (71) of the unit (7) in the upper tier adjacent thereto when the unit (7) is not pushed out.
CN201910551640.4A 2019-06-24 2019-06-24 Push-in type high-body thermal insulation cabinet Active CN110236414B (en)

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