CN216569618U - Sandwich furnace - Google Patents
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- CN216569618U CN216569618U CN202122924823.1U CN202122924823U CN216569618U CN 216569618 U CN216569618 U CN 216569618U CN 202122924823 U CN202122924823 U CN 202122924823U CN 216569618 U CN216569618 U CN 216569618U
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Abstract
Sandwich furnace, its characterized in that includes: the large body is used for accommodating the lifting heating component to be rotationally connected with an external driving mechanism, the lifting heating component is in driving connection with the driving mechanism, two heating elements are respectively arranged above and below the lifting heating component, at least one of the first heating element and the second heating element is arranged in a vertical movement mode, and heating surfaces of the two heating elements move in parallel relatively; the lifting heating component consists of a heating cavity and a lifting heating mechanism, and the lifting mechanism is used for longitudinally moving the first heating element to move downwards to change the upper surface and the lower surface of the food to be heated in different sizes; elevating system and one of them heating member active link, the big body outside sets up one of them heating member of actuating mechanism drive and reciprocates in lifting heating subassembly, and the heating member setting that reciprocates is internal at lifting heating subassembly's heating chamber, and preparation sandwich can be frying in shallow oil, boiling food simultaneously, for the sandwich provides the batching edible material, accomplishes efficiently simultaneously, save time.
Description
Technical Field
The present invention relates generally to stoves, and more particularly to small cooking stoves.
Background
Hot sandwiches, especially breakfast sandwiches, are popular food items to be ordered in a restaurant or prepared at home. The thermal sandwich may include a plurality of distinct, separate filled portions arranged in layers between two sheets of bread. For example, the filling portions of a typical breakfast sandwich may include ham, bacon, sausage patties, vegetables, cheese, eggs, and the like, as well as various combinations thereof, with filling portions for hot sandwiches varying widely.
Preparing hot sandwiches, especially breakfast sandwiches, at home can be a complex and time consuming task. It is necessary to use a variety of instruments to prepare the individual parts separately and then combine them into a complete sandwich. For example, an oven may be used to bake english muffins and a microwave oven may be used to heat precooked ham. It may be desirable to cook eggs in a saucepan or frying pan device or the like on a cooktop appliance. The use of multiple appliances renders it difficult to coordinate the preparation of the individual portions to ensure that all of the individual portions are completed and ready at about the same time, thereby forming a complete sandwich in which all of the portions are properly cooked and at the desired temperature. In addition, the process of washing multiple appliances adds additional time, frustration, and complexity to the home cooking process.
It has not heretofore been found how to create a kitchen appliance capable of preparing a hot sandwich whereby all parts are heated, baked and/or cooked to present the fully assembled sandwich to a user. The appliance disclosed below achieves the above and other objects and overcomes at least the above-mentioned disadvantages of conventional kitchen appliances and methods for preparing hot sandwiches.
Disclosure of Invention
The utility model aims to provide a sandwich oven which is simple and reasonable in structure, safe and reliable, and has multiple functions of baking, frying, boiling and steaming, so as to overcome the defects in the prior art.
A sandwich oven designed for this purpose, comprising: the lifting heating assembly is in driving connection with the driving mechanism, the first heating element and the second heating element are respectively arranged above and below the lifting heating assembly, at least one heating element is arranged in a vertically moving mode, and the heating surfaces of the two heating elements move in parallel relatively;
the lifting heating component consists of a heating cavity and a lifting heating mechanism, the lifting mechanism is arranged outside the lifting heating component and is used for longitudinally moving the first heating element to move up and down to change the upper surface and the lower surface of the heating food with different heating height sizes; the lifting mechanism is movably connected with one of the heating parts, a driving mechanism is arranged outside the large body to drive one of the heating parts to move up and down in the lifting heating component, and the heating part moving up and down is arranged in the heating cavity and positioned at the upper part or the lower part of the heating cavity;
the lifting heating mechanism is provided with a first heating element which is arranged in a suspending mode and moves up and down on the upper portion of an inner cavity of the heating cavity to press and heat the upper surfaces of the foods with different thicknesses, or the lower portion of the lifting heating mechanism is provided with a first heating element which moves up and down on the bottom of the inner cavity of the heating cavity to lift and clamp the foods with different thicknesses and heat the bottoms of the foods. A lifting heating component with a lateral opening is arranged in the large body, wherein one heating element is arranged in the lifting heating component in a vertically moving mode, the other heating element is fixedly arranged on the lifting heating component, one heating element is parallel to the other heating element and moves up and down in parallel, and the heating height between the two heating surfaces is adjusted;
the left end and the right end of the lifting heating mechanism are provided with a lifting mechanism, and the lifting mechanism controls and drives the lifting heating mechanism to move up and down in the lifting heating assembly.
Actuating mechanism sets up at lift heating mechanism both ends and the horizontal swing joint of lift heating mechanism, the last lateral sliding third drive position that sets up of actuating mechanism, a sliding connection spare for driving lift heating mechanism moves along the elevating system longitudinal axis, it reciprocates at the inner chamber of heating the cavity to drive the first heating member on the lift heating mechanism, both ends set up the second drive position about the lift heating mechanism, the longitudinal movement hole on big body both sides is passed to the second drive position, the unsettled up-and-down motion of the heating surface of the at least parallel second heating member of second drive position up-and-down control lift heating mechanism on first heating member in the heating cavity, perhaps, the heating surface lifting motion of the at least parallel second heating member of first heating member on the second drive position up-and-down control lift heating mechanism in the heating cavity.
Heating cavity left and right sides wall upper portion sets up the socket, and the both ends pass socket swing joint elevating system longitudinal axis and remove about the lift heating mechanism for first heating member on the control heating cavity inner chamber moves heating opening middle part or bottom down longitudinally, perhaps, is used for the first heating member on the control heating cavity inner chamber to move heating opening middle part or top longitudinally.
Longitudinal strip-shaped moving holes are formed in two sides of the big body, a third driving position is arranged on the outer side of each moving hole, and the longitudinal strip-shaped moving holes and the transverse strip-shaped moving holes of the third driving position are arranged in a crossed mode and move up and down relatively; the lifting mechanism is a sliding rod or a folding frame, and the sliding rod or the folding frame is positioned outside the heating cavity.
The heating cavity is arranged on the lifting heating component, the left side wall and the right side wall of a heating opening of the heating cavity are provided with sockets, the driving connection positions at two ends of a first heating element on the lifting heating mechanism are arranged in the sockets in a limiting mode, the driving connection positions penetrate through the sockets and are fixedly connected with sliding connection pieces or integrally arranged, the sliding connection pieces are arranged outside the sockets, the sliding connection pieces are arranged on the lifting mechanism and are connected in a longitudinal moving mode, and the lifting heating mechanism stretches across the inner side and the outer side of the heating cavity.
The driving connecting positions at two ends of the first heating element are arranged outside the heating cavity and combined with the sliding connecting piece, the second driving position and the lifting mechanism to form a lifting heating mechanism moving longitudinally, or the driving connecting positions at two ends of the first heating element, the sliding connecting piece and the second driving position are integrally arranged and combined with the lifting mechanism to form a lifting heating mechanism moving longitudinally; the lifting mechanism is provided with a return spring.
One end of the second driving position is fixedly connected with the sliding connecting piece or integrally arranged, and the other end of the second driving position is transversely connected with a third driving position of the driving mechanism in a sliding manner; the lifting mechanism is fixed and limited outside the heating cavity or the upper end and the lower end of the lifting mechanism are respectively limited between the inner walls of the large body.
The driving mechanism is by setting up the handle, U type opening driving body is constituteed to first drive position, set up third drive position on the first drive position, the third drive position sets up at first drive position middle part for the drive spout, be located between rotation position and the handle, the rotation position and the big body both sides of first drive position afterbody are passed through axle and hole rotation and are connected, axle and hole set up respectively on rotation position and big body, the horizontal bar spout of third drive position sets up or horizontal oval setting, third drive position and second drive position sliding connection drive sliding connector or first heating member reciprocate.
Remove downthehole second drive position that sets up, second drive position passes and removes hole and sliding connection spare fixed connection, the drive connection position of the first heating member of sliding connection spare fixed connection, sliding connection spare swing joint elevating system reciprocates first heating member in the heating cavity, the heating surface of first heating member and the at least parallel heating of second heating member heating surface of heating cavity bottom, perhaps, the heating surface of first heating member and the at least parallel heating of second heating member heating surface at heating cavity top, sliding connection spare upper and lower end sets up sliding baffle and shelters from left and right sides socket opening in the heating cavity outside, it is thermal-insulated to close the inner chamber that prevents the thermal current to get into the big body in the heating cavity with partly thermal current at least.
Spring effort pushes down first heating member or with first heating member pulling downwards on first heating member, and the second drive position passes and removes the hole and slides along removing the hole and drive first heating member downstream or upward movement, and the size reduces about the open-ended opening of heating, and the second drive position drives the third drive position downwards and slides, causes actuating mechanism to rotate along main pivot or hole, and the handle is swung downwards and is sheltered from partly heating opening, and the suggestion heats the interior food of opening and can not take out.
The third driving position is transversely connected with the second driving position in a sliding mode, or the outer end of the second driving position is provided with a pulley which is transversely connected with the third driving position of the driving mechanism in a rolling mode.
It has simple structure reasonable, multi-functional use, assembles characteristics swift, dependable performance and long service life, can effectively raise the efficiency, and preparation sandwich can be frying in shallow oil simultaneously, boil food, for the sandwich provides the batching and eats the material, accomplishes efficiently simultaneously, save time.
Drawings
Fig. 1 is a schematic perspective exploded view of a heating chamber, a lifting heating assembly, a driving mechanism and a large body according to an embodiment of the present invention.
Fig. 2 is a schematic sectional view of a main body according to an embodiment of the present invention.
Fig. 3 is a schematic view of a first heating element exploded from the upper portion of a heating chamber in a general cross-sectional view according to an embodiment of the present invention.
Fig. 4 is an exploded view of a lift heater assembly according to an embodiment of the present invention.
Fig. 5 is a schematic side view of a larger body according to an embodiment of the present invention.
FIG. 6 is a schematic side cross-sectional view of a large body according to an embodiment of the present invention.
Fig. 7 is a schematic perspective view of a large body according to another embodiment of the present invention.
Fig. 8 is a schematic perspective view of a lifting heating assembly according to an embodiment of the utility model.
Fig. 9 is an exploded view of another embodiment of the elevating heating assembly according to the present invention.
Fig. 10 is a schematic exploded sectional view of a first heating element in a lower portion of a heating chamber according to an embodiment of the present invention.
Fig. 11 is a functional cross-sectional structural schematic view of the folding leg of the present invention.
In the figure: 1 is a big body, 2.21 is a first driving position (driving rod), 2.2 is a handle position, 2.20 is a cover plate, 2 is a third driving position (driving chute), 4 is an opening window, 5 is a heating opening, 6 is a driving mechanism, 7 is a first shell, 71 is a second shell, 8 is a socket, 9 is a heating cavity, 10 is an upper power coupler, 11 is an upper and lower heating space, 13 is an upper shell member, 14 is an upper heating tube, 15 is a folding frame, 16 is a lower shell member, 17 is a sliding connecting member, 171 is a pulley, 18 is a sliding rod, 19 is a lower heat insulation plate, 20 is a lower pressing strip, 21 is a lower heating tube, 22 is a spring, 23 is a second driving position, 24 is an opening baffle, 25 is a third heating member, 26 is an upper pressing strip, 27 is an upper cover plate, 28 is a first heating member, 29 is a third heating tube, 62 is a side cover, 61 is a rotating hole, 99 is a lifting heating member, 101 is a positioning portion, 102 is a rotating shaft, 104 is a moving hole, 105 is a hand pressing position, 111 is a lifting heating mechanism, 115 is a driving connecting position, 116 is a second heating member, 125 is a second sliding chute, 130 is a vacant position, 160 is a heat insulation positioning hole, 161 is a wire passing hole, 162 is a positioning plug, 172 is a sliding baffle plate, and 701 is a lower positioning part.
Detailed Description
The utility model is further described with reference to the following figures and examples.
Referring to fig. 1 to 11, the main body of the sandwich is formed by a first casing 71 and a second casing 7 which are covered with each other to form a large body 1 with an open front, and an upper power coupler 10 or a third heating element 25 and a third heating tube 29 are disposed on the upper portion of the first casing 71 to connect an external heating container, such as: electric products such as a pot, a kettle, a stirrer, a milk foam machine and the like are shown in figure 1, an opening window 4 is arranged at an opening position of a large body 1, moving holes 104 and rotating shafts 102 are arranged at two sides of the large body 1, the rotating shafts 102 are rotatably connected with rotating holes 61 of a driving mechanism 6, a second driving position 23 is slidably connected in the moving holes 104, the second driving position 23 penetrates through the moving holes 104 and is transversely and slidably connected with a third driving position 2, the second driving position 23 is vertically moved in the moving holes 104, a pressing position 105 on a first shell 71 and a handle position 2.2 of the driving mechanism 6 are rotated and relatively moved through the rotating holes 61 to pull up the driving mechanism 6, the rotating shafts 102 are arranged at the rear part of the moving holes 104, the moving holes 104 are positioned between the rotating shafts 102 and the opening side of the opening window 4, the third driving position 2 on the driving mechanism 6 drives the second driving position 23 to move upwards, the second driving position 23 drives a first heating element 28 to move upwards, the heating opening 5 on the big body 1 is longitudinally expanded upwards, when the driving mechanism 6 is put down, the first heating element 28 is pushed or pulled by the spring 22 to automatically move downwards to clamp the upper surface of the food, the purpose of heating up and down is realized, the lifting heating component 99 is formed by combining the heating cavity 9 and the lifting heating mechanism 111, the heating opening 5 on the lifting heating component 99 is matched and connected with the opening window 4 in a matching way, the lifting heating component 99 is fixed on the second shell 7, the second heating element 116 on the heating cavity 9 is formed by combining the lower shell 16 and the lower heating pipe 21, the heating cavity 9 is provided with the upper shell 13, the lower shell 16, the lower heating element 21, the lower pressing strip 20, the positioning plug 162, the lower heat insulation plate 19 and the heating opening 5, referring to figure 4, the first heating element 28 is arranged in the heating cavity 9, the upper shell 13 is arranged in an L shape, the pins are arranged on the upper shell 13 and are respectively inserted and fixedly connected with the upper holes of the lower shell 16 and the opening window 4, the lower casing 16 is U-shaped, and is through from front to back, the left and right sides are folded upwards and extended upwards, the top is bent outwards, the two sides of the lower casing 16 are provided with sockets 8, the lower part is provided with a heat insulation positioning hole 160, a positioning plug 162 is arranged in the heat insulation positioning hole 160 for positioning, the positioning plug 162 is fixedly connected with the lower heat insulation plate 19, the lower casing 16 is fixedly connected with the lower heat insulation plate 19, the positioning plug 162 blocks the heat insulation positioning hole 160 for heat insulation, so as to prevent food from entering a cavity between the main body 1 and the lifting heating assembly 99, the upper casing 13 is fixedly connected with the lower casing 16 to form a front opening heating opening 5, the heating opening 5 is fixedly connected with an opening window 4, the upper part of the upper casing 13 is provided with an upper cover plate 27 and an upper power supply coupler 10, the two sides of the upper part of the upper casing 13 are provided with vacant positions 130, the vacant positions 130 are arranged corresponding to the sockets 8, the slide rod 18 and the spring 22 are arranged in the vacant position 130 and are positioned outside the sockets 8, a slide bar 18 is fixed between the first shell 71 and the second shell 7 in an up-and-down positioning manner, a lifting heating mechanism 111 is connected with the slide bar 18 in a sliding manner, the bottom of the lower shell 16 is provided with a lower heating element 21 and a lower pressing strip 20, the lower pressing strip 20 presses and fixes the lower heating element 21 at the bottom of the lower shell 16, the lower heating element 21 can be sintered with the lower shell 16 or integrally formed by casting, the lower pressing strip 20 is fixedly connected with the lower shell 16 by screwing, the bottom of the lower shell 16 is provided with a lower heat insulation plate 19 for heat insulation, the lower heat insulation plate 19 is fixedly connected with the second shell 7, as shown in figures 3 and 10, the upper end of the side part of the lower shell 16 is provided with a wire passing hole 161 for power wire, the power wire inside the heating cavity 9 and the first heating element 28 swing in an up-and-down arc manner to prevent excessive bending, the lifting heating mechanism 111 is provided with the first heating element 28, the upper heating element 14, the sliding connecting element 17, the second driving position 23, the opening baffle 24 and the upper pressing strip 26, The pulley 171, the first heating element 28 is arranged in a square plane, the two ends are provided with the driving connecting position 115 to be fixedly connected with the sliding connecting piece 17, or the driving connecting position 115 and the sliding connecting piece 17 are arranged integrally, or the driving connecting position 115 and the sliding connecting piece 17 and the second driving position 23 are arranged fixedly, the driving connecting position 115 is arranged in the socket 8 to move up and down, the sliding connecting piece 17 is arranged outside the socket 8 to move up and down and shield the opening of the socket 8 to prevent food from leaking into the cavity of the big body 1 and the lifting heating component 99, the upper end and the lower end of the sliding connecting piece 17 are provided with the sliding baffle plate 172, the middle part is provided with a screw position to be fixedly connected with one end of the second driving position 23, the upper part of the sliding connecting piece 17 is fixedly connected with the driving connecting position 115, the sliding connecting piece 17 is arranged in a step shape, the upper part of the first heating element 28 is provided with the upper heating element 14 which is fixedly connected with the upper pressing strip 26, or the upper heating element 14 and the first heating element 28 are integrally cast or welded, the front part of the first heating element 28 is fixedly connected with the opening baffle 24, the opening baffle 24 is vertically arranged in a transverse strip shape, the opening baffle 24 moves up and down between the opening window 4 and the upper shell element 13, the opening baffle 24 shields the cavity opening of the first heating element 28 and the movement of the upper shell element 13, the upper heating element 14 is safely arranged to prevent leakage, the upper shell element 13, the lower shell element 16 and the first heating element 28 are arranged in a metal mode, the opening window 4 and the opening baffle 24 are arranged in a heat insulation mode through high-temperature plastics, the sliding rod 18 is made of a metal material and is longitudinally fixed between the positioning part 101 and the lower positioning part 701 in the cavity of the main body 1, the first heating element 28 on the lifting heating mechanism 111 is controlled to move up and down in parallel with the bottom of the lower shell element 16 in the heating cavity 9, the two end driving connecting positions 115 on the first heating element 28 fix the sliding connecting part 17 and the second driving position 23, the front surface is arched or the H-shaped, and the sliding connecting part moves up and down in the heating cavity 9 Moving or, the two ends of the first heating element 28 drive the connecting positions 115 to fix the sliding connector 17 in an arch shape or an H shape to move up and down outside the heating cavity 9, the sliding holes arranged on the first heating element 28 or the sliding connector 17 are sleeved with the sliding rods 18 to slide, so that the first heating element 28 and the heating zone at the bottom of the lower shell 16 are heated in parallel to form an upper heating space 11 with a variable height dimension, and the spring 22 pushes down or pulls down the two ends of the first heating element 28 to move down in parallel outside the heating cavity 9;
the driving mechanism 6 is arranged in a U shape, two sides of a handle position 2.2 on the driving mechanism 6 are bent to be provided with a first driving position 2.21, the tail ends of the two sides are provided with rotating holes 61, the middle part of the first driving position 2.21 is provided with a third driving position 2, the third driving position 2 is arranged in a transverse strip shape or a transverse oval shape, a side cover 62 is arranged on the first driving position 2.21, a cover plate 2.20 is arranged on the handle position 2.2 and is screwed and fixed, the third driving position 2 is connected with a second driving position 23 in a sliding way, a pulley 171 can be arranged between the third driving position 2 and the second driving position 23, a moving hole 104 is arranged in a longitudinal strip shape, the transverse strip shape of the third driving position 2 is arranged on the outer side of the moving hole 104 in a crossed way to move up and down, the rotating holes 61 arranged on the two sides of the driving mechanism 6 and the side cover 62 are movably and fixedly connected with the main body 1 through shafts and holes,
the lifting heating mechanism 111 is placed into an upper opening of the lower casing 16 from top to bottom, a first heating element 28 on the lifting heating mechanism 111 is correspondingly arranged on the inner side of the opening of the upper lower casing 16, a driving connection position 115 is arranged in a socket 8 on the side part of the lower casing 16, a sliding connection element 17 and a second driving position 23 connected with the driving connection position 115 are arranged outside the socket 8, the upper casing 13 is fixedly connected with the upper part of the lower casing 16 from top to bottom, the first heating element 28 is covered by the bottom of the upper casing 13, and the first heating element 28 passes through a sliding rod 18 or a folding frame 15, which is shown in fig. 11 and can move up and down between the lower casing 16 and the upper casing 13;
referring to fig. 2, 6 and 8, the sliding rod 18 passes through the empty position 130 of the upper casing 13, passes through the sliding hole of the first heating element 28 or the sliding hole of the sliding connector 17, passes through the positioning hole of the lower heat shield 19, and is sleeved with the lower positioning part 701 of the second casing 7, the upper part of the sliding rod 18 is sleeved with the positioning part 101 of the main body 1, the positioning part 101 and the second casing 7 of the upper power coupler 10 clamp the sliding rod 18 in the upper and lower positions, the lower part of the spring 22 pushes against the driving connection position 115 or the top of the sliding connector 17, the upper part of the spring 22 pushes against the inner wall of the main body 1 at the periphery of the positioning part 101, the upper casing 13 and the lower casing 16 cover the heating opening 5, five surfaces and a front opening, two sides are provided with the sockets 8, or the upper casing 13 and the lower casing 16 can be integrally provided with an opening at the front part, two sides are provided with the sockets 8, the heating opening 5 is fixedly connected with the periphery of the opening window 4, the heating cavity 9 and the lifting heating mechanism 111 are combined to form a lifting heating assembly 99, the handle position 2.2 is swept up and down in front of the opening window 4, the upper end and the lower end of the sliding connecting piece 17 are respectively provided with a sliding baffle 172, the sliding baffle 172 is close to the inner side of the moving hole 104 to slide and shield, the inner side of the sliding connecting piece 17 can also be provided with a sliding baffle 172 positioned outside the socket 8 to shield the socket 8, the first heating element 28 can be movably or slidably arranged at the upper part or the lower part of the heating cavity 9, when the first heating element 28 is arranged at the upper part of the heating cavity 9, the upper surface of the food is driven to be clamped and heated downwards by the spring 22 on the sliding rod 18 or the folding rack 15, when the first heating element 28 is arranged at the lower part of the heating cavity 9, the lower surface of the food is driven to be clamped and heated upwards by the spring 22 on the sliding rod 18 or the folding rack 15, the spring 22 is reset to drive the first heating element 28 to be lifted upwards or the spring 22 is reset to drive the first heating element 28 to move downwards, and the handle position 2.2.2 rotates along the rotating hole 61, the third driving position 2 drives the first heating member 28 to move upwards or downwards to increase the height of the opening of the heating opening 5, the third driving position 2 is arranged between the handle position 2.2 and the rotating hole 61 or the third driving position 2 is arranged at the tail end of the first driving position 2.21 at the rear part of the rotating hole 61, the slide bar 18 or the folding frame 15 is arranged at two sides outside the heating cavity 9, when the first heating member 28 is arranged at the lower part of the heating cavity 9, the lower heating pipe 21 of the heating cavity 9 is arranged at the upper part of the heating cavity 9, the lower heating pipe 21 and the upper heating pipe are arranged correspondingly up and down to form the upper and lower surfaces of the heating cavity 9 for heating food, the heating cavity 9 is provided with one or two-direction openings, the heating cavity 9 is formed by combining metal pieces or integrally stretching, the first heating member 28 can be arranged at the upper part or the lower part in the heating cavity 9, when the first heating member 28 is arranged at the upper part, the first heating member 28 and the upper heating pipe 14 generate heat together to heat and conduct and heat the upper surface of the food, when the first heating element 28 is arranged at the lower part, the first heating element 28 and the lower heating pipe 21 conduct and heat the lower surface of the food together, the first heating element 28 generates two heating effects, one presses the food and the other lifts the food, the first heating element 28 and the second heating element 116 are heated in a plane, at least two bending surfaces are arranged at two sides of the second heating element 116 or at least one heating opening 5 for placing the food is arranged on the second heating element 116, the upper shell element 13 and the lower shell element 16 are arranged at the upper part or the lower part of the heating cavity 9 along with the first heating element 28, the upper and lower positions of the upper shell element and the lower shell element are changed up and down, the third heating element 25 is arranged for flat plate heating or container heating, the first heating element 28 and the second heating element 116 are heated in a plane, convex and concave reinforcing ribs can be arranged at the upper part, the first heating element 28 and the second heating element 116 can be fixedly connected with the heating pipe or welded into a whole or cast into a whole, when the first heating element 28 is lifted and adopted by the folding frame 15, two sockets 8 are respectively arranged at two sides, the folding frame 15 is provided with two crossed connecting rods, the middle parts of the connecting rods are connected with each other in a shaft mode and rotate, the two ends of each connecting rod are provided with second sliding chutes 125 which are connected with the first heating elements 28 in a sliding mode, and the first heating elements 28 are provided with positioning columns which are connected with the sliding chutes in a sliding mode;
fig. 9 and 10 show that the third heating element 25 is a pan body or a planar heating element, which can realize the mutual matching of the functions of frying and boiling and the heating sandwich function of the heating cavity 9, thus enlarging the application range of the machine, and the top and the side of the machine can also try to boil water in a kettle to realize multifunctional combination, thus achieving multiple purposes.
The embodiments in the present description are described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other.
The water heater provided by the present invention is described in detail above. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts. It should be noted that, for those skilled in the art, it is possible to make various improvements and modifications to the present invention without departing from the principle of the present invention, and those improvements and modifications also fall within the scope of the claims of the present invention.
Claims (10)
1. Sandwich furnace, its characterized in that includes: the large body (1) is used for accommodating the lifting heating component (99) to be rotationally connected with an external driving mechanism (6), the lifting heating component (99) is in driving connection with the driving mechanism (6), at least one of a first heating component (28) and a second heating component (116) is arranged above and below the lifting heating component (99) respectively and moves up and down, and the heating surfaces of the two heating components move in parallel relatively;
the lifting heating component (99) consists of a heating cavity (9) and a lifting heating mechanism (111), the lifting mechanism is arranged outside the lifting heating component (99), and the lifting mechanism is used for longitudinally moving the first heating part (28) to move up and down to change the upper surface and the lower surface of the food to be heated with different heating height sizes; the lifting mechanism is movably connected with one of the heating parts, a driving mechanism (6) is arranged outside the large body (1) to drive one of the heating parts to move up and down in the lifting heating component (99), and the heating part moving up and down is arranged in the heating cavity (9) and is positioned at the upper part or the lower part of the heating cavity (9);
the lifting heating mechanism (111) is provided with a first heating part (28) which is arranged in a suspended mode and is arranged on the upper portion of an inner cavity of the heating cavity (9) to move up and down, the upper surfaces of the foods with different thicknesses are pressed downwards to be heated, or the lower portion of the lifting heating mechanism (111) is provided with a first heating part (28) which moves up and down at the bottom of the inner cavity of the heating cavity (9), and the foods with different thicknesses are lifted and clamped and the bottoms of the foods are heated.
2. The sandwich oven of claim 1, wherein: a lifting heating component (99) with a lateral opening is arranged in the large body (1), wherein one heating component is arranged in the lifting heating component (99) in a vertically moving mode, the other heating component is fixedly arranged on the lifting heating component (99), one heating component is relatively parallel to the other heating component and moves vertically in parallel, and the heating height between two heating surfaces is adjusted;
the left end and the right end of the lifting heating mechanism (111) are provided with a lifting mechanism, and the lifting mechanism controls and drives the lifting heating mechanism (111) to move up and down in the lifting heating assembly (99).
3. The sandwich oven of claim 1, wherein: the lifting heating mechanism is characterized in that the driving mechanism (6) is arranged at two ends of the lifting heating mechanism (111) and is transversely movably connected with the lifting heating mechanism (111), a transverse sliding third driving position (2) is arranged on the driving mechanism (6), a sliding connecting piece (17) used for driving the lifting heating mechanism (111) moves along the longitudinal axis of the lifting mechanism, the first heating piece (28) on the lifting heating mechanism (111) is driven to move up and down in the inner cavity of the heating cavity (9), the left end and the right end of the lifting heating mechanism (111) are provided with second driving positions (23), the second driving positions (23) penetrate through longitudinal moving holes (104) on two sides of the main body (1), the first heating piece (28) on the lifting heating mechanism (111) is controlled by the second driving positions (23) to move up and down to be at least parallel to the heating surface of the second heating piece (116) in the heating cavity (9) to move up and down in a suspended mode, or the first heating piece (28) on the lifting heating mechanism (111) is controlled by the second driving positions (23) to move up and down The interior of the hot chamber (9) is elevated at least parallel to the heating surface of the second heating element (116).
4. The sandwich oven of claim 1, wherein: the upper parts of the left and right side walls of the heating cavity (9) are provided with sockets (8), the left and right ends of the lifting heating mechanism (111) penetrate through the sockets (8) to be movably connected with the longitudinal axis of the lifting mechanism to move, used for controlling the first heating element (28) on the inner cavity of the heating cavity body (9) to longitudinally move downwards to the middle part or the bottom part of the heating opening (5), or, be used for controlling first heating member (28) on heating cavity (9) inner chamber to move longitudinally to heating opening (5) middle part or top, first heating member (28) move down or upward move, the opening size reduces from top to bottom of heating opening (5), second drive position (23) drive third drive position (2) slip downwards, cause actuating mechanism (6) to rotate along pivot or hole (102) on big body (1), handle (2.2) swing downwards shelters from a part heating opening (5), the suggestion heats the food in opening (5) and can not take out.
5. The sandwich oven of claim 1, wherein: longitudinal strip-shaped moving holes (104) are formed in two sides of the large body (1), a third driving position (2) is arranged on the outer side of each moving hole (104), and the longitudinal strip-shaped moving holes (104) and the transverse strip-shaped moving holes (2) are arranged in a crossed mode and move up and down relatively; the lifting mechanism is a sliding rod (18) or a folding frame (15), and the sliding rod (18) or the folding frame (15) is positioned outside the heating cavity (9).
6. The sandwich oven of claim 1, wherein: heating cavity (9) set up on lift heating element (99), the heating opening (5) left and right sides wall of heating cavity (9) sets up socket (8), spacing drive connection position (115) that sets up first heating member (28) both ends on lift heating mechanism (111) in socket (8), drive connection position (115) pass socket (8) and sliding connection spare (17) fixed connection or integrative setting, sliding connection spare (17) set up in socket (8) outside, sliding connection spare (17) set up the longitudinal movement on elevating system and connect, lift heating mechanism (111) span inboard and the outside of heating cavity (9).
7. The sandwich oven of claim 1, wherein: the driving connecting positions (115) at two ends of the first heating element (28) are arranged at the outer side of the heating cavity (9) and are combined with the sliding connecting piece (17), the second driving position (23) and the lifting mechanism to form a lifting heating mechanism (111) moving longitudinally, or the driving connecting positions (115) at two ends of the first heating element (28), the sliding connecting piece (17) and the second driving position (23) are integrally arranged with the lifting mechanism to form the lifting heating mechanism (111) moving longitudinally; the lifting mechanism is provided with a return spring (22).
8. The sandwich oven of claim 3, wherein: one end of the second driving position (23) is fixedly connected with the sliding connecting piece (17) or integrally arranged, and the other end of the second driving position is transversely connected with the third driving position (2) of the driving mechanism (6) in a sliding manner; the lifting mechanism is fixed and limited at the outer side of the heating cavity (9) or the upper end and the lower end of the lifting mechanism are respectively limited between the inner walls of the large body (1).
9. The sandwich oven of claim 1, wherein: actuating mechanism (6) is by setting up handle (2.2), U type opening driving body is constituteed to first drive position (2.21), set up third drive position (2) on first drive position (2.21), third drive position (2) are drive spout setting at first drive position (2.21) middle part, be located between rotation position (61) and handle (2.2), rotation position (61) and big body (1) both sides of first drive position (2.21) afterbody are passed through axle and hole rotation and are connected, axle and hole set up respectively on rotation position (61) and big body (1), the setting of the horizontal bar spout of third drive position (2) or horizontal oval-shaped, third drive position (2) and second drive position (23) sliding connection drive sliding connection spare (17) or first heating member (28) reciprocate.
10. The sandwich oven of claim 5, wherein: a second driving position (23) is arranged in the moving hole (104), the second driving position (23) penetrates through the moving hole (104) and is fixedly connected with the sliding connecting piece (17), the sliding connecting piece (17) is fixedly connected with a driving connecting position (115) of the first heating piece (28), the sliding connecting piece (17) is movably connected with a lifting mechanism to move the first heating piece (28) up and down in the heating cavity body (9), the heating surface of the first heating piece (28) and the heating surface of the second heating piece (116) at the bottom of the heating cavity body (9) are heated at least in parallel, or the heating surface of the first heating element (28) and the heating surface of the second heating element (116) at the top of the heating cavity (9) are heated at least in parallel, the upper end and the lower end of the sliding connecting piece (17) are provided with sliding baffles (172) which shield the openings of the left socket and the right socket (8) at the outer side of the heating cavity (9), and at least part of heat flow is closed in the heating cavity (9) to prevent the heat flow from entering the inner cavity of the large body (1) for heat insulation.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122924823.1U CN216569618U (en) | 2021-11-26 | 2021-11-26 | Sandwich furnace |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122924823.1U CN216569618U (en) | 2021-11-26 | 2021-11-26 | Sandwich furnace |
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CN216569618U true CN216569618U (en) | 2022-05-24 |
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Family Applications (1)
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CN202122924823.1U Active CN216569618U (en) | 2021-11-26 | 2021-11-26 | Sandwich furnace |
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CN (1) | CN216569618U (en) |
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2021
- 2021-11-26 CN CN202122924823.1U patent/CN216569618U/en active Active
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