Object carrying mesh basket and food processor
By setting anti-rotation protrusions on the rod body of the microwave oven grill, a miniaturized insulating handle is designed, and the problems of large size, high cost and unstable installation of the upper handle in the prior art are solved, and stable and economical insulating handle installation is achieved.
Patent Information
- Application Number
- CN202421620473.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The upper handles of existing microwave oven grills are large in size and high in material costs due to their full-inclusive structure, and there are problems such as unstable handles or misinstallation.
A loading net basket is designed, including a metal body and an insulated handle. By providing anti-rotation protrusions in part of the rod body, the insulated handle does not need to extend to the end of the rod body and is limited in the direction of rotation about the rod body, thereby realizing the stable installation of the miniaturized insulated handle.
The miniaturization of insulated handles is achieved to reduce costs while ensuring that insulated handles can stably isolate the stop position and avoid misinstallation, which improves the stability and installation efficiency of the loading net basket.
Smart Images

Figure CN222895161U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a loading net basket and a cooking machine using the loading net basket, and more specifically, to a loading net basket which can be used as a grill of a microwave oven and a microwave oven. Background Art
[0002] At present, microwave ovens used as food processors have integrated more and more cooking methods, and some microwave ovens have a grilling function. The basic process of grilling is to place food on the grill, then place the grill into the cavity, and grill the food. In the prior art, there are food processors that can perform microwave and grilling cooking at the same time.
[0003] Figure 6 A microwave oven grill in the prior art is shown. Figure 6 The grill comprises a main body and a pair of upper handles 2'. The pair of upper handles 2' are usually plastic structures, play the role of isolating and stopping, are arranged on the left and right sides of the main body, and form a full-covering structure for the left and right sides of the main body.
[0004] The microwave oven grill provided by the prior art has the problem that the upper handle 2' as the handle part is large in size when fully wrapped, resulting in a high material cost for making the handle part. If the handle part only partially wraps the left and right sides of the body, there is a problem that the handle part is unstable or the handle part is installed incorrectly. Utility Model Content
[0005] In view of the above problems, the utility model provides a mesh basket for carrying objects, which can realize miniaturized insulating handles to reduce costs while ensuring that the insulating handles can be stably isolated and stopped and will not be installed incorrectly.
[0006] The first aspect of the utility model provides a loading net basket, comprising a metal body and an insulating handle. The metal body has a loading surface and a pair of rods located at both ends of the loading surface and connected thereto, and the insulating handle is provided on the rod. An anti-rotation protrusion is formed on a part of the rod, and the anti-rotation protrusion protrudes from the rod in a direction parallel to the loading surface. The insulating handle is provided on the anti-rotation protrusion and is limited in the direction of rotation around the rod.
[0007] According to the object-carrying net basket provided by the utility model, by providing the anti-rotation protrusion on a part of the rod body, the insulating handle does not need to extend to the end of the rod body, and can also be limited in the direction of rotation around the rod body. In this way, even if the insulating handle is miniaturized, the object-carrying net basket can still be stably supported in the cavity of the microwave oven by means of the insulating handle.
[0008] In the cargo net basket of the optional technical solution of the utility model, the anti-rotation protrusion is an asymmetric structure.
[0009] According to the above preferred technical solution, by setting the anti-rotation protrusion as an asymmetric structure, it can play an anti-mistake role, that is, prevent the insulating handle from being installed in the wrong direction, which is conducive to simplifying the installation difficulty and improving the installation efficiency.
[0010] In the cargo basket of the optional technical solution of the utility model, the two end portions of the insulating handle in the length direction of the rod body are irregularly shaped, and / or the two side portions of the insulating handle perpendicular to the length direction of the rod body are irregularly shaped.
[0011] According to the above preferred technical scheme, by making the insulating handle irregular in the length direction of the rod body and / or in the direction perpendicular to the length direction of the rod body, the asymmetric structure of the anti-rotation protrusion can be matched, which helps to further optimize the installation matching between the insulating handle and the anti-rotation protrusion, prevent the incorrect installation of the insulating handle, and save materials for making the insulating handle, thereby reducing manufacturing costs.
[0012] In the cargo net basket of the optional technical solution of the utility model, a first anti-rotation protrusion and a second anti-rotation protrusion are at least spaced apart along the rod body, and the insulating handle includes at least a first insulating handle and a second insulating handle, the first insulating handle is provided on the first anti-rotation protrusion, and the second insulating handle is provided on the second anti-rotation protrusion.
[0013] According to the above preferred technical solution, at least two insulating handles are arranged along the rod body, which facilitates the taking and placing of the loading basket and can also better isolate the metal body from the inner wall of the microwave oven cavity.
[0014] In the cargo net basket of the optional technical solution of the utility model, the first anti-rotation protrusion and the second anti-rotation protrusion are of different shapes, the first insulating handle matches the first anti-rotation protrusion, and the second insulating handle matches the second anti-rotation protrusion.
[0015] According to the above preferred technical scheme, by making the first anti-rotation protrusion and the second anti-rotation protrusion different in shape from each other, an anti-mistake effect can be achieved, that is, preventing the first insulating handle and the second insulating handle from being installed incorrectly, which is helpful to simplify the installation difficulty and improve the installation efficiency.
[0016] In the cargo basket of the optional technical solution of the utility model, the two ends of the first insulating handle in the length direction of the rod body are shaped, and one of the ends is the stop end of the first insulating handle, and the two sides of the first insulating handle perpendicular to the length direction of the rod body are shaped, and one of the sides is the assembly side of the first insulating handle. The two ends of the second insulating handle in the length direction of the rod body are shaped, and one of the ends is the stop end of the second insulating handle, and the two sides of the second insulating handle perpendicular to the length direction of the rod body are shaped, and one of the sides is the assembly side of the second insulating handle. The stop end of the first insulating handle and the stop end of the second insulating handle are arranged back to back, and the assembly side of the first insulating handle and the assembly side of the second insulating handle are located on the same side of the rod body.
[0017] According to the above preferred technical solution, by making the two ends and two sides of the first insulating handle irregularly shaped and the two ends and two sides of the second insulating handle irregularly shaped, it helps to identify the respective installation directions of the first insulating handle and the second insulating handle and prevent incorrect installation, thereby improving installation efficiency and reducing manufacturing costs.
[0018] In the object-carrying net basket of the optional technical solution of the utility model, a pair of rods are 180° rotationally symmetrical to each other.
[0019] In the object-carrying net basket of the optional technical solution of the utility model, the anti-rotation protrusion is formed by bending the rod body.
[0020] According to the above preferred technical solution, since the anti-rotation protrusion is formed by partially bending the rod body, that is, the anti-rotation protrusion is one part of the rod body, no additional components are required to form the anti-rotation protrusion, so its processing process is simple and the cost is low, which is conducive to improving manufacturing efficiency.
[0021] In the cargo net basket of the optional technical solution of the utility model, the insulating handle is formed by covering the lower plate part and the upper plate part, and the inner side of the lower plate part and / or the upper plate part is provided with a positioning structure matching the anti-rotation protrusion.
[0022] According to the above preferred technical solution, since a positioning structure matching the anti-rotation protrusion is provided on the inner side of the lower plate and / or the upper plate, it is conducive to the stable installation of the insulating handle, thereby preventing the insulating handle from shaking or sliding after being installed on the rod body.
[0023] A second aspect of the utility model provides a food processor, comprising a furnace cavity and a loading basket provided in any one of the optional technical solutions above, wherein the loading basket is arranged in the furnace cavity.
[0024] In the optional technical solution of the food processor of the utility model, the front side of the oven cavity is open, a pair of guide rails are arranged on the left and right side walls, and a stop block is arranged on the side of the guide rails away from the oven cavity opening. A pair of insulating handles of the rod body are mounted on the pair of guide rails, and the insulating handles abut against the stop block.
[0025] According to the above preferred technical solution, the insulated handle is mounted on the guide rail in the oven cavity, so that the basket can be stably installed in the oven cavity, making it more convenient to take. At the same time, the metal body of the basket does not contact the inner walls on both sides of the oven cavity, which can prevent sparks from being generated between the metal body and the oven cavity or the guide rail, thereby improving the reliability of the food processor during use. Since the insulated handle abuts against the stop block, it is also ensured that the metal body of the basket does not contact the inner wall of the oven cavity away from the open side, which can prevent sparks from being generated between the metal body and the oven cavity or the guide rail, thereby improving the reliability of the food processor during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 A partial structural schematic diagram of a loading basket according to an embodiment of the utility model is shown;
[0027] Figure 2 A schematic structural diagram of a net basket for carrying objects according to an embodiment of the utility model is shown;
[0028] Figure 3 An exploded view of a cargo basket according to an embodiment of the utility model is shown;
[0029] Figure 4 A partial schematic diagram of a cargo basket according to an embodiment of the utility model is shown;
[0030] Figure 5 A schematic structural diagram of a microwave oven according to an embodiment of the utility model is shown;
[0031] Figure 6 A reference diagram of the prior art is shown.
[0032] Reference numerals:
[0033] [Prior art] Upper handle 2';
[0034] [Embodiment of the utility model]
[0035] Microwave oven 100, oven cavity 60, guide rail 70, stop block 80, loading basket 50, metal body 1, loading surface 11, rod body 12, anti-rotation protrusion (121a, 121b, 121c, 121d), first anti-rotation protrusion (121a, 121c), second anti-rotation protrusion (121b, 121d), insulating handle (2a, 2b, 2c, 2d), first Insulating handle (2a, 2c), second insulating handle (2b, 2d), stop end (21a, 21b, 21c, 21d), assembly side (22a, 22b, 22c, 22d), upper plate portion (201a, 201b, 201c, 201d), lower plate portion (202a, 202b, 202c, 202d), positioning structure (23a, 23b). DETAILED DESCRIPTION
[0036] It should be noted that the working principle, characteristics and advantages of the loading net basket and food processor according to the present invention will be described below in an illustrative manner, but it should be understood that all descriptions are given for illustrative purposes only and should not be construed as limiting the present invention in any way.
[0037] In addition, for any single technical feature described or implied in the embodiments mentioned in this document, or any single technical feature displayed or implied in the accompanying drawings, the present invention still allows for continued arbitrary combination or deletion of these technical features (or their equivalents) without any technical obstacles, thereby obtaining more other embodiments of the present invention that may not be directly mentioned in this document.
[0038] <Term>
[0039] The y-axis direction refers to the direction parallel to the extension direction of the rod body, and also refers to the length direction of the insulating handle;
[0040] The x-axis direction refers to the direction perpendicular to the extension direction of the rod body and parallel to the loading surface, and also refers to the width direction of the insulating handle;
[0041] The z-axis direction refers to the direction perpendicular to the loading surface, and also refers to the thickness direction of the insulating handle.
[0042] <First Embodiment>
[0043] The embodiment of the utility model provides a net basket for carrying objects, wherein: Figure 1 The schematic diagram of the structure of the metal body 1 in the embodiment of the utility model is shown. Figure 1 As shown, the metal body 1 is mainly composed of a loading surface 11 on which food can be loaded, and a pair of rods 12 located at both ends of the loading surface 11 and connected to the loading surface 11. Anti-rotation protrusions 121a, 121b, 121c, and 121d are partially formed at positions away from the ends of the rods 12. Each anti-rotation protrusion 121a, 121b, 121c, and 121d protrudes in a direction parallel to the loading surface 11 (xoy) of the metal body 1 and toward one side of the loading surface 11.
[0044] Among them, the anti-rotation protrusions 121a and 121b arranged on the same rod body 12 can respectively serve as the first anti-rotation protrusion and the second anti-rotation protrusion of the rod body 12, and the anti-rotation protrusions 121c and 121d arranged on another identical rod body 12 can respectively serve as the first anti-rotation protrusion and the second anti-rotation protrusion of the other rod body 12.
[0045] Specifically, Figure 2As shown, the object basket 50 is, for example, roughly rectangular, and two anti-rotation protrusions 121 ( Figure 2 ), i.e. Figure 1 The left rod body 12 is provided with an anti-rotation protrusion 121a and an anti-rotation protrusion 121b at intervals, and the right rod body 12 is provided with an anti-rotation protrusion 121c and an anti-rotation protrusion 121d at intervals. By providing a plurality of anti-rotation protrusions 121a, 121b, 121c, 121d on a part of the rod body 12.
[0046] Figure 2 2 is a schematic structural diagram of the object-carrying net basket 50 when the plurality of anti-rotation protrusions 121a, 121b, 121c, 121d are respectively provided with insulating handles 2a, 2b, 2c, 2d.
[0047] The insulating handles 2a, 2b, 2c, 2d and the rod body 12 all extend in the y-axis direction shown in the figure, and the extension length of the insulating handles 2a, 2b, 2c, 2d is less than the extension length of the rod body 12, that is, the insulating handles 2a, 2b, 2c, 2d are only arranged relative to a part of the rod body 12, and any of the insulating handles 2a, 2b, 2c, 2d does not need to extend to the end of the rod body 12. More specifically, any of the anti-rotation protrusions 121a, 121b, 121c, 121d is arranged on the rod body 12 on two sides of the carrying net basket 50 away from the four vertices of the rectangular carrying net basket 50.
[0048] Continue to refer Figure 3 , Figure 3 The exploded view of the basket 50 is shown. The insulating handle 2a is sleeved on the anti-rotation protrusion 121a, the insulating handle 2b is sleeved on the anti-rotation protrusion 121b, the insulating handle 2c is sleeved on the anti-rotation protrusion 121c, and the insulating handle 2d is sleeved on the anti-rotation protrusion 121d.
[0049] Correspondingly, the insulating handles 2a and 2b correspondingly mounted on the anti-rotation protrusions 121a and 121b can respectively serve as the first insulating handle and the second insulating handle of the rod body 12, and the insulating handles 2c and 2d correspondingly mounted on the anti-rotation protrusions 121c and 121d can respectively serve as the first insulating handle and the second insulating handle of the other rod body 12.
[0050] Such a configuration allows any of the insulating handles 2a, 2b, 2c, 2d to be limited in the direction of rotation around the rod body 12. Therefore, when any of the insulating handles 2a, 2b, 2c, 2d is subjected to force, such as when being lifted by a user or when being supported in the oven cavity of a food processor, the insulating handles 2a, 2b, 2c, 2d will not rotate, thereby affecting the stability of the object-carrying basket 50.
[0051] Those skilled in the art can understand that as long as the insulating handles 2a, 2b, 2c, 2d are sleeved on the anti-rotation protrusions 121a, 121b, 121c, 121d, the anti-rotation protrusions 121a, 121b, 121c, 121d provide a physical barrier to limit the rotation of the insulating handles 2a, 2b, 2c, 2d, thereby preventing the insulating handles 2a, 2b, 2c, 2d from rotating around the axis of the rod body 12. Therefore, there is no particular limitation on the shape of the insulating handles 2a, 2b, 2c, 2d themselves.
[0052] Therefore, according to the above-mentioned embodiment provided by the utility model, by providing anti-rotation protrusions 121a, 121b, 121c, 121d on a part of the rod body 12, the insulating handles 2a, 2b, 2c, 2d respectively corresponding to the anti-rotation protrusions 121a, 121b, 121c, 121d do not need to extend to the end of the rod body 12, and can also be limited in the direction of rotation around the axis of the rod body 12. In this way, even if the insulating handles 2a, 2b, 2c, 2d are miniaturized, the object-carrying net basket 50 can still be stably supported in the cavity of, for example, a food processor with the help of the insulating handles 2a, 2b, 2c, 2d. While miniaturizing the insulating handles to reduce costs, it is ensured that the insulating handles can stably fix the object-carrying net basket 50.
[0053] In addition, although in the illustrated embodiment, two anti-rotation protrusions 121a, 121b or 121c and 121d are respectively provided on the rod body 12 on each side, in other embodiments, one anti-rotation protrusion 121a or 121d, or three anti-rotation protrusions may be respectively provided on the rod body 12 on each side. When one anti-rotation protrusion is respectively provided on the rod body 12 on each side, the anti-rotation protrusions are preferably provided diagonally, that is, anti-rotation protrusions 121a and 121d are provided as shown in the figure, or anti-rotation protrusions 121b and 121c are provided.
[0054] In some preferred embodiments, reference Figure 1, the anti-rotation protrusions 121a, 121b, 121c, 121d are asymmetrical structures, that is, the anti-rotation protrusions 121a, 121b, 121c, 121d themselves have no symmetry in the x-axis direction and the y-axis direction. Specifically, the anti-rotation protrusions 121a, 121b, 121c, 121d are formed by bending the rod body 12, so that the anti-rotation protrusions 121a, 121b, 121c, 121d are asymmetrically designed in the y-axis direction. In addition, the anti-rotation protrusions 121a, 121b, 121c, 121d form a roughly V-shaped shape, and the lengths of the two sides forming the V-shaped are different, so that the anti-rotation protrusions 121a, 121b, 121c, 121d are asymmetrically designed in the x-axis direction. By setting the anti-rotation protrusions 121a, 121b, 121c, and 121d as an asymmetric structure, a fool-proof effect can be achieved, i.e., preventing the insulating handles 2a, 2b, 2c, and 2d from being incorrectly installed on the anti-rotation protrusions 121a, 121b, 121c, and 121d, which is helpful in simplifying the installation difficulty and improving the installation efficiency.
[0055] In other embodiments, when foolproofing is not required or foolproofing is performed by marking, the anti-rotation protrusions 121a, 121b, 121c, and 121d may also be designed as symmetrical structures.
[0056] In some embodiments, reference Figure 2 , the two sides of the insulating handles 2a, 2b, 2c, 2d are shaped in the x-axis direction, and the two ends in the y-axis direction are shaped. By making the two sides and the two ends of the insulating handles 2a, 2b, 2c, 2d shaped, the insulating handles 2a, 2b, 2c, 2d can be further miniaturized on the premise of realizing the functions of the insulating handles 2a, 2b, 2c, 2d such as stopping and supporting, saving the materials for making the insulating handles 2a, 2b, 2c, 2d, thereby reducing the manufacturing cost. It can be understood that if the insulating handles 2a, 2b, 2c, 2d are to be symmetrical in the x-axis direction and the y-axis direction, it is inevitable to increase the amount of materials used for the insulating handles 2a, 2b, 2c, 2d, which is not conducive to reducing the material cost. At the same time, the shaped structures of the two sides and the two ends of the insulating handles 2a, 2b, 2c, 2d make it easy to identify the respective installation directions of the insulating handles 2a, 2b, 2c, 2d, and prevent mis-installation, thereby improving the installation efficiency and reducing the manufacturing cost.
[0057] In other embodiments, the insulating handles 2a, 2b, 2c, 2d may also be designed as symmetrical structures to reduce the management cost of different components.
[0058] In some embodiments, reference Figure 1 The anti-rotation protrusion 121a and the anti-rotation protrusion 121b are of different shapes, and the anti-rotation protrusion 121c and the anti-rotation protrusion 121d are of different shapes. Figure 1 The left rod body 12 and the right rod body 12 are 180° rotationally symmetrical to each other. Specifically, the anti-rotation protrusion 121a and the anti-rotation protrusion 121d are 180° rotationally symmetrical to each other, and the anti-rotation protrusion 121b and the anti-rotation protrusion 121c are also 180° rotationally symmetrical to each other. Figure 3 Since the anti-rotation protrusion 121a and the anti-rotation protrusion 121d are 180° rotationally symmetrical to each other, the insulating handle 2a and the insulating handle 2d can have the same structure, and they only need to be rotated 180° during installation. Since the anti-rotation protrusion 121b and the anti-rotation protrusion 121c are 180° rotationally symmetrical to each other, the insulating handle 2b and the insulating handle 2c can have the same structure, and they only need to be rotated 180° during installation.
[0059] Next reference Figure 2 ,by Figure 2 The left side rod body 12 is taken as an example for explanation. The two end portions of the insulating handle 2a in the y-axis direction are irregularly shaped, and one of the end portions is the stop end 21a of the insulating handle 2a. The two side portions of the insulating handle 2a in the x-axis direction are irregularly shaped, and one of the side portions is the assembly side 22a of the insulating handle 2a. The two end portions of the insulating handle 2b in the y-axis direction are irregularly shaped, and one of the end portions is the stop end 21b of the insulating handle 2b. The two side portions of the insulating handle 2b in the x-axis direction are irregularly shaped, and one of the side portions is the assembly side 22b of the insulating handle 2b. Among them, the stop end 21a of the insulating handle 2a and the stop end 21b of the insulating handle 2b are arranged back to back. Specifically, the stop end 21a and the stop end 21b are arranged between each other, with the insulating handle 2a and the insulating handle 2b separated.
[0060] The assembly side 22 a of the insulating handle 2 a and the assembly side 22 b of the insulating handle 2 b are located on the same side of the rod body 12 . Figure 2 The configuration state of the insulating handle 2 on the right rod body 12 can refer to the state on the left rod body 12, and will not be repeated here.
[0061] The stop ends 21a, 21b, 21c, and 21d are ends for limiting the position of the basket 50 in the food processor, specifically, the ends abutting against a designated portion in the food processor. The mounting sides 22a, 22b, 22c, and 22d are sides for supporting the basket 50 in the food processor.
[0062] By making the two ends and two sides of the insulating handles 2a, 2b, 2c, 2d irregularly shaped, it is helpful to further miniaturize the insulating handles 2a, 2b, 2c, 2d, save materials for making the insulating handles 2a, 2b, 2c, 2d, and thus reduce manufacturing costs. It can be understood that if the insulating handles 2a, 2b, 2c, 2d are to be made symmetrical in the y-axis direction and the x-axis direction, it is inevitable to increase the amount of materials used for the insulating handles 2a, 2b, 2c, 2d, which is not conducive to reducing material costs.
[0063] By making the anti-rotation protrusions 121a and 121b irregularly shaped, and the anti-rotation protrusions 121c and 121d irregularly shaped, it is possible to prevent mistakes, that is, to prevent the insulating handle 2a or 2b or 2c or 2d from being installed incorrectly, thereby simplifying the installation difficulty and improving the installation efficiency. Figure 4 The insulating handle 2a and the insulating handle 2b have different structures. The insulating handle 2a matches the anti-rotation protrusion 121a, and the insulating handle 2b matches the anti-rotation protrusion 121b. Therefore, during the installation process, for example, the insulating handle 2a will not be mistakenly installed at the anti-rotation protrusion 121b.
[0064] In some preferred embodiments, reference Figure 1 The anti-rotation protrusions 121a, 121b, 121c, and 121d are formed by bending the rod body 12 and are shaped like a letter V. Since the anti-rotation protrusions 121a, 121b, 121c, and 121d are formed by bending the rod body 12 and are formed integrally with the rod body 12, the processing process is simple, which is conducive to improving manufacturing efficiency.
[0065] In other embodiments, the anti-rotation protrusions 121 a , 121 b , 121 c , 121 d may be configured as protrusions (not shown) extending outward from the rod body 12 , that is, the protrusions are fixed to the rod body 12 .
[0066] In other embodiments, the anti-rotation protrusions 121a, 121b, 121c, and 121d may also be formed by bending the middle of the rod body 12 to form a polygon or an arc.
[0067] In some embodiments, reference Figure 3 and Figure 4 , take the insulating handle 2a as an example for explanation. The insulating handle 2a is formed by covering the lower plate 202a and the upper plate 201a in the z-axis direction, and the inner side of the lower plate 202a is provided with a positioning structure 23a matching the anti-rotation protrusion 121a. Specifically, during the installation of the insulating handle 2a, the anti-rotation protrusion 121a can be first clamped on the positioning structure 23a on the insulating handle 2a, and then the upper plate 201a is covered on the lower plate 202a, and the upper plate 201a and the lower plate 202a are fixed together by bolts.
[0068] Since the positioning structure 23a matching the anti-rotation protrusion 121a is provided on the inner side of the lower plate 202a, it is conducive to stably installing the insulating handle 2a on the anti-rotation protrusion 121a, thereby preventing the insulating handle 2a from shaking or sliding after being installed on the rod body 12. Of course, in other embodiments, the insulating handle 2a can also be formed by splicing two parts in the x-axis direction.
[0069] The above description is made by taking the insulating handle 2a as an example. The structures of the insulating handles 2b, 2c, and 2d are the same as those of the insulating handle 2a, and thus will not be described in detail herein.
[0070] <Second Embodiment>
[0071] A second embodiment of the present invention provides a food processor, specifically a microwave oven 100 . Figure 5 A schematic structural diagram of a microwave oven 100 provided in a second embodiment of the present invention is shown.
[0072] like Figure 5 As shown, the microwave oven 100 includes a cavity 60 with an open front, guide rails 70 provided on the left and right side walls of the cavity 60, and a loading basket 50 mounted on the guide rails 70. The loading basket 50 has the same structure as the loading basket 50 in the first embodiment, and the same reference numerals are used.
[0073] Combined with reference Figure 2 and Figure 5 It can be seen that the cargo basket 50 includes a metal body 1 and an insulating handle 2 ( Figure 5 The insulating handle 2 shown in FIG. is equivalent to Figure 2 One of the insulating handles 2a, 2b, 2c, 2d shown in FIG. Figure 5 As shown, when the object basket 50 is placed in the oven cavity 60, the insulating handles 2 on both sides of the object basket 50 cooperate with the guide rails 70, so that the object basket 50 can be stably placed in the oven cavity 60. In addition, the insulating handles 2 on both sides of the object basket 50 are in contact with the guide rails 70 and the inner walls on both sides of the oven cavity 60, and the metal body 1 is ensured not to be in direct contact with the guide rails 70 and the inner walls on both sides of the oven cavity 60, so that sparks can be prevented from being generated between the metal body 1 and the oven cavity 60 or the guide rails 70, thereby improving the reliability of the microwave oven 100 during use.
[0074] Continue to refer Figure 5 In some preferred embodiments, the microwave oven 100 further includes a stopper 80 disposed at the rear side (the side away from the front opening) of the guide rail 70. When the object basket 50 is placed in the oven cavity 60, the rear end of the insulating handle 2 abuts against the stopper 80. In this way, the metal body 1 of the object basket 50 will not contact the rear inner wall (the inner wall away from the front opening) of the oven cavity 60, which can prevent sparks from being generated between the metal body 1 and the oven cavity 60, thereby improving the reliability of the microwave oven 100 during use.
[0075] Although the object-carrying net basket 50 is mounted on the guide rail 70 in the illustrated embodiment, in other embodiments, the object-carrying net basket 50 may also be directly placed in the oven cavity 60 of the microwave oven 100 .
[0076] Although in the illustrated embodiment, the stop block 80 is provided to ensure the isolation between the loading net basket 50 and the rear inner wall of the furnace cavity 60, in other embodiments, the stop block 80 may not be provided, and the isolation between the loading net basket 50 and the rear inner wall of the furnace cavity 60 may be ensured by installing an insulating sleeve (not shown) on the rear side of the loading net basket 50.
[0077] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A mesh basket for carrying objects, comprising: A metal body having a loading surface and a pair of rods located at two ends of the loading surface and connected thereto; An insulating handle, arranged on the rod body; Features: An anti-rotation protrusion is formed on a part of the rod body, and the anti-rotation protrusion protrudes from the rod body in a direction parallel to the object loading surface; The insulating handle cover is arranged on the anti-rotation protrusion and is limited in the direction of rotation around the rod body.
2. The object carrying basket according to claim 1, characterized in that: The anti-rotation protrusion is an asymmetric structure.
3. The object carrying basket according to claim 1, characterized in that: The insulating handle has two end portions in the length direction of the rod body that are specially shaped, and / or the insulating handle has two side portions in the length direction perpendicular to the rod body that are specially shaped.
4. The object carrying basket according to claim 1, characterized in that: At least a first anti-rotation protrusion and a second anti-rotation protrusion are formed at intervals along the same rod body, and the insulating handle at least includes a first insulating handle and a second insulating handle. The first insulating handle is disposed on the first anti-rotation protrusion, and the second insulating handle is disposed on the second anti-rotation protrusion.
5. The object carrying basket according to claim 4, characterized in that: The first anti-rotation protrusion and the second anti-rotation protrusion are of different shapes.
6. The object carrying net basket according to claim 5, characterized in that: The first insulating handle has two shaped ends in the length direction of the rod body, one of which is a stop end of the first insulating handle, and the first insulating handle has two shaped sides perpendicular to the length direction of the rod body, one of which is an assembly side of the first insulating handle; The two ends of the second insulating handle in the length direction of the rod body are shaped, and one end is the stop end of the second insulating handle. The two sides of the second insulating handle in the length direction perpendicular to the rod body are shaped, and one side is the assembly side of the second insulating handle. The stop end of the first insulating handle and the stop end of the second insulating handle are arranged opposite to each other, and the assembly side of the first insulating handle and the assembly side of the second insulating handle are located on the same side of the rod body.
7. The object carrying basket according to any one of claims 4 to 6, characterized in that: The pair of rods are 180° rotationally symmetrical to each other.
8. The object carrying basket according to any one of claims 1 to 6, characterized in that: The anti-rotation protrusion is formed by partially bending the rod body.
9. The object carrying basket according to any one of claims 1 to 6, characterized in that: The insulating handle is formed by covering a lower plate portion and an upper plate portion, and a positioning structure matching the anti-rotation protrusion is arranged on the inner side of the lower plate portion and / or the upper plate portion.
10. A food processor, characterized in that: The invention comprises a furnace cavity and a mesh basket for carrying objects as claimed in any one of claims 1 to 9, wherein the mesh basket for carrying objects is placed in the furnace cavity.
11. The food processor according to claim 10, characterized in that: The front side of the furnace cavity is open, and a pair of guide rails are arranged on the left and right side walls, and a stop block is arranged on the open side of the guide rail away from the furnace cavity. The insulating handles of the pair of rods are mounted on the pair of guide rails, and the insulating handles abut against the stop blocks.