Easily-assembled high-efficiency vapor chamber structure
By designing bending protrusions and installation notches on the heat spreader plate, and combining them with screw and nut connections, an easy-to-assemble refractory brick structure is formed, which solves the problems of complex production and uneven heat distribution, and achieves easy assembly and efficient uniform heating.
Patent Information
- Application Number
- CN202520060861.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Existing heat spreaders are complex to manufacture, resulting in high costs, difficult maintenance, and difficulty in achieving uniform heat distribution.
The design incorporates bent protrusions and installation notches, combined with screws and nuts for connection, and incorporates refractory bricks and pressing strips to form an easily assembled heat spreader structure, increasing heat penetration holes to improve heat uniformity.
It simplifies the production process, reduces production costs and improves production efficiency, achieves better uniform heat distribution, improves assembly efficiency and the stability of refractory bricks, improves production efficiency, achieves more uniform temperature control, ensures food quality and safety, and improves production efficiency, achieving better heat uniformity.
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Figure CN223682382U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to oven technical field, especially a kind of structure of easy assembly high-efficiency uniform temperature plate. BACKGROUND
[0002] The uniform temperature plate refers to a component for helping temperature distribution in the device, and its main role is to ensure that heat is evenly transmitted in the entire device during heating or baking, to avoid overheating in some areas and insufficient heating in some areas, thereby improving cooking effect.
[0003] The existing uniform temperature plate generally improves its thermal conductivity by improving its material, or achieves the overall thermal conductivity of the uniform temperature plate through a complex structure. The above two ways both cause the cost to rise, and the complex structure, production and assembly are more troublesome, which directly increases production time and manufacturing cost. When the structure of product or equipment is complex, maintenance work becomes more difficult when failure or damage occurs. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the above-mentioned defects in the prior art, and provides a structure of easy assembly high-efficiency uniform temperature plate, which is more convenient for production and processing and has a better effect in use.
[0005] To achieve the above-mentioned purpose, the utility model provides a structure of easy assembly high-efficiency uniform temperature plate, which comprises:
[0006] The uniform temperature plate is provided with two baffles on both sides, and a plurality of upwardly protruding bending protrusions are formed between the two baffles. The baffles, bending protrusions and bending protrusions form mounting areas. The baffles and bending protrusions are provided with mounting notches.
[0007] The refractory bricks are inserted into the mounting notches.
[0008] The refractory brick pressing strips are detachably connected with the bending protrusions, and the refractory brick pressing strips are provided with openings for pressing the refractory bricks.
[0009] Further, the first mounting holes are provided on the bending protrusions, the refractory brick pressing strips are provided with second mounting holes matched with the first mounting holes, and the first mounting holes and the second mounting holes are connected by screws and nuts. The refractory brick pressing strips and the bending protrusions are detachably connected by screws and nuts, which improves the installation efficiency of the two.
[0010] Further, the bottom of the bending protrusion forms a bending groove, the width and height of the bending groove match the width and height of the nut. In this way, when the nut is placed in the bending groove, the flat surface of the nut is just clamped, and the nut does not need to be clamped with a wrench when locking the screw. The screw can be directly locked, thereby facilitating assembly and improving assembly speed and work efficiency.
[0011] Further, the bending protrusion includes two side edges and a top edge arranged perpendicularly to the two side edges, mounting notches are arranged on the two side edges of the bending protrusion, the notches penetrate one side edge and the top edge, and adjacent two mounting notches arranged on the two side edges are staggered. In this way, the mounting notches have sufficient space for clamping the refractory bricks, so that the refractory bricks can be inserted and tightly pressed by the refractory brick pressing strips to form a stable mounting structure, so that the refractory bricks do not fall off after installation, and the stability is improved. The mounting notches on the two side edges of the bending protrusion are staggered, so that the refractory bricks are installed staggered, the heat distribution is more uniform, and the overall performance of the temperature equalizing plate is improved.
[0012] Further, the refractory bricks are formed with clamping parts matched with the mounting notches, and the clamping parts are corner edges provided with arc structures. The clamping parts can directly insert the refractory bricks into the mounting notches, without the need for other structural arrangements of the refractory bricks, and the production and installation are very convenient and fast.
[0013] Further, a plurality of first heat-permeable holes matched with the positions of the refractory bricks are arranged on the temperature equalizing plate, and a plurality of second heat-permeable holes are arranged between the first heat-permeable holes. The gas circulation route is better, and the heat permeation effect in the temperature equalizing plate is further improved to ensure the heat equalization degree of each position.
[0014] Further, three groups of bending protrusions and refractory brick pressing strips are arranged on the temperature equalizing plate, and the temperature equalizing plate is gradually bent to both sides based on the center. In this way, the entire temperature equalizing plate forms three areas for installing refractory bricks, which improves the installation density of the refractory bricks and helps the uniformity of the overall temperature of the temperature equalizing plate. In particular, the overall temperature equalizing plate has an inverted V-shaped structure, which can better improve the temperature rise of the two side edges and avoid the situation that the middle temperature is high and the two side temperatures are low.
[0015] Further, the upper ends of the two baffles are reversely bent to form hanging parts. The hanging parts can facilitate the installation of the temperature equalizing plate, and the reverse bending structure can avoid left-right shaking or falling off after installation.
[0016] Further, the opening has a triangular structure. The triangular structure of the opening can better clamp the refractory bricks in cooperation with the mounting notches, so that the refractory bricks are more firmly installed and will not fall off.
[0017] Further, the connecting part of the two baffles and the heat uniforming plate is also provided with a third heat transmission hole. The third heat transmission hole forms a better gas circulation route, further improves the heat transmission effect in the heat uniforming plate, and guarantees the heat uniformity of each position.
[0018] Compared with the prior art, the utility model has the following advantages:
[0019] 1. The mounting gap is arranged on the bent protrusion, so that workers can conveniently assemble, the mounting gap can accurately place the refractory bricks, and the assembling speed and work efficiency are improved.
[0020] 2. The width and height of the bent groove are matched with the width and height of the nut, so that the nut is clamped in the bent groove, the nut is not clamped by a wrench when locking the screw, the nut cannot be turned, the screw can be directly locked, the assembly is convenient, and the assembling speed and work efficiency are improved.
[0021] 3. The heat uniforming plate is provided with a plurality of heat transmission holes, and the heat uniforming plate is provided with refractory bricks, the refractory bricks are heated by fire, the heat on the refractory bricks is radiated to food to be roasted, the roasted food is not easy to be scorched, the meat is tender, the roasted food is complete in color, aroma and taste, the structure is easy to assemble, the production and processing are convenient, and the effect is better. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating creative labor.
[0023] Figure 1 It is a structure schematic view of the structure of the easy-to-assemble efficient heat uniforming plate of the utility model;
[0024] Figure 2 It is an exploded schematic view of Figure 1 ;
[0025] Figure 3 It is a top view schematic view of the heat uniforming plate of the utility model;
[0026] Figure 4 It is a structure schematic view of the heat uniforming plate of the utility model;
[0027] Figure 5 It is a front view schematic view of the heat uniforming plate of the utility model;
[0028] Figure 6 is a structural schematic view of the fireproof brick;
[0029] Figure 7 is a structural schematic view of the fireproof brick.
[0030] In the figure, there are:
[0031] 1, a uniform temperature plate; 11, a baffle; 111, a hanging part; 12, a bending protrusion; 121, a first mounting hole; 122, a bending groove; 123, a side edge; 124, a top edge; 13, a mounting area; 14, a mounting notch; 15, a first heat-permeable hole; 16, a second heat-permeable hole; 17, a third heat-permeable hole; 2, a fireproof brick; 21, a clamping part; 3, a fireproof brick; 31, an opening; 32, a second mounting hole; 4, a screw; 5, a nut. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are one of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0033] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as described in the drawings), and if the certain posture changes, the directional indications also change accordingly.
[0034] In addition, if the embodiments of the present application involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features.
[0035] Please refer to Figures 1 to 7 The present application provides a kind of structure of easily assembled high-efficiency uniform temperature plate, including uniform temperature plate 1, fireproof brick 2 and fireproof brick 3:
[0036] The two sides of the heat equalizing plate 1 in the embodiment are provided with two baffles 11, a plurality of upwardly protruding bending protrusions 12 are formed between the two baffles 11, the baffle 11 and the bending protrusion 12 and between the bending protrusions 12 form a mounting area 13, the mounting gap 14 is provided on the baffle 11 and the bending protrusion 12, the firebrick 2 is inserted into the mounting gap 14, the fireproof brick strip 3 is detachably connected with the bending protrusion 12, the opening 31 for pressing the firebrick 2 is provided on the fireproof brick strip 3, the opening 31 is triangular structure, the triangular structure of the opening 31 can better clamp the firebrick 2 in cooperation with the mounting gap 14, so that the firebrick 2 is more firmly installed and will not fall off.
[0037] As shown in Figure 3 and Figure 6 , the first mounting hole 121 is provided on the bending protrusion 12, the fireproof brick strip 3 is provided with the second mounting hole 32 matched with the first mounting hole 121, the first mounting hole 121 and the second mounting hole 32 are connected through the screw 4 and the nut 5, as preferred, as shown in Figure 5 , the bottom of the bending protrusion 12 forms the bending groove 122, the width and height of the bending groove 122 are matched with the width and height of the nut 5, so that the nut 5 is placed in the bending groove 122, the flat surface of the nut 5 is just clamped when locking the screw 4, without using the wrench to clamp the nut 5 again, the nut 5 will not be turned, and the screw 4 can be directly locked, so that the assembly can be facilitated, the assembly speed and work efficiency are improved.
[0038] As shown in Figure 3 and Figure 4As shown, in this embodiment, three groups of bending protrusions 12 and fire-resistant brick strips 3 are arranged on the temperature equalizing plate 1. The temperature equalizing plate 1 is gradually bent to both sides with the center as the reference, so that the temperature equalizing plate 1 as a whole presents an inverted V-shaped structure, and after assembly, the two sides can be closer to the heating device, improving the heating degree of the two sides and making the overall heating more uniform. Each bending protrusion 12 includes two side edges 123 and a top edge 124 arranged perpendicularly to the two side edges 123. The two side edges 123 of the bending protrusion 12 are provided with mounting notches 14. The notches pass through one side edge 123 and the top edge 124, and the two side edges 123 are provided with two adjacent mounting notches 14 arranged staggered. The specific arrangement of this embodiment is that the three groups of bending protrusions 12 can be a first bending protrusion arranged at the center position and a second bending protrusion arranged between the first bending protrusion and the two side plates. The first bending protrusion and the second bending protrusion have basically the same structure. The only difference is that the mounting notches 14 arranged on the two sides of the first bending protrusion are symmetrically arranged, while the mounting notches 14 arranged on the inner side of the second bending protrusion are arranged in a position matched with the mounting notches 14 of the first bending protrusion. The mounting notches 14 arranged on the outer side of the second bending protrusion are arranged separately from the mounting notches 14 on the inner side. In this way, the fire-resistant bricks 2 mounted in the mounting area 13 between the first bending protrusion and the second bending protrusion and the fire-resistant bricks 2 mounted in the mounting area 13 between the second bending protrusion and the side plates are arranged in a staggered manner. This further increases the uniformity of the range that the fire-resistant bricks 2 can radiate when the temperature-resistant plate is heated, and improves the overall heat uniformity.
[0039] To facilitate the installation of the temperature-resistant plate, the upper end of the two baffles 11 is folded back to form a hanging part 111. The arrangement of the hanging part 111 can make the installation of the temperature equalizing plate 1 more convenient and fast. The folded-back structure can avoid left-right shaking or falling after installation.
[0040] To further improve the overall heat equalization of the temperature-resistant plate, as shown, Figure 3 A plurality of first heat-permeable holes 15 matched with the positions of the fire-resistant bricks 2 are arranged on the temperature equalizing plate 1. A plurality of second heat-permeable holes 16 arranged uniformly are arranged between the first heat-permeable holes 15. The aperture of the first heat-permeable hole 15 is larger than that of the second heat-permeable hole 16, which is to increase the heating efficiency of the fire-resistant bricks 2, and further accelerate the temperature rise of the fire-resistant bricks 2, so that they can radiate to the food being grilled faster. Preferably, a third heat-permeable hole 17 is arranged at the connection between the two baffles 11 and the temperature equalizing plate 1. The arrangement of the third heat-permeable hole 17 forms a better gas circulation route, further improves the heat-permeable effect in the temperature equalizing plate 1, and ensures the heat equalization at each position.
[0041] As shown, Figure 6As shown, the clamping part 21 matched with the mounting gap 14 is formed on the firebrick 2, and the clamping part 21 is an edge corner provided with a circular arc structure. The clamping part 21 can directly insert the firebrick 2 into the mounting gap 14, and no other structural setting is needed for the firebrick 2, so that the production and installation are very convenient and fast.
[0042] The working principle of the utility model is briefly described, the utility model has simple structure, in the assembly, first, the firebrick 2 is directly inserted into the mounting gap 14, then, the firebrick 3 is installed on the bending convex 12 through the cooperation of the screw 4 and the nut 5, the opening 31 is arranged on the firebrick 3, the opening 31 is triangular, the edge of the opening 31 is tightly pressed against the firebrick 2 after the installation of the firebrick 3, so that the firebrick 2 is tightly clamped between the temperature-resistant plate and the firebrick 3, so that the assembly is completed, and in use, the hanging part 111 is only inserted into the oven of the oven or oven.
[0043] Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A structure of an easily assembled high-efficiency vapor chamber, characterized by comprising: The application relates to a heat equalizing plate (1), which is provided with two baffles (11) on two sides, a plurality of upwardly protruding bending protrusions (12) are formed between the two baffles (11), mounting areas (13) are formed by the baffles (11) and the bending protrusions (12) and the bending protrusions (12), mounting notches (14) are arranged on the baffles (11) and the bending protrusions (12). A fireproof brick (2) is inserted into the mounting notches (14). A fireproof brick pressing strip (3) is detachably connected with the bending protrusions (12), and an opening (31) for pressing the fireproof brick (2) is arranged on the fireproof brick pressing strip (3). First mounting holes (121) are arranged on the bending protrusions (12), the fireproof brick pressing strip (3) is provided with second mounting holes (32) matched with the first mounting holes (121), and the first mounting holes (121) and the second mounting holes (32) are connected through screws (4) and nuts (5).
2. The structure of the easily assembled high-efficiency vapor chamber according to claim 1, wherein, The bottom of the bending protrusion (12) forms a bending groove (122), and the width and height of the bending groove (122) are matched with the width and height of the nut (5).
3. The structure of the easily assembled high-efficiency vapor chamber according to claim 2, wherein, The bending protrusion (12) comprises two side edges (123) and a top edge (124) arranged perpendicularly to the two side edges (123), the mounting notches (14) are arranged on the two side edges (123) of the bending protrusion (12), the notches pass through one side edge (123) and the top edge (124), and the two side edges (123) are provided with two adjacent mounting notches (14) which are arranged in a staggered mode.
4. The structure of the easily assembled high-efficiency vapor chamber according to claim 1, wherein, The fireproof brick (2) is provided with a clamping part (21) matched with the mounting notches (14), and the clamping part (21) is an edge corner provided with a circular arc structure.
5. The structure of the easily assembled high-efficiency vapor chamber according to claim 1, wherein, A plurality of first heat-permeating holes (15) matched with the positions of the fireproof bricks (2) are arranged on the heat equalizing plate (1), and a plurality of second heat-permeating holes (16) are arranged between the first heat-permeating holes (15) in a uniform mode.
6. The structure of the easily assembled high-efficiency vapor chamber according to claim 1, wherein, Three groups of the bending protrusions (12) and the fireproof brick pressing strips (3) are arranged on the heat equalizing plate (1), and the heat equalizing plate (1) is gradually bent to two sides based on the center.
7. The structure of the easily assembled high-efficiency vapor chamber of claim 1, wherein, The upper ends of the two baffles (11) are reversely bent to form hanging parts (111).
8. The structure of the easily assembled high-efficiency vapor chamber of claim 1, wherein, The opening (31) is in a triangular structure.
9. The structure of the easily assembled high-efficiency vapor chamber of claim 1, wherein, The connecting positions of the two baffles (11) and the heat equalizing plate (1) are also provided with third heat-permeating holes (17).
10. The structure of the easily assembled high-efficiency vapor chamber of claim 1, wherein,