Panel assembly and gas cooker comprising same
By using a fixed plate and elastic pad in the gas stove design, the problem of heat dissipation layer detaching at high temperatures is solved, achieving effective heat dissipation and improved mechanical strength of the glass panel, and reducing the risk of thermal explosion and mechanical cracking.
Patent Information
- Application Number
- CN202520033697.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-08
AI Technical Summary
The glass panel of existing gas stoves is prone to detachment of the heat dissipation layer under high temperature conditions, resulting in poor cooling effect and increasing the risk of thermal explosion and mechanical cracking.
The fixing part of the fixing plate is fixed relative to the glass panel and is attached to the heat dissipation layer through the elastic abutment part to avoid the glue from failing at high temperature and increase the reliability of the heat dissipation layer. At the same time, elastic pads and elastic elements are set in high temperature parts to enhance the elastic deformation capability of the glass panel.
It effectively reduces the heat of the glass panel, reduces the chance of thermal explosion and mechanical cracking, improves the reliability of the heat dissipation layer, and enhances the glass panel's resistance to mechanical damage.
Smart Images

Figure CN223740846U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to gas -cooker technical field, especially a kind of panel assembly and gas -cooker comprising it. BACKGROUND
[0002] Gas -cooker is more common device in family life, and its cooker panel is generally made of glass panel, and the temperature and thermal stress of glass panel are high due to the influence of flame heat, which can cause thermal explosion and mechanical burst of glass panel, and with the increasing load of gas -cooker, further increase the probability of thermal explosion and mechanical burst of glass panel, especially at high temperature position of burner, glass panel is easy to splash outward when breaking, thereby causing harm to operator.
[0003] In order to avoid the occurrence of this kind of situation, a heat dissipation layer, such as a heat dissipation plate or a heat dissipation net, is generally pasted on the bottom of the glass panel to reduce the heat of the glass panel. However, the heat dissipation layer is generally fixed on the bottom of the glass panel by adhesive at present. On the one hand, the adhesive material will gradually fail under the environment of cold and hot cycle change, thereby reducing the fixing degree of the heat dissipation layer relative to the glass panel. On the other hand, the adhesive material is easy to produce bubbles in high temperature environment, and the bubbles will gradually become larger after long time high temperature heating, finally leading to the separation of the heat dissipation layer from the glass panel, and the heat dissipation layer cannot reduce the heat of the glass panel. SUMMARY
[0004] The technical problem to be solved by the utility model is to overcome the defect that the heat dissipation layer is easy to separate from the glass panel in the prior art and cannot reduce the heat of the glass panel, and to provide a panel assembly and a gas -cooker comprising the same.
[0005] The utility model solves the above technical problems by the following technical solutions:
[0006] A panel assembly comprises a glass panel and a heat dissipation layer, characterized in that the panel assembly further comprises a fixing plate, and the fixing plate comprises:
[0007] a fixing portion fixedly arranged relative to the glass panel;
[0008] an abutting portion connected to the fixing portion, which is attached to one side of the heat dissipation layer away from the glass panel and elastically abuts against the heat dissipation layer at the position where the heat dissipation layer is attached.
[0009] In the scheme, the bottom of the glass panel is fixed with a heat dissipation layer by adhesive means, when the panel assembly is in a high temperature environment for a long time, the heat dissipation layer is used to reduce the heat of the glass panel, and the probability of thermal explosion and mechanical burst of the glass panel is reduced; at the same time, the fixed part of the fixed plate is fixedly arranged relative to the glass panel, so that the abutting part connected with the fixed part can be attached to one side of the heat dissipation layer away from the glass panel, and the abutting part is elastically abutted on the heat dissipation layer at the position attached to the heat dissipation layer, and a certain extrusion force is applied to the heat dissipation layer, so as to avoid the failure of the adhesive at high temperature and make the heat dissipation layer separate from the glass panel, thereby increasing the reliability of the use of the heat dissipation layer.
[0010] Further, the glass panel is provided with a first through hole for the burner base to pass through, and the abutting part is attached to the part of the heat dissipation layer adjacent to the first through hole.
[0011] In the scheme, the first through hole in the glass panel is used for the burner base to pass through, so that the part closer to the first through hole has a relatively higher temperature, and therefore the abutting part is attached to the part of the heat dissipation layer adjacent to the first through hole, so as to avoid the heat dissipation layer adjacent to the first through hole from separating from the glass panel, thereby dissipating heat from the high temperature part of the glass panel, and further reducing the probability of thermal explosion and mechanical burst of the glass panel.
[0012] Further, the fixed plate is a ring structure with uniform thickness, and the abutting part is located at the periphery of the fixed part and extends horizontally away from the fixed part along the radial direction of the fixed plate.
[0013] In the scheme, the abutting part is arranged at the periphery of the fixed part and extends horizontally away from the fixed part to form a ring structure with uniform thickness, so that the fixed part located in the inner ring is fixedly arranged relative to the glass panel, and the abutting part located in the outer ring is abutted on the heat dissipation layer, and since the abutting part is located in the outer ring, it has better elastic deformation than the fixed part located in the inner ring, so that it can better abut on the heat dissipation layer to apply force to the heat dissipation layer and avoid the heat dissipation layer from separating from the glass panel.
[0014] Further, the abutting part is provided with a second through hole, and the edges of the second through hole and the first through hole are arranged to coincide with each other in the thickness direction of the glass panel.
[0015] In the scheme, through the arrangement, the second through hole of the abutting portion can be arranged in alignment with the first through hole on the glass panel, so that the abutting portion can extend to the edge of the first through hole of the glass panel while elastically abutting against the heat dissipation layer, thereby not only applying force to the heat dissipation layer, but also protecting the glass panel more completely, and further reducing the temperature at the edge position of the first through hole of the glass panel.
[0016] Further, the fixing plate further comprises a connecting portion connected between the fixing portion and the abutting portion, and the connecting portion comprises a first vertical segment connected at the edge position of the second through hole and arranged in abutment with the hole wall of the first through hole.
[0017] In the scheme, when the second through hole of the abutting portion is arranged in alignment with the first through hole on the glass panel, the first vertical segment of the connecting portion is connected at the edge position of the second through hole and arranged in abutment with the hole wall of the first through hole, preventing the liquid overflow of the glass panel from flowing along the first through hole to the connecting portion of the heat dissipation layer and the glass panel and damaging the glue at the connecting portion, thereby accelerating the failure of the glue, and the connecting portion and the fixing portion connected with the abutting portion can also block the liquid overflow to prevent it from entering the interior of the panel assembly and damaging other components.
[0018] Further, the connecting portion further comprises a horizontal segment and a second vertical segment, the horizontal segment is connected between the first vertical segment and the second vertical segment, and the second vertical segment is connected to the fixing portion at an end away from the horizontal segment.
[0019] In the scheme, by connecting the horizontal segment of the connecting portion between the first vertical segment and the second vertical segment, the first vertical segment is connected at the edge position of the second through hole, and the second vertical segment is connected to the fixing portion at an end away from the horizontal segment, so that the fixing plate has a stepped overall structure, which on the one hand reduces the difficulty of folding the fixing plate and increases the overall strength of the fixing plate, and on the other hand increases the radial span of the fixing plate, so that the abutting portion located at the periphery can have better elastic deformation.
[0020] Further, the panel assembly further comprises a gasket, the gasket is made of elastic material, and the gasket is arranged around the edge position of the glass panel.
[0021] In the scheme, when the glass panel is in a high-temperature environment for a long time, its thermal stress will increase, and when a sharp object falls on the glass panel, it may cause mechanical burst of the glass panel. Therefore, by arranging the gasket made of elastic material around the edge position of the glass panel, the elastic deformation capability of the edge of the glass panel is increased, thereby reducing the probability of mechanical burst of the glass panel.
[0022] Further, the panel assembly further comprises elastic members arranged in gaps provided in the gasket strips at the positions of the at least one pair of opposite edges of the glass panel, and the glass panel can abut against the surface of the cooking bench through the elastic members.
[0023] In the scheme, by providing gaps in the gasket strips at the positions of the at least one pair of opposite edges of the glass panel and arranging elastic members in the gaps, the glass panel can abut against the surface of the cooking bench through the elastic members, so as to further increase the elastic deformation capacity of the glass panel at the corresponding edges and more effectively reduce the probability of mechanical burst of the glass panel.
[0024] A gas stove, characterized in that the gas stove comprises the panel assembly as described above.
[0025] In the scheme, by arranging the panel assembly as described above on the gas stove, the problem that the heat dissipation layer is easily separated from the glass panel and cannot reduce the heat of the glass panel when the gas stove works at high temperature is better solved.
[0026] Further, the gas stove further comprises a burner base and a liquid container, the inner ring edge of the liquid container is fixed on the burner base, the outer ring edge of the liquid container is arranged on the glass panel of the panel assembly, and the fixing part of the fixing plate is clamped and fixed between the inner ring edge of the liquid container and the burner base.
[0027] In the scheme, when the inner ring edge of the liquid container is fixed on the burner base, the fixing part of the fixing plate can be clamped and fixed between the inner ring edge of the liquid container and the burner base, so as to better satisfy the fixed arrangement of the fixing part relative to the glass panel, so that the abutting part connected with the fixing part can better elastically abut against the heat dissipation layer, and the heat dissipation layer is prevented from being separated from the glass panel.
[0028] The positive progress effect of the utility model lies in that:
[0029] The bottom of the glass panel is fixed with the heat dissipation layer in a gluing manner, when the panel assembly works at high temperature for a long time, the heat dissipation layer is used to reduce the heat of the glass panel, so as to reduce the probability of thermal burst and mechanical burst of the glass panel; meanwhile, the fixing part of the fixing plate is fixedly arranged relative to the glass panel, so that the abutting part connected with the fixing part can be arranged on the side of the heat dissipation layer away from the glass panel, and the abutting part elastically abuts against the heat dissipation layer at the position where the abutting part is arranged on the heat dissipation layer, so as to apply a certain extrusion force to the heat dissipation layer, through the force application mode to the heat dissipation layer, the heat dissipation layer is prevented from being separated from the glass panel due to the failure of the glue at high temperature, so as to increase the reliability of the heat dissipation layer. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is the whole structure schematic view of gas stove in an embodiment of the utility model.
[0031] Figure 2 It is the structure schematic view of panel assembly and liquid containing tray in assembled state in an embodiment of the utility model.
[0032] Figure 3 It is the structure schematic view of glass panel in its back position in an embodiment of the utility model.
[0033] Figure 4 It is the partial cross section structure schematic view of panel assembly and liquid containing tray in assembled state in an embodiment of the utility model.
[0034] Figure 5 It is Figure 4 The local amplification schematic view of A in the middle.
[0035] Figure 6 It is the structure schematic view of liquid containing tray in an embodiment of the utility model.
[0036] Figure 7 It is the structure schematic view of fixed plate in an embodiment of the utility model.
[0037] BRIEF DESCRIPTION OF DRAWINGS
[0038] Gas stove 1
[0039] Panel assembly 10
[0040] Glass panel 11
[0041] First through hole 111
[0042] Heat dissipation layer 12
[0043] Fixed plate 13
[0044] Fixed part 131
[0045] Butt joint part 132
[0046] Connecting part 133
[0047] First vertical section 1331
[0048] Horizontal section 1332
[0049] Second vertical section 1333
[0050] Pad 4
[0051] Elastic member 15
[0052] Burner base 20
[0053] tray 30
[0054] connecting hole 31 DETAILED DESCRIPTION
[0055] The embodiments of the present application will be described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application, and all other embodiments obtained by those skilled in the art without creative labor on the basis of the embodiments in the present application are within the scope of protection of the present application.
[0056] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "circumferential", "radial" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0057] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0058] The present embodiment discloses a gas stove 1, as shown in Figure 1 , Figure 2 and Figure 3 , the gas stove 1 comprises a panel assembly 10, a burner base 20 and a liquid tray 30, the panel assembly 10 comprises a glass panel 11, two first through holes 111 are formed on the glass panel 11, the number of the burner base 20 and the liquid tray 30 is two, the two burner bases 20 and the two liquid trays 30 are one-to-one corresponding, the two burner bases 20 are respectively arranged in the two first through holes 111, and the two liquid trays 30 are respectively placed at the positions where the first through holes 111 are formed on the glass panel 11. In combination with Figure 6As shown, the overall shape of the liquid container 30 is a circular ring structure, and the outer periphery of the liquid container 30 in the radial direction is lapped on the surface of the glass panel 11, and the inner periphery of the liquid container 30 in the radial direction is provided with four connecting holes 31. After the liquid container 30 is placed on the glass panel 11, the burner base 20 passes through the first through hole 111 and the center hole on the liquid container 30, and the connecting holes 31 on the liquid container 30 are used to connect and fix the corresponding burner base 20. Through the above arrangement, a gas stove 1 with two combustion parts is finally formed. For the specific structure and working principle of the burner base 20, the existing solutions in the prior art can be used, and details are not repeated here.
[0059] As shown in Figure 4 and Figure 5 The panel assembly 10 of the gas stove 1 includes a heat dissipation layer 12 in addition to the glass panel 11. The heat dissipation layer 12 can be a heat dissipation plate or a heat dissipation net. The heat dissipation layer 12 is attached to the back of the glass panel 11 by adhesive. When the burner base 20 is working and generating continuous high temperature, the panel assembly 10 is in a high temperature environment for a long time. At this time, the heat dissipation layer 12 can be used to reduce the heat of the glass panel 11, and reduce the probability of thermal explosion and mechanical explosion of the glass panel 11.
[0060] In addition, the panel assembly 10 of the gas stove 1 further includes a fixing plate 13. The fixing plate 13 includes a fixing part 131 and an abutting part 132. The fixing part 131 is fixedly arranged relative to the glass panel 11, and the abutting part 132 is connected to the fixing part 131. The abutting part 132 is attached to the side of the heat dissipation layer 12 away from the glass panel 11, and elastically abuts the heat dissipation layer 12 at the position where the heat dissipation layer 12 is attached. Through this arrangement, the fixing part 131 of the fixing plate 13 is fixedly arranged relative to the glass panel 11, so that the abutting part 132 connected to the fixing part 131 can be attached to the side of the heat dissipation layer 12 away from the glass panel 11, and the abutting part 132 elastically abuts the heat dissipation layer 12 at the position where the heat dissipation layer 12 is attached. A certain extrusion force is applied to the heat dissipation layer 12. Through this way of applying force to the heat dissipation layer 12, the failure of the glue at high temperature is avoided, so that the heat dissipation layer 12 is separated from the glass panel 11, thereby increasing the reliability of the heat dissipation layer 12.
[0061] It should be noted that, in the embodiment, the liquid container 30 is connected to the corresponding burner base 20 through the connecting hole 31, so that the fixing part 131 of the fixing plate 13 is fixedly arranged relative to the glass panel 11 by using the fixing between the liquid container 30 and the corresponding burner base 20. Specifically, when the liquid container 30 is connected and fixed to the corresponding burner base, the fixing part 131 of the fixing plate 13 can be clamped and fixed between the inner ring edge of the liquid container 30 and the burner base 20. In this way, the fixing part 131 of the fixing plate 13 is fixedly arranged relative to the glass panel 11, and the abutting part 132 of the fixing plate 13 can be better elastically abutted on the heat dissipation layer 12, so that the heat dissipation layer 12 is prevented from being separated from the glass panel 11. However, in other alternative embodiments, the fixing part 131 of the fixing plate 13 can be fixed by other ways to achieve the fixed arrangement relative to the glass panel 11.
[0062] As shown in Figure 4 , Figure 5 , in the embodiment, the overall shape of the heat dissipation layer 12 is a plate structure, and the heat dissipation layer 12 is also provided with a through hole corresponding to the first through hole 111 of the glass panel 11, so that when the heat dissipation layer 12 is attached to the back surface of the glass panel 11, the through hole on the heat dissipation layer 12 can be completely coincided with the first through hole 111 on the glass panel 11. In this case, the abutting part 132 of the fixing plate 13 is attached to the part of the heat dissipation layer 12 adjacent to the through hole, because the first through hole 111 on the glass panel 11 is provided for the burner base 20 to pass through, so that the part closer to the first through hole 111 has a relatively higher temperature, and the through hole provided on the heat dissipation layer 12 is coincided with the first through hole 111 on the glass panel 11. Therefore, the abutting part 132 is attached to the part of the heat dissipation layer 12 adjacent to the through hole, so that the heat dissipation layer 12 adjacent to the first through hole 111 is prevented from being separated from the glass panel 11, thereby dissipating heat from the high-temperature part of the glass panel 11, and further reducing the probability of thermal explosion and mechanical explosion of the glass panel 11.
[0063] It should be noted that, in other embodiments, the through hole provided on the heat dissipation layer 12 can also be not coincided with the first through hole 111 on the glass panel 11, in which case the abutting part 132 of the fixing plate 13 is attached to the part of the heat dissipation layer 12 adjacent to the first through hole 111, and the heat dissipation layer 12 adjacent to the first through hole 111 is also prevented from being separated from the glass panel 11.
[0064] As shown in Figure 4 , Figure 5 , Figure 7As shown, the fixing plate 13 is a ring structure with uniform thickness, and along the radial direction of the fixing plate 13, the abutting portion 132 of the fixing plate 13 is located at the periphery of the fixing portion 131 and extends horizontally away from the fixing portion 131. In this way, the fixing portion 131 located in the inner ring can be fixed relative to the glass panel 11, and the abutting portion 132 located in the outer ring can abut against the heat dissipation layer 12. Since the abutting portion 132 is located in the outer ring, it can have better elastic deformation than the fixing portion 131 located in the inner ring, so that it can better abut against the heat dissipation layer 12 to apply a force to the heat dissipation layer 12 and avoid the heat dissipation layer 12 from being separated from the glass panel 11.
[0065] Specifically, the abutting portion 132 of the fixing plate 13 is also a ring structure, and the ring structure of the abutting portion 132 has a second through hole formed in the middle portion thereof. In the thickness direction of the glass panel 11, the edges of the second through hole and the edges of the first through hole 111 are arranged to coincide with each other, i.e., the first through hole 111 on the glass panel 11, the through hole formed on the heat dissipation layer 12, and the second through hole in the middle portion of the abutting portion 132 are arranged to coincide with each other. Through this arrangement, the abutting portion 132 can extend to the edge of the first through hole 111 of the glass panel 11 while elastically abutting against the heat dissipation layer 12, so that not only a force can be applied to the heat dissipation layer 12, but also the glass panel 11 can be more completely protected, further reducing the temperature at the edge of the first through hole 111 of the glass panel 11.
[0066] Further, as shown in Figure 5 and Figure 7 The fixing plate 13 further includes a connecting portion 133 arranged between the fixing portion 131 and the abutting portion 132. The connecting portion 133 includes a first vertical segment 1331, a horizontal segment 1332, and a second vertical segment 1333. In the case where the edges of the second through hole and the edges of the first through hole 111 are arranged to coincide with each other, the first vertical segment 1331 is connected to the edge of the second through hole and is arranged to adhere to the hole wall of the first through hole 111. Through this arrangement, the overflow liquid of the glass panel 11 can be prevented from flowing along the first through hole 111 to the connection between the heat dissipation layer 12 and the glass panel 11 and damaging the glue at the connection, thereby accelerating the failure of the glue. At the same time, the connecting portion 133 connected to the abutting portion 132 and the fixing portion 131 can be used to block the overflow liquid and prevent it from entering the interior of the panel assembly 10 and damaging other components.
[0067] In addition, the horizontal section 1332 of the connecting portion 133 is connected between the first vertical section 1331 and the second vertical section 1333, and the second vertical section 1333 is connected to the fixing portion 131 at one end away from the horizontal section 1332. By connecting the horizontal section 1332 of the connecting portion 133 between the first vertical section 1331 and the second vertical section 1333, the first vertical section 1331 is connected at the edge position of the second through hole, and the second vertical section 1333 is connected to the fixing portion 131 at one end away from the horizontal section 1332, so that the fixing plate 13 presents a whole structure in the form of steps, which on the one hand reduces the difficulty of folding the fixing plate 13, increases the overall strength of the fixing plate 13, and on the other hand increases the radial span of the fixing plate 13, so that the abutting portion 132 located at the periphery can have better elastic deformation.
[0068] As shown in Figure 3 The panel assembly 10 of the gas stove 1 further comprises a gasket 4, which is made of elastic material and is arranged around the four edge positions of the glass panel 11. When the glass panel 11 is in a high-temperature environment for a long time, its thermal stress will continue to increase. At this time, when a sharp object falls on the glass panel 11, it may cause the glass panel 11 to mechanically burst. Therefore, by arranging the gasket 4 made of elastic material at the four edge positions of the glass panel 11, the elastic deformation ability of the four edge positions of the glass panel 11 is increased, thereby reducing the probability of mechanical burst of the glass panel 11.
[0069] Further, the panel assembly 10 of the gas stove 1 further comprises elastic members 15, which can be compression springs. Since the periphery of the glass panel 11 is in the shape of a rectangle, two gaps are respectively arranged on the gaskets 4 at a pair of opposite edge positions of the glass panel 11, and the elastic members 15 are arranged in the gaps. The glass panel 11 can be abutted on the surface of the stove through the elastic members 15, so as to further increase the elastic deformation ability of the corresponding edge of the glass panel 11, and at the same time, cooperate with the arrangement of the gasket 4, more effectively reduce the probability of mechanical burst of the glass panel 11. It should be noted that in other alternative embodiments, the elastic members 15 can also be other elastic elements existing in the prior art; and gaps can be provided on the gaskets 4 at the four edge positions of the glass panel 11, so that the elastic members 15 are arranged in the gaps.
[0070] The gas stove 1 in the embodiment comprises the panel assembly 10 as described above, so as to better solve the problem that the heat dissipation layer 12 is easily separated from the glass panel 11 and cannot reduce the heat of the glass panel 11 when the gas stove 1 works at high temperature.
[0071] Although the specific embodiments of the present application are described above, those skilled in the art should understand that this is only an example, the protection scope of the present application is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present application, but these changes and modifications all fall within the protection scope of the present application.
Claims
1. A panel assembly comprising a glass panel and a heat dissipation layer, characterized in that, The panel assembly further comprises a fixing plate, the fixing plate comprises: a fixing portion, the fixing portion is fixedly arranged relative to the glass panel; an abutting portion, the abutting portion is connected to the fixing portion, the abutting portion is attached to a side of the heat dissipation layer away from the glass panel, and elastically abuts against the heat dissipation layer at a position where the abutting portion is attached to the heat dissipation layer.
2. The panel assembly of claim 1, wherein, The glass panel is provided with a first through hole for the burner base to pass through, and the abutting portion is attached to a portion of the heat dissipation layer adjacent to the first through hole.
3. The panel assembly of claim 2, wherein, The fixing plate is a ring structure with uniform thickness, and the abutting portion is located at the periphery of the fixing portion and extends horizontally away from the fixing portion in the radial direction of the fixing plate.
4. The panel assembly of claim 2, wherein, The abutting portion is provided with a second through hole, and the edges of the second through hole and the first through hole are arranged to coincide with each other in the thickness direction of the glass panel.
5. The panel assembly of claim 4, wherein, The fixing plate further comprises a connecting portion connected between the fixing portion and the abutting portion, the connecting portion comprises a first vertical section, the first vertical section is connected at the edge of the second through hole and is attached to the hole wall of the first through hole.
6. The panel assembly of claim 5, wherein, The connecting portion further comprises a horizontal section and a second vertical section, the horizontal section is connected between the first vertical section and the second vertical section, and one end of the second vertical section away from the horizontal section is connected to the fixing portion.
7. The panel assembly of claim 1, wherein, The panel assembly further comprises a gasket, the gasket is made of elastic material, and the gasket is arranged around the periphery of the glass panel.
8. The panel assembly of claim 7, wherein, The panel assembly further comprises an elastic member, a plurality of gaps are provided on the gasket corresponding to at least one pair of opposite edge positions of the glass panel, the elastic member is arranged in the gaps, and the glass panel can be abutted on the surface of the cooking bench by the elastic member.
9. Gas hob, characterized in that The gas stove comprises the panel assembly as claimed in any one of claims 1-8.
10. Gas hob according to claim 9, characterized in that The gas stove further comprises a burner base and a liquid container, an inner ring edge of the liquid container is fixed on the burner base, an outer ring edge of the liquid container is arranged on the glass panel of the panel assembly, and the fixing portion of the fixing plate is clamped and fixed between the inner ring edge of the liquid container and the burner base.