Stove

JP3257322UActive Publication Date: 2026-09-04HAYANO KENKO CO LTD
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Patent Information

Application Number
JP2026002340U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-07-06
Publication Date
2026-09-04
Estimated Expiration
2036-07-06

AI Technical Summary

Benefits of technology

【0041】 ·実施形態に係るコンロ10では、固形燃料の燃焼により発せられた熱が載置部80及び炭受け部80から側面部材20に伝達され、その側面部材20に伝達された熱の一部が放熱部材90へ伝達されるとともに放熱部材90により放熱される。これにより、側面部材20の下端へと伝達される熱が低減し、載置面の熱による損傷を抑制することができる。

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Abstract

To provide a stove capable of suppressing heat transfer to the mounting surface. [Solution] A stove used by being placed on a mounting surface, comprising: a side member 20 that encloses an internal space and whose lower end can abut against the aforementioned mounting surface; mounting members 70, 80 arranged in the internal space of the side member 20, on which solid fuel can be placed and in contact with the side member 20; and a heat dissipation member 90 made of metal that is in contact with the side member 20 below the mounting members 70, 80. The mounting members 70, 80 are composed of a mounting portion 80 on which solid fuel can be placed and a charcoal receiving portion 70 that supports the mounting portion 80, with the charcoal receiving portion 70 in contact with the side member 20. The charcoal receiving portion 70 is in contact with the side member 20 above the support point of the mounting portion 80, and below the point where the charcoal receiving portion 70 and the side member 20 are in contact, a gap is provided between the mounting members 70, 80 and the side member 20.
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Description

[Technical Field]

[0001] The present invention relates to a stove that uses solid fuel such as charcoal as a heat source and is used for barbecues and the like. [Background Art]

[0002] Conventionally, stoves using solid fuel such as charcoal as a heat source for barbecues and the like are used by being placed directly on the ground, so the distance between the solid fuel placing portion and the ground inevitably increases, and the heat transferred from the legs of the stove to the ground decreases. Further, even if heat is transferred to the ground, since the stove is generally used on ground such as soil, no problem related to heat has occurred. On the other hand, stoves designed for tabletop use do not have long legs, so it is necessary to provide a configuration that suppresses the transfer of heat generated by solid fuel to the placement surface. As such a stove, there is the stove described in Patent Document 1. In the stove of Patent Document 1, heat transfer to the placement surface is suppressed by providing a main body heat insulating cover. [Prior Art Documents] [Patent Documents]

[0003] [Patent Document 1] Japanese Utility Model Laid-Open Publication No. Sho 63-037902 [Summary of the Invention] [Problem to be Solved by the Invention]

[0004] In the stove described in Patent Document 1, although heat transfer to the placement surface can be suppressed to a certain extent, it is necessary to combine a plurality of different members, and it only provides a heat insulating function after all. When overheating exceeding the heat insulating function occurs, there is a problem that heat is transferred to the placement surface.

[0005] The present invention has been made to solve the above problems, and a main object thereof is to provide a stove that can suitably suppress heat transfer to an installation surface when using solid fuel. [Means for Solving the Problem]

[0006] The first configuration is a stove used by being placed on a mounting surface, comprising: a side member that encloses an internal space and whose lower end can abut the mounting surface; a mounting member that is positioned in the internal space of the side member, on which solid fuel can be placed, and which is in contact with the side member; and a heat dissipation member made of metal that is in contact with the side member below the main body member.

[0007] In the first configuration, heat generated by the combustion of solid fuel is transferred from the main body to the side members, and a portion of the heat transferred to the side members is transferred to the heat dissipation members and dissipated by the heat dissipation members. As a result, the amount of heat transferred to the lower end of the side members is reduced, and heat damage to the mounting surface can be suppressed.

[0008] The second configuration, in addition to the first configuration, includes a mounting portion on which the solid fuel can be placed and a receiving portion that supports the mounting portion, wherein the receiving portion is in contact with the side member.

[0009] In the second configuration, heat transfer from the solid fuel to the mounting surface involves more components, thus allowing for greater heat dissipation from the intermediate components.

[0010] The third configuration is characterized in that, in addition to the second configuration, the receiving portion is in contact with the side member above the support portion of the mounting portion described above, and a gap is provided between the mounting member and the side member below the point where the receiving portion and the side member are in contact.

[0011] In the third configuration, the mounting member and the side member are not in contact between the contact point between the receiving member and the side member and the contact point between the heat dissipation member and the side member. Therefore, heat transfer from the mounting member to the side member is suppressed in the area where they are not in contact. As a result, most of the heat transfer from the mounting member to the side member occurs in the upper part, and the distance from the heat transfer point to the heat dissipation member can be increased. Consequently, the heat dissipation effect of the side member between the heat transfer point and the heat dissipation member can also be expected, further improving the overall heat dissipation function of the stove.

[0012] The fourth configuration is that, in addition to the second or third configuration, the receiving portion is box-shaped with an open top, and the aforementioned mounting portion is arranged in the internal space of the receiving portion.

[0013] In the fourth configuration, the radiant heat from the solid fuel placed on the mounting section is not directly transmitted to the side members, thus suppressing the heat transmitted to the side members and further reducing the heat transmitted to the lower end of the stove.

[0014] The fifth configuration is a rectangular tube having, in addition to any of the first to fourth configurations, a side member having a pair of opposing first surfaces and a pair of opposing second surfaces that are wider than the first surfaces, the aforementioned mounting member is in contact with the first surfaces and the heat dissipation member is in contact with the second surfaces.

[0015] In the fifth configuration, the contact area between the mounting member and the side member can be reduced while increasing the contact area between the heat dissipation member and the side member. Therefore, it is possible to suppress heat transfer from the mounting member to the side member while further improving the efficiency of heat transfer from the side member to the heat dissipation member, thereby improving the overall heat dissipation function of the stove.

[0016] The sixth configuration is characterized in that, in addition to any of the first to fifth configurations, the side member has an opening located below the lower end of the aforementioned mounting member and above the heat sink.

[0017] In the sixth configuration, since heat can be dissipated from the heat radiating member by the air passing through the opening, the heat radiation performance of the entire stove can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] [Figure 1] It is a perspective view of the stove. [Figure 2] It is a perspective view from the bottom surface side of the stove. [Figure 3] It is a front view of the stove. [Figure 4] It is a side view of the stove. [Figure 5] It is a plan view of the stove. [Figure 6] It is a bottom view of the stove. [Figure 7] It is a cross-sectional view taken along line A-A. [Figure 8] It is a cross-sectional view taken along line B-B. [Figure 9] It is a perspective view of the side member. [Figure 10] It is a side view of the side member. [Figure 11] It is a perspective view of the charcoal receiver. [Figure 12] It is a front view of the charcoal receiver. [Figure 13] It is a perspective view of the placing portion. [Figure 14] It is a perspective view of the heat radiating plate. MODE FOR CARRYING OUT THE INVENTION

[0019] The stove 10 according to the embodiment is placed on a placing surface such as a tabletop, and uses solid fuel such as charcoal as a heat source. As shown in FIGS. 1 to 6, the stove 10 according to the embodiment has a substantially rectangular parallelepiped overall shape and a rectangular shape in plan view. In the following description, the vertical direction is defined as the up-down direction, the long sides in plan view are defined as being positioned on the front-rear sides, and the short sides are defined as being positioned on the left-right sides. Further, the entire stove 10 is formed of a metal such as iron, stainless steel, or aluminum.

[0020] As shown in Figures 1 to 10, the stove 10 is equipped with a roughly rectangular cylindrical side member 20. The outer shape of the side member 20 is defined by a roughly rectangular plate-shaped front wall 30 with the left-right direction as the longer side and the up-down direction as the shorter side, a plate-shaped left side wall 40 extending backward from the left shorter side of the front wall 30, a right side wall 50 extending backward from the right shorter side of the front wall 30 and having the same shape as the left side wall 40, and a rear side wall 60 having the same shape as the front wall 30, connecting the rear end edge of the left side wall 40 and the rear end edge of the right side wall 50.

[0021] The upper end of the front wall 30 is provided with a wave-like uneven surface 31 that repeats continuously in the left-right direction (longitudinal direction), except near the left and right ends. More specifically, this uneven surface 31 is provided with repeating arc-shaped protrusions that point upward and arc-shaped recesses that are continuous with the protrusions and point downward, creating a continuous wave shape. Slightly below this uneven surface 31, there are multiple vertical holes 32 that penetrate the front wall 30 in the front-rear direction (thickness direction). The outer shape of the vertical holes 32 is defined by a pair of parallel sides extending in the vertical direction and semicircular arcs connecting the upper and lower ends of these sides. In other words, the outer shape of the vertical holes 32 is an oval extending in the vertical direction. These multiple vertical holes 32 are provided so that their upper and lower ends are aligned and they are parallel to each other in the left-right direction. The lower end of the vertical holes 32 extends slightly above the midpoint in the vertical direction of the front wall 30.

[0022] The lower end of the front wall 30 is provided with a lower recess 33 that is rectangular in shape and recessed upward, except near the left and right ends. The left and right ends of this lower recess 33 are vertical upward, and the upper end of the lower recess 33 is horizontal in the left-right direction. On the front wall 30, a support portion 34 is provided that protrudes rearward from the upper end of the lower recess 33. This support portion 34 is provided over the entire upper end of the lower recess 33, protrudes evenly towards the rear, and its thickness in the vertical direction is equal to the thickness of the front wall 30. Slightly above the support portion 34, two lateral holes 35 are provided that penetrate the front wall 30 in the front-rear direction (thickness direction). The outer shape of the lateral holes 35 is defined by a pair of parallel upper and lower sides extending in the left-right direction, and semicircular arcs connecting the left ends and right ends of those sides. That is, the outer shape of the lateral holes 35 is an oval extending in the left-right direction. The vertical positions of these two horizontal holes 35 coincide, and they are arranged side by side in the left-right direction.

[0023] The left side wall 40 is roughly rectangular in shape, with a height equal to that of the front side wall 30 and a width in the front-to-back direction that is slightly greater than its height in the up-to-down direction. An upper recess 41 is provided at the upper end of the left side wall 40, which is rectangular in shape and recessed downwards except near the front and rear ends. The front and rear ends of this upper recess 41 are vertical downwards, and the lower end of the upper recess 41 is horizontal in the front-to-back direction. Slightly below the upper recess 41, a mounting hole 42 is provided that penetrates the left side wall 41 in the left-to-right direction. This mounting hole 42 is vertically elongated in shape when viewed from the side and is located approximately in the center in the front-to-back direction. Slightly below the mounting hole 42, a roughly semi-circular gripping portion 43 is provided. This gripping portion 43 is formed by bending a rod with a circular cross-section.

[0024] Near the lower end of the left side wall 40, a horizontal hole 44 is provided that penetrates the left side wall 40 in the left-right direction (thickness direction). The shape of the horizontal hole 44 is defined by a pair of parallel upper and lower sides extending in the front-rear direction, and semicircular arcs connecting the front ends and rear ends of these sides. In other words, the shape of the horizontal hole 44 is an oval extending in the front-rear direction. The height at which this horizontal hole 44 is provided coincides with the height at which the horizontal hole 35 of the front side wall 30 is provided.

[0025] The right side wall 50 has a symmetrical configuration with the left side wall 40, and, like the left side wall 40, it is equipped with an upper recess 41, mounting hole 52, gripping portion 43, and lateral hole 44. The left side wall 40 and the right side wall 50 can be collectively referred to as a pair of opposing first surfaces.

[0026] The rear wall 60 has a configuration that is symmetrical to the front wall 30, and, like the front wall 30, it is equipped with a recessed portion 61, a vertical hole 62, a lower recess 33, a support portion 34, and a horizontal hole 35. The front wall 30 and the rear wall 60 can be collectively referred to as a pair of opposing second surfaces.

[0027] In the side member 20 configured as described above, the lower left end of the front wall 30, the lower end of the left side wall 40, and the lower left end of the rear wall 60 are U-shaped and in contact with the mounting surface, and can therefore be referred to as the left leg portion 21. Similarly, the lower right end of the front wall 30, the lower end of the right side wall 50, and the lower right end of the rear wall 60 are U-shaped and in contact with the mounting surface, and can therefore be referred to as the right leg portion 22.

[0028] As shown in Figures 1-8, the side member 20 is fitted with a charcoal receiving section 70, a mounting section 80, and a heat dissipation plate 90. As shown in Figures 11 and 12, the charcoal receiving section 70 is box-shaped with an open top. This charcoal receiving section 70 has a bottom section 71 which is a rectangular plate with the front and rear sides being the longer sides and the left and right sides being the shorter sides. The front, rear, left, and right widths of this bottom section 71 are slightly smaller than the front, rear, left, and right widths of the side member 20. A front wall section 72, which is a rectangular plate that stands vertically upwards, is provided at the front end of the bottom section 71, and a rear wall section 73, which is a rectangular plate that stands vertically upwards, is provided at the rear end of the bottom section 71. The heights of these front wall section 72 and rear wall section 73 are approximately equal.

[0029] A roughly rectangular plate, the left wall section 74, is provided at the left end of the bottom section 71, standing vertically upwards, and a roughly rectangular plate, the right wall section 75, is provided at the right end of the bottom section 71, standing vertically upwards. The heights of these left wall section 74 and right wall section 75 are equal, and their heights are higher than the heights of the front wall section 72 and the rear wall section 73, and are approximately the same as the height from the upper end of the side member 20 to the horizontal holes 35, 44, 54, and 65. In addition, the front-to-back width is narrowed near the upper ends of the left wall section 74 and right wall section 75, and the front-to-back width of this narrowed section is approximately the same as the front-to-back width of the upper recesses 41 and 51 of the left wall 40 and right wall 50 of the side member 20.

[0030] A left-side mounting portion 76 is provided at the upper end of the left wall portion 74, and a right-side mounting portion 77 is provided at the upper end of the right wall portion 75, extending to the right. The front-to-back width of these left-side mounting portions 76 and right-side mounting portions 77 is approximately equal to the front-to-back width of the upper recesses 41 and 51 of the left wall 40 and right wall 50 of the side member 20. In addition, the width from the left end of the left-side mounting portion 76 to the right end of the right wall portion 75, and the width from the right end of the right-side mounting portion 77 to the left end of the left wall portion 74 are slightly larger than the left-to-right width of the side member 20.

[0031] As shown in Figure 13, the mounting section 80 is equipped with a charcoal resting plate 81 which is a roughly rectangular plate with the front and rear sides being the longer sides and the left and right sides being the shorter sides. The width of this charcoal resting plate 81 is slightly smaller than the width of the inside of the charcoal receiving section 70. The charcoal resting plate 81 is provided with multiple through holes 82 that penetrate in the vertical direction (thickness direction). These through holes 82 are oval-shaped extending in the front-to-back direction, arranged in parallel in the left-to-right direction and in series in the front-to-back direction. At each of the left and right ends of the charcoal resting plate 81, there is a semicircular recess 83 that is recessed inward. The center of this recess 83 is located approximately in the center of the charcoal resting plate 81 in the front-to-back direction.

[0032] Support legs 84 are provided at the front and rear ends of the charcoal resting plate 81, extending vertically downwards. These support legs 84 are provided across the entire length of the front and rear ends of the charcoal resting plate 81. The vertical height of the support legs 84 is approximately one-third of the height of the front wall 72 and rear wall 73 of the charcoal receiving section 70.

[0033] As shown in Figure 14, the heat sink 90 comprises a rectangular plate portion 91 with its front and rear sides as longer sides, and plate-shaped upright portions 92 that are erected vertically upward from the shorter sides (left and right sides) of the rectangle. The front-to-rear width of the plate portion 91 is smaller than the distance between the front wall 30 and the rear wall 60 of the side member 20, and larger than the distance from the inner surface of the front wall 30 to the tip of the support portion 64 of the rear wall 60, and the distance from the inner surface of the rear wall 60 to the tip of the support portion 34 of the front wall 30. The left-to-right width of the plate portion 91 is smaller than the distance between the inner surface of the left wall 40 and the right wall 50, and larger than the left-to-right width of the support portions 34 and 64. The upright portions 92 are provided along the entire length of the shorter side of the plate portion, and their height is approximately equal to the distance between the support portions 34 and 64 of the front wall 30 and the rear wall 60 and the lateral holes 35 and 65.

[0034] The method for attaching the charcoal receiving section 70, the mounting section 80, and the heat sink 90, which are configured as described above, to the side member 20 will now be explained. First, the heat sink 90 is inserted into the internal space of the side member 20 from above, and the heat sink 90 is placed on the support sections 34 and 64. At this time, the upright section 92 of the heat sink 90 may face upward or downward as shown in each figure. Furthermore, since the front-to-back width of the heat sink 90 is greater than the distance from the inner surface of the front side wall 30 to the tip of the support section 64 of the rear side wall 60, and the distance from the inner surface of the rear side wall 60 to the tip of the support section 34 of the front side wall 30, the heat sink 90 can be placed without falling off the support sections 34 and 64 even if it is shifted to either the front-to-back direction.

[0035] After the heat sink 90 is placed in the internal space of the side member 20, the charcoal receiving section 70 is attached. The charcoal receiving section 70 is attached so that the left mounting section 76 and the right mounting section 77, which are provided at the upper ends of the left wall section 74 and the right wall section 75, fit into the upper recesses 41 and 51. At this time, the width from the left end of the left mounting section 76 to the right end of the right wall section 75, and the width from the right end of the right mounting section 77 to the left end of the left wall section 74 are slightly larger than the left-right width of the side member 20, so even if the charcoal receiving section 70 is shifted to either the left or right direction, it can be attached without coming off the upper recesses 41 and 51. In addition, the width from the left side of the left wall section 74 to the right side of the right wall section 75 is smaller than the distance between the right side of the left wall 40 and the left side of the right wall 50 of the side member 20, so a gap is created between the left wall 40 and the left wall section 74, and a gap is created between the right wall 50 and the right wall section 75.

[0036] After attaching the heat dissipation plate 90 and the charcoal receiving section 70 to the side member 20, the mounting section 80 is placed on the charcoal receiving section 70. The mounting section 80 is placed on the charcoal receiving section 70 with the support legs 84 facing downwards. At this time, the left and right ends of the charcoal receiving plate 81 of the mounting section 80 can be spaced apart from the left wall section 74 and the right wall section 75 of the charcoal receiving section 70, but one end may be in contact with them. Alternatively, the mounting section 80 may be placed on the charcoal receiving section 70 before attaching the charcoal receiving section 70 to the side member 20, and the charcoal receiving section 70 with the mounting section 80 on it may then be attached to the side member 20. The charcoal receiving section 70 and the mounting section 80 together can be referred to as the mounting member, which is a component used for placing solid fuel.

[0037] The stove 10, configured as described above, uses charcoal, a solid fuel, placed on the mounting section 80 and the charcoal burning as a heat source. The heat generated by the combustion of the charcoal is directly transferred to the mounting section 80 and then directly from the mounting section 80 to the charcoal receiving section 70. In addition, the radiant heat generated by the combustion of the charcoal is transferred to the mounting section 80, the bottom 71 of the charcoal receiving section 70 surrounding the charcoal, the front wall 72, the rear wall 73, the left wall 74, and the right wall 75. The heat transferred to the charcoal receiving section 70 is then transferred from the left mounting section 76 and the right mounting section 77 of the charcoal receiving section 70 to the left wall 40 and the right wall 50 of the side member 20.

[0038] The heat transferred to the left wall 40 and right wall 50 of the side member 20 is transferred downward and to the sides, and once it reaches the support parts 34 and 64 of the front wall 30 and rear wall 60, it is transferred from the support parts 34 and 64 to the heat sink 90. ​​The heat transferred to the side member 20 is dissipated into the outside space from the front wall 30, left wall 40, right wall 50, rear wall 60, and heat sink 90, and the remaining heat is transferred from the legs 21 and 22 to the mounting surface.

[0039] The stove 10 described above heats food by placing various cooking utensils on the upper end of the side member 20. For example, if a wire rack is placed using the protrusions 31 and 61 on the upper end of the side member 20, the protrusions 31 and 61 can prevent the wire rack from shifting, and the food placed on the wire rack can be heated by the radiant heat of the charcoal. Alternatively, if an iron plate is placed on the upper end of the side member 20, the radiant heat of the charcoal will be transferred to the iron plate, and the food placed on the iron plate can be heated.

[0040] With the above configuration, the stove 10 according to this embodiment provides the following effects.

[0041] In the stove 10 according to this embodiment, heat generated by the combustion of solid fuel is transferred from the mounting section 80 and the charcoal receiving section 80 to the side member 20, and a portion of the heat transferred to the side member 20 is transferred to the heat dissipation member 90 and dissipated by the heat dissipation member 90. As a result, the amount of heat transferred to the lower end of the side member 20 is reduced, and heat damage to the mounting surface can be suppressed.

[0042] Since the charcoal receiving section 70 and the side member 20 are not in contact between the contact point and the contact point between the heat dissipation member 90 and the side member 20, heat transfer from the charcoal receiving section 70 to the side member 20 is suppressed in that area. As a result, most of the heat transfer from the charcoal receiving section 70 to the side member 20 occurs in the upper part, and the distance from that heat transfer point to the heat dissipation member 90 can be increased. Therefore, the heat dissipation effect of the side member 20 between the heat transfer point and the heat dissipation member 90 can also be expected, further improving the overall heat dissipation function of the stove 10.

[0043] Since the charcoal receiving section 70 covers the front, back, left, right, and bottom of the mounting section 80, radiant heat from the solid fuel placed on the mounting section 80 is not directly transmitted to the side member 20. Therefore, the heat transmitted to the side member can be suppressed, and the heat transmitted to the lower end of the stove 10 can be further reduced.

[0044] The charcoal receiving section 70 is in contact with the relatively narrow left wall 40 and right wall 50, while the heat dissipation plate 90 is in contact with the relatively wide front wall 20 and rear wall 60. This reduces the contact area between the charcoal receiving section 70 and the side member 20, while increasing the contact area between the heat dissipation plate 90 and the side member 20. Therefore, it is possible to suppress heat transfer from the charcoal receiving section 70 to the side member 20 while further improving the heat transfer efficiency from the side member 20 to the heat dissipation member 90, thereby improving the overall heat dissipation function of the stove 10.

[0045] The heat sink 90 has horizontal holes 35, 44, 54, and 65 on its upper side, and lower recesses 33 and 63 on its lower side, allowing outside air to pass above and below the heat sink 90. ​​Therefore, the heat sink 90 can dissipate heat more efficiently with this outside air.

[0046] <Variation> In this embodiment, the side member 20, charcoal receiving section 70, mounting section 80, and heat dissipation plate 90 are provided as separate components, and the charcoal receiving section 70, mounting section 80, and heat dissipation plate 90 are attached to the side member 20. However, multiple components may be formed integrally by welding or the like. For example, the charcoal receiving section 70 and the mounting section 80 may be configured as separate components, with the heat dissipation plate 90 pre-attached to the side member 20, or the charcoal receiving section 70 and the mounting section 80 may be configured as a single unit.

[0047] In this embodiment, the side member 20 is rectangular in plan view, but it may be square, or it may be another polygon or circular shape. In this case, the shape of the charcoal receiving section, the mounting section, and the heat dissipation plate should be changed according to the shape of the side member.

[0048] In this embodiment, a plate-shaped heat sink 90 is used as the heat dissipation member, but it does not have to be plate-shaped; it can be made of metal and has a shape suitable for heat dissipation that allows heat to be transferred from the side member 20.

[0049] In this embodiment, the side member 20 is provided with lateral holes 35, 44, 54, and 65, and the heat dissipation plate 90 is performed by the airflow passing through these lateral holes 35, 44, 54, and 65. However, the lateral holes 35, 44, 54, and 65 do not need to be provided. Also, the lower recesses 33 and 63 do not need to be provided. Even in these cases, a certain degree of heat dissipation function can be obtained.

[0050] Regarding the charcoal receiving section 70, it is assumed that it is supported only by the upper recesses 41 and 51, but additional support points may be provided below the upper recesses 41 and 51, or it may not be supported by the upper recesses 41 and 51 at all. In other words, for the purpose of obtaining the heat dissipation function of the heat sink 90, it is sufficient to support it at a position at least above the heat sink 90. [Explanation of Symbols]

[0051] Stove...10, Side members...20, Left leg...21, Right leg...22, Front wall...30, Rough section...31, Vertical hole...32, Lower recess...33, Support section...34, Horizontal hole...35, Left wall...40, Upper recess...41, Horizontal hole...44, Right wall...50, Upper recess...51, Horizontal hole...54, Rear wall...60, Rough section...61, Vertical hole...62, Lower recess...63, Support section...64, Horizontal hole...65, Charcoal tray...70, Bottom...71, Front wall...72, Rear wall...73, Left wall...74, Right wall...75, Mounting section...80, Heat dissipation plate...90

Claims

1. A stove that is placed on a mounting surface and used, A side member that encloses the internal space and whose lower end can abut against the aforementioned mounting surface, A mounting member is provided in the internal space of the side member, in contact with the side member, and capable of holding solid fuel. A heat dissipation member made of metal, which is in contact with the side member below the aforementioned mounting member, Equipped with, The aforementioned mounting member is, It has a mounting section on which the solid fuel can be placed, and a receiving section that supports the mounting section and covers the area below the mounting section, The receiving portion is in contact with the side member above the support portion of the mounting portion described above. A stove in which, below the point where the receiving portion and the side member are in contact, a gap is provided between the aforementioned mounting member and the side member.

2. The receiving portion is box-shaped with an open top. The stove according to claim 1, wherein the mounting portion is arranged in the internal space of the receiving portion.

3. The side member is rectangular in shape, comprising a pair of opposing first surfaces and a pair of opposing second surfaces that are wider than the first surfaces. The mounting member is in contact with the first surface, The stove according to claim 1 or 2, wherein the heat dissipation member is in contact with the second surface.

4. The stove according to any one of claims 1 to 3, wherein the side member has an opening at a position below the lower end of the mounting member and above the heat dissipation member.

Citation Information

Patent Citations

  • JP1988037902U