Environmentally friendly gold furnace structure

TWM685303UActive Publication Date: 2026-07-11黃林美玉
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Patent Information

Application Number
TW115203308
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-04-16
Publication Date
2026-07-11
Estimated Expiration
2036-04-15

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    Figure IMG-2_DRAW_115203308-A0305-14-0002-2
  • Figure IMG-2_DRAW_115203308-A0305-14-0003-3
    Figure IMG-2_DRAW_115203308-A0305-14-0003-3
Patent Text Reader

Abstract

An environmentally friendly furnace structure includes: an outer barrel, an ash collection device, an inner barrel, and a furnace cover. The outer barrel has multiple ventilation holes and at least three feet at the bottom. The ash collection device has a disc with at least three notches around its perimeter and a conical tube extending from the center of its top surface. A hand-held part is provided at the top opening of the conical tube. The inner barrel has a hollow body with multiple flow holes and a support frame fixed at the bottom. The support frame has at least three support feet, allowing the inner space surrounded by the support feet to be slightly larger than the disc.
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Description

Structure of Environmentally Friendly Gold Incinerator Technical Field

[0001] This creation relates to a structure of an environmentally friendly gold incinerator for burning gold paper. Prior Art

[0002] According to the current well-known gold incinerator structure, as disclosed in the Republic of China Patent Certificate No. M441414, it includes: an outer barrel (10), an inner barrel (20) and a barrel cover (30). Among them, the outer barrel (10) forms a top edge portion (11) at the top, and a plurality of ventilation holes (12) are provided around the outer barrel (10) near the top edge portion (11). An inner barrel (20) is accommodated in the outer barrel (10). A hollow opening (22) is provided at the bottom end of the inner barrel (20), so that external air can be inhaled from the ventilation holes (12) to the hollow opening (22) and introduced into the inner barrel (20). The diameter of the inner barrel (20) is smaller than the diameter of the outer barrel (10), and a spacing gap (A) is formed between the inner and outer barrels (20)(10) to block the high temperature of the inner barrel (20). In addition, a support frame (23) is installed at the bottom end of the inner barrel (20), and the support frame (23) stands on the bottom of the outer barrel (10).

[0003] However, the above-mentioned well-known structure still has the following problems in actual application: (1) After the inner barrel (20) is placed in the outer barrel (10), it cannot be fully fixed, so that the inner barrel (20) will shift arbitrarily inside the outer barrel (10). In this way, the spacing gap (A) cannot be maintained at a fixed size, and the effect of blocking the high temperature of the inner barrel (20) is relatively poor; (2) Its support frame (23) is separated from the inner barrel (20). Therefore, when cleaning the ashes after burning gold paper, it is often necessary to first lift the inner barrel (20) upwards and then pour out the ashes together with the support frame (23), which is quite inconvenient to use.

[0004] Therefore, how to research and improve the above-mentioned shortcomings of the well-known gold incinerator structure is the goal that the relevant industry needs to strive to research and develop. In view of this, the creator has come up with the idea of creation, and then designed it with years of experience, discussed it extensively, tested samples, and revised and improved it many times, and finally launched this creation. Summary of the Invention Problems to be Solved by the Invention

[0005]

[0006] The technical problem to be solved by this creation is to provide an environmentally friendly gold furnace structure in view of the above-mentioned deficiencies existing in the prior art. Means for Solving the Problem

[0007]

[0008] This creation provides an environmentally friendly gold furnace structure, which includes: an outer barrel, an ash-dropping device, an inner barrel and a furnace cover. Among them, the outer barrel is penetrated with a plurality of ventilation holes, and at least three barrel feet are provided at the bottom. After each barrel foot uses a bolt to extend into the interior of the outer barrel, a nut is used for locking, so that the outer barrel can be lifted up by the extension of the barrel feet. The ash-dropping device has a disc, and at least three notches corresponding to the number of barrel feet are formed on the periphery of the disc. By using the notches to provide an avoidance for the combination of the bolt and the nut, the ash-dropping device can be smoothly placed inside the outer barrel. By being stuck with the combination of the disc, the bolt and the nut, the ash-dropping device can also be prevented from generating excessive displacement. Also, a conical tube with a larger bottom and a smaller top extends from the center of the top surface of the disc. A handheld part is provided at the upper pipe opening of the conical tube, and the handheld part is composed of two overlapping rod bodies to improve the structural strength of the handheld part. The inner barrel has a hollow barrel body, which is penetrated with several circulation holes, and a support frame is fixedly provided below. The support frame has at least three support feet, so that the inner space surrounded by the support feet can be slightly larger than the disc. When the inner barrel is placed into the outer barrel and the support frame stands on the bottom of the outer barrel, the inner barrel can be limited by the abutment of the support feet and the disc, and at the same time, an interlayer space can be formed between the inner barrel and the outer barrel. A ventilation pipe extending upward is provided in the center of the support frame. The furnace cover is formed with a cover edge and a stepped ring part from the outside to the inside, so that the furnace cover can cover the top edges of the outer barrel and the inner barrel with the cover edge and the stepped ring part respectively. Also, a through hole is penetrated in the center of the furnace cover, and a net body is installed in the through hole. The net body can prevent the ash from floating into the atmosphere. A pipe body is provided on the top surface of the furnace cover corresponding to the through hole, and a top cover is engraved on the pipe body, and the top cover is riveted with a rivet. Thus, an environmentally friendly gold furnace structure can be obtained. Effect of the Invention

[0009]

[0010] (I) This invention provides an environmentally friendly furnace structure, which uses the disc to hold the support leg, so that the inner barrel cannot be excessively displaced inside the outer barrel, thus effectively forming the gap space. In this way, the inner barrel will not be greatly tilted to one side due to external forces such as shaking or vibration during moving, or even directly close to the outer barrel, which significantly reduces the high temperature of the inner barrel.

[0011] (ii) This invention provides an environmentally friendly gold incense burner structure. The inner barrel is directly connected to the support frame. Therefore, when cleaning the ashes after the gold paper is burned, the support frame can be removed at the same time simply by lifting the inner barrel upwards. It is very convenient to use. Simple Explanation of the Diagram

[0012]

[0013] [Figure 1] is a three-dimensional composite image of this creation.

[0014] [Figure 2] is a three-dimensional exploded view of this work.

[0015] [Figure 3] is a composite image of this work.

[0016] [Figure 4] is a diagram showing the state of the dust collection device and the outer barrel of this creation.

[0017] [Figure 5] is a composite cross-sectional view of this creation.

[0018] [Figure 6] is a diagram showing the usage status of this creation.

[0019] [Figure 7] is a magnified view of the work in use.

[0020] [Figure 8] is another preferred embodiment of this invention. Implementation

[0021] To enable your review committee to gain a better understanding of the purpose, features, and effects of this work, the following examples, accompanied by simplified illustrations, are provided and explained in detail:

[0022] First, as shown in Figures 1 to 5, it includes: an outer barrel (10), an ash collection device (20), an inner barrel (30), and a furnace cover (40). The outer barrel (10) has multiple ventilation holes (101) and at least three barrel legs (12) at its bottom. Each barrel leg (12) is inserted into the outer barrel (10) by a bolt (13) and then secured with a nut (14), allowing the outer barrel (10) to be raised by the extension of the barrel legs (12). The ash collection device (20) has a disc (21) with at least three notches (211) corresponding to the number of barrel legs (12) formed around its periphery. The opening (211) provides a dodging mechanism for the connection between the bolt (13) and the nut (14), allowing the dust collection device (20) to be smoothly placed inside the outer barrel (10). The engagement between the disc (21) and the bolt (13) and nut (14) also prevents excessive displacement of the dust collection device (20). A conical tube (22), wider at the bottom and narrower at the top, extends from the center of the top surface of the disc (21). A handle (23) is provided at the upper opening of the conical tube (22), which is composed of two overlapping intersecting rods to improve the structural strength of the handle (23). The inner barrel (30) has a hollow barrel body. 31) The barrel body (31) has several flow holes (311) through it, and a support frame (32) is fixedly installed below it. The support frame (32) has at least three support legs (321) so that the inner space surrounded by the support legs (321) is slightly larger than the disc (21). When the inner barrel (30) is placed into the outer barrel (10) and the support frame (32) is placed at the bottom of the outer barrel (10), the inner barrel (30) can be limited by the abutment between the support legs (321) and the disc (21). At the same time, a gap space (A) can be formed between the inner barrel (30) and the outer barrel (10). A center is provided in the center of the support frame (32). An upward-extending air duct (33) is provided. The furnace cover (40) has a cover edge (41) and a stepped ring (42) from the outside to the inside, so that the furnace cover (40) can cover the top edge of the outer barrel (10) and the inner barrel (30) respectively with the cover edge (41) and the stepped ring (42). A through hole (43) is provided in the center of the furnace cover (40), and a mesh (44) is installed in the through hole (43). The mesh (44) can prevent ash from being scattered into the atmosphere. A tube (45) is provided on the top surface of the furnace cover (40) relative to the through hole (43). A top cover (46) is cut out on the tube (45), and the top cover (46) is riveted by a rivet (47).

[0023] This invention provides an environmentally friendly furnace structure, wherein a crossbar (121) is provided between each of the bucket legs (12) so that the stability of the outer bucket (10) is increased when it is placed by connecting the crossbars (121).

[0024] This invention provides an environmentally friendly furnace structure, wherein most of the flow holes (311) are distributed on the lower edge of the barrel body (31), and a small portion of the flow holes (311) are provided on the middle and upper edges of the barrel body (31).

[0025] This invention provides an environmentally friendly furnace structure, wherein the furnace cover (40) is provided with two handles (48).

[0026] This invention provides an environmentally friendly furnace structure, wherein the handle (48) mentioned above is made of metal plate (see Figures 1, 2, 3, 5 and 6).

[0027] This invention provides an environmentally friendly furnace structure, wherein the inner surface of the furnace cover (40) is provided with several connecting plates (49), so that the connecting plates (49) are connected to both ends of the handle (48) to reinforce the handle (48).

[0028] This invention provides an environmentally friendly furnace structure, wherein the handle (48) described in the second part is a metal ring (see also Figure 8).

[0029] As shown in Figures 6 and 7, in actual use, the gold paper is dropped into the inner barrel (30) and burned in the inner barrel (30). During the burning process, external air is drawn in through the vent (101), and the air flows along the space (A), the conical tube (22), the flow hole (311) and the air guide (33), and then is discharged from the mesh (44) through the pipe (45). The space (A) separates the hot air and also prevents the high temperature of the inner barrel (30) from being conducted to the outer barrel (10), so it is relatively safe to use.

[0030] In use, the unopened gold paper can be stacked in the inner barrel (30), and the ventilation path and support channel are formed through the air guide pipe (33), which will allow the stacked gold paper to burn smoothly and quickly, and prevent the gold paper from collapsing in the center during the burning process.

[0031] By utilizing the structure of the above specific embodiment, the following benefits can be obtained: (i) by using the disc (21) to hold the support foot (321), the inner barrel (30) can be prevented from excessive displacement inside the outer barrel (10), so as to effectively form the gap space (A). In this way, the inner barrel (30) will not be significantly tilted to one side due to external forces (such as shaking or vibration during movement), or even directly close to the outer barrel (10), which significantly blocks the high temperature of the inner barrel (30); (ii) the inner barrel (30) is directly connected to the support frame (32), so when cleaning the ashes after the gold paper is burned, it is only necessary to lift the inner barrel (30) upwards to remove the support frame (32) at the same time, which is very convenient to use.

[0032] In conclusion, this creation has indeed achieved a groundbreaking structural design and possesses improved creative content. At the same time, it can achieve industrial applicability and progress. Furthermore, this creation has not been seen in any publication and possesses novelty. Therefore, it meets the relevant provisions of the Patent Law. Hence, we hereby file a utility model patent application and earnestly request the Examining Committee of the Bureau to grant legal patent rights. We are deeply grateful for your consideration.

[0033] The above description is merely one preferred embodiment of this invention and should not be construed as limiting the scope of this invention. All equivalent variations and modifications made within the scope of the patent application of this invention should still fall within the scope of this invention.

[0034]

[0035] This creative work includes:

[0036] (10): Outer bucket

[0037] (101): Vent hole

[0038] (12): Bucket feet

[0039] (121): Crossbar

[0040] (13): Bolt

[0041] (14): Nut

[0042] (20): Ash collection device

[0043] (21): Disk

[0044] (211): Gap

[0045] (22): Conical tube

[0046] (23): Hand-held part

[0047] (30): Inner bucket

[0048] (31): Barrel body

[0049] (311): Flow hole

[0050] (32): Support frame

[0051] (321): Support foot

[0052] (33): Air duct

[0053] (40): Furnace lid

[0054] (41): Cover edge

[0055] (42): Ring section

[0056] (43): Through hole

[0057] (44): Net

[0058] (45):tube body

[0059] (46): Top cover

[0060] (47): rivet

[0061] (48): Handle

[0062] (49): Connecting plate

[0063] (A): Spacing

Claims

1. An environmentally friendly furnace structure, comprising: an outer barrel, an ash collection device, an inner barrel, and a furnace lid, wherein: The outer barrel has multiple ventilation holes and at least three barrel feet at the bottom. Each barrel foot is secured by a bolt inserted into the outer barrel and then locked with a nut, allowing the outer barrel to be raised by extending the barrel feet. The ash collection device has a disc with at least three notches on its periphery corresponding to the number of barrel feet. These notches provide cover for the bolts and nuts, allowing the ash collection device to be placed smoothly inside the outer barrel. The interlocking of the disc with the bolts and nuts also prevents excessive displacement of the ash collection device. A conical tube, wider at the bottom and narrower at the top, extends from the center of the top surface of the disc. A handle is provided at the top opening of the conical tube. The handle is composed of two overlapping intersecting rods to improve the structural strength of the handle. The inner barrel has a hollow barrel body with several flow holes. A support frame is fixed at the bottom, and the support frame has at least three support legs, so that the inner space surrounded by the support legs is slightly larger than the disc. When the inner barrel is placed in the outer barrel and the support frame is placed at the bottom of the outer barrel, the inner barrel can be limited by the abutment between the support legs and the disc, and a gap space can be formed between the inner barrel and the outer barrel. A guide pipe extending upward is provided in the center of the support frame. The furnace cover has a cover edge and a stepped ring from the outside to the inside, so that the furnace cover can cover the top edge of the outer barrel and the top edge of the inner barrel respectively with the cover edge and the stepped ring. A through hole is passed through the center of the furnace cover, and a mesh is installed in the through hole. A tube is provided on the top surface of the furnace cover opposite to the through hole. A top cover is cut out on the tube and the top cover is riveted with rivets.

2. The environmentally friendly furnace structure as described in claim 1, wherein, A crossbar is provided between each of the bucket legs to increase the stability of the outer bucket when it is placed.

3. The environmentally friendly furnace structure as described in claim 1, wherein, The furnace cover is equipped with two handles.

4. The environmentally friendly furnace structure as described in claim 3, wherein, The handle described above is made of metal plate.

5. The environmentally friendly furnace structure as described in claim 3, wherein, The handle is made of a metal plate, and the inner surface of the furnace cover is provided with several connecting plates, so that the handle can be reinforced by connecting the connecting plates to both ends of the handle.

6. The environmentally friendly furnace structure as described in claim 3, wherein, The handle described above is a metal ring.