Coffee bean roaster
The coffee bean roaster's detachable support member and grip design facilitates safe and stable drum removal, addressing the instability and safety issues of existing roasters.
Patent Information
- Application Number
- JP2025527633
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-06-13
- Filing Date
- 2024-05-28
- Publication Date
- 2026-01-21
- Estimated Expiration
- 2044-05-28
AI Technical Summary
Existing coffee bean roasters are difficult to remove from their supports due to the drum being pivotally supported, making it unstable and unsafe to handle when hot.
A coffee bean roaster design featuring a detachable support member and shaft configuration that allows easy and stable removal of the drum by grasping a grip, avoiding the need to handle the crank-shaped shaft directly.
Enables safe and stable removal of the drum from the roaster, preventing burns and ensuring efficient cooling of roasted beans after roasting.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a coffee bean roaster for roasting coffee beans. [Background technology]
[0002] Patent Document 1 discloses a handheld roaster for roasting coffee beans, etc. In the roaster described in Patent Document 1, a rotation groove provided on the lid of the drum body is pivotally supported in a recess in the front support piece, and a rotation step provided on the handle is pivotally supported in a recess in the rear support piece, thereby supporting the drum body on both sides.
[0003] When a user roasts coffee beans using a roaster, for example, the user places the coffee beans into the drum body and rotates the drum body using the handle while the drum body is heated by a flame emitted from a burner. The user then turns off the flame at a time of their choosing, removes the drum body from its pivoted support, and discharges the roasted coffee beans from the drum body. At this time, it is desirable to discharge the coffee beans from the drum body and allow them to cool shortly after the flame is turned off in order to prevent the roasting from progressing after the flame is turned off.
[0004] However, the roaster described in Patent Document 1 has the problem that the drum body is difficult to remove from the pivotal supports because both sides of the drum body are pivotally supported in recesses in the support pieces. In other words, for a short time after the flame is turned off, the drum body is still hot, so the user cannot hold or touch it, and must remove the drum body from the pivotal supports by holding the handles. However, it is difficult to remove the drum body from the pivotal supports by holding the handles that extend to one side of the drum body. Furthermore, because the handles are crank-shaped, removing the drum body from the pivotal supports by holding the handles may cause the drum body to rotate, resulting in an unstable state. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Japanese Patent Application Laid-Open No. 2002-119269 Summary of the Invention [Problem to be solved by the invention]
[0006] The present invention has been made in consideration of the above circumstances, and has an object to provide a coffee bean roaster in which the drum can be removed stably and easily. [Means for solving the problem]
[0007] The above problem is solved by a coffee bean roaster according to the present invention, which is a coffee bean roaster for roasting coffee beans, comprising: a base that is attached to a trivet and has an attachment portion; a support member that is attached to the attachment portion; a shaft that passes through the support member, is rotatable relative to the support member, and is supported directly or indirectly by the support member; and a drum that is fixed to the shaft at one end and has an opening at the other end through which the coffee beans can pass, and that rotates by receiving rotational force transmitted from the shaft, wherein either the base or the support member fits into the other of the base and the support member, and the drum is supported on one side at the one end.
[0008] In the coffee bean roaster according to the present invention, either the base or the support member installed on the trivet is detachably fitted to the other of the base or the support member. This allows the support member to be detachably attached to the mounting portion of the base. Furthermore, the drum is fixed at one end to a shaft that penetrates the support member, is rotatable relative to the support member, and is supported directly or indirectly on the support member, and is supported on one side at that end. This allows the user to easily remove the drum from the base by, for example, grasping the support member or a member near the support member with one hand and removing the support member from the mounting portion of the base. Furthermore, even if the shaft has a crank shape, the user does not need to grasp the shaft, but can stably remove the drum from the base by grasping the support member or a member near the support member.
[0009] In the coffee bean roaster of the present invention, preferably, the support member has a support portion that is attached to the attachment portion, and a bearing portion that is connected to the support portion and through which the shaft passes, and when the support portion is attached to the attachment portion, the shaft that passes through the bearing portion extends in a direction away from the base as it moves from the bearing portion toward the drum.
[0010] In the coffee bean roaster according to the present invention, when the support portion of the support member is attached to the mounting portion of the base, the shaft that passes through the bearing portion of the support member extends in a direction away from the base as it moves from the bearing portion of the support member toward the drum. Therefore, when the support portion of the support member is attached to the mounting portion of the base, a reservoir for coffee beans introduced through the opening of the drum can be formed on the side opposite the opening of the drum, i.e., on one end side. This allows coffee beans to be roasted efficiently in a coffee bean roaster that allows the drum to be stably and easily removed.
[0011] In the coffee bean roaster of the present invention, the support member preferably has a groove at its lower end into which the trivet fits when attached to the attachment portion.
[0012] In the coffee bean roaster according to the present invention, when the support member is attached to the mounting portion, the trivet fits into a groove provided at the lower end of the support member. Therefore, even when the support member is attached to the mounting portion of the base while resting on the trivet, the position of the support member can be prevented from shifting from the trivet. Therefore, the support member is stably supported by the trivet when attached to the mounting portion. This allows the user to stably rotate the shaft passing through the support member, thereby stably rotating the drum.
[0013] The coffee bean roaster according to the present invention is preferably characterized by further comprising a grip attached to the support member on the opposite side of the support member from the drum.
[0014] With the coffee bean roaster according to the present invention, the user can more easily remove the drum from the base by grasping the grip attached to the support member with, for example, one hand and removing the support member from the mounting portion of the base. Also, even if the shaft has a crank shape, the user can more stably remove the drum from the base by grasping the grip attached to the support member with, for example, one hand.
[0015] In the coffee bean roaster according to the present invention, the shaft is preferably arranged to pass through the grip.
[0016] In the coffee bean roaster according to the present invention, the shaft passes through the grip, so the user can stably support the drum via the shaft by holding the grip with, for example, one hand, which allows the user to remove the drum from the base more stably and easily.
[0017] The coffee bean roaster according to the present invention is preferably characterized by further comprising a cover portion provided opposite the grip at a position spaced apart from the grip.
[0018] In the coffee bean roaster according to the present invention, the cover is provided facing the grip at a distance from the grip held by the user, which prevents the user's hands and fingers from coming into contact with the trivet or, for example, the gas canister cover of a portable stove when holding the grip or while the user is holding the grip.
[0019] In the coffee bean roaster according to the present invention, the base preferably has a groove into which the trivet fits.
[0020] In the coffee bean roaster according to the present invention, when the base is installed on the trivet, the trivet fits into a groove provided in the base. Therefore, when the base is installed on the trivet, the base's position can be prevented from shifting from the trivet. Therefore, the base is stably installed on the trivet. This allows the user to stably rotate the shaft and the drum.
[0021] In the coffee bean roaster according to the present invention, the base is preferably formed in an octagonal shape, and the grooves are provided on each side of the octagon.
[0022] In the coffee bean roaster according to the present invention, the grooves in the base are provided on each side of the octagonal base. This increases the degree of freedom in the installation angle of the base relative to the trivet. This allows the user to set the installation angle of the base relative to the trivet according to their preference. For example, the user can install the base on the trivet so that the handle faces forward, so that the handle faces diagonally from the forward direction, so that the handle faces either left or right, or so that the handle faces backward.
[0023] The coffee bean roaster of the present invention is preferably characterized in that it is provided with a grip connected to the support member on the opposite side of the support member from the drum, and when the support member is attached to the attachment part, the support member has a heat avoidance part that is inclined overall above the support part that is attached to the attachment part and away from the drum, thereby avoiding convection heat around the drum.
[0024] In the coffee bean roaster according to the present invention, a user can more easily remove the drum from the base by grasping the grip and removing the support member from the mounting portion of the base. However, convection heat from the flames generated around the drum during roasting can heat the support member, potentially making the grip connected to the support member too hot to hold. However, in this preferred embodiment, the support member has a heat avoidance section that is inclined away from the drum to avoid the convection heat around the drum. This prevents the support member and the grip connected to it from overheating.
[0025] In the coffee bean roaster of the present invention, it is preferable that when the support member is attached to the attachment portion, the shaft extends from a through hole that passes through the support member in a direction away from the base as it moves toward the drum, the support member has the through hole above the heat avoidance portion, and the area between the heat avoidance portion and the through hole is generally inclined in a direction approaching the drum, with the upper end of the heat avoidance portion as the base point.
[0026] In the coffee bean roaster according to the present invention, the shaft extends from the through-hole that penetrates the support member toward the drum, in a direction away from the base. The drum is then connected along the inclination of the shaft, forming a coffee bean collection area within the drum's internal space, and the drum is rotated to allow for uniform roasting. Even if the heat avoidance portion is significantly inclined toward the handle to effectively avoid convection heat, the area between the heat avoidance portion and the through-hole is generally inclined from the upper end of the heat avoidance portion toward the drum. Therefore, the angle of the shaft and the drum connected to it is corrected by the heat avoidance portion to an angle suitable for roasting, enabling a satisfactory roast.
[0027] In the coffee bean roaster according to the present invention, the grip and the support member are preferably connected in a spaced-apart state, thereby forming a space between the grip and the support member.
[0028] According to the coffee bean roaster of the present invention, a space is provided between the grip and the support member, which acts as an insulating layer, reducing the heat transmitted to the grip and preventing burns to the hands holding the grip. [Effects of the Invention]
[0029] According to the present invention, a coffee bean roaster can be provided in which the drum can be removed stably and easily. [Brief explanation of the drawings]
[0030] [Figure 1] FIG. 1 is a perspective view showing a coffee bean roaster according to an embodiment of the present invention. [Figure 2] FIG. 1 is a perspective view showing a coffee bean roaster according to an embodiment of the present invention. [Figure 3] 2 is a cross-sectional view taken along the cutting plane AA shown in FIG. 1. [Figure 4] FIG. 3 is a perspective view showing a portion near a support member and a shaft according to the embodiment. [Figure 5] 5 is a cross-sectional view taken along the cutting plane BB shown in FIG. 4. [Figure 6] FIG. 3 is a perspective view showing a support member according to the embodiment. [Figure 7] FIG. 7 is a side view of the support member as viewed in the direction of arrow A2 shown in FIG. 6. [Figure 8] FIG. [Figure 9] FIG. [Figure 10] FIG. 2 is a plan view showing the drum of the embodiment. [Figure 11] FIG. 2 is an exploded view showing the drum of the present embodiment. [Figure 12] FIG. 10 is a central vertical cross-sectional view of a coffee bean roaster according to a modified example of the present embodiment. [Figure 13] FIG. 10 is a diagram showing the support member being attached to the attachment portion of this modified example. [Figure 14] FIG. 10 is a front view of the mounting portion and its surroundings in a state where a support member is mounted on the mounting portion of this modified example. [Figure 15] 15A and 15B are diagrams showing the mounting portion and its surroundings of this modified example, with FIG. 15A being a perspective view from the bottom side and FIG. 15B being a plan view. [Figure 16] FIG. 16(A) is a perspective view of the support member of this modified example, and FIG. 16(B) is a further modified example of the support member of FIG. 16(A). [Figure 17] 13 is a schematic enlarged view of the grip and its surroundings shown in FIG. [Figure 18] FIG. 2 is a perspective view of a spoon attached to the coffee bean roaster according to the embodiment. [Figure 19] Front view of the spoon in Figure 18 (the back view is symmetrical to the front view). [Figure 20] 19 is a plan view of the spoon of FIG. [Figure 21] Bottom view of the spoon in Fig. 18. [Figure 22] 19 is a right side view of the spoon of FIG. [Figure 23] Left side view of the spoon of Figure 18. DETAILED DESCRIPTION OF THE INVENTION
[0031] Preferred embodiments of the present invention will now be described in detail with reference to the drawings. The embodiments described below are preferred examples of the present invention, and therefore various technically preferable limitations are applied thereto, but the scope of the present invention is not limited to these aspects unless otherwise specified in the following description to the effect that the present invention is particularly limited. Furthermore, in each drawing, similar components are designated by the same reference numerals, and detailed descriptions thereof will be omitted as appropriate.
[0032] 1 and 2 are perspective views showing a coffee bean roaster according to this embodiment. FIG. 3 is a cross-sectional view taken along the cutting plane AA shown in FIG. Fig. 1 is a perspective view showing a state in which the support member is attached to the attachment portion of the base, and Fig. 2 is a perspective view showing a state in which the support member is detached from the attachment portion of the base.
[0033] Coffee bean roaster 2 according to this embodiment is a device used when roasting coffee beans, and is primarily installed on trivet 81 of portable stove 8 as shown in Figures 1 to 3. In other words, coffee bean roaster 2 according to this embodiment is a portable coffee bean roaster that can be used in an ordinary home.
[0034] As shown in Figures 1 to 3, coffee bean roaster 2 includes a base 3, a support member 4, a shaft 5, and a drum 6. Coffee bean roaster 2 may further include a grip 71 and a cover portion 72. Note that portable stove 8 is not included in coffee bean roaster 2, and is shown in Figures 1 to 3 for ease of explanation.
[0035] The base 3 is a platform for placing the roaster main body, consisting of the drum 6 and shaft 5, on the portable stove 8 via the support member 4. It is formed, for example, of metal as a ring-shaped member with an open center. The base 3 has a groove 321 at its bottom end and is installed on the trivet 81 of the portable stove 8. As shown in Figures 1 to 3, when the base 3 is installed on the trivet 81, the trivet 81 fits into the groove 321 in the base 3. In the portable stove 8 shown in Figures 1 to 3, four trivets 81 are provided every 90 degrees in the circumferential direction around the burner 82. Therefore, it is preferable that at least four grooves 321 be provided at the bottom end of the base 3 every 90 degrees, corresponding to the positions of the trivets 81 in the circumferential direction around the center of the ring. In the base 3 shown in Figures 1 to 3, eight grooves 321 are provided every 45 degrees in the circumferential direction around the center of the ring.
[0036] The base 3 has an attachment part 31. As shown in Figs. 1 to 3, a support member 4 that supports the roaster main body is attached to the attachment part 31 of the base 3. For example, as shown by arrow A1 in Fig. 2, the support member 4 is detachably attached to the attachment part 31 of the base 3. Specifically, as shown in Fig. 3, the support member 4 detachably fits into the hole 311 of the attachment part 31. In this way, the support member 4 is detachably attached to the attachment part 31 of the base 3. Note that, for example, the support member 4 may be detachably attached to the attachment part 31 of the base 3 by detachably fitting a protrusion (not shown) of the attachment part 31 into a hole (not shown) of the support member 4.
[0037] The support member 4 is a plate-like member formed of, for example, metal. As shown in Fig. 3, the shaft 5 passes through the support member 4. The support member 4 rotatably supports the shaft 5, and is detachably attached to the attachment portion 31 of the base 3 by fitting detachably into the hole 311 of the attachment portion 31 as described above.
[0038] The shaft 5 is a rod-shaped member made of, for example, metal that rotates the drum 6. The shaft 5 passes through the support member 4 and is supported by the support member 4 so as to be rotatable relative to the support member 4. As shown in FIGS. 1 to 3, the shaft 5 has a crank shape. In other words, the shaft 5 is a so-called crankshaft. The shaft 5 has a handle 51 rotatably attached to one end. A user can rotate the shaft 5 about an axis A61 shown in FIG. 3 by grasping the handle 51 and rotating the crank-shaped portion.
[0039] Drum 6 is a cylindrical member made of, for example, metal. That is, drum 6 has an internal space for accommodating coffee beans to be roasted. Drum 6 is fixed to shaft 5 at one end 661. The manner in which drum 6 is fixed to shaft 5 is not particularly limited. Examples of the manner in which drum 6 can be fixed to shaft 5 include fixing by welding and fixing by fastening members such as screws.
[0040] The drum 6 has an opening 631 at the other end 662. The opening 631 functions as an inlet and outlet for the coffee beans. That is, the coffee beans can pass through the opening 631 of the drum 6. For example, when a user starts roasting the coffee beans, the user puts the coffee beans into the interior of the drum 6 (i.e., the storage space) through the opening 631. On the other hand, when a user finishes roasting the coffee beans, the user discharges the roasted coffee beans from the interior of the drum 6 (i.e., the storage space) through the opening 631.
[0041] The drum 6 is fixed to the shaft 5 at one end 661, and therefore receives a rotational force transmitted from the shaft 5, causing it to rotate about the axis A61 shown in Fig. 3. For example, when a user grips the handle 51 and rotates the crank-shaped portion to rotate the shaft 5 about the axis A61, the drum 6 receives the rotational force transmitted from the shaft 5 and rotates about the axis A61.
[0042] 3, a stirring blade 611 is provided on the inner surface of the drum 6. The stirring blade 611 extends along the axis A61 and extends from the inner surface of the drum 6 toward the center of the drum 6 (i.e., the axis A61). Therefore, when the drum 6 rotates around the axis A61, the coffee beans contained inside the drum 6 are stirred approximately uniformly by the stirring blade 611.
[0043] As described above, the drum 6 is fixed to the shaft 5 at one end 661. The shaft 5 passes through the support member 4 and is supported rotatably relative to the support member 4. The support member 4 is detachably fitted into the hole 311 of the mounting portion 31, and is thereby detachably mounted to the mounting portion 31 of the base 3. As a result, when the support member 4 is mounted to the mounting portion 31 of the base 3, the drum 6 is supported on one side at one end 661 in the direction of the axis A61.
[0044] Next, the coffee bean roaster according to this embodiment will be further described with reference to the drawings. FIG. 4 is a perspective view showing the support member and the shaft and their vicinity in this embodiment. FIG. 5 is a cross-sectional view taken along the cutting plane BB shown in FIG. FIG. 6 is a perspective view showing the support member of this embodiment. FIG. 7 is a side view of the support member as viewed in the direction of arrow A2 shown in FIG.
[0045] As shown in Figures 4 and 5, a grip 71 is attached to the support member 4. Specifically, the grip 71 is attached to the support member 4 on the side opposite the drum 6 as viewed from the support member 4, i.e., on the handle 51 side as viewed from the support member 4. The grip 71 has a shape that allows a user to hold it with one hand, and is made of, for example, resin. As shown in Figures 3 and 5, the shaft 5 passes through the grip 71 so as to be rotatable.
[0046] 4 and 5, the cover part 72 is provided facing the grip 71 at a position separated from the grip 71. Specifically, when the support member 4 is attached to the attachment part 31 of the base 3, the cover part 72 is provided facing the grip 71 at a position separated from the grip 71 toward the base 3 (i.e., below the grip 71). This makes it possible to prevent the user's hands and fingers from coming into contact with, for example, the trivet 81 or the gas cylinder cover 84 (see FIGS. 1 to 3) of the portable stove 8 when the user grips the grip 71 or while the user is holding the grip 71.
[0047] 6 and 7, the support member 4 is formed as a plate-like member, and has a support portion 41 and a bearing portion 42. The support portion 41 is a portion of the support member 4 that fits into the hole 311 of the mounting portion 31 of the base 3.
[0048] As shown in FIG. 6 , the support portion 41 has a groove 411 formed in its lower end. For example, when the base 3 is installed on the trivet 81 with the trivet 81 fitting into the groove 321 formed in the lower end of the mounting portion 31 of the base 3, i.e., when the base 3 is installed on the trivet 81 rotated 45 degrees circumferentially around the burner 82 from the state shown in FIGS. 1 and 2 , the support portion 41 of the support member 4 fits into the hole 311 of the mounting portion 31 and rests on the trivet 81. At this time, the trivet 81 fits into the groove 411 formed in the lower end of the support portion 41. Therefore, even when the support portion 41 of the support member 4 is attached to the mounting portion 31 of the base 3 with the support portion 41 resting on the trivet 81, the position of the support member 4 can be prevented from shifting from the trivet 81. Therefore, the support member 4 is stably supported by the trivet 81 when attached to the mounting portion 31 of the base 3.
[0049] The bearing portion 42 is connected to the upper end portion of the support portion 41, i.e., the end portion opposite the lower end portion where the groove 411 is formed. As shown in FIG. 6, the bearing portion 42 has a through hole 421. The shaft 5 passes through the through hole 421 of the bearing portion 42, penetrating the bearing portion 42, and is supported so as to be rotatable relative to the bearing portion 42. That is, as shown in FIG. 5, the shaft 5 passes through the grip 71 and the bearing portion 42 of the support member 4, and is fixed to the drum 6 at the other end portion (i.e., the end portion opposite the end portion where the handle 51 is provided).
[0050] 7, the bearing portion 42 is connected to the support portion 41 in a state inclined relative to the support portion 41. That is, the axis A62 of the through hole 421 of the bearing portion 42 extends obliquely with respect to the attachment / detachment direction (see arrow A1) of the support portion 41 relative to the attachment portion 31 of the base 3. Specifically, as shown in FIG. 3, in a state in which the support portion 41 is attached to the attachment portion 31 of the base 3, the shaft 5 that passes through the bearing portion 42 extends in a direction away from the base 3 as it moves from the bearing portion 42 toward the drum 6. The axis A62 of the through hole 421 of the bearing portion 42 substantially coincides with the axis A61 that serves as the center of rotation of the shaft 5 and the drum 6.
[0051] FIG. 8 is a perspective view showing the base of this embodiment. FIG. 9 is a plan view showing the base of this embodiment.
[0052] As shown in FIGS. 8 and 9, the base 3 is formed as an annular member having an opening 33 in the center. Specifically, the base 3 is formed as an octagonal annular member. Grooves 321 are formed at the lower ends of the side portions 32 of the octagonal base 3. One groove 321 is formed in the center of each side portion 32. Therefore, as shown in FIG. 9, eight grooves 321 are provided at 45-degree intervals in the circumferential direction centered on the annular center portion.
[0053] This increases the degree of freedom in the installation angle of the base 3 relative to the trivet 81. In other words, the user can set the installation angle of the base 3 relative to the trivet 81 according to their preference. For example, the user can install the base 3 on the trivet 81 so that the handle 51 (see Figures 4 and 5) faces forward, install the base 3 on the trivet 81 so that the handle 51 faces diagonally from the forward direction, install the base 3 on the trivet 81 so that the handle 51 faces either left or right, or install the base 3 on the trivet 81 so that the handle 51 faces backward.
[0054] The mounting portion 31 has a hole 311. The hole 311 is formed so as to penetrate the mounting portion 31. As described above with reference to FIGS. 1 to 7, the support portion 41 of the support member 4 is detachably fitted into the hole 311 of the mounting portion 31, whereby the support member 4 is detachably attached to the mounting portion 31 of the base 3.
[0055] The mounting portion 31 has a groove 321 at its bottom end that is similar to the grooves 321 formed in each of the side portions 32. Therefore, when the base 3 is installed on the trivet 81 with the mounting portion 31 resting on the trivet 81, the trivet 81 fits into the groove 321 formed at the bottom end of the mounting portion 31. This prevents the base 3 from shifting position from the trivet 81, even when the base 3 is installed on the trivet 81 with the mounting portion 31 resting on the trivet 81. Therefore, the base 3 is installed stably on the trivet 81.
[0056] FIG. 10 is a plan view showing the drum of this embodiment. FIG. 11 is an exploded view showing the drum of this embodiment.
[0057] As shown in FIGS. 10 and 11, the drum 6 has a first main body portion 61, a second main body portion 62, a first lid portion 63, a second lid portion 64, and a ring member 65. Each of the first main body portion 61 and the second main body portion 62 is formed in a cylindrical shape. The first main body portion 61 is disposed inside the second main body portion 62. In other words, the outer diameter of the first main body portion 61 is smaller than the inner diameter of the second main body portion 62. Because the first main body portion 61 is disposed inside the second main body portion 62, the drum 6 has a double drum structure.
[0058] 11, an agitating blade 611 is provided on an inner surface 612 of the first main body portion 61. The agitating blade 611 extends along the axis A61 and extends from the inner surface 612 of the first main body portion 61 toward the center of the cylinder of the first main body portion 61 (i.e., the axis A61).
[0059] The first lid portion 63 has an opening 631 that functions as an inlet and outlet for coffee beans, and is attached to the second main body portion 62 on the side of the other end 662 of the drum 6. The first lid portion 63 may be attached to the second main body portion 62 in a detachable manner.
[0060] The second lid part 64 is attached to the second main body part 62 at one end 661. The second lid part 64 is fixed to the second main body part 62 by, for example, welding. The second lid part 64 is substantially frustum-shaped, and as shown in Figure 3, when the drum 6 is rotated, the coffee beans slide down the inside of the frustum-shaped part.
[0061] The ring member 65 is attached to the second lid portion 64 at one end 661. The ring member 65 is fixed to the second lid portion 64 by, for example, welding. The shaft 5 is fitted into the ring member 65 and fixed to the ring member 65 by, for example, welding or a fastening member such as a screw. In this way, the drum 6 is fixed to the shaft 5 at one end 661.
[0062] Next, examples of use and operation of the coffee bean roaster 2 according to this embodiment will be described with reference to FIGS. First, the user places the base 3 on the trivet 81 of the portable stove 8 so that the trivet 81 of the portable stove 8 fits into the groove 321 of the base 3. This prevents the base 3 from shifting from the trivet 81. Therefore, the base 3 is stably placed on the trivet 81.
[0063] At this time, the user can set the installation angle of the base 3 relative to the trivet 81 as desired. For example, the user can install the base 3 on the trivet 81 so that the handle 51 faces forward, or so that the handle 51 faces diagonally from the forward direction, or so that the handle 51 faces either left or right, or so that the handle 51 faces backward.
[0064] Next, the user fits the support member 4 into the hole 311 of the mounting portion 31 to mount the support member 4 to the mounting portion 31. As a result, the drum 6 is supported on one side at one end 661 in the direction of the axis A61, as shown in Figures 1 and 3. At this time, as shown in Figure 3, the shaft 5 extends in a direction away from the base 3 as it moves from the bearing portion 42 of the support member 4 toward the drum 6.
[0065] Next, the user places coffee beans into the interior of drum 6 (specifically, into first main body portion 61) through opening 631. Next, the user turns operation knob 83 (see FIGS. 1 to 3) of portable stove 8 to ignite burner 82. As a result, drum 6 is heated by the flame emitted from burner 82. At this time, as described above with reference to FIGS. 10 and 11 , because drum 6 has a double drum structure, semi-hot air roasting is performed rather than direct flame roasting, and scorching of the coffee beans' surfaces is prevented.
[0066] Furthermore, the user grasps the handle 51 and rotates the crank-shaped portion of the shaft 5, thereby rotating the drum 6 around the axis A61. At this time, the trivet 81 is fitted into the groove 321 of the base 3, preventing the base 3 from shifting from the trivet 81. Therefore, the base 3 is stably installed on the trivet 81. This allows the user to stably rotate the shaft 5 and the drum 6.
[0067] As the drum 6 rotates, the coffee beans placed inside the drum 6 are heated by the flame emitted from the burner 82 via the drum 6, which functions as a double drum, and are stirred approximately uniformly by the stirring blades 611. Furthermore, because the shaft 5 extends in a direction away from the base 3 as it moves from the bearing portion 42 of the support member 4 toward the drum 6, a collecting area for the coffee beans placed through the opening 631 of the drum 6 is formed on the side opposite the opening 631 of the drum 6, i.e., on one end 661 side. This allows the coffee beans to be mixed uniformly and efficiently for roasting. In this manner, the coffee beans are roasted.
[0068] Next, the user turns the operating knob 83 of the portable stove 8 at a timing that suits the user's preference to stop the flame of the burner 82. Then, in order to prevent the roasting from progressing after the flame is stopped, the user should preferably discharge the coffee beans from the drum 6 and allow them to cool as soon as possible after the flame is stopped.
[0069] Therefore, a user of the coffee bean roaster 2 according to this embodiment can remove the drum 6 from the base 3 by holding the grip 71 with, for example, one hand and removing the support member 4 from the mounting portion 31 of the base 3. At this time, because the cover portion 72 is provided facing the grip 71 at a position separated from the grip 71, the user's hand and fingers can be prevented from coming into contact with, for example, the trivet 81 or the gas cylinder cover 84 of the portable stove 8. Furthermore, because the drum 6 is fixed to the shaft 5 at one end 661 and is supported on one side at the other end 661, the user can easily remove the support member 4 from the mounting portion 31 of the base 3 and easily remove the drum 6 from the base 3.
[0070] Furthermore, the user can stably remove the drum 6 from the base 3 by grasping the grip 71 with, for example, one hand and removing the support member 4 from the mounting portion 31 of the base 3 without having to grasp the crank-shaped shaft 5. Furthermore, because the shaft 5 passes through the grip 71, the user can stably support the drum 6 via the shaft 5 by grasping the grip 71 with, for example, one hand. This allows the user to remove the drum 6 from the base 3 even more stably and easily.
[0071] Next, while holding the grip 71 with, for example, one hand, the user tilts the drum 6 so that the opening 631 of the drum 6 faces downward. This allows the user to easily discharge the coffee beans from inside the drum 6 through the opening 631 in a short time after the flame has been extinguished. Next, the user fits the support member 4 into the hole 311 of the mounting part 31 to reattach the support member 4 to the mounting part 31. At this time, the user can reattach the support member 4 to the mounting part 31 simply by fitting the support member 4 into the hole 311 of the mounting part 31, so that the drum 6 can be easily supported on one side at one end 661. This allows the user to cool the coffee beans in a short time after the flame has been extinguished, thereby preventing the roasting from progressing after the flame has been extinguished.
[0072] As described above, in the coffee bean roaster 2 according to this embodiment, either the base 3 or the support member 4, which are installed on the trivet 81, fit detachably into the other of the base 3 or the support member 4. This allows the support member 4 to be detachably attached to the mounting portion 31 of the base 3. Furthermore, the drum 6 is fixed at one end 661 to the shaft 5, which penetrates the support member 4 and is supported rotatably relative to the support member 4, and is supported on one side at that end 661. This allows the user to easily remove the drum 6 from the base 3 by, for example, grasping the support member 4 or a member near the support member 4 (e.g., the grip 71) with one hand and removing the support member 4 from the mounting portion 31 of the base 3. Furthermore, even if the shaft 5 has a crank shape, the user does not need to grasp the shaft 5, but can stably remove the drum 6 from the base 3 by grasping the support member 4 or a member near the support member 4 (e.g., the grip 71).
[0073] [Modification] Modifications of the above-described embodiment of the present invention will be described with reference to Figures 12 to 17. Figure 12 is a central vertical cross-sectional view (the cutting position is the same as Figure 3) of a coffee bean roaster 100 according to this modification, Figure 13 is a view showing the mounting of support member 90 to mounting portion 52, and Figure 14 is a partial front view of the state in which support member 90 has been mounted to mounting portion 52. Also, Figure 15(A) is a bottom perspective view of mounting portion 52 and its periphery, and Figure 15(B) is a plan view thereof. Figure 16(A) is a perspective view of support member 90, and Figure 16(B) is a further modification of this support member 90. Figure 17 is a schematic enlarged view of grip 71 and its periphery in Figure 12, showing the outline with detailed configuration omitted to avoid cluttering the drawing.
[0074] In these figures, parts with the same reference numerals as those in the coffee bean roaster 2 in Figures 1 to 11 have the same configuration, so duplicated explanations will be omitted and the following explanation will focus on the differences. The coffee bean roaster 100 of this modified example differs mainly from the coffee bean roaster 2 of the above embodiment in the support member 90, the mounting part 52, the grip 71, and the relationship between these.
[0075] First, the detachable structure of the support member 90 and the mounting portion 52 according to this modified example will be described mainly with reference to Figures 13 to 15. The mounting portion 52 has first and second plate-like portions 15, 16 facing each other, and has a connecting portion 17 located between the first plate portion 15 and the second plate portion 16 and connecting the first plate portion 15 and the second plate portion 16. In contrast, the support portion 92 located below the support member 90 and mounted to the mounting portion 52 is plate-shaped, and has a notch portion 67 formed at its lower end portion that can be inserted from above and engage with the connecting portion 17. This allows the support member 90 to be detachably mounted to the mounting portion 52.
[0076] Specifically, the first plate portion 15 comprises a portion 3a of the annular base 3 and an extension portion 3b formed by extending the portion 3a upward. The upper end surface of the extension portion 3b is beveled at both ends 15a, 15a along the circumferential direction of the base 3. In addition, a protrusion 23 that protrudes toward the second plate portion 16 is formed at the lower end of the first plate portion 15. The protrusion 23 is curved so as to be convex toward the second plate portion 16, and is, for example, approximately hemispherical. A support portion 92 can be inserted between the protrusion 23 and the second plate portion 16.
[0077] The second plate portion 16 has the same overall shape as the first plate portion 15, and both ends 16a, 16a of the upper end surface along the circumferential direction of the base 3 are chamfered and inclined. The second plate portion 16 is shorter than the first plate portion 15, so that when the mounting portion 52 is viewed from the second plate portion 16 side, the upper end portion 15b of the first plate portion 15 is exposed.
[0078] The overall shape of the connecting portion 17 is roughly similar to the notch portion 67 of the support portion 92, and is formed slightly smaller than the inner space of the notch portion 67. When viewed through the second plate portion 16, the connecting portion 17 has a trapezoidal shape with the upper side being the upper base, and the side surfaces (legs of the trapezoid) 17a, 17a along the height direction are inclined surfaces. The thickness D1 of the connecting portion 17 (i.e., the distance between the first plate portion 15 and the second plate portion 16) is greater than the thickness D2 of the support portion 92. In addition, the upper end surface 17c of the connecting portion 17 is at the same height as the central portion 16c of the upper end surface of the second plate portion 16.
[0079] With the above configuration, when inserting the support portion 92 between the first plate portion 15 and the second plate portion 16, the mounting portion 52 is not box-shaped, and both end portions 15a, 15a, 16a, 16a of the first and second plate portions 15, 16 are chamfered, and the upper end surface 17c of the connecting portion 17 is at the same height as the central portion 16c of the upper end surface of the second plate portion 16, making it easy to see the connecting portion 17. Moreover, the distance D1 between the first plate portion 15 and the second plate portion 16 is greater than the thickness D2 of the support portion 92, and furthermore, the connecting portion 17 and the notch portion 67 are both trapezoidal, so that the connecting portion 17 can be easily fitted into the notch portion 67 of the support portion 92. Even if distance D1 is greater than thickness D2 of support portion 92, protrusion 23 holds support portion 92 while clamping it between first plate 15 and second plate 16, preventing wobbling. In this modified example, the drum 6 side is heavier than the grip 71 side relative to support member 90, and as shown in Figure 14, support portion 92 is tilted so that its upper end 92a faces the drum side. Support portion 92 is prevented from moving by contact with upper end 15b of first plate 15, protrusion 23, and lower end 16b of second plate 16.
[0080] A groove 333 is formed in the lower end portions of the first plate portion 15, the second plate portion 16, and the connecting portion 17. The groove 333 has the same function as the groove 321 in Fig. 8, and fits into the trivet 81 when it is located at the trivet 81 position (see Fig. 12).
[0081] Next, the connection structure between the support member 90 and the grip 71 according to this modified example will be described mainly with reference to Figures 12 and 17. As shown in the figures, a space S is formed between the opposing grip 71 and the support member 90. The space S is an insulating layer for preventing the grip 71 from overheating as much as possible. In this modified example, the distance between the grip 71 and the opposing support member 90 is kept slightly larger than the gap, taking into consideration the balance between the drum 6 side and the grip 71 side and the overall size of the product. However, the present invention is not limited to this, and the space S may be made larger to achieve a higher insulating effect.
[0082] To form this space S, the through-hole 421 at the top of the support member 90, through which the shaft 5 passes, and its surrounding area (hereinafter referred to as the "shaft penetration periphery") 45 are connected to the grip 71 while being spaced apart from each other via a joint 37 such as a pin or a screw. The joint 37 is preferably made of stainless steel with low thermal conductivity, or a metal surface coated with a heat insulating paint, but is not limited to this. One end 37a of the joint 37 is connected to surround the through-hole 421 (connected at the position indicated by the symbol PT in FIG. 16), and the other end 37b is connected to a metal plate 88 fixed to the grip 71 on the side of the shaft penetration periphery 45.
[0083] The shaft 5 passes through a through-hole 421 in the shaft penetration peripheral portion 45 of the support member 90, but there is a gap between the shaft 5 and the inner surface 421a of the through-hole 421, and the shaft 5 is rotatably connected to the grip 71. In the figure, the shaft 5 is provided with flanges or ring-shaped portions (hereinafter referred to as "rings") 27 coaxial with the shaft 5 at several locations along its length. In contrast, a locking member 56 is provided inside the grip 71 to lock with the ring 27 so as to restrict movement of the ring 27 in the longitudinal direction of the shaft 5 while not restricting rotation of the ring 27. In this way, in the present invention, the shaft 5 may be rotatably supported not only directly (in contact with the through-hole 421) by the support member 90, but also indirectly (without contacting the through-hole 421) via the grip 71 connected to the support member 90.
[0084] Next, the support member 90 of this modified example will be described mainly with reference to Figures 12 and 16. The support member 90 has a heat avoidance portion 93 above the support portion 92 attached to the attachment portion 52. The heat avoidance portion 93 is a portion for avoiding convective heat CF around the drum 6, which is generated by flames during roasting. In particular, the drum 6 has a generally truncated cone shape on one end 661 side (i.e., the second lid portion 64) so that coffee beans can be collected around the inner bottom periphery (i.e., the accumulation portion) BA on the side of one end 661 opposite the opening 631. Therefore, the truncated cone-shaped outer wall 64a (the inclined outer wall around the accumulation portion BA) 64a toward the support member 90 makes it easier for the convective heat CF to be directed toward the support member 90, heating even the grip 71 connected to the support member 90. Therefore, the heat avoidance portion 93 is formed to avoid the convective heat CF so that the hand holding the grip 71 does not get too hot.
[0085] Specifically, the heat-avoiding portion 93 is formed between the support portion 92 and the shaft-penetrating peripheral portion 45. The heat-avoiding portion 93 is formed by inclining the entire portion from the upper end 92a of the support portion 92 away from the drum 6. In the example shown in FIG. 12, when the support member 90 is attached to the attachment portion 52, the heat-avoiding portion 93 is inclined upward toward the handle 51. The inclination angle θ2 of the heat-avoiding portion 93 relative to the vertical direction is preferably larger than the inclination angle θ1 of the inclined outer wall 64a of the reservoir portion BA located on one end 661 of the drum 6 relative to the vertical direction. In FIG. 12, the inclination angle θ1 is approximately 45 degrees, and the inclination angle θ2 is approximately 50 degrees. The inclination angle θ2 of the heat-avoiding portion 93 is not limited to this and may be 50 degrees or greater. Alternatively, if the distance between the drum 6 and the support member 90 is large, the inclination angle θ2 may be equal to or smaller than the inclination angle θ1 of the inclined outer wall 64a of the reservoir portion BA located on the support member 90 side. However, to make it easier to remove the roaster main body from the base 3, it is preferable that the distance between the drum 6 and the support member 90 is small, and for this reason, it is preferable that the relationship of tilt angle θ2 > tilt angle θ1 as shown in the figure. Also, the inclination of the heat avoidance part 93 needs to be inclined overall towards the handle 51 to avoid the flames, and it may be curved or stepped as shown in Figure 16(B), for example.
[0086] In this way, by forming the heat avoidance portion 93 on the support member 90 and forming the space S between the grip 71 and the support member 90, it was possible to keep the temperature of the end of the grip 71 on the drum 6 side within 50 degrees. If it is within 50 degrees, there is no risk of burns even if you come into contact with it for a short time.
[0087] Incidentally, the heat avoidance portion 93 of the support member 90 and the shaft penetration peripheral portion 45 formed integrally therewith also serve as a separation wall that separates the grip 71 from the drum 6 so that the convection heat CF shown in FIG. 12 does not directly hit the grip 71. For this reason, the heat avoidance portion 93 and the shaft penetration peripheral portion 45 are preferably plate-shaped, with the surface facing the drum 6 being the main surface 90a (see FIG. 16). Furthermore, it is preferable that the width W2 (see FIG. 16) of the heat avoidance portion 93 and the shaft penetration peripheral portion 45 be equal to or greater than the width W1 (see FIG. 13) of the grip 71, so that the grip 71 is hidden by the heat avoidance portion 93 and the shaft penetration peripheral portion 45 when the support member 90 is viewed head-on from the drum 6 side.
[0088] Next, the relationship between the shaft penetration peripheral portion 45 and the heat avoidance portion 93 will be described mainly with reference to FIGS. 12 to 14. At least the portion of the shaft penetration peripheral portion 45 between the heat avoidance portion 93 and the through-hole 421 is generally inclined toward the drum 6 from the upper end 93a of the heat avoidance portion 93 (see also FIG. 16). In this modified example, as shown in FIGS. 13 and 14, the shaft penetration peripheral portion 45 is disposed at an angle θ3, inclined upward toward the drum 6, based on an imaginary line VL extending through the heat avoidance portion 93. This inclination angle θ3 is set to a preferable angle θ4 of the rotation axis A61 of the drum 6 in FIG. 12 relative to the horizontal. In other words, the inclination angle θ5 of the shaft penetration peripheral portion 45 relative to the vertical direction (see FIG. 14) is equivalent to the angle θ4 of the axis A61 in FIG. 12 relative to the horizontal. The angle θ4 of the axis A61 is set to approximately 10 to 20 degrees, approximately 12 degrees in the illustrated example. This allows the coffee beans to be properly collected in the accumulation section BA and stirred to ensure substantially uniform roasting, even with the heat avoidance section 93 inclined to avoid convection heat CF. It also prevents the cover section 72 from coming into contact with the gas cylinder housing section 97 that houses the gas cylinder of the portable stove 8.
[0089] 12 and 17, the upper surface 71a of the grip 71 of this modified example is linear from the center in the longitudinal direction of the shaft 5 to just before the end 71b on the handle 51 side, and the angle θ6 formed by the upper surface 71a and the side surface 71c on the handle 51 side is 90 degrees or less. This prevents a hand placed on the upper surface 71a from slipping off and coming into contact with the heated shaft 5.
[0090] The above describes the embodiments of the present invention. However, the present invention is not limited to the above embodiments, and various modifications can be made without departing from the scope of the claims. The configurations of the above embodiments can be partially omitted or arbitrarily combined in a different manner from the above.
[0091] 4 and 6 rotatably supports the shaft 5 by passing the shaft 5 through the through-hole 421 of the bearing portion 42, but as shown in Fig. 17 , the support member 90 may rotatably support the shaft 5 via a grip 71. In other words, it is the grip 71 that rotatably supports the shaft 5, and the support member 90 may support this grip 71, thereby indirectly supporting the shaft 5. Alternatively, the shaft-penetrating peripheral portion 45 in Fig. 17 may be changed to the bearing portion 42 in Fig. 4. That is, the shaft 5 may slidably pass through a through-hole 421 of the shaft-penetrating peripheral portion 45 in Fig. 17, and the shaft-penetrating peripheral portion 45 may serve as a bearing portion.
[0092] Furthermore, the coffee bean roaster 2,100 of the above embodiment and its modified examples may be provided with a spoon for removing coffee beans from the drum to check their roast level. The spoon 150 shown in Figures 18 to 23 is designed for this purpose and is rod-shaped overall. This spoon 150 has a metal spoon body 160 on which the coffee beans are placed, and a resin or wooden handle 170. The spoon body 160 has a V-shaped cross section in the width direction X, which is perpendicular to the longitudinal direction, and the angle θ7 between one surface 161 and the other surface 162 in the width direction X is approximately 120 degrees. This makes it easier to line up the removed coffee beans by gathering them at the bottom of the V-shape (near the boundary between the one surface 161 and the other surface 162), making it easier to see the roasted state of the coffee beans.
[0093] Handle 170 can be held between the thumb and middle finger. A first depression 175 indicating the position for resting the thumb is located at the rear end of the upper surface of handle 170, and this first depression 175 is curved to correspond to the ball of the thumb. A second depression 176 is located at the rear end of the lower surface of handle 170, and this second depression 176 is longer and shallower than first depression 175, allowing the middle finger to be placed at an angle. Handle 170 has a generally diamond-shaped cross section in the width direction X. When viewed from the rear end (right side) of FIG. 22 , a right-handed person can place the index finger on lower right surface 170a, and a left-handed person can place the index finger on lower left surface 170b, making it easier to support the handle. The spoon 150 is of a length such that when inserted into the inner bottom periphery (reservoir) BA on the opposite side of the opening 631 of the drum shown in Figure 12, the first and second recesses 175, 176 in Figure 19 do not enter the opening 631 of the drum 6 in Figure 12. [Explanation of symbols]
[0094] 2,100: coffee bean roaster, 3: base, 4: support member, 5: shaft, 6: drum, 8: portable stove, 31: mounting portion, 32: side portion, 33: opening, 41: support portion, 42: bearing portion, 51: handle, 61: first main body portion, 62: second main body portion, 63: first lid portion, 64: second lid portion, 65: ring member, 71: grip, 72: cover portion, 81: trivet, 82: burner, 83: operating knob portion, 84: cylinder cover, 311: hole, 321: groove, 411: groove, 421: through hole, 611: stirring blade, 612: inner surface, 631: opening, 661: one end, 662: other end, 93: Heat avoidance part, S: Space
Claims
1. A coffee bean roaster for roasting coffee beans, a base that is installed on the trivet and has an attachment portion; a support member attached to the attachment portion; a shaft that passes through the support member, is rotatable relative to the support member, and is supported directly or indirectly by the support member; a drum fixed to the shaft at one end and having an opening at the other end through which the coffee beans can pass, the drum rotating by receiving rotational force transmitted from the shaft; Equipped with one of the base and the support member is detachably fitted to the other of the base and the support member, Coffee bean roasting machine characterized in that the drum is supported on one side at said one end.
2. the support member has a support portion attached to the attachment portion and a bearing portion connected to the support portion and through which the shaft passes, 2. The coffee bean roaster according to claim 1, wherein, when the support portion is attached to the attachment portion, the shaft that passes through the bearing portion extends in a direction away from the base as it moves from the bearing portion toward the drum.
3. 2. The coffee bean roaster according to claim 1, wherein the support member has a groove at its lower end into which the trivet fits when the support member is attached to the attachment portion.
4. 2. The coffee bean roaster according to claim 1, further comprising a grip attached to the support member on an opposite side of the support member from the drum.
5. 5. The coffee bean roaster according to claim 4, wherein the shaft passes through the grip.
6. 5. The coffee bean roaster according to claim 4, further comprising a cover portion provided opposite said grip at a position spaced apart from said grip.
7. 2. The coffee bean roaster according to claim 1, wherein the base has a groove into which the trivet fits.
8. The base is formed in an octagonal shape, 8. The coffee bean roaster according to claim 7, wherein the grooves are provided on each side of the octagon.
9. a grip connected to the support member on an opposite side of the support member from the drum, When the support member is attached to the attachment part, the support member has a heat avoidance part that is inclined as a whole away from the drum above the support part that is attached to the attachment part, to avoid convection heat around the drum.
2. The coffee bean roaster according to claim 1 .
10. When the support member is attached to the attachment portion, the shaft extends from a through hole passing through the support member toward the drum in a direction away from the base, the support member has the through hole above the thermal avoidance portion, The area between the heat avoidance portion and the through hole is generally inclined in a direction approaching the drum side with the upper end of the heat avoidance portion as a base point.
10. The coffee bean roaster according to claim 9.
11. 11. The coffee bean roaster according to claim 9 or 10, wherein the grip and the support member are connected in a spaced-apart state, thereby forming a space between the grip and the support member.
Citation Information
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