Frying and baking machine
By incorporating limiting ribs and rigid connecting rods into the grill, the problem of rotational jamming was solved, resulting in smoother temperature adjustment via the knob and improved user experience.
Patent Information
- Application Number
- CN202422881690.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-25
AI Technical Summary
Existing grills often experience issues when adjusting the temperature, such as the connecting rod failing to smoothly drive the adjustment shaft to rotate, leading to rotational jamming and reducing the user experience.
By setting a limiting rib in the grill, the distance between the connecting rod and the adjusting shaft is ensured, avoiding insufficient torque or the connecting rod parts entering the slide groove and causing jamming. The rigid connecting rod design and limiting rib structure improve the smoothness of the knob driving the temperature controller to adjust the temperature.
This effectively avoids the problem of rotation jamming, improves the smoothness of temperature adjustment by the knob and the user experience, and enhances the aesthetics of the grill.
Smart Images

Figure CN223516190U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of kitchen appliances, in particular to a frying and baking machine. BACKGROUND
[0002] At present, the frying and baking machine widely enters people's life, can utilize its upper and lower two sides to heat food simultaneously, is often used to fry or bake food, because its made food is delicious and palatable, convenient to use, is very popular with users.
[0003] As shown in Figure 1 and Figure 2 , the prior art discloses a temperature controller 2 and the connecting structure of knob 3, specifically includes the shell 1, frying and baking tray, the knob 3 arranged in the shell 1 and the temperature controller 2 arranged in frying and baking tray, the knob 3 is rotatably connected with the shell 1 and protrudes the lateral wall of shell 1, the temperature controller 2 adjusts the temperature of frying and baking tray on frying and baking tray, the temperature controller 2 has adjusting shaft 21, the knob 3 has rotating shaft that drives adjusting shaft 21 to rotate, because the temperature controller 2 is generally installed in the bottom surface of frying and baking tray, position is lower, and the knob is installed in the side of shell, position is relatively higher, so adjusting shaft 21 and rotating shaft are generally selected to drive rotation through connecting rod, when rotating knob 3, connecting rod drives adjusting shaft 21 to rotate, to adjust the working temperature of temperature controller 2 to adjust frying and baking tray.
[0004] As shown in Figure 2 , the transmission rod includes first bending section 41, connecting section 42 and second bending section 43, the rotating shaft is provided with first sliding groove 31, the adjusting shaft 21 is provided with second sliding groove 211, the first bending section 41 passes through first sliding groove 31 transversely, the second bending section 43 passes through second sliding groove 211 transversely, when rotating knob 3, the rotating shaft drives first bending section 41 to rotate, in turn drives second bending section 43 to rotate, so that second bending section 43 relatively slides in second sliding groove 211 and drives adjusting shaft 21 to rotate, in turn adjusts the frying and baking temperature of frying and baking machine.
[0005] In the above prior art, when second bending section 43 enters second sliding groove 211 or connecting section 42 abuts on the shaft wall of adjusting shaft 21, it will cause connecting section 42 to be too close to the axis of adjusting shaft and unable to generate sufficient torque to drive adjusting shaft 21 to rotate, and the phenomenon of rotating knob 3 rotation jamming will appear, when the user needs to adjust the frying and baking temperature of frying and baking machine, the user can only forcibly rotate knob 3 by using greater force, thereby reducing the user's use experience. UTILITY MODEL CONTENTS
[0006] The utility model wants to reach the purpose is to provide a kind of baking machine, solve the problem that user is easy to appear connecting rod cannot smoothly drive adjusting shaft rotation when rotating knob adjusting the baking temperature of baking machine, improve the smoothness of knob driving temperature controller to adjust temperature, and then improve the use experience of user.
[0007] In order to achieve the above object, the utility model adopts the following technical scheme: a kind of baking machine, including shell, temperature controller for detecting the temperature of baking tray and baking tray installed in shell, the knob of adjusting temperature controller is provided on the outside of shell, the position of knob is higher than the adjusting shaft of temperature controller, knob is driven connection with adjusting shaft by connecting rod, the inner end of knob is equipped with first sliding slot, the outer end of adjusting shaft is equipped with second sliding slot, connecting rod includes the first sliding section of first sliding slot inserted in transverse direction, the intermediate section of longitudinal extension and the second sliding section of second sliding slot inserted in transverse direction, the top of first sliding section and intermediate section is connected to form first bending part, the bottom of second sliding section and intermediate section is connected to form second bending part, first limiting rib for adjusting the distance between intermediate section and adjusting shaft is equipped in the shell, connecting rod is located first limiting rib, so that first limiting rib is located between connecting rod and adjusting shaft.
[0008] After adopting the above technical scheme, the utility model has the following advantages: when adjusting the temperature of baking tray, the knob for adjusting temperature controller arranged on the outside of shell is rotated, so that knob drives first sliding section to rotate, the rigidity of connecting rod is used to make second sliding section rotate, and when intermediate section rotates, the rotation amplitude is larger, and it is easy to drive second sliding section to produce larger displacement in second sliding slot, so that connecting rod is abutted with first limiting rib, so that intermediate section keeps distance from adjusting shaft, to avoid that the torque produced by the rotation of intermediate section is too small due to the too close distance between intermediate section and adjusting shaft, or the extension line of intermediate section passes through the axis of adjusting shaft due to the entry of second bending part into second sliding slot, so that it is difficult to produce the torque of rotation, to avoid that the rotation jamming phenomenon occurs when user continues to rotate knob, to improve the smoothness of user operating knob to drive adjusting shaft to rotate to adjust the gear of temperature controller, to ensure the good use experience of user.
[0009] Further, the first limiting rib includes a first rib body, which is located between the intermediate section and the adjusting shaft in the transverse direction. The intermediate section is abutted against the first rib body to keep the second bending part away from the adjusting shaft.
[0010] By adopting the foregoing technical scheme, the first limiting rib is specifically a first rib body, which is abutted against the intermediate section in the transverse direction to keep the intermediate section away from the adjusting shaft, thereby avoiding the second bending part from extending into the second sliding slot and the rotation jamming phenomenon.
[0011] Further, one end of the second sliding section away from the second bending part passes through the adjusting shaft, the first limiting rib comprises a second rib body, the second rib body is located on one side of the second sliding section away from the second bending part, and the second sliding section abuts against the second rib body to keep the second bending part away from the adjusting shaft.
[0012] By adopting the foregoing technical scheme, the adjusting shaft rotates with the second sliding section, the second sliding section appropriately slides in the second sliding groove, the second rib body blocks the transverse sliding of the second sliding section at one end of the second sliding section away from the second bending part, the middle part of the second sliding section is made to contact the adjusting shaft as much as possible, and the second bending part is prevented from entering the second sliding groove to cause the rotation jamming phenomenon.
[0013] Further, one end of the second sliding section away from the second bending part is provided with a lower bending part, and the lower bending part abuts against the second rib body.
[0014] By adopting the foregoing technical scheme, the lower bending part is arranged at one end of the second sliding section away from the second bending part, and the lower bending part and the second rib body are in abutment, so that the contact length of the two is increased, and the impact on the second rib body is reduced.
[0015] Further, one end of the second sliding section away from the second bending part is provided with a lower bending part for preventing the second sliding section from coming out of the second sliding groove, and a second limiting rib is arranged in the shell, and the connecting rod abuts against the second limiting rib to prevent the lower bending part from entering the second sliding groove to cause the rotation jamming phenomenon.
[0016] By adopting the foregoing technical scheme, the lower bending part is arranged at one end of the second sliding section away from the second bending part to prevent the second sliding section from coming out of the second sliding groove, and the second limiting rib is arranged in the shell, and the connecting rod abuts against the second limiting rib to prevent the lower bending part from entering the second sliding groove, thereby preventing the rotation jamming phenomenon and improving the stability of the knob in driving the adjusting shaft to adjust the temperature controller.
[0017] Further, the second limiting rib comprises a third rib body located on one side of the middle section away from the adjusting shaft, and the lower bending part keeps away from the adjusting shaft after abutting against the third rib body.
[0018] By adopting the foregoing technical scheme, when the second sliding section rotates relative to the adjusting shaft, the third rib body is located on one side of the middle section away from the adjusting shaft, and when the middle section moves in the transverse direction, the middle section abuts against the third rib body to keep the lower bending part away from the adjusting shaft, thereby preventing the lower bending part from entering the second sliding groove, improving the smoothness of the knob in driving the adjusting shaft to rotate to adjust the temperature of the baking tray, and further improving the user experience.
[0019] Further, the second limiting rib comprises a fourth rib body located between the lower bending part and the adjusting shaft, and the lower bending part abuts against the fourth rib body to prevent the lower bending part from entering the second sliding groove.
[0020] With the foregoing technical scheme, the fourth muscle body is arranged between the lower bending and the adjusting shaft, and abuts against the fourth muscle body when the lower bending slides towards the adjusting shaft, so as to avoid the lower bending from entering the second sliding groove and to avoid the jamming phenomenon.
[0021] Further, the third limiting muscle is arranged in the casing, and the connecting rod abuts against the third limiting muscle to avoid the first bending part from entering the first sliding groove and causing the jamming phenomenon of the knob.
[0022] With the foregoing technical scheme, the connecting rod abuts against the third limiting muscle to avoid the first bending part from entering the first sliding groove and to avoid the jamming phenomenon, thereby improving the smoothness of the rotation of the adjusting shaft driven by the knob and improving the user experience.
[0023] Further, the casing comprises an outer shell and an inner shell, the outer shell is sleeved outside the inner shell, the knob is mounted outside the outer shell, the temperature controller is mounted in the inner shell, the outer shell and the inner shell have a cavity for the movement of the connecting rod, and the first limiting muscle is arranged on the inner wall of the outer shell and / or the outer wall of the inner shell.
[0024] With the foregoing technical scheme, the knob is arranged outside the outer shell, so that the user can hold the knob to adjust the temperature of the baking and roasting plate, the cavity between the outer shell and the inner shell facilitates the movement of the connecting rod to drive the rotation of the adjusting shaft when the knob is rotated, so as to adjust the temperature of the baking and roasting plate by adjusting the function of the temperature controller, and in the movement process of the connecting rod, the first limiting muscle abuts against the intermediate section on the inner wall of the outer shell to avoid the second bending part from entering the second sliding groove and causing the jamming phenomenon, or the first limiting muscle can abut against the intermediate section on the outer wall of the inner shell to avoid the second bending part from entering the second sliding groove and causing the jamming phenomenon. By arranging the temperature controller and the connecting rod in the outer shell, the appearance of the baking and roasting machine is improved.
[0025] Further, the intermediate section has a curved structure protruding outward to avoid the inner shell.
[0026] With the foregoing technical scheme, the curved structure of the intermediate section is arranged to avoid the inner shell, so that the intermediate section can normally rotate without colliding with the inner shell during the rotation. BRIEF DESCRIPTION OF DRAWINGS
[0027] The utility model will be further described below with reference to the drawings:
[0028] Figure 1 It is the structure schematic view of the background technology of the utility model;
[0029] Figure 2 It is the utility model Figure 1 Enlarged view of the middle A
[0030] Figure 3 It is a schematic view of the frying and baking machine of the utility model;
[0031] Figure 4 It is the utility model Figure 3 The enlarged view of B;
[0032] Figure 5 It is the installation schematic view of the first limiting rib and the second limiting rib in the utility model;
[0033] Figure 6 It is the utility model Figure 5 The enlarged view of C;
[0034] Figure 7 It is the distribution schematic view of the second rib body and the third rib body in the utility model;
[0035] Figure 8 It is the installation schematic view of the third rib body and the fourth rib body in the utility model;
[0036] Figure 9 It is the structure schematic view of the casing in the utility model;
[0037] Figure 10 It is the installation schematic view of the third limiting rib in the utility model. DETAILED DESCRIPTION
[0038] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments.
[0039] The terms "first", "second" and the like (if exist) in the specification and claims of the utility model are used to distinguish similar objects, not to describe a specific order or sequence, even if "second" is used before a certain technical feature to distinguish, it does not mean that it must have "first". It should be understood that in the utility model, "include" and "have" and any variants thereof are intended to cover non-exclusive inclusion. It should be understood that in the utility model, "multiple" means two or more than two. "And / or" is only a description of the relationship between the associated objects, which means that there may be three relationships, for example, X and / or Y can represent three cases: X alone, X and Y exist at the same time, and Y alone. The character " / " generally represents that the associated objects before and after are in an "or" relationship. "Include X, Y and Z", "include X, Y, Z" means that X, Y and Z are included, "include X, Y or Z" means that one of X, Y and Z is included, "include X, Y and / or Z" means that any one or any two or three of X, Y and Z is included.
[0040] The technical scheme of the utility model is described in detail below with specific examples. The following specific examples can be combined or replaced according to actual conditions, and the same or similar concepts or processes can not be described in some examples.
[0041] As shown in Figure 3 The utility model provides a kind of toasting machine, including shell 1, toasting tray and the temperature controller 2 of detecting toasting tray temperature are installed in shell 1, the knob 3 of adjusting temperature controller 2 is equipped on the outside of shell 1, user passes through the knob 3 outside hand-held shell 1 and rotates, and then temperature controller 2 is driven to change, to adjust the gear of temperature controller 2, so that toasting tray is heated toasting tray surface according to the gear of temperature controller 2, to control the toasting temperature of toasting tray. Figure 4As shown, the temperature controller 2 is provided with an adjusting shaft 21, and the position of the knob 3 is higher than the adjusting shaft 21, so the knob 3 is in driving connection with the adjusting shaft 21 through the connecting rod 5 and by the rigidity of the connecting rod 5, specifically, the inner end of the knob 3 is provided with a first sliding groove 31, and the outer end of the adjusting shaft 21 is provided with a second sliding groove 211; the connecting rod 5 includes a first sliding section 51 transversely inserted into the first sliding groove 31, a middle section 53 extending longitudinally, and a second sliding section 55 transversely inserted into the second sliding groove 211, the first sliding section 51 is connected with the top end of the middle section 53 to form a first bending part 52, and the second sliding section 55 is connected with the bottom end of the middle section 53 to form a second bending part 54. Specifically, when the knob 3 is rotated clockwise, because of the distance between the first bending part 52 and the first sliding groove 31, the middle section 53 has a torque with the knob 3 to drive the middle section 53 to rotate, so that the knob 3 drives the middle section 53 to rotate, and with the rotation of the middle section 53, the middle section 53 pushes the knob 3, so that the first sliding section 51 slides in the first sliding groove 31, causing the first bending part 52 to move towards the knob 3, and under the drive of the middle section 53, the second bending part 54 also moves towards the adjusting shaft 21; when the knob 3 is rotated counterclockwise, the torque is formed by the distance between the first bending part 52 and the first sliding groove 31, and then the middle section 53, the second bending part 54 and the second sliding section 55 drive the adjusting shaft 21 to rotate, and during the rotation of the knob 3 and the adjusting shaft 21, the first bending part 52 moves towards the first sliding groove 31, and the second bending part 54 moves towards the second sliding groove 211. The two ends of the first sliding groove 31 in the axial direction of the knob 3 are blocked, and the two ends of the second sliding groove 211 in the axial direction of the adjusting shaft 21 are also blocked, so as to avoid the first sliding section 51 from sliding out of the end of the first sliding groove 31 when the first sliding section 51 drives the middle section 53 to rotate, and avoid the second sliding section 55 from separating from the end of the second sliding groove 211 when the second sliding section 55 drives the adjusting shaft 21 to rotate, thereby improving the stability between the first sliding section 51 and the knob 3 and between the second sliding section 55 and the adjusting shaft 21. When the knob 3 drives the first sliding section 51 to rotate, the first sliding section 51 is inserted and slides relative to the first sliding groove 31, and similarly, when the second sliding section 55 drives the adjusting shaft 21 to rotate, the second sliding section 55 is inserted and slides relative to the second sliding groove 211, so as to avoid the rotation jamming between the first sliding section 51 and the knob 3 and between the second sliding section 55 and the adjusting shaft 21.
[0042] As Figure 5 and Figure 6As shown, since the intermediate section 53 rotates with a large amplitude, the second sliding section 55 is easily displaced in the second sliding groove 211. In order to avoid the displacement of the second sliding section 55 in the second sliding groove 211, so that the intermediate section 53 is too close to the adjusting shaft 21, the rotating torque generated by the rotation of the intermediate section 53 is too small, or the second bending part 54 enters the second sliding groove 211, so that the extension line of the intermediate section 53 passes through the axis of the adjusting shaft 21 and it is difficult to generate a rotating torque, a first limiting rib 6 is arranged in the casing 1. When the first limiting rib 6 is arranged, the first limiting rib 6 can be arranged between the second sliding groove 211 and the connecting rod 5, or arranged between the first sliding groove 31 and the connecting rod 5. After the first limiting rib 6 is arranged, the first limiting rib 6 is located on the side of the connecting rod 5 away from the adjusting shaft 21, so that when the knob 3 drives the connecting rod 5 and the adjusting shaft 21 to rotate to a certain position, the connecting rod 5 abuts against the first limiting rib 6 to avoid the intermediate section 53 being too close to the adjusting shaft 21, or the rotating torque generated by the rotation of the intermediate section 53 being too small, the second bending part 54 entering the second sliding groove 211 so that the extension line of the intermediate section 53 passes through the axis of the adjusting shaft 21 and it is difficult to generate a rotating torque, avoiding the phenomenon of rotation jamming when the user continues to rotate the knob 3, so that the user needs to use greater force to rotate the knob 3 when adjusting the temperature of the baking tray. Improve the smoothness of the user's operation of the knob 3 to drive the adjusting shaft 21 to rotate to adjust the gear of the temperature controller 2, and ensure a good user experience.
[0043] In the embodiment, as shown in the drawings, Figure 6 The first limiting rib 6 includes a first rib body 61, which is located between the intermediate section 53 and the adjusting shaft 21 in the transverse direction. When the knob 3 is twisted, the intermediate section 53 moves between the knob 3 and the adjusting shaft 21 with the rotation of the first sliding section 51 and the first bending part 52. When the intermediate section 53 moves to abut against the first rib body 61, the second bending part 54 still maintains a distance from the adjusting shaft 21, thereby avoiding the intermediate section 53 being too close to the adjusting shaft 21, or the rotating torque generated by the rotation of the intermediate section 53 being too small, or the second bending part 54 entering the second sliding groove 211 so that the extension line of the intermediate section 53 passes through the axis of the adjusting shaft 21 and it is difficult to generate a rotating torque, thereby avoiding the phenomenon of rotation jamming. It should be noted that in the utility model: the distance refers to the gap between the junction of the second sliding section 55 and the second bending part 54 and the outer wall of the adjusting shaft 21, and the second sliding section 55 in the gap can form a torque to drive the adjusting shaft 21 to rotate, thereby avoiding the phenomenon of rotation jamming of the second sliding section 55 and the adjusting shaft 21.
[0044] In order to further avoid the phenomenon of rotation jamming, one end of the second sliding section 55 away from the second bending part 54 passes through the adjusting shaft 21, as shown in the drawings, Figure 6As shown, at this time, the first limiting rib 6 includes a second rib body 62 located on the side of the second sliding section 55 away from the second bending portion 54. With the rotation of the adjusting shaft 21, the second sliding section 55 appears appropriate sliding in the second sliding groove 211. With the axial sliding of the second sliding section 55 relative to the adjusting shaft 21, the second rib body 62 blocks the transverse sliding of the second sliding section 55 at the end of the second sliding section 55 away from the second bending portion 54, so that the second sliding section 55 abuts against the second rib body 62 to keep the second bending portion 54 away from the adjusting shaft 21, further ensuring that there is a certain gap between the second bending portion 54 and the outer peripheral wall of the adjusting shaft 21, thereby avoiding the second bending portion 54 from entering the second sliding groove 211 to cause the jamming phenomenon. Figure 6 As shown, the first rib body 61 blocks the second bending portion 54 from entering the second sliding groove 211 between the intermediate section 53 and the adjusting shaft 21, and the second rib body 62 blocks the second sliding section 55 from continuously sliding to the second rib body 62 on the side of the second sliding section 55 away from the second bending portion 54, thereby avoiding the second bending portion 54 from entering the second sliding groove 211 to cause the jamming phenomenon, and further improving the smoothness of the rotation of the knob 3 to drive the adjusting shaft 21, facilitating the adjustment of the frying and roasting temperature of the frying and roasting machine by the temperature controller 2, and improving the user experience.
[0045] In order to reduce the possibility of damage to the second rib body 62, as shown, Figure 7 As shown, the end of the second sliding section 55 away from the second bending portion 54 is provided with a lower bend 56 abutting against the second rib body 62 to limit the position, increasing the contact length of the two, and reducing the possibility of damage to the second rib body 62.
[0046] In another embodiment, in order to avoid the end of the second sliding section 55 away from the second bending portion 54 from entering the second sliding groove 211 to cause the second sliding section 55 to slip out of the second sliding groove 211, as shown, Figure 5 and Figure 7 As shown, the end of the second sliding section 55 away from the second bending portion 54 is provided with a lower bend 56 preventing the second sliding section 55 from slipping out of the second sliding groove 211, and the second limiting rib 7 is arranged in the cabinet 1 to block the connecting rod 5, thereby avoiding the lower bend 56 from entering the second sliding groove 211 to cause the second sliding section 55 to fail to better drive the adjusting shaft 21 to rotate, thereby reducing the rotation jamming phenomenon between the lower bend 56 and the second sliding groove 211.
[0047] In this embodiment, as shown, Figure 5 and Figure 8As shown, the second limiting rib 7 includes a third rib body 71 located on the side of the middle section 53 away from the adjusting shaft 21, and the middle section 53 abuts against the third rib body 71 when the knob 3 and the first sliding section 51 are rotated, and the lower bending 56 is kept away from the adjusting shaft 21 when the middle section 53 abuts against the third rib body 71, thereby avoiding the phenomenon of rotation jamming of the lower bending 56 into the second sliding groove 211.
[0048] In order to further avoid the phenomenon of rotation jamming of the lower bending 56 into the second sliding groove 211, as shown in Figure 8 the second limiting rib 7 includes a fourth rib body 72 located between the lower bending 56 and the adjusting shaft 21, and the lower bending 56 abuts against the fourth rib body 72 to avoid the phenomenon of rotation jamming of the lower bending 56 into the second sliding groove 211. Alternatively, the middle section 53 abuts against the third rib body 71, and the lower bending 56 abuts against the fourth rib body 72 to avoid the jamming phenomenon, and the third rib body 71 and the fourth rib body 72 are used to ensure that the lower bending 56 extends into the second sliding groove 211, which can better guarantee the smoothness of the user rotating the knob 3.
[0049] In order to avoid the phenomenon of jamming of the first bending 52 into the first sliding groove 31, as shown in Figure 9 and Figure 10 the third limiting rib 8 is arranged in the casing 1, and the connecting rod 5 abuts against the third limiting rib 8, so that the first bending 52 is kept away from the knob 3, thereby avoiding the phenomenon of jamming of the first bending 52 into the first sliding groove 31, and improving the smoothness of the knob 3 driving the adjusting shaft 21 to rotate and the user experience.
[0050] In another embodiment, in order to facilitate the installation and transmission of the connecting rod 5, as shown in Figure 9 the casing 1 includes an outer shell 11 and an inner shell 12, the outer shell 11 is sleeved on the outer side of the inner shell 12, the knob 3 is installed on the outer side of the outer shell 11, and the temperature controller 2 is installed on the inner shell 12; specifically, the temperature controller 2 is installed on the outer side of the inner shell 12, or the temperature controller 2 is installed on the inner side of the inner shell 12, the adjusting shaft 21 is rotationally connected with the inner shell 12 and extends to the outer side of the inner shell 12 to be inserted with the second sliding section 55; the outer shell 11 and the inner shell 12 have a cavity for the connecting rod 5 to move, the first limiting rib 6 is arranged on the inner wall of the outer shell 11, the middle section 53 abuts against the first limiting rib 6 to avoid the phenomenon of rotation jamming of the second bending 54 into the second sliding groove 211; the first limiting rib 6 can also be arranged on the outer wall of the inner shell 12. In this embodiment, the fourth rib body 72 can also be arranged on the inner wall of the outer shell 11 to avoid the second sliding section 55 abutting against the fourth rib body 72 to affect the limiting effect of the fourth rib body 72. By arranging the inner shell 12 and the outer shell 11, the temperature controller 2, the connecting rod 5 and the like are hidden and installed in the outer shell 11, and the appearance of the roaster is improved.
[0051] In the present embodiment, as shown in Figure 10 The intermediate section 53 has a curved structure 57 protruding outward to avoid the inner shell 12. By arranging the curved structure 57, the intermediate section 53 can avoid contacting the inner shell 12 during rotation, so that the intermediate section 53 can rotate normally. The intermediate section 53 can also avoid contacting the outer end of the adjusting shaft 21 or the inner end of the knob 3 during rotation, so that the transmission effect of the connecting rod 5 is not affected.
[0052] In addition to the preferred embodiments described above, the utility model also has other embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of the utility model claimed.
Claims
1. A grilling machine, comprising a housing, an inner grilling pan and a temperature controller for detecting the temperature of the grilling pan installed inside the housing, and a knob for adjusting the temperature controller located on the outer side of the housing, the knob being positioned higher than the adjusting shaft of the temperature controller, the knob being connected to the adjusting shaft via a connecting rod, characterized in that... The inner end of the knob is provided with a first sliding groove, the outer end of the adjusting shaft is provided with a second sliding groove, the connecting rod comprises a first sliding section transversely inserted into the first sliding groove, a middle section extending longitudinally, and a second sliding section transversely inserted into the second sliding groove, the first sliding section is connected with the top end of the middle section to form a first bending part, the second sliding section is connected with the bottom end of the middle section to form a second bending part, the cabinet is internally provided with a first limiting rib for adjusting the distance between the middle section and the adjusting shaft, the connecting rod abuts against the first limiting rib, so that the first limiting rib is located between the connecting rod and the adjusting shaft.
2. The combination grill and oven of claim 1 wherein, The first limiting rib comprises a first rib body, the first rib body is located between the middle section and the adjusting shaft in the transverse direction, and the middle section abuts against the first rib body to keep the second bending part away from the adjusting shaft.
3. The combination grill according to claim 1 or 2, wherein, The first limiting rib comprises a second rib body, the second rib body is located on the side of the second sliding section away from the second bending part, and the second sliding section abuts against the second rib body to keep the second bending part away from the adjusting shaft.
4. The combination grill and oven of claim 3 wherein, The end of the second sliding section away from the second bending part is provided with a lower bending part, and the lower bending part abuts against the second rib body to be limited.
5. The combination grill and oven of claim 1 wherein, The end of the second sliding section away from the second bending part is provided with a lower bending part for preventing the second sliding section from coming out of the second sliding groove, and the cabinet is internally provided with a second limiting rib, and the connecting rod abuts against the second limiting rib to avoid the lower bending part from entering the second sliding groove to cause the knob to be stuck.
6. The combination grill and oven of claim 5 wherein, The second limiting rib comprises a third rib body, the third rib body is located on the side of the middle section away from the adjusting shaft, and the lower bending part keeps away from the adjusting shaft after abutting against the third rib body.
7. The combination grill and oven of claim 5 or 6 wherein, The second limiting rib comprises a fourth rib body located between the lower bending part and the adjusting shaft, and the lower bending part abuts against the fourth rib body to avoid entering the second sliding groove.
8. The combination grill and oven of claim 1 wherein, The cabinet is internally provided with a third limiting rib, and the connecting rod abuts against the third limiting rib to avoid the first bending part from entering the first sliding groove to cause the knob to be stuck.
9. The combination grill and oven of claim 1 wherein, The cabinet comprises an outer shell and an inner shell, the outer shell is sleeved outside the inner shell, the knob is installed outside the outer shell, the temperature controller is installed in the inner shell, the outer shell and the inner shell have a cavity for the connecting rod to move, and the first limiting rib is arranged on the inner wall of the outer shell and / or the outer wall of the inner shell.
10. The combination grill and oven of claim 9 wherein, The middle section has a curved structure protruding outward to avoid the inner shell.