Adjustable wall hanging frame

By designing an adjustable wall hanger, the problem of difficulty in operating a handheld mixer is solved, and the mixer is hung on the mixer container, and the mixing efficiency is improved through angle adjustment.

CN120203427APending Publication Date: 2025-06-27GUANGDONG XINBAO ELECTRICAL APPLIANCES HLDG CO LTD
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Patent Information

Application Number
CN202510468079.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-06-27

AI Technical Summary

Technical Problem

The prior art is difficult to effectively solve the problem of difficult operation of handheld mixers during use, especially when it requires long-term handheld use.

Method used

An adjustable wall mount is designed, including a mainframe, bracket and indexing restriction mechanism. The main machine base is removably equipped with a hand-held mixer through the mounting cavity. The bracket is clamped and fixed to the wall of the stirring container through the clamping arm, and the indexing restriction mechanism is used to adjust the angle between the bracket and the seat body.

Benefits of technology

It is possible to hang the handheld mixer on the mixing container, reducing the difficulty of operation for users, and it is simple to operate and has high efficiency. In addition, by adjusting the angle between the bracket and the seat, the hand-held mixer can achieve multi-directional stirring operation in the mixing container, improving the stirring effect.

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Abstract

The embodiment of the invention provides an adjustable wall hanging frame which comprises a main machine base, a wall hanging device and a wall hanging device, the main machine base comprises a base body with a mounting cavity and a connecting part arranged on the peripheral side of the base body, and the base body is detachably provided with a handheld stirrer through the mounting cavity; the bracket is rotationally arranged on the connecting part and comprises a clamping arm, and the bracket is clamped and fixed on the wall of the stirring container through the clamping arm; and the transposition limiting mechanism is arranged on the connecting part, can be switched among a plurality of different sites of the connecting part, and is used for limiting or releasing the rotation of the bracket relative to the seat body so as to adjust the included angle between the bracket and the seat body. According to the adjustable wall hanging frame, the handheld stirrer can be hung on the stirring container, the operation difficulty of a user is reduced, the operation is simple, and the efficiency is high; besides, the angle between the bracket and the seat body can be adjusted, so that the inclination angle of the handheld stirrer in the stirring container is realized, multi-directional stirring operation is realized, and the stirring effect is improved.
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Description

Technical Field

[0001] This application belongs to the technical field of kitchen equipment and supplies, and particularly relates to an adjustable wall-mounted rack. Background Art

[0002] With the rapid development of the market economy, high-power hand-held blenders are increasingly widely used in some kitchens and hotels at home and abroad. Such hand-held blenders have high power and large mixing capacity, and it is difficult for users to hold and operate them by hand. Therefore, it is an urgent problem to provide a bracket that can hang the hand-held blender on the mixing container. Summary of the Invention

[0003] In view of the above problems existing in the prior art, the purpose of the embodiments of this application is to provide an adjustable wall-mounted rack that can be used to hang a hand-held blender on a mixing container.

[0004] The technical solution adopted in the embodiments of this application is an adjustable wall-mounted rack, including:

[0005] A main base, which includes a seat body having an installation cavity and a connecting portion provided on the outer peripheral side of the seat body. The seat body detachably installs a hand-held blender through the installation cavity;

[0006] A bracket, which is rotatably arranged on the connecting portion and includes a clamping arm. The bracket clamps and fixes to the wall of the mixing container through the clamping arm;

[0007] A rotation position limiting mechanism, which is arranged on the connecting portion and can switch between a plurality of different positions on the connecting portion, and is used to limit or release the rotation of the bracket relative to the seat body, so as to adjust the included angle between the bracket and the seat body.

[0008] In an optional embodiment, the connecting portion has a first connection position and a second connection position. The bracket is rotatably connected to the first connection position through a rotating shaft; the second connection position includes a plurality of the positions arranged in sequence. The bracket is connected to the second connection position through the rotation position limiting mechanism. The rotation position limiting mechanism has a limiting state and a releasing state. When the rotation position limiting mechanism is in the releasing state, the rotation position limiting mechanism can switch between a plurality of the positions, and at the same time, the rotation position limiting mechanism releases the restriction on the bracket, so that the bracket can rotate relative to the seat body. When the rotation position limiting mechanism is in the limiting state, it will stay within one of the positions, and at the same time, it restricts the bracket so that it cannot rotate relative to the seat body. By setting two connection positions on the connecting portion, not only the rotational connection between the bracket and the seat body is realized, but also it is convenient to limit the rotation between the bracket and the seat body, so that the two can rotate within a reasonable angle range.

[0009] In an alternative embodiment, the connecting portion includes two ear plates extending outward from the outer peripheral side of the base body. The two ear plates are arranged opposite to each other and are respectively provided with opposite shaft holes, and the shaft holes form the first connection position; and / or

[0010] At positions near the free ends of the two ear plates, there are respectively opposite and arc-shaped adjustment holes, and the adjustment holes form the second connection position. The structure of the connecting portion is reasonable and facilitates the connection with the bracket.

[0011] In an alternative embodiment, the adjustment hole includes a plurality of hole portions arranged in sequence and communicating with each other, and constriction portions formed between adjacent two of the hole portions. The plurality of hole portions are distributed on the same circular arc, and the center of the circle where the circular arc is located is concentric with the axis of the shaft hole on the ear plate where the hole portion is located; the plurality of hole portions respectively form a plurality of the positions.

[0012] In an alternative embodiment, the rotation limiting mechanism includes a limit pin and a reset member. The limit pin passes through the adjustment holes on the two ear plates. The limit pin has a convex portion protruding in the radial direction thereof. The radial dimension of the limit pin is smaller than the dimension of the constriction portion of the adjustment hole, and the dimension of the convex portion in the radial direction of the limit pin is larger than the dimension of the constriction portion. The limit pin can move along its axial direction to have a first state in which the convex portion is located in the hole portion to limit the relative rotation of the bracket and the base body, and a second state in which the convex portion disengages from the hole portion to release the restriction on the relative rotation of the bracket and the base body; the reset member is used to apply a force to the limit pin to move it toward the first state for resetting. The rotation limiting mechanism is reasonably designed, simple to operate and convenient to use.

[0013] In an alternative embodiment, the limit pin has two convex portions, which are respectively a first convex portion and a second convex portion;

[0014] The limit pin includes a pin rod and a pin head provided at its first end. The outer diameter of the pin head is larger than the outer diameter of the pin rod. The pin head corresponds to one of the adjustment holes and forms the first convex portion; a pin sleeve is fixed on the pin rod. The outer diameter of the pin sleeve is larger than the outer diameter of the pin rod. The pin sleeve corresponds to the other adjustment hole and forms the second convex portion. The design of the two convex portions is reasonable and convenient for processing and manufacturing.

[0015] In an alternative embodiment, the rotation limiting mechanism further includes a push button. The push button is connected to the second end of the limit pin and is located outside the other adjustment hole. By pushing the push button, the limit pin is switched from the first state to the second state, so that the convex portion of the limit pin disengages from the hole portion. It is convenient to push the limit pin to switch from the first state to the second state through the push button.

[0016] In an alternative embodiment, the bracket includes a frame body and lugs provided on the frame body, and the lugs are rotatably connected to the connecting portion; and / or

[0017] The frame body includes a first rib and a second rib, and the first rib and the second rib form the clamping arm; a clamping opening is formed between the first rib and the second rib, and the first rib and the second rib are respectively located on the inner and outer sides of the wall of the mixing container, so that the wall is clamped in the clamping opening. The frame body has a reasonable structure, which is convenient for hanging the entire adjustable wall-mounted bracket on the mixing container and for removing it from the mixing container.

[0018] In an alternative embodiment, at least one of the first rib and the second rib has a stepped surface extending from top to bottom on the side facing the wall, so that the distance between the first rib and the second rib increases sequentially from top to bottom to adapt to the walls of mixing containers with different thicknesses and improve versatility.

[0019] In an alternative embodiment, the frame body includes two second ribs, and the two second ribs are respectively located on opposite sides of the first rib and form clamping openings with the same size with the first rib respectively;

[0020] Both of the two second ribs are located outside the wall, and are respectively provided with threaded holes, and bolts are threadedly connected in the threaded holes. One end of each bolt is connected with a check nut, and when the bolt rotates, the check nut can be abutted against the wall; a nut is threadedly connected to the bolt, and the nut is used to cooperate with the bolt head to fix the bolt in the threaded hole. In this way, the connection tightness between the second rib and the wall can be improved, and the stability of the adjustable wall-mounted bracket during use can be maintained.

[0021] In an alternative embodiment, the installation cavity penetrates through the upper and lower ends of the base body, and an opening communicating with the installation cavity is provided on the side of the base body, so that the hand-held mixer can enter and exit the installation cavity through the opening; and / or

[0022] A soft rubber pad is connected to the cavity wall of the installation cavity by reverse buckling. The soft rubber pad can effectively reduce the vibration during the operation of the hand-held mixer, reduce noise, and can also prevent scratching; and / or

[0023] The base body is provided with a threaded hole penetrating through the installation cavity, and a bolt is threadedly connected in the threaded hole. One end of the bolt is connected with a check nut, and when the bolt rotates, the check nut can be abutted against the outer wall of the hand-held mixer; a nut is threadedly connected to the bolt, and the nut is used to cooperate with the bolt head to fix the bolt in the threaded hole. The second check nut can effectively prevent the second bolt from loosening and keep the hand-held mixer stable in the installation cavity.

[0024] Compared with the prior art, the beneficial effects of the embodiments of the present application are as follows: The present application can hang the hand-held blender on the mixing container, reducing the operation difficulty for the user, and the operation is simple and efficient; in addition, the present application can adjust the angle between the bracket and the base body, thereby realizing the tilt angle of the hand-held blender in the mixing container and achieving multi-directional mixing operations, improving the mixing effect.

[0025] It should be understood that the foregoing general description and the following detailed description are merely exemplary and explanatory and are not intended to limit the present application.

[0026] The overview of various implementations or examples of the technologies described in the present application is not a full disclosure of the entire scope or all features of the disclosed technologies. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In the drawings which are not necessarily drawn to scale, the same reference numerals may describe similar components in different views. The drawings generally illustrate, by way of example and not limitation, various embodiments and are used in conjunction with the description and the claims to explain the embodiments of the application being claimed. Where appropriate, the same reference numerals are used throughout the drawings to refer to the same or similar parts.

[0028] Figure 1 It is a schematic perspective view of the adjustable wall-mounted rack according to an embodiment of the present application.

[0029] Figure 2 It is an exploded view of the adjustable wall-mounted rack according to an embodiment of the present application.

[0030] Figure 3 It is a top view of the adjustable wall-mounted rack according to an embodiment of the present application.

[0031] Figure 4 It is a schematic perspective view of another angle of the adjustable wall-mounted rack according to an embodiment of the present application.

[0032] Figure 5 It is a cross-sectional view of the rotation limiting mechanism in the limiting state according to an embodiment of the present application.

[0033] Figure 6 It is a cross-sectional view of the rotation limiting mechanism in the unlocking state according to an embodiment of the present application.

[0034] Figures 7 to 9 They are respectively schematic views of the adjustable wall-mounted rack according to an embodiment of the present application at different adjustment angles.

[0035] Figure 10 For Figure 8 Partial enlarged view of

[0036] Figure 11This is a schematic diagram of the use status of the adjustable wall mount according to an embodiment of the present application applied to a stirring container.

[0037] Reference numerals:

[0038] 1-main seat; 11-seat body; 111-installation cavity; 112-undercut hole; 113-second threaded hole; 114-opening; 12-ear plate; 121-through hole; 122-shaft hole; 123-adjustment hole; 1231-hole portion; 1232-reduction portion; 124-bump; 13-rotating shaft; 14-soft rubber pad; 141-undercut; 15-second bolt; 16-second stop nut; 17-second nut;

[0039] 2-bracket; 21-frame; 211-first rib; 2111-first threaded hole; 212-second rib; 2121-step surface; 213-clamping opening; 22-lug; 221-first connecting hole; 222-second connecting hole; 23-first bolt; 24-first stop nut; 25-first nut;

[0040] 3-transfer limiting mechanism; 31-limiting pin; 311-pin rod; 312-pin head; 32-pin sleeve; 33-reset component; 34-push button;

[0041] 4-Mixing container;

[0042] 5-Hand blender;

[0043] 6-Wrench. DETAILED DESCRIPTION

[0044] In order to make the purpose, technical solution and advantages of the embodiment of the present application clearer, the technical solution of the embodiment of the present application will be clearly and completely described in conjunction with the drawings of the embodiment of the present application. Obviously, the described embodiment is a part of the embodiment of the present application, not all of the embodiments. Based on the described embodiment of the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0045] Unless otherwise defined, technical terms or scientific terms used in this application shall have the ordinary meanings as understood by those of ordinary skill in the art to which this application pertains. The terms "first", "second" and similar terms used in this application do not denote any order, quantity or importance, but are only used to distinguish different components. Words such as "comprising" or "including" mean that the elements or items appearing before the word cover the elements or items listed after the word and their equivalents, without excluding other elements or items. Words such as "connected" or "coupled" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. Words such as "upper", "lower", "left", "right" are only used to indicate relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationship may also change accordingly.

[0046] To keep the following description of the embodiments of this application clear and concise, detailed descriptions of known functions and known components are omitted in this application.

[0047] An embodiment of this application provides an adjustable wall mount for hanging a mixing device such as a hand-held mixer 5 (mixer) on the wall of a mixing container 4 containing ingredients to be mixed.

[0048] As Figures 1 to 6 shown, the adjustable wall mount includes a main base 1, a bracket 2 and a rotation limiting mechanism 3. The main base 1 includes a base body 11 and a connecting portion provided on the outer peripheral side of the base body 11. An installation cavity 111 is provided inside the base body 11. The hand-held mixer 5 can be placed in the installation cavity 111 or taken out from the installation cavity 111, so that the base body 11 realizes the detachable installation of the hand-held mixer 5 thereon through its own installation cavity 111.

[0049] The bracket 2 is rotatably provided on the connecting portion and includes a clamping arm. The bracket 2 is clamped and fixed to the wall of the mixing container 4 through the clamping arm. The entire adjustable wall mount can be hung on the mixing container 4 through the clamping arm, which can free both hands and reduce the labor intensity of the user when holding the mixer by hand, making the mixing operation simpler and easier. When the mixing is completed, the clamping arm can be removed from the mixing container 4 to separate the entire adjustable wall mount from the mixing container 4, avoiding affecting the subsequent use of the mixing container 4.

[0050] The rotation limiting mechanism 3 is provided on the connecting portion and can be switched between a plurality of different positions (sites) on the connecting portion, and is used to limit or release the rotation of the bracket 2 relative to the seat body 11, so that the bracket 2 and the seat body 11 cannot rotate relative to each other or can rotate relative to each other, so as to adjust the included angle between the bracket 2 and the seat body 11. By providing the rotation limiting mechanism 3, the bracket 2 and the seat body 11 can rotate relative to each other or the relative rotation of the bracket 2 and the seat body 11 can be limited; when the rotation limiting mechanism 3 releases the limitation on the relative rotation of the bracket 2 and the seat body 11, the bracket 2 can rotate relative to the seat body 11 to adjust the relative position relationship and angular relationship between the two, so that when the adjustable wall-mounted rack is hung on the mixing container 4, the hand-held mixer 5 mounted on the seat body 11 can be at an appropriate angle inside the mixing container 4 to improve the mixing effect; when the rotation limiting mechanism 3 limits the relative rotation of the bracket 2 and the seat body 11, the bracket 2 cannot rotate relative to the seat body 11, so that the two maintain a relatively fixed position relationship and angular relationship to avoid unnecessary rotation.

[0051] The adjustable wall-mounted rack according to the embodiment of the present application can adjust the included angle between the bracket 2 and the seat body 11, so that the hand-held mixer 5 mounted on the seat body 11 can perform mixing operations in the mixing container 4 at different inclination angles, avoiding mixing dead angles and improving the mixing efficiency.

[0052] In some embodiments, as Figure 2 shown, the connecting portion has a first connection position and a second connection position, and the bracket 2 is rotatably connected to the first connection position through a rotating shaft 13. The second connection position includes a plurality of sites arranged in sequence, and the bracket 2 is connected to the second connection position through the rotation limiting mechanism 3. That is, the bracket 2 and the seat body 11 are respectively connected at the first connection position and the second connection position. The rotation limiting mechanism 3 has a limiting state and a releasing state. When the rotation limiting mechanism 3 is in the releasing state, the rotation limiting mechanism 3 can be switched between a plurality of sites, and at the same time, the rotation limiting mechanism 3 releases the limitation on the bracket 2, so that it can rotate relative to the seat body 11 to adjust the included angle between the bracket 2 and the seat body 11. When the rotation limiting mechanism 3 is in the limiting state, it cannot be switched between a plurality of sites, but remains in one of the sites, and at the same time, the bracket 2 is restricted so that it cannot rotate relative to the seat body 11, but remains relatively fixed to the seat body 11. By providing two connection positions on the connecting portion, not only the rotational connection between the bracket 2 and the seat body 11 is realized, but also the rotation between the bracket 2 and the seat body 11 is conveniently restricted, so that the two rotate within a reasonable angle range and can stably maintain the rotated angle. In addition, by providing two connection positions, the connection between the bracket 2 and the seat body 11 can be made stable, and the relative rotation of the two is smoother and there will be no shaking.

[0053] In some embodiments, continue to combine Figure 2, the connecting portion includes two ear plates 12 formed by extending outward from the outer peripheral side of the seat body 11. The two ear plates 12 are arranged oppositely and are respectively provided with opposite shaft holes 122, and the shaft holes 122 form the first connection position. At positions close to their free ends, the two ear plates 12 are respectively provided with opposite and arc-shaped adjustment holes 123, and the adjustment holes 123 form the second connection position. The structure of the connecting portion is reasonable and facilitates the connection with the bracket 2.

[0054] As Figure 10 shown, the adjustment hole 123 includes a plurality of hole portions 1231 arranged in sequence and communicated with each other, and a constriction portion 1232 formed between adjacent two hole portions 1231. The apertures of the plurality of hole portions 1231 are the same, and the aperture of the hole portion 1231 is larger than the aperture of the constriction portion 1232. The plurality of hole portions 1231 are distributed on the same circular arc, and the center of the circle where the circular arc is located is concentric with the axis of the shaft hole 122 on the ear plate 12 where the hole portion 1231 is located. The plurality of hole portions 1231 respectively form a plurality of positions. When the indexing limiting mechanism 3 switches between the plurality of hole portions 1231, it needs to pass through the constriction portion 1232. Therefore, by reasonably designing the dimensional relationship between the indexing limiting mechanism 3 and the hole portion 1231 and the constriction portion 1232, it can be realized to limit or release the rotation of the bracket 2 relative to the seat body 11.

[0055] In some embodiments, as Figures 2 to 6 shown, the indexing limiting mechanism 3 includes a limit pin 31 and a reset member 33. The limit pin 31 is inserted through the adjustment holes 123 on the two ear plates 12. The limit pin 31 has a convex portion protruding along its radial direction. The radial dimension of the limit pin 31 is smaller than the dimension of the constriction portion 1232 of the adjustment hole 123, and the dimension of the convex portion in the radial direction of the limit pin 31 is larger than the dimension of the constriction portion 1232. The limit pin 31 can move along its axial direction to have a first state in which the convex portion is located in the hole portion 1231 to limit the limit pin 31 from passing through the constriction portion 1232 so that it cannot switch to another hole portion 1231, and a second state in which the convex portion disengages from the hole portion 1231 so that the limit pin 31 can switch from one hole portion 1231 to another hole portion 1231; in the first state, not only can the limit pin 31 not switch between different hole portions 1231, but also the limit pin 31 restricts the relative rotation between the bracket 2 and the seat body 11; in the second state, not only can the limit pin 31 switch between different hole portions 1231, but also the limit pin 31 releases the restriction on the bracket 2 and the seat body 11, so that the bracket 2 and the seat body 11 can rotate relatively. The reset member 33 is used to apply a force to the limit pin 31 to move it to the first state for reset.

[0056] It can be understood that the shape and size of the two adjustment holes 123 on the two ear plates 12 are the same, and the number of hole parts 1231 of the two adjustment holes 123 is the same and corresponds one by one. In the first state, the convex parts of the limit pin 31 are simultaneously located in the corresponding hole parts 1231 of the two adjustment holes 123.

[0057] Furthermore, the limit pin 31 has two convex parts that respectively correspond to the two adjustment holes 123 one by one. The two convex parts and the limit pin 31 can be an integral structure or a split structure. When it is a split structure, the two need to be fixed together. For the convenience of the following description, the two convex parts are respectively defined as the first convex part and the second convex part; the two adjustment holes 123 are respectively defined as the first adjustment hole and the second adjustment hole.

[0058] As Figure 2 shown, the limit pin 31 includes a pin rod 311 and a pin head 312 provided at its first end. The outer diameter of the pin head 312 is greater than the outer diameter of the pin rod 311. The pin head 312 corresponds to the first adjustment hole and forms the first convex part. A pin sleeve 32 is fixedly sleeved on the pin rod 311. The outer diameter of the pin sleeve 32 is greater than the outer diameter of the pin rod 311. The pin sleeve 32 corresponds to the second adjustment hole and forms the second convex part.

[0059] In some embodiments, as Figures 2 to 6 shown, the indexing restriction mechanism 3 further includes a push button 34. The push button 34 is connected to the second end of the limit pin 31 and is located outside the second adjustment hole. By the push button 34, it is convenient to push the limit pin 31 to switch from the first state to the second state, so that the two convex parts of the limit pin 31 both disengage from the corresponding hole parts 1231 of the adjustment holes 123, enabling the limit pin 31 to switch among multiple hole parts 1231.

[0060] The rotating shaft 13 serves as the first rotating shaft of the bracket 2 and the connecting part, while the limit pin 31 forms the second rotating shaft of the bracket 2 and the connecting part. The position and axis of the first rotating shaft remain unchanged, while the axis of the second rotating shaft can change (respectively located at the axes of multiple different hole parts 1231), and can restrict or release the restriction on the bracket 2. It can not only adjust the angle between the bracket 2 and the seat body 11, but also keep the two fixed at the adjusted position.

[0061] Exemplarily, without increasing the thickness of the ear plate 12, in order to form a hole part 1231 with sufficient depth for the pin head 312 and the pin sleeve 32 to enter, as Figure 2As shown in the figure, two lug plates 12 are respectively provided with bumps 124. The thickness of the bumps 124 is greater than that of the lug plates 12. The adjustment holes 123 are formed on the bumps 124. Through holes 121 communicating with the adjustment holes 123 are formed on the lug plates 12, and the aperture of the through holes 121 is smaller than that of the hole parts 1231. Specifically, the two lug plates 12 are respectively a first lug plate and a second lug plate, and the two bumps 124 are respectively a first bump and a second bump. The first bump is arranged on the side plate surface of the first lug plate facing away from the second lug plate; the second bump is arranged on the side plate surface of the second lug plate facing the first lug plate. A first through hole opposite to and communicating with the first adjustment hole is formed on the first lug plate, and a second through hole opposite to and communicating with the second adjustment hole is formed on the second lug plate. The reset component 33 can be a spring. The spring is sleeved outside the limit pin 31. One end of the spring abuts against the first lug plate, and the other end abuts against the pin sleeve 32.

[0062] In some embodiments, as Figure 2 shown, the bracket 2 includes a frame body 21 and lug ears 22 arranged on the frame body 21. The clamping arms are formed on the frame body 21. The lug ears 22 are rotatably connected to the connecting part.

[0063] Exemplarily, continuing to combine Figure 2 , the lug ears 22 include a first lug ear and a second lug ear arranged oppositely. Corresponding first connection holes 221 are respectively arranged near the free ends of the two lug ears 22, and corresponding second connection holes 222 are respectively arranged away from their free ends. The two lug ears 22 simultaneously extend between the two lug plates 12. The rotating shaft 13 sequentially passes through the shaft hole 122 on the first lug plate, the first connection hole 221 on the first lug ear, the first connection hole 221 on the second lug ear, and the shaft hole 122 on the second lug plate, so that the lug ears 22 are rotatably connected to the connecting part, realizing the rotational connection between the bracket 2 and the seat body 11. The limit pin 31 sequentially passes through the first adjustment hole on the first lug plate, the second connection hole 222 on the first lug ear, the second connection hole 222 on the second lug ear, and the second adjustment hole on the second lug plate. Through the limit pin 31, a second connection position is formed between the lug ears 22 and the connecting part.

[0064] As Figure 5 shown, when the indexing restriction mechanism 3 is in the restricted state (i.e., the limit pin 31 is in the first state), the pin head 312 of the limit pin 31 is located in one of the hole parts 1231 of the first adjustment hole, and the pin sleeve 32 is located in the corresponding hole part 1231 of the second adjustment hole. Since the sizes of the pin head 312 and the pin sleeve 32 are both larger than the size of the constriction part 1232, the pin head 312 and the pin sleeve 32 cannot pass through the constriction part 1232 and switch to another hole part 1231. Therefore, the limit pin 31 also restricts the bracket 2, making the bracket 2 unable to rotate relative to the seat body 11 and remain in a position with a relative angular relationship with the seat body 11. When along Figure 3The push button 34 is pushed in the direction of the middle arrow, and the push button 34 compresses the reset component 33 and pushes the limit pin 31 to move along the first direction. The pin head 312 and the pin sleeve 32 on the limit pin 31 are respectively released from the hole portions 1231 of the first adjustment hole and the second adjustment hole. The pin rod 311 of the limit pin 31, which has a diameter smaller than that of the limiting portion 1232, is located in the hole portion 1231. Figure 6 , the limit pin 31 is in the second state; at this time, the pin rod 311 can be switched to another hole portion 1231 through the limiting portion 1232, and the restriction on the bracket 2 is released, so that the bracket 2 and the seat body 11 rotate at a corresponding angle, and the corresponding angle rotation value is the central angle corresponding to the arc length between the center of the previous hole portion 1231 to the center of the hole portion 1231 after rotation. When the bracket 2 and the seat body 11 are rotated to the required angle, the push button 34 is released, and under the resetting action of the resetting component 33, the limit pin 31 is pushed to move in a second direction opposite to the first direction and reset to the first state. At this time, the pin head 312 and the pin sleeve 32 enter the hole portions 1231 of the first adjustment hole and the second adjustment hole respectively again. Since the sizes of the pin head 312 and the pin sleeve 32 are larger than the size of the limiting portion 1232, the two cannot pass through the limiting portion 1232, so that the limit pin 31 cannot switch to the other hole portion 1231, and at the same time, the bracket 2 is restricted so that it cannot rotate relative to the seat body 11.

[0065] The number of the hole portions 1231 of the adjustment hole 123 is not limited, and can be specifically determined according to the angle range that needs to be adjusted between the bracket 2 and the seat body 11 in actual applications. For example, if the angle range that needs to be adjusted between the bracket 2 and the seat body 11 is large, a larger number of hole portions 1231 are provided, and vice versa, a smaller number of hole portions 1231 can be provided. The size of the central angle corresponding to the arc surrounded by the multiple hole portions 1231 is the adjustable angle range between the bracket 2 and the seat body 11.

[0066] In some embodiments, Figures 2 to 4 As shown, the frame 21 includes a first rib 211 and a second rib 212, which cooperate to form a clamping arm; a clamping opening 213 is formed between the first rib 211 and the second rib 212, and when the adjustable wall mount is applied to the mixing container 4, the first rib 211 and the second rib 212 are respectively located at the inner and outer sides of the wall of the mixing container 4, so that the wall is clamped in the clamping opening 213. The frame 21 has a reasonable structure, which is convenient for hanging the entire adjustable wall mount on the mixing container 4 and removing it from the mixing container 4.

[0067] In some embodiments, Figures 2 to 4As shown, at least one of the first rib 211 and the second rib 212 has a stepped surface 2121 extending from top to bottom on the side facing the vessel wall, so that the distance between the first rib 211 and the second rib 212 increases successively from top to bottom to adapt to the vessel walls of mixing vessels 4 with different thicknesses. The so-called stepped surface 2121 is in a shape similar to a staircase, and a step is formed between two adjacent steps. When the adjustable wall-mounted rack is applied to the mixing vessel 4, the upper edge of the vessel wall of the mixing vessel 4 abuts on the step. See Figure 11 . By providing the stepped surface 2121 on the rib, the adjustable wall-mounted rack of the present application can adapt to mixing vessels 4 with different thicknesses, improving the versatility.

[0068] In some embodiments, continuing to combine Figures 2 to 4 , the frame body 21 includes two second ribs 212. The two second ribs 212 are respectively located on opposite sides of the first rib 211 and have the same distance from the first rib 211 respectively to form a clamping opening 213 with the same size. When the adjustable wall-mounted rack is applied to the mixing vessel 4, the two second ribs 212 are respectively located outside the vessel wall, while the first rib 211 is located inside the vessel wall.

[0069] As Figure 2 shown, stepped surfaces 2121 are provided on both of the two second ribs 212, while no stepped surface 2121 is provided on the first rib 211. In this way, when the adjustable wall-mounted rack is applied to the mixing vessel 4, regardless of the thickness of the vessel wall of the mixing vessel 4, the first rib 211 can always be in a state of being basically in contact with the vessel wall, avoiding affecting the occupation of the space inside the mixing vessel 4 and thus affecting the mixing operation. When the vessel wall of the mixing vessel 4 is relatively thin, the upper edge of the vessel wall will abut on the step near the upper part of the stepped surface 2121. For example Figure 11 the upper edge of the vessel wall shown abuts on the topmost step. Due to the provision of the stepped surface 2121 on the second rib 212, the distance between it and the vessel wall gradually increases from top to bottom.

[0070] In order to improve the tightness of the connection between the second rib 212 and the vessel wall and maintain the stability of the adjustable wall-mounted rack during use. Further, as Figure 2 shown, first threaded holes 2111 are respectively provided on the two second ribs 212. A first bolt 23 is threadedly connected in the first threaded hole 2111. One end of the first bolt 23 is connected to a first check nut 24. When the first bolt 23 rotates, the first check nut 24 can be made to abut tightly against the vessel wall. A first nut 25 is threadedly connected to the first bolt 23. The first nut 25 is used to cooperate with the bolt head of the first bolt 23 to fix the first bolt 23 in the first threaded hole 2111. The first check nut 24 can effectively prevent the first bolt 23 from loosening and the bracket 2 from sliding. The first check nut 24 can be made of materials such as plastic or silica gel, which not only fits tightly with the vessel wall but also avoids scratching the surface of the vessel wall.

[0071] In some embodiments, as Figures 1 to 4 shown, the installation cavity 111 penetrates through the upper and lower ends of the base body 11, and the shape of the installation cavity 111 is adapted to the outer shape of the hand-held mixer 5. An opening 114 communicating with the installation cavity 111 is provided on the side of the base body 11, so that the hand-held mixer 5 can enter and exit the installation cavity 111 laterally through the opening 114. By providing the opening 114 on the side of the base body 11, the loading and unloading of the hand-held mixer 5 are facilitated, and the use is more convenient and rapid.

[0072] A soft rubber pad 14 is provided on the cavity wall of the installation cavity 111. The soft rubber pad 14 can effectively reduce the vibration during the operation of the hand-held mixer 5, reduce noise, and can also prevent scratching. The soft rubber pad 14 can be detachably provided on the cavity wall through a reverse buckle 141; specifically, the outer side of the soft rubber pad 14 is convexly provided with a reverse buckle 141, and a reverse buckle hole 112 is provided on the cavity wall of the installation cavity 111. The reverse buckle 141 passes through the reverse buckle hole 112 and is limited and fixed in the reverse buckle hole 112. In this way, the soft rubber pad 14 is stably fixed on the inner side of the cavity wall. Multiple reverse buckles 141 and reverse buckle holes 112 can be correspondingly provided to improve the connection stability.

[0073] As Figure 2 shown, a second threaded hole 113 communicating with the installation cavity 111 is provided on the base body 11. A second bolt 15 is threadedly connected in the second threaded hole 113. One end of the second bolt 15 is connected to a second anti-loosening nut 16. When the second bolt 15 rotates, the second anti-loosening nut 16 can be abutted against the outer wall of the hand-held mixer 5; a second nut 17 is threadedly connected to the second bolt 15, and the second nut 17 is used to cooperate with the bolt head of the second bolt 15 to fix the second bolt 15 in the second threaded hole 113. The second anti-loosening nut 16 can effectively prevent the second bolt 15 from loosening, so that the hand-held mixer 5 is stably held in the installation cavity 111. The second anti-loosening nut 16 can be made of materials such as plastic or silica gel, which not only fits closely with the hand-held mixer 5, but also avoids scratching the outer wall surface of the hand-held mixer 5.

[0074] The following combines the drawings and takes the adjustable wall-mounted rack of the present application with three hole parts 1231 of the adjustment hole 123 as an example to illustrate the usage method and principle. Among them, the three hole parts 1231 are Figures 7 to 9 from top to bottom as the first hole part, the second hole part and the third hole part in turn:

[0075] First, insert the handheld blender 5 into the installation cavity 111 of the base 11. Rotate the second bolt 15 so that the second anti-loosening nut 16 at the end of the second bolt 15 presses against the outer wall of the handheld blender 5. Use a wrench 6 to tighten the second nut 17 so that it presses against the inner wall of the base 11. Hang the adjustable wall-mounted rack on the wall of the mixing container 4 with the clamping opening 213 facing downwards along the upper edge of the wall of the mixing container 4. The upper edge of the wall abuts against the step surface with a thickness suitable for it. The first rib 211 is located inside the wall and abuts against the wall. The two second ribs 212 are located outside the wall. The handheld blender 5 is located inside the mixing container 4. Then rotate the first bolts 23 on the two second ribs 212 so that the first anti-loosening nut 24 presses against the wall of the mixing container 4, and use a wrench 6 to tighten the first nut 25 so that its head and the head of the first bolt 23 respectively press against the opposite sides of the second rib 212; as Figure 11 shown. In this way, the handheld blender 5 is installed on the mixing container 4 by using the adjustable wall-mounted rack, avoiding the use fatigue caused by the user always holding the blender for mixing and reducing the difficulty of using the handheld blender 5 for mixing operations. When it is necessary to adjust the setting angle of the handheld blender 5 inside the mixing container 4 (the angle between the mixing rod of the handheld blender 5 and the vertical axis of the barrel-shaped container), push the push button 34 along the Figure 3 arrow direction in the figure, so that the limit pin 31 moves along the first direction in its axial direction (the axial direction of the hole portion 1231). The pin head 312 and the pin sleeve 32 on the limit pin 31 are respectively disengaged from the hole portion 1231 of the first adjustment hole and the hole portion 1231 of the second adjustment hole, and the limit pin 31 is in the second state, releasing the restriction on the bracket 2. Then rotate the base 11 along the Figure 4 arrow direction in the figure. The base 11 drives the handheld blender 5 to rotate synchronously. During the rotation of the base 11, the pin rod 311 moves radially at the same time and switches to the corresponding hole portion 1231. When the bracket 2 and the base 11 are adjusted to the required angle (that is, the handheld blender 5 is adjusted to a suitable inclination angle), release the push button 34. The limit pin 31 moves along the second direction under the action of the reset member 33. The pin head 312 and the pin sleeve 32 on the limit pin 31 respectively enter the hole portion 1231 of the first adjustment hole and the hole portion 1231 of the second adjustment hole, so that the limit pin 31 is reset to the first state, forming a restriction on the bracket 2. The bracket 2 and the base 11 are fixed and cannot rotate relative to each other. In this way, the adjustment of the adjustable wall-mounted rack is completed, and at the same time, the adjustment of the inclination angle of the handheld blender 5 inside the mixing container 4 is realized; the included angle between the bracket 2 and the base 11 after adjustment (equivalent to the inclination angle of the handheld blender 5 inside the mixing container 4) is as Figures 7 to 9 shown, Figure 7 as shown, the limit pin 31 is in the first hole portion, and the included angle between the bracket 2 and the base 11 is the largest, and the largest included angle can be 60°; Figure 9The shown limit pin 31 is within the third hole portion, and the included angle between the bracket 2 and the base body 11 is the smallest, and this smallest included angle can be 0 to 5°; Figure 8 The shown limit pin 31 is within the second hole portion, and the included angle between the bracket 2 and the base body 11 is moderate. The hand-held blender 5 can perform stirring operations at different tilting angles within the stirring container 4, improving the stirring efficiency, and the tilting angle can be, for example, between 0 and 60°.

[0076] The above description is intended to be illustrative and not restrictive, and those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present disclosure. Moreover, the above examples (or one or more of their aspects) can be used in combination with each other, and it is contemplated that these embodiments can be combined with each other in various combinations or permutations.

Claims

1. An adjustable wall mount, characterized in that: include: A main body base (1) comprises a base body (11) having a mounting cavity (111) and a connecting portion arranged on the outer peripheral side of the base body (11), wherein the base body (11) is detachably mounted with a hand-held blender (5) via the mounting cavity (111); A bracket (2) is rotatably mounted on the connecting portion and comprises a clamping arm, wherein the bracket (2) is clamped and fixed to the wall of the stirring container (4) by the clamping arm; A rotation limiting mechanism (3) is arranged on the connecting portion and is capable of switching between a plurality of different positions of the connecting portion, and is used to limit or release the limit on the rotation of the bracket (2) relative to the seat body (11), so as to adjust the angle between the bracket (2) and the seat body (11).

2. The adjustable wall mount according to claim 1, characterized in that: The connecting portion comprises a first connecting position and a second connecting position, the bracket (2) is rotatably connected to the first connecting position via a rotating shaft (13); the second connecting position comprises a plurality of positions arranged in sequence, the bracket (2) is connected to the second connecting position via a rotation limiting mechanism (3), the rotation limiting mechanism (3) has a restriction state and a release state, when the rotation limiting mechanism (3) is in the release state, the rotation limiting mechanism (3) can switch between the plurality of positions, and at the same time, the rotation limiting mechanism (3) releases the restriction on the bracket (2), so that the bracket (2) can rotate relative to the seat body (11), when the rotation limiting mechanism (3) is in the restriction state, it will remain in one of the positions, and at the same time, the bracket (2) is restricted so that it cannot rotate relative to the seat body (11).

3. The adjustable wall mount according to claim 2, characterized in that: The connecting portion comprises two ear plates (12) extending outward from the outer peripheral side of the seat body (11), the two ear plates (12) are arranged opposite to each other and are respectively provided with opposite axial holes (122), and the axial holes (122) form the first connecting position; and / or The two ear plates (12) are respectively provided with opposing and arc-shaped adjustment holes (123) near their free ends, and the adjustment holes (123) form the second connection position.

4. The adjustable wall mount according to claim 3, characterized in that: The adjustment hole (123) includes a plurality of hole portions (1231) arranged in sequence and connected to each other, and a limiting portion (1232) formed between two adjacent hole portions (1231); the plurality of hole portions (1231) are distributed on the same arc, and the center of the circle where the arc is located is concentric with the axis of the axial hole (122) on the ear plate (12) where the hole portion (1231) is located; the plurality of hole portions (1231) respectively form a plurality of the positioning points.

5. The adjustable wall mount according to claim 3, characterized in that: The transfer limiting mechanism (3) comprises a limit pin (31) and a reset component (33); the limit pin (31) is inserted through the adjustment holes (123) on the two ear plates (12); the limit pin (31) has a convex portion protruding in its radial direction; the radial dimension of the limit pin (31) is smaller than the dimension of the limiting portion (1232) of the adjustment hole (123); the dimension of the convex portion in the radial direction of the limit pin (31) is larger than the dimension of the limiting portion (1232). The limit pin (31) is capable of moving along its axial direction to have a first state in which the protrusion is located in the hole portion (1231) to limit the relative rotation of the bracket (2) and the seat body (11), and a second state in which the protrusion is disengaged from the hole portion (1231) to release the restriction on the relative rotation of the bracket (2) and the seat body (11); the reset component (33) is used to apply a force to the limit pin (31) to move it toward the first state for reset.

6. The adjustable wall mount according to claim 5, characterized in that: The limiting pin (31) has two convex parts, which are respectively a first convex part and a second convex part; The limiting pin (31) comprises a pin rod (311) and a pin head (312) arranged at a first end thereof, wherein the outer diameter of the pin head (312) is greater than the outer diameter of the pin rod (311), and the pin head (312) corresponds to one of the adjusting holes (123) and forms the first convex portion; a pin sleeve (32) is fixed on the pin rod (311), wherein the outer diameter of the pin sleeve (32) is greater than the outer diameter of the pin rod (311), and the pin sleeve (32) corresponds to the other adjusting hole (123) and forms the second convex portion.

7. The adjustable wall mount according to claim 6, characterized in that: The rotation limiting mechanism (3) also includes a push button (34), which is connected to the second end of the limit pin (31) and is located on the outside of the other adjustment hole (123). The limit pin (31) is pushed by the push button (34) to switch from the first state to the second state, so that the protrusion of the limit pin (31) is disengaged from the hole (1231).

8. The adjustable wall mount according to claim 1, characterized in that: The bracket (2) comprises a frame body (21) and a lug (22) provided on the frame body (21), wherein the lug (22) is rotatably connected to the connecting portion; and / or The frame (21) comprises a first rib (211) and a second rib (212), wherein the first rib (211) and the second rib (212) form the clamping arm; a clamping opening (213) is formed between the first rib (211) and the second rib (212), and the first rib (211) and the second rib (212) are respectively located on the inner and outer sides of the wall of the stirring container (4), so that the wall is clamped in the clamping opening (213).

9. The adjustable wall mount according to claim 8, characterized in that: A side surface of at least one of the first rib (211) and the second rib (212) facing the vessel wall is a stepped surface (2121) extending from top to bottom, so that the distance between the first rib (211) and the second rib (212) increases from top to bottom to adapt to the vessel wall of the mixing container (4) with different thicknesses.

10. The adjustable wall mount according to claim 8, characterized in that: The frame (21) comprises two second ribs (212), the two second ribs (212) are respectively located on opposite sides of the first rib (211), and respectively form clamping openings (213) of the same size with the first rib (211); The two second ribs (212) are both located on the outside of the vessel wall and are respectively provided with threaded holes, wherein a bolt is threadedly connected in the threaded hole, and one end of the bolt is connected to a retaining nut, so that the retaining nut can be pressed against the vessel wall when the bolt is rotated; a nut is threadedly connected on the bolt, and the nut is used to cooperate with the bolt head to fix the bolt in the threaded hole.

11. The adjustable wall mount according to claim 8, characterized in that: The installation cavity (111) extends through the upper and lower ends of the base body (11), and a side portion of the base body (11) is provided with an opening (114) communicating with the installation cavity (111), so that the hand-held blender (5) can enter and exit the installation cavity (111) through the opening (114); and / or A soft rubber pad (14) is connected to the cavity wall of the installation cavity (111) via an undercut; and / or The seat body (11) is provided with a threaded hole which passes through the mounting cavity (111); a bolt is threadedly connected in the threaded hole; one end of the bolt is connected to a retaining nut, and when the bolt is rotated, the retaining nut can be pressed against the outer wall of the hand-held mixer (5); a nut is threadedly connected to the bolt, and the nut is used to cooperate with the bolt head to fix the bolt in the threaded hole.