Table and groove dual-purpose supporting structure of cutting and distributing machine power platform and power platform
By designing a retractable positioning handle and support structure, the problem of the power platform occupying a large space and being unstable in the kitchen was solved, achieving the effect of fixing it in the sink without tipping over and saving countertop space.
Patent Information
- Application Number
- CN202423236919.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing power platforms take up too much space in the kitchen and are unstable, especially when used in the sink, they are prone to tipping over and affecting food preparation.
A dual-purpose support structure for the power platform of a cutting and processing machine was designed, including a retractable positioning handle and a support structure. The positioning handle can be hidden or locked inside the water tank, and the support structure provides stable support through a support plate.
It saves kitchen countertop space, and the power platform is fixed in the sink to prevent tipping, making operation more stable and easy to move.
Smart Images

Figure CN223695696U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of household appliances, specifically relates to a table groove dual -purpose support structure and power platform of cutting and dispensing machine power platform. BACKGROUND
[0002] With the improvement of people's living standards, the busy work is also inevitable, in order to save the operation time of cooking and preparing food stage, various food preparation equipment should be born, sometimes need to be in the lower bowl or basin and other containers after the food preparation is completed, often need to extend the outlet of food product a distance, facilitate the bowl or the operation of the basin, such food preparation equipment will occupy more kitchen table space, for the kitchen that is not generous, it is no different from adding icing on the cake, will bring inconvenience to other operations and kitchen utensil placement.
[0003] And sometimes, the power platform of food preparation is more convenient to set in the sink, which is convenient for cleaning the cleaning work after food processing, however, the power platform will inevitably vibrate during operation, and if the movement in the sink is not controlled, it will adversely affect the food preparation operation, therefore, it is necessary to provide a power platform that can be clamped and positioned in the sink. CONTENT OF THE UTILITY MODEL
[0004] To solve the above technical problems, the support structure of the power platform is further improved to obtain a power platform that can save space and be placed stably. One of the purposes of the utility model is to provide a table groove dual-purpose support structure of cutting and dispensing machine power platform, and the second purpose is to provide a corresponding power platform.
[0005] The specific technical solutions are described below:
[0006] A table groove dual-purpose support structure of cutting and dispensing machine power platform, comprising:
[0007] The upper shell is formed with a food preparation module assembly structure, and a power output transmission structure is arranged inside;
[0008] The lower shell is used to bear the upper shell and the positioning handle, and forms a placing space for placing containers, and the placing space is located below the upper shell;
[0009] The positioning handle is arranged between the upper shell and the lower shell in an extendable manner, and is positioned in a hidden state and a clamping state through a positioning structure;
[0010] The support structure comprises a support plate arranged at the lower end of the lower shell in an extendable manner, and the support plate is supported and extended to be exposed below the placing space, and is retracted to be hidden at the lower end surface of the lower shell.
[0011] In the above technical solution, the placing space is formed below the upper shell to accommodate the bowl or the basin, thereby saving the kitchen table space. However, after the placing space is formed, the upper shell of the power platform still occupies a large space and has a certain weight due to the need to cover the power mechanism and the like. This structure makes the power platform top-heavy and unstable, and even prone to falling. Therefore, the supporting structure is further provided, and the supporting plate extending from the supporting structure supports the power platform, thereby making the power platform more stable.
[0012] In addition, according to whether work is to be performed in the sink, the positioning handle can be in a hidden state and a clamping state respectively. When in the hidden state, the positioning handle is retracted and does not occupy additional space. When in the clamping state, the positioning handle is clamped with the inner wall of the sink to fix the position of the power platform in the sink and prevent the power platform from moving. Meanwhile, the positioning handle itself can also serve as a handle for lifting the power platform, thereby facilitating the movement of the power platform.
[0013] Further, the positioning handle itself exists above the placing space, so that the center of the power platform is more inclined upward. At this time, the presence of the supporting structure is more necessary. When the positioning handle extends and clamps in the sink, the supporting plate in the supporting structure can be retracted and hidden at the lower end surface of the lower shell, so as to prevent the supporting plate from occupying additional space.
[0014] Preferably, the positioning structure comprises a positioning buckle and a positioning hole group.
[0015] The positioning hole group comprises a plurality of positioning holes, and the plurality of positioning holes are arranged on the side wall of the positioning handle in the direction of movement of the positioning handle. The positioning buckle is inserted into the corresponding positioning hole to achieve positioning.
[0016] Preferably, the positioning hole group is composed of a hidden positioning hole and a clamping positioning hole.
[0017] The hidden positioning hole is arranged at one end close to the clamping of the positioning handle to the sink.
[0018] The clamping positioning hole is arranged at one end away from the clamping of the positioning handle to the sink.
[0019] Preferably, the positioning buckle is inserted into the corresponding positioning hole through an adjusting through hole to achieve positioning.
[0020] Preferably, the adjusting through hole is partially formed on the upper shell and partially formed on the lower shell, and the upper shell and the lower shell are combined to form the adjusting through hole.
[0021] Preferably, when in the clamping state, the width of the power platform in the extension direction of the positioning handle is adapted to a span in the sink, which is usually the width of the sink.
[0022] Preferably, the inner contour of the positioning handle is adapted to fit on the power platform when in the hidden state.
[0023] Preferably, the positioning handle is clamped with the side wall of the sink through a handle part, and an elastic surface layer is arranged on the outer layer of the handle part to abut more closely on the inner wall of the sink.
[0024] Preferably, the positioning handle has a side arm on each side, and each side arm is provided with a counterweight part at the end away from the handle part; further preferably, the counterweight part is arranged inside the space covered by the upper shell and / or the lower shell when the positioning handle is in the clamping state.
[0025] In the above technical solution, the counterweight block arranged at the end of the side arm can optimize the problems existing in the power platform:
[0026] ① When the positioning handle is in the hidden state, the power platform is applied to the countertop at this time, and the counterweight part is located inside the shell away from the side of the placement space, which is just opposite to the protruding direction of the protruding end of the upper shell, that is, the protruding part above the placement space. The existence and arrangement position of the counterweight part greatly balance the problem of gravity center deviation caused by the protruding end of the upper shell, thus greatly improving the risk of the above-mentioned hidden danger.
[0027] ② When the positioning handle is in the clamping state, the positioning handle is stretched for a long distance, and in the structure of long-distance stretching, the end part where the handle part is located tends to sink, which causes the positioning handle to easily tilt towards the end where the handle part is located, resulting in unstable clamping with the sink, and even clamping failure. At this time, by arranging the counterweight part and keeping it in the internal space of the shell, the side arm takes the edge of the shell as the fulcrum, and the counterweight part balances the gravity distribution of the positioning handle in the clamping state, so that the tendency of the positioning handle to tilt towards the end where the handle part is located is reduced or even eliminated, thereby improving the risk of clamping failure hidden danger.
[0028] Preferably, the positioning buckle is composed of a positioning nose convenient to hold and a positioning protrusion inserted into the positioning hole, and the user can insert the positioning protrusion into the positioning hole by holding the positioning nose during operation.
[0029] Preferably, the two sides of the support plate are provided with sliding rails extending along the movement direction of the support plate, and the support plate is telescopically movable along the sliding rails.
[0030] Preferably, a first stopper is arranged in the sliding rail, which limits the extension amplitude of the support plate and makes the support plate at least partially located at the lower end surface of the lower shell when limited.
[0031] When the support plate extends, the part constrained in the slide rail is clamped in the slide rail, support is provided for the support plate, and the force point of the gravity of the power platform mainly acts on the plane of the support plate instead of the end of the support plate, so that the power platform is more stable.
[0032] Further preferably, a second stopper is arranged on the side of the first stopper where the support plate is located, and the first stopper limits the extension range of the support plate by abutting against the second stopper.
[0033] Preferably, the first stopper or the second stopper is a block-shaped member with elasticity.
[0034] Preferably, the thickness of the support plate is less than 5 mm.
[0035] Preferably, the support plate is a rigid flat plate integrally formed.
[0036] Further preferably, the support plate has an arc-shaped edge at the corner of the outer contour.
[0037] Preferably, when the support plate extends to the maximum range, the center of gravity of the power platform of the cutting machine is projected on the support plate in the vertical direction when the cutting machine is placed on the platform.
[0038] The power platform is provided with the table surface support structure according to any one of the technical solutions.
[0039] In summary, the technical solution of the power platform has the following main beneficial effects:
[0040] Compared with the prior art, the technical solution of the power platform saves the occupation of the kitchen table surface space by accommodating the bowl or the basin in the placing space, and the support plate extending from the support structure supports the power platform, so that the power platform is more stable.
[0041] In addition, the positioning handle can be in a hidden state or a clamping state according to whether the power platform is used in the sink, and the positioning handle does not occupy additional space when in the hidden state, and the positioning handle can fix the position of the power platform in the sink when in the clamping state, so that the power platform is prevented from moving, and the positioning handle itself also makes the position transfer of the power platform more convenient.
[0042] Further or more detailed beneficial effects will be described in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 is a structural schematic view of the power platform described in the embodiments;
[0044] Figure 2 is a structural schematic view of the internal parts of the power platform described in the embodiments;
[0045] Figure 3 is a schematic view of a support structure of the power platform described in the embodiments;
[0046] Figure 4 is a schematic view of the structure of the power platform placed in the sink and on the platform described in the embodiments.
[0047] Reference signs:
[0048] 1.1: double output motor, 1.11: first output, 1.12: shaft output, 1.21: second output, 1.22: third output;
[0049] 1.3: upper shell, 1.4: lower shell, 1.41: placement space;
[0050] 1.5: positioning handle, 1.51: positioning buckle, 1.52: positioning hole group, 1.521: hidden positioning hole, 1.522: clamping positioning hole, 1.53: handle part, 1.54: side arm, 1.541: counterweight part;
[0051] 1.6: support structure, 1.61: support plate, 1.62: slide rail, 1.63: first stop block, 1.64: second stop block. DETAILED DESCRIPTION
[0052] The utility model is further explained in combination with the embodiments:
[0053] The core technical problem faced by the technical scheme of the embodiments is derived from the accurate understanding of the prior art by the inventor, therefore, how to obtain a power platform that can save space and be stably placed is a technical problem that the inventor urgently needs to solve.
[0054] It should be noted that the embodiments do not constitute a limitation on the protection scope of the claims of the utility model, and the technical solutions that can be reasonably expected by the skilled in the art according to the technical concepts provided / proved by the embodiments should be covered within the protection scope of the claims of the utility model.
[0055] The embodiments are described in detail as follows:
[0056] Please refer to the accompanying drawings Figures 1-4 The table support structure of the cutting and dispensing machine power platform comprises an outer shell, the outer shell is composed of an upper shell 1.3 and a lower shell 1.4 that are combined together, further comprises a positioning handle 1.5 and a support structure 1.6, wherein:
[0057] The upper shell 1.3 and the lower shell 1.4 can be made of various common materials, not limited to various plastics, alloys and other materials. The upper shell 1.3 is formed with an assembly structure of a cutting module on the surface, and a transmission structure with a power output inside, so the volume of the upper shell 1.3 is relatively large. The lower shell 1.4 is used to bear the upper shell 1.3, and a placing space 1.41 for placing containers is formed on the lower shell 1.4. The placing space 1.41 is located below the upper shell 1.3 and is used to accommodate a bowl or a basin to conveniently hold prepared dishes. Therefore, the volume of the lower shell 1.4 is relatively small. The power platform is in a state of head-heavy and foot-light. Whether placed in a sink or on a platform, if not fixed, it will inevitably displace or even tip over, causing trouble for food preparation.
[0058] Therefore, the embodiment is provided with the above-mentioned positioning handle 1.5 and the supporting structure 1.6 to correspond to the placement of the power platform in the sink and on the table top respectively, so as to prevent it from being stable and from tipping over.
[0059] Specifically,
[0060] The positioning handle 1.5 is arranged between the upper shell 1.3 and the lower shell 1.4 in a telescopic manner and is positioned in a hidden state and a clamping state through the positioning structure.
[0061] In the above technical solution of the embodiment, the positioning handle 1.5 can be in a hidden state and a clamping state according to whether it is used in a sink. When in the hidden state, the positioning handle 1.5 is retracted and does not occupy extra space. When in the clamping state, the positioning handle 1.5 is clamped with the inner wall of the sink to fix the position of the power platform in the sink and prevent it from moving. Meanwhile, the positioning handle 1.5 itself can also serve as a handle for lifting the power platform, which is convenient for transferring the position of the power platform.
[0062] Specifically, when in the hidden state, the inner contour of the positioning handle 1.5 is adapted to fit on the power platform. When in the clamping state, the width of the power platform in the telescopic direction of the positioning handle 1.5 is consistent with the width of the sink.
[0063] The positioning structure in the above embodiment includes a positioning buckle 1.51 and a positioning hole group 1.52.
[0064] The positioning hole group 1.52 is composed of a hidden positioning hole 1.521 and a clamping positioning hole 1.522. The hidden positioning hole 1.521 is arranged near one end of the positioning handle 1.5 clamped to the sink, and the clamping positioning hole 1.522 is arranged away from the other end of the positioning handle 1.5 clamped to the sink. The positioning buckle 1.51 is inserted into the corresponding positioning hole to realize positioning.
[0065] Specifically, the positioning buckle 1.51 is composed of a positioning protrusion inserted into a positioning hole and a positioning bump for easy holding, and when in operation, the user holds the positioning bump and inserts the positioning protrusion into the positioning hole.
[0066] Before insertion, the positioning buckle 1.51 is first positioned by adjusting the through hole and then inserted into the corresponding positioning hole, and the adjusting through hole is partially formed on the upper shell 1.3 and partially formed on the lower shell 1.4, and the upper shell 1.3 and the lower shell 1.4 are combined to form the adjusting through hole.
[0067] The support structure 1.6 includes a support plate 1.61 which is telescopically arranged at the lower end of the lower shell 1.4, and when the support plate 1.61 is extended, it is located below the placement space 1.41, and when the support plate 1.61 is retracted, it is hidden at the lower end surface of the lower shell 1.4.
[0068] In this embodiment, the support plate 1.61 is an integrally formed rectangular rigid flat plate, and the corners of the outer contour have arc-shaped edges, and the thickness is less than 5mm.
[0069] Specifically, the support plate 1.61 is provided with a sliding rail 1.62 extending in the telescopic direction thereof, and the support plate 1.61 is telescopically movable along the sliding rail 1.62, and the sliding rail 1.62 is provided with a first stop block 1.63, and the support plate 1.61 is provided with a second stop block 1.64 on the side where the first stop block 1.63 is located, and the first stop block 1.63 limits the extension amplitude of the support plate 1.61 by abutting against the second stop block 1.64, and at least part of the lower end surface of the lower shell 1.4 is located when the support plate 1.61 is limited.
[0070] In the technical scheme of this embodiment, the placement space 1.41 is formed below the upper shell 1.3 to accommodate a bowl or a basin, thereby saving the occupation of the kitchen countertop space, and at the same time, after the placement space 1.41 is formed, the upper shell 1.3 of the power platform still occupies a large space and has a certain weight due to the need to cover the power mechanism and the like, and this structure makes the power platform top-heavy and unstable to place and even prone to fall, therefore, the embodiment is further provided with a support structure 1.6, and the support plate 1.61 extended in the support structure 1.6 supports the power platform to make it more stable to place.
[0071] After the support plate 1.61 is extended, the part limited in the sliding rail 1.62 is clamped in the sliding rail 1.62 to provide support for the support plate 1.61, and the force point of the gravity of the power platform mainly acts on the plane of the support plate 1.61 rather than the end of the support plate 1.61, which can make the power platform more stable.
[0072] Further, the positioning handle 1.5 itself exists above the placement space 1.41, so that the center of the power platform is more biased upward, at this time the existence of the support structure 1.6 is more necessary; while the positioning handle 1.5 extends the clamping position in the sink, the support plate 1.61 in the support structure 1.6 can be retracted and hidden at the lower end face of the lower shell 1.4, so as to prevent the support plate 1.61 from occupying additional space.
[0073] In a preferred embodiment, the positioning handle 1.5 is clamped with the side wall of the sink through the handle part 1.53, and the outer layer of the handle part 1.53 is provided with an elastic surface layer, which can make the positioning handle 1.5 more closely abut on the inner wall of the sink, and also can reduce the requirement of the processing precision of the positioning handle 1.5, that is, even if the length of the positioning handle 1.5 after extension is slightly shorter than the width of the sink, the existence of the elastic surface layer can also provide appropriate complementary spacing, so that the clamping of the power platform is more firm.
[0074] In a preferred embodiment, the positioning handle 1.5 has a side arm 1.54 on each side, and each side arm 1.54 is provided with a counterweight part 1.541 at the end away from the handle part 1.53, when the positioning handle 1.5 is in the clamping state, the counterweight part 1.541 is arranged inside the space covered by the upper shell 1.3, and the counterweight part 1.541 in this embodiment is made of a metal block with high density, such as a stainless steel block;
[0075] In this embodiment, the arrangement of the counterweight block 1.541 can optimize many problems existing in the power platform, which are as follows:
[0076] ①When the positioning handle 1.5 is in the hidden state, the power platform is applied to the table top at this time, and the counterweight part 1.541 is located inside the shell away from the placement space 1.41, and this side is just opposite to the protruding direction of the protruding end of the upper shell 1.3, that is, the protruding part above the placement space 1.41, which originally leads to the hidden danger of the power platform being prone to fall due to the protruding end of the upper shell 1.3, and the existence and arrangement position of the counterweight part 1.541 greatly balances the problem of the center of gravity deviation caused by the above-mentioned protruding end, thus greatly improving the risk of the above-mentioned hidden danger;
[0077] ②When the positioning handle 1.5 is in the clamping state, the power platform is applied to the sink at this time, and the positioning handle 1.5 extends for a long distance, in the structure of long-distance extension, the end part where the handle part 1.53 is located tends to sink, which causes the positioning handle 1.5 to be prone to tilt towards the end where the handle part 1.53 is located, so that the connecting structure of the positioning buckle 1.51 and the hidden positioning hole 1.521 bears a large stress, when there is no limiting structure with high strength at the hidden positioning hole 1.521, the clamping of the positioning handle 1.5 and the sink is prone to be unstable, and even clamping failure;
[0078] At this time, by providing the counterweight part 1.541 and keeping the counterweight part 1.541 in the internal space of the shell, the side arm 1.54 pivots at the edge of the shell, the counterweight part 1.541 balances the gravity distribution of the positioning handle 1.5 itself in the clamping state, so that the tendency of the positioning handle 1.5 to tilt to one end where the handle part 1.53 is located is reduced or even eliminated, thereby improving the risk of clamping failure.
[0079] In a preferred embodiment, the first stop block 1.63 or the second stop block 1.64 is a block-shaped member with elasticity to avoid rigid collision when the support plate 1.61 is stretched or contracted.
[0080] In a preferred embodiment, when the support plate 1.61 is stretched to the maximum extent, the center of gravity of the cutting and dispensing motorized platform is projected on the support plate 1.61 in the vertical direction to obtain better support effect.
[0081] Please refer to Figure 2 The motorized platform of the embodiment also relates to a three-way output transmission structure, which is composed of a double-output motor 1.1 and a variable-phase coupling 1.2. The double-output motor 1.1 is a large-torque worm reduction motor with two output shafts. The two output shafts are divided into two output parts. One of the output parts is a first output part 1.11 with a vertical upward output direction, and the other output part is a coupling output part 1.12 with a horizontal output direction. The first output part 1.11 outputs power through a spline structure.
[0082] The coupling output part 1.12 provides power to the variable-phase coupling 1.2. The input end of the variable-phase coupling 1.2 is connected to the coupling output part 1.12. The variable-phase coupling 1.2 also includes two output parts. One of the output parts is a second output part 1.21 with a vertical upward output direction, and the other output part is a third output part 1.22 with a horizontal output direction. The coupling output part 1.12 obtains different output directions of the second output part 1.21 and the third output part 1.22 and adjusts the corresponding rotational speeds of the second output part 1.21 and the third output part 1.22 through a bevel gear connection structure.
[0083] In the technical solution of the embodiment, the first output part 1.11, the second output part 1.21, and the third output part 1.22 have different output rotational speeds to adapt to the needs of different cutting and dispensing modules. Specifically, the rotational speed corresponding to the first output part 1.11 is greater than the rotational speed corresponding to the second output part 1.21, and the rotational speed corresponding to the second output part 1.21 is greater than the rotational speed corresponding to the third output part 1.22.
[0084] By combining the motor with two output parts and the variable phase coupling, the integration of three levels of output parts is realized, and the operation basis for the food preparation operation of various requirements is provided.
[0085] For example, after being set in the embodiment, the first output part 1.11 has the fastest rotating speed, and the output power thereof can be used for the chopping module for chopping food materials.
[0086] The first output part 1.11 has the fastest rotating speed, and the output power thereof can be used for the chopping module for chopping food materials.
[0087] The second output part 1.21 has the medium rotating speed, and the output power thereof can be used for the module for cutting food materials or kneading dough.
[0088] The third output part 1.22 has the slowest rotating speed, and the output power thereof can be used for the module for extruding dough.
[0089] In the preferred embodiment, the first output part 1.11 and the second output part 1.21 are provided with the spacing of the avoiding clamping structure, and in this case, when the chopping module is clamped and installed at the first output part, the interference of the clamping structure of the second output part 1.21 can be avoided.
[0090] In the preferred embodiment, the second output part 1.21 and the third output part 1.22 have the coplanar rotating output shafts, and in this embodiment, the second output part 1.21 and the third output part 1.22 can be used as the power input parts of the dough kneading and dough extruding two-in-one food preparation module, which is convenient for the internal structure setting of the module, and specifically, the second output part 1.21 is responsible for the power input for dough kneading, and the third output part 1.22 is responsible for the power input for dough extruding, and since the rotating output shafts of the second output part 1.21 and the third output part 1.22 are coplanar, the dough kneading operation can be directly converted into the dough extruding operation.
[0091] The embodiment also includes the power platform provided with the table groove dual-purpose support structure of any one of the above embodiments.
[0092] In the description of the present specification, the description of the terms “embodiment”, “basic embodiment”, “preferred embodiment”, “other embodiment”, “example”, “specific example”, or “some examples” means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0093] While the preferred embodiments of the application have been described, those skilled in the art will note that various modifications and changes can be made thereto without departing from the spirit and scope of the application. Accordingly, it is intended that all such modifications and changes be included within the scope of the application as claimed.
[0094] Obviously, many modifications and variations of the present application are possible in light of the above teachings. It is, therefore, to be understood that within the scope of the appended claims and their equivalents, the application can be practiced otherwise than as specifically described.
Claims
1. A dual-purpose support structure for a cutting and assembling machine power platform, characterized in that, Including: Upper shell (1.3) and lower shell (1.4); The lower housing (1.4) is used to support the upper housing (1.3) and the positioning handle (1.5), and forms a placement space (1.41) for placing containers, the placement space (1.41) being located below the upper housing (1.3); The positioning handle (1.5) is disposed between the upper housing (1.3) and the lower housing (1.4), and achieves positioning in both hidden and locked states through the positioning structure; The support structure (1.6) includes a support plate (1.61) disposed at the lower end of the lower housing (1.4), the support plate (1.61) being exposed below the placement space (1.41) when supported.
2. The support structure according to claim 1, characterized in that: The positioning structure includes a positioning buckle (1.51) and a group of positioning holes (1.52); The positioning hole group (1.52) includes a plurality of positioning holes, which are spaced apart on the side arm (1.54) of the positioning handle (1.5) along the movement direction of the positioning handle (1.5). The positioning buckle (1.51) is inserted into the corresponding positioning hole to achieve positioning.
3. The support structure according to claim 2, characterized in that: The positioning hole group (1.52) consists of a hidden positioning hole (1.521) and a locking positioning hole (1.522); The hidden positioning hole (1.521) is located near the end of the positioning handle (1.5) that is engaged with the water tank; The positioning hole (1.522) is located at the end of the water tank away from the positioning handle (1.5).
4. The support structure according to claim 2, characterized in that: The positioning buckle (1.51) is positioned by adjusting the through hole and then inserting it into the corresponding positioning hole.
5. The support structure according to claim 4, characterized in that: The adjustment through hole is partially opened on the upper housing (1.3) and partially opened on the lower housing (1.4). The upper housing (1.3) and the lower housing (1.4) are joined together to form the adjustment through hole.
6. The support structure according to claim 1, characterized in that: The support plate (1.61) is provided with slide rails (1.62) extending along its direction of movement on both sides, and the support plate (1.61) moves in extension and retraction along the slide rails (1.62).
7. The support structure according to claim 6, characterized in that: The slide rail (1.62) is provided with a first stop (1.63), which restricts the extension range of the support plate (1.61) and causes the support plate (1.61) to be at least partially located at the lower end face of the lower housing (1.4) when restricted.
8. The support structure according to claim 7, characterized in that: The support plate (1.61) is provided with a second stop (1.64) on the side where the first stop (1.63) is located. The first stop (1.63) restricts the extension range of the support plate (1.61) by abutting against the second stop (1.64).
9. The support structure according to claim 1 or 7, characterized in that: When the support plate (1.61) extends to its maximum extent, the center of gravity of the cutting and mixing machine power platform is projected onto the support plate (1.61) in the vertical direction.
10. A power platform, characterized in that: The support structure is provided as described in any one of claims 1 to 9.