Laundry treating apparatus
By setting a vibration damping structure above the second drum of the twin-drum garment processing equipment, including buffer components and support beams, the problem of rationally arranging the vibration damping structure in a limited space is solved, achieving effective vibration suppression and equipment weight reduction.
Patent Information
- Application Number
- CN202423094354.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-10-31
- Filing Date
- 2024-12-13
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2034-12-13
AI Technical Summary
In a dual-drum garment processing device, how can a vibration damping structure be rationally arranged within a limited space to suppress the vibration of the second drum, especially small-range vibration?
A vibration damping structure, including buffer components and support beams, is installed above the second cylinder. It is connected and supported by the reinforcing structure of the top plate and the box body. The vibration damping structure is rationally arranged to make full use of the limited space.
It effectively suppresses the vibration of the second cylinder without increasing the size of the equipment, improves the vibration reduction effect of the equipment, and meets the lightweight design requirements of clothing processing equipment.
Smart Images

Figure CN223866981U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of clothes treatment, in particular, to a clothes treatment device. BACKGROUND
[0002] To meet the diversified use requirements, clothes treatment devices with double drums are more and more popular. It is inevitable for the drum to generate vibration in the process of working. In order to suppress the vibration, a damping structure for damping is configured for the drum in the related technology. Considering that two drums are simultaneously accommodated in a limited space, the damping structure needs to be reasonably arranged. CONTENT OF THE UTILITY MODEL
[0003] The purpose of the present disclosure is to provide a clothes treatment device capable of reasonably arranging a damping structure.
[0004] In order to achieve the above purpose, the present disclosure provides a clothes treatment device, comprising: a cabinet; a first drum body arranged in the cabinet; a second drum body arranged in the cabinet, the second drum body being located above the side of the first drum body; wherein the upper side of the second drum body is provided with a damping structure of the second drum body.
[0005] Optionally, the damping structure is arranged only on the upper side of the second drum body.
[0006] Optionally, the clothes treatment device further comprises a balance piece connected between the lower side of the second drum body and the cabinet, and / or the balance piece is connected between the side of the second drum body and the cabinet, and / or the balance piece is connected between the first drum body and the second drum body.
[0007] Optionally, the damping structure comprises a first buffer piece connected with the top plate of the cabinet.
[0008] Optionally, the top plate is provided with a reinforcing plate corresponding to the position of the first buffer piece.
[0009] Optionally, at least part of the damping structure is configured as the top plate of the cabinet, and the second drum body is connected to the top plate.
[0010] Optionally, the top plate of the cabinet is provided with a reinforcing structure, at least part of the damping structure is configured as the reinforcing structure, and the second drum body is connected to the reinforcing structure.
[0011] Optionally, the reinforcing structure is integrally formed with the top plate.
[0012] Optionally, the reinforcing structure is detachably connected with the top plate, or the reinforcing structure is fixedly connected with the top plate.
[0013] Optionally, the reinforcing structure includes a boss that protrudes toward the bottom plate of the housing, and the second cylinder is connected to the boss.
[0014] Optionally, the boss is constructed as a rectangular platform, and the second cylinder is at least connected to the bottom surface of the boss.
[0015] Optionally, the boss is constructed as an arc-shaped platform, and the second cylinder is connected to the arc-shaped platform in a shape-matching manner.
[0016] Optionally, the vibration damping structure includes a support beam connected to the box body.
[0017] Optionally, the vibration damping structure further includes a second buffer element disposed between the second cylinder and the support beam.
[0018] Optionally, the support beam is connected to only one wall of the box body.
[0019] Optionally, the support beam is connected to the top wall of the top plate of the box body.
[0020] Optionally, the support beam includes a first sub-beam extending in a left-right direction, and / or the support beam includes a second sub-beam extending in a front-back direction.
[0021] Optionally, the support beam includes a first sub-beam and a second sub-beam, with the first sub-beam and the second sub-beam intersecting each other.
[0022] Optionally, one end of the support beam is connected to one of the front wall, rear wall, left wall, or rear wall of the box body, and the other end of the support beam is a cantilever end.
[0023] Optionally, the support beam is constructed as a U-shaped plate, with both ends of the U-shaped plate connected to the wall of the box body, and the portion of the U-shaped plate connecting the two ends forming the cantilever end.
[0024] Optionally, the support beam is configured to connect to at least two walls of the box body.
[0025] Optionally, the two ends of the support beam are connected to the front and rear walls of the box body, respectively.
[0026] Optionally, the support beam can be connected to the front wall, rear wall, left wall and rear wall of the box body simultaneously.
[0027] Optionally, the support beam is simultaneously connected to the left wall, right wall, and front wall of the box body, or the support beam is simultaneously connected to the left wall, right wall, and rear wall of the box body, or the support beam is simultaneously connected to the front wall, rear wall, and left wall of the box body, or the support beam is simultaneously connected to the front wall, rear wall, and right wall of the box body.
[0028] Optionally, the support beam is connected to both the left and front walls of the box body, or the support beam is connected to both the left and rear walls of the box body, or the support beam is connected to both the right and front walls of the box body, or the support beam is connected to both the right and rear walls of the box body.
[0029] Optionally, one end of the support beam is connected to one of the front wall, rear wall, left wall, or rear wall of the box body, and the other end of the support beam is connected to the top wall of the top plate of the box body.
[0030] Optionally, the two ends of the support beam extend to the left and right walls of the box body, respectively, wherein the second cylinder is suspended on the left and right sides of the support beam.
[0031] Optionally, the support beam is spaced apart from the top plate of the box body.
[0032] Optionally, the support beam includes a first beam segment and a second beam segment, wherein the second beam segment is connected to the second cylinder, and the width of the second beam segment is greater than the width of the first beam segment.
[0033] Optionally, the support beam may include a plurality of first beams spaced apart, or the support beam may include a second beam.
[0034] Optionally, the support beam includes a U-shaped beam segment with an opening at the lower end, the U-shaped beam segment being arranged directly above the second cylinder and connected to the second cylinder via a second buffer member.
[0035] Through the above technical solution, in the garment processing equipment provided in this disclosure, the second cylinder is located above the vertical plane on one side of the central axis of the first cylinder, and a vibration damping structure for the second cylinder is provided above the second cylinder. For example, considering some scenarios: after arranging the two cylinders, the space left above the second cylinder is relatively limited, usually insufficient to arrange other components or large parts, and the vibration above the second cylinder is mostly small-range vibration. Therefore, in the garment processing equipment provided in this disclosure, by providing a vibration damping structure above the second cylinder, the limited space above the second cylinder can be fully utilized while meeting the vibration damping requirements of the second cylinder. Thus, the garment processing equipment of this disclosure can reasonably arrange the vibration damping structure.
[0036] Other features and advantages of this disclosure will be described in detail in the following detailed description section. Attached Figure Description
[0037] The accompanying drawings are provided to further illustrate the present disclosure and form part of the specification. They are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation thereof. In the drawings:
[0038] Figure 1 This is a front view structural diagram of the garment processing device provided according to the first embodiment of this disclosure;
[0039] Figure 2 This is a front view structural diagram of the garment processing device provided according to the second embodiment of the present disclosure;
[0040] Figure 3 This is a front view structural diagram of the garment processing device provided according to the third embodiment of this disclosure;
[0041] Figure 4 This is a top view of the garment processing device provided according to the third embodiment of this disclosure;
[0042] Figure 5 This is a front view structural diagram of the garment processing device provided according to the fourth embodiment of this disclosure;
[0043] Figure 6 This is a top view of the garment processing device provided according to the fourth embodiment of this disclosure;
[0044] Figure 7 This is a front view structural diagram of the garment processing device provided according to the fifth embodiment of this disclosure;
[0045] Figure 8 This is a top view of the garment processing apparatus provided according to the fifth embodiment of this disclosure;
[0046] Figure 9 This is another top view of the garment processing apparatus provided according to the fifth embodiment of this disclosure;
[0047] Figure 10 This is a front view structural diagram of the garment processing device provided according to the sixth embodiment of this disclosure;
[0048] Figure 11 This is a front view structural diagram of the garment processing device provided according to the seventh embodiment of the present disclosure;
[0049] Figure 12 This is a front view structural diagram of the garment processing device provided according to the eighth embodiment of this disclosure;
[0050] Figure 13 This is a front view structural diagram of the garment processing device provided according to the ninth embodiment of this disclosure;
[0051] Figure 14 This is a front view structural diagram of a garment processing device according to the tenth embodiment of this disclosure;
[0052] Figure 15 This is a front view structural schematic diagram of the garment processing device provided according to the eleventh embodiment of this disclosure;
[0053] Figure 16 This is a front view structural diagram of the garment processing device provided according to the twelfth embodiment of this disclosure;
[0054] Figure 17 This is a top view of the garment processing apparatus provided according to the twelfth embodiment of the present disclosure;
[0055] Figure 18 This is a top view of the garment processing apparatus provided according to the thirteenth embodiment of the present disclosure;
[0056] Figure 19 This is a top view of the garment processing apparatus provided according to the fourteenth embodiment of the present disclosure;
[0057] Figure 20 This is a top view of the garment processing apparatus provided according to the fifteenth embodiment of this disclosure;
[0058] Figure 21 This is a front view structural diagram of a garment processing device provided according to the sixteenth embodiment of this disclosure.
[0059] Explanation of reference numerals in the attached figures
[0060] 1-Box body, 11-Top plate, 2-First cylinder, 3-Second cylinder, 4-Vibration damping structure, 41-First buffer component, 42-Support beam, 421-First beam segment, 422-Second beam segment, 424-First beam body, 425-Second beam body, 426-First sub-beam, 427-Second sub-beam, 43-Second buffer component, 5-Balancing component, 6-Reinforcing plate, 7-Reinforcing structure, 71-Boss. Detailed Implementation
[0061] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.
[0062] In this disclosure, unless otherwise stated, directional terms such as "up," "down," "front," "back," "left," and "right" are used for reference. Figure 1 and Figure 4The orientation of the drawing. The vertical direction can also be referenced to the gravity direction of the garment processing equipment. "Inner" and "outer" refer to the inner and outer contours of each component itself. The terms "first" and "second" are used to distinguish one element from another and do not indicate sequence or importance. Furthermore, in the following description, when referring to the accompanying drawings, the same reference numerals in different drawings denote the same or similar elements, which this disclosure will not repeat.
[0063] According to some embodiments of this disclosure, a garment processing device is provided, which may be a twin-drum washing machine, a twin-drum dryer, a twin-drum washer-dryer combo, etc. (Reference) Figures 1 to 10 As shown, the garment processing equipment includes: a housing 1; a first cylinder 2 disposed inside the housing 1; and a second cylinder 3 disposed inside the housing 1, wherein the second cylinder 3 is located above the side of the first cylinder 2, that is, the second cylinder 3 is located above the side of the first cylinder 2; wherein, a vibration damping structure for the second cylinder 3 is provided above the second cylinder 3.
[0064] The first drum 2 and the second drum 3 in this disclosure can be, for example, the outer drum of a washing machine. The drum structure of a washing machine typically includes an outer drum and an inner drum located inside the outer drum. Clothes to be washed are placed in the inner drum, and washing is completed by the rotation and other actions of the inner drum. The outer drum remains fixed, serving to support and fix the inner drum. The first drum 2 and the second drum 3 can have the same outer diameter or different outer diameters. For example, the outer diameter of the first drum 2 ranges from 500 mm to 575 mm, and the outer diameter of the second drum 3 ranges from 150 mm to 200 mm.
[0065] Unlike single-drum washing machines, twin-drum washing machines are structurally more complex due to the addition of a drum and the vibration damping features for the extra drum. For space-saving purposes, a space is typically left between the second drum 3 and the inner wall of the casing 1. However, limited by the available space, while there is some space above the second drum 3, this space is usually insufficient to accommodate other larger components. Furthermore, the area above the second drum 3 experiences mostly small-scale vibrations. Considering these technical problems, the clothing processing equipment provided in this disclosure includes a vibration damping structure 4 above the second drum 3. This allows for the full utilization of the limited space above the second drum 3 while meeting its vibration damping requirements. Therefore, the clothing processing equipment of this disclosure allows for a reasonable layout of the vibration damping structure 4. It should be noted that "above the second cylinder 3" refers to the horizontal plane above the center of the cylinder opening or bottom of the second cylinder 3. The center of the cylinder opening is the intersection of the central axis of the cylinder and the plane containing the opening; for example, if the opening is a circle, the center of the opening is the center of that circle. The center of the cylinder bottom is the intersection of the central axis of the cylinder and the bottom; for example, if the bottom is a circle, the center of the bottom is the center of that circle. Alternatively, the center of the bottom can also be the intersection of the bottom and the axis of rotation through which the cylinder rotates. "The vibration damping structure 4 is located above the second cylinder 3" means that the vibration damping structure 4 is at least partially located above the second cylinder 3; that is, the vibration damping structure 4 extends downwards from the connection point with the second cylinder 3 or the housing 1 to the top of the second cylinder 3.
[0066] In some embodiments of this disclosure, reference is made to Figures 1 to 10 As shown, the diameter of the first drum 2 can be larger than the diameter of the second drum 3. In this way, the first drum 2 can be used to wash clothes that are larger in volume or heavier, while the second drum 3 can be used to wash clothes that are smaller in volume or lighter in weight.
[0067] In some implementations, reference Figures 1 to 10 As shown, the vibration damping structure 4 can be installed only above the second cylinder 3. In other words, in some embodiments, the vibration damping structure 4 is installed above the second cylinder 3, and no other structures are installed at other locations on the second cylinder 3, which helps to save space. Alternatively, the balancing component or other devices different from the vibration damping structure 4, which will be introduced later, can be installed at other locations on the second cylinder 3, which will not be elaborated here.
[0068] It should be noted that this disclosure is not intended to limit the specific form of the vibration damping structure 4. Any structure that can be connected above the second cylinder 3 and suppress the vibration of the second cylinder 3 can be applied in this disclosure.
[0069] In some embodiments of this disclosure, reference is made to Figure 1As shown, the vibration damping structure 4 may include a first buffer member 41, which can be connected to the top plate 11 of the housing 1. The first buffer member 41 can be, for example, an elastic structure such as a suspension spring, or a damping structure such as a damper. When the first buffer member 41 is a damper, it not only provides vibration damping but also supports the second cylinder 3. Here, since the vibration damping structure 4 is located above the second cylinder 3, it is relatively close to the top plate 11 of the housing 1. Thus, the connection between the vibration damping structure 4 and the housing 1 can be easily achieved using the top plate 11. Here, the first buffer member 41 can be directly connected to the top plate 11, allowing the top plate 11 to absorb the vibration of the second cylinder 3. However, for lightweight considerations, the wall thickness of the top plate 11 is generally not designed to be too thick; therefore, the structural strength of the top plate 11 is relatively limited. To enhance the connection strength between the first buffer member 41 and the top plate 11, in some embodiments, reference is made to... Figure 2 As shown, a reinforcing plate 6 can be provided on the top plate 11 at the position corresponding to the first buffer member 41. This reinforcing plate 6 can be made of metal, thus providing high structural strength. The shape of the reinforcing plate 6 can be adapted to meet specific needs. Furthermore, compared to providing the reinforcing plate 6 as a whole on the top plate 11, providing it at the position corresponding to the first buffer member 41 on the top plate 11 can provide a reliable connection to the first buffer member 41 while reducing the space occupied within the housing 1 and resulting in a lighter weight.
[0070] In other embodiments, reference is made to Figures 3 to 10 As shown, the vibration damping structure 4 may include a support beam 42 connected to the housing 1. The support beam 42 serves to support the second cylinder 3, and the vibration of the second cylinder 3 can be transmitted to the support beam 42, thereby sharing the vibration of the second cylinder 3. Further, referring to… Figure 3 , Figure 5 , Figure 7 as well as Figure 10 As shown, the vibration damping structure 4 may further include a second buffer member 43 disposed between the second cylinder 3 and the support beam 42. The second buffer member 43 may adopt a structure similar to the first buffer member 41, that is, the second buffer member 43 may also be an elastic structure such as a suspension spring, or a damping structure such as a damper. In this embodiment, by separately providing the support beam 42 and the second buffer member 43, the second cylinder 3 can obtain a more reliable vibration damping effect. In addition, the support beam 42 can also serve to support and fix the second cylinder 3, and related components of the second cylinder 3, such as the drying tunnel, can be fixed by means of the support beam 42.
[0071] In other embodiments, reference is made to Figure 3As shown, the vibration damping structure 4 may include a support beam 42, which can be directly connected to the top wall of the top plate 11 of the box body 1. In this way, the top plate can provide an installation foundation for the support beam 42 and absorb the vibration transmitted by the second cylinder 3.
[0072] In some embodiments of this disclosure, reference is made to Figure 1 and Figure 2 As shown, the garment processing equipment also includes a balancing component 5. The balancing component 5 can be connected between the lower part of the second cylinder 3 and the housing 1, and / or, the balancing component 5 can be connected between the side of the second cylinder 3 and the housing 1, and / or the balancing component 5 can be connected between the first cylinder 2 and the second cylinder 3. It should be noted that the balancing component 5 here differs from the aforementioned vibration damping structure 4, which serves to fix and balance the second cylinder 3. For example, the balancing component 5 can also be configured to have a certain degree of elasticity, such as being constructed as an elastic support. When the second cylinder 3 vibrates excessively, it can share some of the pressure from the vibration damping structure 4, preventing the pressure from falling entirely on the vibration damping structure 4 and extending its service life. Taking the vibration damping structure 4 only located above the second cylinder 3 as an example, the balancing component 5 is installed above the second cylinder 3 to maintain balance in the vertical direction when the second cylinder 3 vibrates. In this case, the balancing component 5 can be, for example, a hook located below the second cylinder 3. Balancing elements 5 are installed on the left and right sides of the second cylinder 3 to maintain balance in the left and right directions when the second cylinder 3 vibrates. The balancing elements 5 can be, for example, elastic baffles. The balancing elements 5 can be installed at any suitable position inside the housing 1 according to actual needs, for example, to avoid the components inside the housing 1.
[0073] In embodiments including the support beam 42, the support beam 42 can be configured with different structures according to actual needs. In some embodiments, refer to Figures 7 to 9 As shown, the support beam 42 is connected to only one wall of the housing. That is, the support beam 42 does not extend to the other walls, but is suspended in mid-air. This wall includes the front, rear, left, and right walls of the housing 1, as well as the top wall of the top plate 11 and the bottom wall of the bottom plate of the housing 1. Furthermore, the support beam 42 can be constructed as an independent component or as part of the wall. This support beam 42 structure, on the one hand, can avoid obstructing the first cylinder 2 or other components by adjusting its extension length; on the other hand, compared to a through beam connected to the housing 1 at both ends, it reduces material usage, meeting the lightweight design requirements of the garment processing equipment.
[0074] In some embodiments, where the support beam 42 is connected to only one wall of the box, refer to Figure 7 As shown, the support beam 42 can be constructed as follows: Figure 1The slatted structure shown has one end connected to the wall of housing 1 and the other end cantilevered; or, refer to... Figure 12 As shown, the support beam 42 can also be constructed as a U-shaped plate, with both ends connected to the wall of the box 1, and the part connecting the two ends forming a cantilever end, or, refer to Figure 11 As shown, the support beam 42 may include a U-shaped beam segment with an open lower end, which can be positioned directly above the second cylinder 3 and connected to the second cylinder 3 via a second buffer member 43. This bent U-shaped beam segment can be bent to avoid devices as needed, providing greater flexibility.
[0075] In other embodiments, reference is made to Figure 3 , Figure 4 and Figure 10 As shown, the support beam 42 is configured to connect to at least two walls of the housing 1 simultaneously. That is, unlike the embodiments described above, in these other embodiments, the support beam 42 is constructed as a through beam connecting to at least two walls of the housing 1. Referring to... Figure 3 , Figure 4 and Figure 10 As shown, the two ends of the support beam 42 can extend to the left and right walls of the box 1, respectively; or, referring to... Figure 5 and Figure 6 As shown, the two ends of the support beam 42 extend to the front and rear walls of the box body 1, respectively. Because both ends of this through beam are connected to the walls of the box body 1, it has better installation stability and can thus provide more reliable support for the second cylinder 3.
[0076] In other embodiments, the support beam 42 can also be constructed in a cross shape, a T shape, or an L shape. Specifically: a cross-shaped support beam 42 can connect to all four walls simultaneously; a T-shaped support beam 42 can connect to the left and right walls and the front wall simultaneously, or to the left and right walls and the rear wall simultaneously, or to the front and rear walls and the left wall simultaneously, or to the front and rear walls and the right wall simultaneously; an L-shaped support beam 42 can connect to the left and front walls simultaneously, or to the left and rear walls simultaneously, or to the right and front walls simultaneously, or to the right and rear walls simultaneously, or to the top wall of the top plate 11 and one of the front, rear, left, or right walls simultaneously, or to the bottom wall of the bottom plate and one of the front, rear, left, or right walls simultaneously. In these embodiments, the support beam 42 can be integrally formed or composed of multiple beams spliced together. In the splicing of multiple beams, there can be overlapping areas. Because these overlapping areas have higher strength, they can be located below the second cylinder 3. The directions of front, back, left, and right here refer to the front, back, left, and right sides of the garment processing equipment when the panel is facing the user under normal use.
[0077] In other embodiments, reference is made to Figure 10 As shown, the two ends of the support beam 42 can extend to the left and right walls of the housing 1, respectively. Second drums 3 can be suspended from the left and right sides of the support beam 42. Thus, the clothing processing device of this disclosure can be constructed as a three-drum washing machine. Suspending the two second drums 3 on the left and right sides of the support beam 42 helps to balance the force on the support beam 42 and improves the support effect of the support beam 42 on each second drum 3.
[0078] In other embodiments, reference is made to Figure 5 and Figure 10 As shown, the support beam 42 can be spaced apart from the top plate 11 of the box body 1. Here, the wall surface of the box body 1 can be used to support the support beam 42 to achieve the separation between the support beam 42 and the top plate 11, and to prevent the vibration of the second cylinder 3 from being transmitted to the top plate 11 through the support beam 42.
[0079] In some embodiments of this disclosure, reference is made to Figure 4 and Figure 6 As shown, the support beam 42 may include a first beam segment 421 and a second beam segment 422, wherein the second beam segment 422 is connected to the second cylinder 3, and the width of the second beam segment 422 is greater than the width of the first beam segment 421. That is, the support beam 42 is configured such that its width gradually decreases from the proximal side of the second cylinder 3 of the housing 1 to the distal side away from the second cylinder 3. In this way, since the support beam 42 is wider at the position corresponding to the second cylinder 3, it can provide reliable support and vibration reduction, while the first beam segment 421, since it may not be used to support or suspend components, can be configured to be narrower than the second beam segment 422, thereby meeting the lightweight design requirements of the garment handling equipment.
[0080] In addition, refer to Figure 8 and Figure 9 As shown, the support beam 42 may include a plurality of first beams 424 spaced apart, or the support beam 42 may include a second beam 425. Specifically, in Figure 9 In the illustrated embodiment, the support beam 42 employs a relatively wide beam body, while Figure 8 In the illustrated embodiment, the support beam 42 employs multiple narrow beams arranged side-by-side, for example, two relatively narrow beams. Using multiple narrow beams is equivalent to reducing the material content of a single, wider beam, which, while satisfying vibration reduction and support effects, also facilitates the lightweight design of the garment processing equipment. Although these embodiments are illustrated using cantilever beam diagrams, it should be understood that they can be applied to all the aforementioned solutions with support beam 42, and will not be elaborated further here.
[0081] In some embodiments of this disclosure, reference is made to Figure 13 As shown, the vibration damping structure 4 can be at least partially constructed as the top plate 11 of the housing 1, with the second cylinder 3 connected to the top plate 11. That is, the top plate 11 of the housing 1 can be constructed as part of the vibration damping structure 4, thereby the top plate 11 can support the second cylinder 3, and the vibration of the second cylinder 3 can be transmitted to the top plate 11, so that the top plate 11 can share the vibration of the second cylinder 3, realizing the vibration damping of the second cylinder 3 by the vibration damping structure 4.
[0082] In other embodiments of this disclosure, reference is made to Figure 14 and Figure 15 As shown, a reinforcing structure 7 can be provided on the top plate 11 of the housing 1. At least partially, the vibration damping structure 4 can be constructed as the reinforcing structure 7, and the second cylinder 3 is connected to the reinforcing structure 7. In this way, the reinforcing structure 7, as part of the vibration damping structure 4, can support the second cylinder 3, and the vibration of the second cylinder 3 can be transmitted to the reinforcing structure 7, and then to the top plate 11. At this time, the reinforcing structure 7 can share the vibration of the second cylinder 3, realizing the vibration damping of the second cylinder 3 by the vibration damping structure 4. In addition, by providing the reinforcing structure 7, the connection between the second cylinder 3 and the top plate 11 can be eliminated.
[0083] In some embodiments, the reinforcing structure 7 can be integrally formed with the top plate 11. This eliminates the need for a connection between the two, reducing the number of parts in the garment processing equipment. Of course, in other embodiments, the reinforcing structure 7 can also be detachably connected to the top plate 11. For example, the reinforcing structure 7 can be detachably connected to the top plate 11 via fasteners, or the reinforcing structure 7 and the top plate 11 can be snapped together. Specifically, one of the reinforcing structure 7 and the top plate 11 can be provided with a buckle, and the other can be provided with a slot. The snapping of the buckle and the slot achieves the snapping connection between the reinforcing structure 7 and the top plate 11. Of course, in other embodiments, the reinforcing structure 7 can also be fixedly connected to the top plate 11. For example, the reinforcing structure 7 can be welded to the top plate 11, or the reinforcing structure 7 can be embedded in the top plate 11. This disclosure does not impose excessive limitations on this.
[0084] In some implementations, reference Figure 14 and Figure 15 As shown, the reinforcing structure 7 can be constructed in any suitable manner. For example, the reinforcing structure 7 may include a boss 71 that protrudes toward the bottom plate 11 of the housing 1, and the second cylinder 3 is connected to the boss 71. In this way, by utilizing the protrusion of the boss 71 toward the bottom plate, the connection between the boss 71 and the second cylinder 3 can be achieved by arranging the boss 71 close to the second cylinder 3 without changing the position of the second cylinder 3 as much as possible.
[0085] In some implementations, reference Figure 14As shown, the boss 71 can be constructed as a rectangular platform, and the second cylinder 3 is at least connected to the bottom surface of the boss 71. In this way, the rectangular platform boss 71 can simplify the structure of the reinforcing structure 7.
[0086] In other embodiments, reference is made to Figure 15 As shown, the boss 71 can be constructed as an arc-shaped platform, and the second cylinder 3 is connected to the arc-shaped platform in a shape that fits. In this way, the contact area between the boss 71 and the second cylinder 3 can be increased, thereby improving the vibration damping effect of the boss 71 on the second cylinder 3.
[0087] In some implementations, reference Figure 16 As shown, in an embodiment where the support beam 42 is connected to only one wall of the box body 1, the support beam 42 can be connected to the top wall of the top plate 11 of the box body 1.
[0088] In some embodiments, reference Figure 17 As shown, the support beam 42 may include a first sub-beam 426, which may extend in the left-right direction, and / or the support beam 42 may include a second sub-beam 427, which may extend in the front-back direction. In the embodiment where the support beam 42 includes the first sub-beam 426 and the second sub-beam 427, the first sub-beam 426 and the second sub-beam 427 may be arranged crosswise. In this case, the support beam 42 can be constructed as a cross-shaped beam, which can effectively improve the vibration reduction effect on the second cylinder 3.
[0089] In some embodiments, reference Figure 7 As shown, in an embodiment where the support beam 42 is connected to only one wall of the box 1, one end of the support beam 42 can be connected to one of the front wall, rear wall, left wall or rear wall of the box 1, and the other end of the support beam 42 can be a cantilever end. In this way, the space occupied by the support beam 42 can be reduced. In some embodiments, the support beam can be constructed in various shapes such as plate, cylinder and rectangular strip, and this disclosure does not impose too many restrictions on this.
[0090] In some embodiments, reference Figure 12 As shown, the support beam 42 can be constructed as a U-shaped plate, with both ends of the U-shaped plate connected to the wall of the box 1, and the part of the U-shaped plate connecting the two ends forming a cantilever end.
[0091] In some embodiments, where the support beam 42 is configured to connect to at least two walls of the box 1, refer to Figure 6 As shown, the two ends of the support beam 42 can be connected to the front and rear walls of the box body, respectively. In this way, the front and rear walls of the box body 1 can provide support for the support beam 42, which helps the support beam 42 to provide a better vibration reduction effect for the second cylinder 3.
[0092] In some embodiments, reference Figure 18 As shown, the support beam 42 can be connected to the front wall, rear wall, left wall and rear wall of the box 1 at the same time. At this time, the support beam 42 can be constructed as a cross-shaped beam.
[0093] In some embodiments, reference Figure 19 As shown, the support beam 42 can be connected to the left wall, right wall and front wall of the box 1 at the same time, or the support beam 42 can be connected to the left wall, right wall and rear wall of the box 1 at the same time, or the support beam 42 can be connected to the front wall, rear wall and left wall of the box 1 at the same time, or the support beam 42 can be connected to the front wall, rear wall and right wall of the box 1 at the same time. In this case, the support beam 42 can be constructed as a T-shaped beam.
[0094] In some embodiments, reference Figure 20 As shown, the support beam 42 can be connected to the left and front walls of the box 1 simultaneously, or the support beam 42 can be connected to the left and rear walls of the box 1 simultaneously, or the support beam 42 can be connected to the right and front walls of the box 1 simultaneously, or the support beam 42 can be connected to the right and rear walls of the box 1 simultaneously. In this case, the support beam 42 can be constructed as an L-shaped beam.
[0095] In some embodiments, reference Figure 21 As shown, one end of the support beam 42 can be connected to one of the front wall, rear wall, left wall, or rear wall of the box body 1, and the other end of the support beam 42 can be connected to the top wall of the top plate 11 of the box body 1. In this case, the support beam 42 can be supported by the top plate 11 and the side wall of the box body 1. The support beam 42 can be constructed as an L-shaped beam. In some embodiments, refer to... Figure 21 As shown, when the second cylinder 3 is positioned on the right, the other end of the support beam 42 can be connected to the right wall, making it easier for the support beam 42 to be connected to the side wall of the box 1. Correspondingly, when the second cylinder 3 is positioned on the left, the other end of the support beam 42 can be connected to the left wall.
[0096] In some embodiments, reference Figure 11 As shown, the support beam 42 may include a U-shaped beam segment with an open lower end, which can be positioned directly above the second cylinder 3 and connected to the second cylinder 3 via a second buffer member 43. This bent U-shaped beam segment can be bent to avoid devices as needed, providing greater flexibility.
[0097] The preferred embodiments of this disclosure have been described in detail above with reference to the accompanying drawings. However, this disclosure is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this disclosure, various simple modifications can be made to the technical solutions of this disclosure, and these simple modifications all fall within the protection scope of this disclosure.
[0098] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable manner without contradiction. In order to avoid unnecessary repetition, this disclosure will not describe the various possible combinations separately.
[0099] Furthermore, various different embodiments of this disclosure can be combined in any way, as long as they do not violate the spirit of this disclosure, they should also be regarded as the content disclosed in this disclosure.
Claims
1. A garment processing device, characterized in that, include: Box; The first cylindrical body is disposed inside the box; A second cylindrical body is disposed inside the box, and the second cylindrical body is located on the side above the first cylindrical body; The second cylinder has a vibration damping structure installed above it.
2. The garment processing equipment according to claim 1, characterized in that, The vibration damping structure is only installed above the second cylinder.
3. The garment processing equipment according to claim 1, characterized in that, The garment processing equipment further includes a balancing component, which is connected between the lower part of the second cylinder and the housing, and / or, the balancing component is connected between the side of the second cylinder and the housing, and / or, the balancing component is connected between the first cylinder and the second cylinder.
4. The garment processing equipment according to claim 1, characterized in that, The vibration damping structure includes a first buffer member, which is connected to the top plate of the housing.
5. The garment processing equipment according to claim 4, characterized in that, The top plate is provided with a reinforcing plate corresponding to the position of the first buffer component.
6. The garment processing equipment according to claim 1, characterized in that, The vibration damping structure is at least partially constructed as the top plate of the box, and the second cylinder is connected to the top plate.
7. The garment processing equipment according to claim 1, characterized in that, The top plate of the box is provided with a reinforcing structure, and the vibration damping structure is at least partially constructed as the reinforcing structure, and the second cylinder is connected to the reinforcing structure.
8. The garment processing equipment according to claim 7, characterized in that, The reinforcing structure is integrally formed with the top plate.
9. The garment processing equipment according to claim 7, characterized in that, The reinforcing structure is detachably connected to the top plate, or the reinforcing structure is fixedly connected to the top plate.
10. The garment processing equipment according to claim 7, characterized in that, The reinforcing structure includes a boss that protrudes toward the bottom plate of the housing, and the second cylinder is connected to the boss.
11. The garment processing equipment according to claim 10, characterized in that, The boss is constructed as a rectangular platform, and the second cylinder is at least connected to the bottom surface of the boss.
12. The garment processing equipment according to claim 10, characterized in that, The boss is constructed as an arc-shaped platform, and the second cylinder is connected to the arc-shaped platform in a shape that matches it.
13. The garment processing equipment according to claim 1, characterized in that, The vibration damping structure includes a support beam connected to the box body.
14. The garment processing equipment according to claim 13, characterized in that, The vibration damping structure also includes a second buffer component disposed between the second cylinder and the support beam.
15. The garment processing equipment according to claim 13, characterized in that, The support beam is connected to only one wall of the box body.
16. The garment processing equipment according to claim 15, characterized in that, The support beam is connected to the top wall of the top plate of the box body.
17. The garment processing equipment according to claim 16, characterized in that, The support beam includes a first sub-beam extending in a left-right direction, and / or the support beam includes a second sub-beam extending in a front-back direction.
18. The garment processing equipment according to claim 17, characterized in that, The support beam includes a first sub-beam and a second sub-beam, which are arranged intersectingly.
19. The garment processing equipment according to claim 15, characterized in that, One end of the support beam is connected to one of the front wall, rear wall, left wall, or rear wall of the box body, and the other end of the support beam is a cantilever end.
20. The garment processing equipment according to claim 19, characterized in that, The supporting beam is constructed as a U-shaped plate, with both ends of the U-shaped plate connected to the wall of the box body, and the portion of the U-shaped plate connecting the two ends forming the cantilever end.
21. The garment processing equipment according to claim 13, characterized in that, The support beam is configured to connect to at least two walls of the box body.
22. The garment processing equipment according to claim 21, characterized in that, The two ends of the support beam are connected to the front and rear walls of the box body, respectively.
23. The garment processing equipment according to claim 21, characterized in that, The support beam can be connected to the front wall, rear wall, left wall and rear wall of the box at the same time.
24. The garment processing equipment according to claim 21, characterized in that, The support beam is simultaneously connected to the left, right, and front walls of the box body, or the support beam is simultaneously connected to the left, right, and rear walls of the box body, or the support beam is simultaneously connected to the front, rear, and left walls of the box body, or the support beam is simultaneously connected to the front, rear, and right walls of the box body.
25. The garment processing equipment according to claim 21, characterized in that, The support beam is simultaneously connected to the left and front walls of the box, or simultaneously connected to the left and rear walls of the box, or simultaneously connected to the right and front walls of the box, or simultaneously connected to the right and rear walls of the box.
26. The garment processing equipment according to claim 21, characterized in that, One end of the support beam is connected to one of the front wall, rear wall, left wall, or rear wall of the box body, and the other end of the support beam is connected to the top wall of the top plate of the box body.
27. The garment processing equipment according to claim 21, characterized in that, The two ends of the support beam extend to the left and right walls of the box body, respectively, and the second cylinder is suspended on the left and right sides of the support beam.
28. The garment processing apparatus according to any one of claims 13-15 or 21-27, characterized in that, The support beam is spaced apart from the top plate of the box body.
29. The garment processing equipment according to claim 13, characterized in that, The support beam includes a first beam segment and a second beam segment, wherein the second beam segment is connected to the second cylinder, and the width of the second beam segment is greater than the width of the first beam segment.
30. The garment processing equipment according to claim 13, characterized in that, The support beam may include a plurality of first beams spaced apart, or the support beam may include a second beam.
31. The garment processing apparatus according to any one of claims 13-15 or 21-27, characterized in that, The support beam includes a U-shaped beam segment with an opening at the lower end. The U-shaped beam segment is arranged directly above the second cylinder and is connected to the second cylinder through a second buffer member.