Cleaning device
By using an integrated cleaning device that utilizes the coordinated movement of guiding and moving components, the cleaning and drying of cleaning tools and equipment is automated, solving the problem of high manual intervention in existing technologies, improving cleaning efficiency and quality, and reducing labor costs.
Patent Information
- Application Number
- CN202423008592.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-06
AI Technical Summary
In existing technologies, the lack of specific placement locations for cleaning tools and equipment during the cleaning process leads to high levels of manual intervention, cumbersome steps, slowed down cleaning efficiency, and increased time and labor consumption.
A highly integrated cleaning device was designed, comprising a support frame, a fixing component, a cleaning component, and a drying component. Through the coordinated movement of the guiding component and the moving component, automated cleaning and drying are achieved, reducing manual intervention.
It improves cleaning efficiency and quality, reduces labor costs, simplifies cleaning steps, shortens cleaning time, and enhances the stability and reliability of the cleaning equipment.
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Figure CN223571461U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to equipment cleaning technical field especially relates to a cleaning device. BACKGROUND
[0002] In prior art, in the process of cleaning the tool equipment to be cleaned, for example, in the process of cleaning the oil tank of PVD equipment, automobile transmission case oil sump, etc., each step tooling for cleaning has no specific placement position or is mostly scattered arranged, manual cleaning and reciprocating between each step tooling are needed, highly rely on manual participation, and the steps are complicated, which drags the cleaning efficiency, consumes time and energy, and is very inconvenient. CONTENT OF THE UTILITY MODEL
[0003] In view of the problems existing in the prior art, the utility model provides a cleaning device, which has high integration, reduces manual participation, is convenient to clean, saves time and effort.
[0004] The utility model provides a kind of cleaning device, including
[0005] Support frame is equipped with cleaning space and the guide component that penetrates the cleaning space;
[0006] The fixed component that is fixedly connected with the support frame is equipped with the fixed installation site for fixing the cleaning piece to be cleaned;
[0007] Cleaning component, including drive component, cleaning piece and moving component, the moving component can be moved in coordination with the cleaning piece relative to the guide component, the cleaning piece is equipped with multiple liquid outlets, and the liquid in the liquid outlet is used to spray to the cleaning piece to be cleaned.
[0008] Further, the guide component includes first guide piece and second guide piece that are arranged at intervals in the cleaning space;
[0009] The moving component includes first moving piece and second moving piece, the first moving piece is movably connected with the first guide piece, and the second moving piece is movably connected with the second guide piece;One end of the cleaning piece is fixedly connected with the first moving piece, and the other end is fixedly connected with the second moving piece;
[0010] Under the guidance of the first guide piece and the second guide piece, the first moving piece and the second moving piece can move in coordination to drive the cleaning piece to reciprocate.
[0011] Further, the cleaning device further includes connecting piece and drying assembly, the connecting piece is fixedly connected with the moving component, and the drying assembly is arranged on the connecting piece;
[0012] The drying assembly is provided with at least one air sweeping member, and the air flow generated by the air sweeping member flows to the cleaning object.
[0013] Further, the drying assembly further comprises a first motor connected to the connecting member, the at least one air sweeping member comprises a first air sweeping member, and the first motor is in driving connection with the first air sweeping member.
[0014] Further, the drying assembly further comprises a transmission mechanism, the at least one air sweeping member comprises a second air sweeping member, and the second air sweeping member is in driving connection with the first air sweeping member through the transmission mechanism.
[0015] Further, the driving assembly comprises a second motor, a driving shaft and a transmission assembly, the second motor is in driving connection with the transmission assembly through the driving shaft.
[0016] The moving assembly is provided with an engaging portion, and the engaging portion is capable of engaging with the transmission assembly.
[0017] Under the driving action of the second motor, the transmission assembly is capable of driving the moving assembly to reciprocate along the axial direction of the guide assembly.
[0018] Further, the transmission assembly comprises a driving gear set and a driven gear set which are in engagement with the engaging portion respectively, the second motor is in driving connection with the driving gear set through the driving shaft, and the driving gear set is in driving connection with the driven gear set.
[0019] Further, the fixing assembly comprises a rotating member, a locking member and a supporting member, the supporting member is fixedly connected with the supporting frame, and the supporting member has a supporting surface for supporting the cleaning object.
[0020] The rotating member is in rotational connection with the supporting frame, the rotating member has an abutting surface for abutting against the cleaning object, and the supporting surface and the abutting surface are capable of clamping the cleaning object.
[0021] The locking member is capable of locking the rotating member to limit the rotation of the rotating member relative to the supporting frame.
[0022] Further, the rotating member comprises a rotating portion and a fastening portion which are fixedly connected, the rotating portion is in rotational connection with the supporting frame, and the abutting surface is arranged at one end of the fastening portion.
[0023] The fastening portion is capable of telescopic movement to adjust the distance between the abutting surface and the cleaning object.
[0024] Further, the guide assembly is horizontally arranged.
[0025] Alternatively,
[0026] The guide assembly is arranged obliquely, and an angle between an axial direction of the guide assembly and a horizontal direction is 3-45 degrees.
[0027] The utility model discloses a kind of cleaning devices, which has the following beneficial effects:
[0028] 1. The utility model discloses a fixing assembly for fixing the to-be-cleaned part and a cleaning assembly for cleaning the to-be-cleaned part are arranged in the support frame, which has high integration, avoids the need for manual cleaning between different toolings during the conventional cleaning process, saves time and effort, greatly improves the cleaning efficiency and cleaning quality, shortens the cleaning time and cleaning and maintenance costs.
[0029] 2. The support frame further comprises a drying assembly, which can further improve the integration of the cleaning device, further improve the cleaning convenience, improve the cleaning efficiency and cleaning quality.
[0030] 3. The driving assembly comprises a transmission assembly comprising a driving gear set and a driven gear set. BRIEF DESCRIPTION OF DRAWINGS
[0031] To more clearly illustrate the technical scheme of the utility model, the following will be a brief introduction to the drawings used in the embodiments, wherein the same parts are represented by the same reference numerals. Obviously, the drawings described below are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creative labor.
[0032] Figure 1 A structural diagram of the cleaning device provided by the utility model;
[0033] Figure 2 A double structure top view of the cleaning device provided by the utility model.
[0034] In the drawings, the reference numerals correspond to:
[0035] 1-support frame, 11-guide assembly, 110-first guide, 111-second guide, 2-fixing assembly, 21-supporting piece, 22-rotating piece, 220-rotation part, 221-fastening part, 222-hydraulic cylinder, 23-locking piece, 24-moving piece, 3-cleaning assembly, 31-driving assembly, 310-second motor, 311-driving shaft, 312-first engaging piece, 313-first gear, 314-second engaging piece, 315-second gear, 316-transmission shaft, 32-cleaning piece, 320-liquid outlet, 321-connection pipeline, 322-pressure pump, 33-moving assembly, 330-first moving piece, 331-second moving piece, 332-engaging part, 4-connection piece, 5-drying assembly, 51-first air sweeping piece, 510-driving shaft, 511-first air sweeping part, 52-first motor, 53-second air sweeping piece, 530-driven shaft, 531-second air sweeping part, 54-transmission mechanism. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. It should be explained that the terms "upper", "lower", "left", "right", "inner", "outer", "front", "back", "two ends", "one end", "the other end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or structures referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0037] In the prior art, most cleaning tools do not have a fixed placement position, which is highly dispersed, resulting in the need for manual cleaning to move back and forth between different tools, which is highly dependent on manual participation and slows down the cleaning efficiency, consuming time and effort. In view of the above problems, the present application provides a cleaning device, such as Figures 1-2As shown, the cleaning device comprises a support frame 1, a fixing assembly 2 fixedly connected with the support frame 1, and a cleaning assembly 3, wherein the support frame 1 is provided with a cleaning space and a guide assembly 11 penetrating through the cleaning space, the cleaning space is a space in the inner cavity of the support frame 1 for accommodating the cleaning piece 32 and the to-be-cleaned piece 32, the fixing assembly 2 is provided with a fixing mounting position for fixing the to-be-cleaned piece 32, and the fixing mounting position is located in the inner cavity or the cleaning space of the support frame 1; the cleaning assembly 3 comprises a driving assembly 31, a cleaning piece 32, and a moving assembly 33, the moving assembly 33 can move relative to the guide assembly 11 in cooperation with the cleaning piece 32, and the cleaning piece 32 is provided with a plurality of liquid outlets 320, and the liquid passing through the liquid outlets 320 is used for spraying to the to-be-cleaned piece 32; in the cleaning process, the to-be-cleaned piece 32 is fixed to the fixing mounting position through the fixing assembly 2, the fixing mounting position is located on one side of the liquid outlet 320, so that the liquid passing through the liquid outlet 320 can be sprayed to the to-be-cleaned piece 32, and the cleaning effectiveness is good; at the same time, the moving assembly 33 and the cleaning piece 32 move synchronously, and drive the liquid outlet 320 to move together, so that the liquid outlet 320 reciprocates relative to the fixed to-be-cleaned piece 32, which can be beneficial to increase the cleaning area and improve the cleaning quality and cleaning reliability; and the entire cleaning process is completed in the support frame 1, the integration degree is high, the cleaning efficiency and the cleaning quality can be greatly improved, and the degree of human participation and the labor cost can be reduced.
[0038] Specifically, in some example embodiments, the guide assembly 11 is horizontally arranged, one end of the guide assembly 11 is fixedly connected with one side wall of the support frame 1, and the other end is fixedly connected with the other side wall of the support frame 1, which is convenient to arrange and has good structural stability.
[0039] Specifically, in some example embodiments, as shown in the accompanying drawings, Figure 1 As shown, the guide assembly 11 is arranged obliquely, which is beneficial to improve the convenience of the operator to perform the cleaning operation; the angle formed between the axial direction of the guide assembly 11 and the horizontal direction is 3°-45°; it can be understood that the angle formed between the axial direction of the guide assembly 11 and the horizontal direction can be any point value in 3°-45°; for example, the angle can be 3°, 5°, 10°, 15°, 20°, 30°, 40°, 45°, etc.; in this way, the guide assembly 11 is arranged obliquely, so that the moving assembly 33 and the cleaning piece 32 moving relative to the guide assembly 11 as a whole can be arranged obliquely, which is convenient for the cleaning personnel to stand on the side of the support frame 1 to perform the cleaning operation, and further improves the cleaning convenience.
[0040] Specifically, in some example embodiments, as shown in the accompanying drawings, Figure 1As shown, the guiding assembly 11 is arranged in the cleaning space, the guiding assembly 11 comprises a first guide 110, the moving assembly 33 comprises a first moving piece 330, the first moving piece 330 is movably connected with the first guide 110, the cleaning piece 32 is fixedly connected with the first moving piece 330, and the driving assembly 31 is in transmission connection with the first moving piece 330 to drive the first moving piece 330 to move, so that the first moving piece 330 cooperates with the cleaning piece 32 to reciprocate along the axial direction of the first guide 110 under the guidance of the first guide 110, the overall structure is simple, the transmission path is simple and direct, and jamming is less likely to occur.
[0041] Specifically, in some exemplary embodiments, as Figure 2 As shown, the guiding assembly 11 comprises a first guide 110 and a second guide 111 which are arranged in the cleaning space and are arranged in parallel, the moving assembly 33 comprises a first moving piece 330 and a second moving piece 331, the first moving piece 330 is movably connected with the first guide 110, and the second moving piece 331 is movably connected with the second guide 111, one end of the cleaning piece 32 is fixedly connected with the first moving piece 330, and the other end is fixedly connected with the second moving piece 331, the driving assembly 31 is in transmission connection with at least one of the first moving piece 330 and the second moving piece 331, the first moving piece 330 and the second moving piece 331 can move cooperatively under the guidance of the first guide 110 and the second guide 111, so as to drive the cleaning piece 32 to reciprocate, in this way, the movably connected first moving piece 330 and the first guide 110 are located at one end of the cleaning piece 32, and the movably connected second moving piece 331 and the second guide 111 are located at the other end of the cleaning piece 32, which is good in balance and can greatly improve the stability of the synchronous movement of the moving assembly 33 and the cleaning piece 32, is conducive to improving the running stability of the cleaning device during the cleaning process, and is conducive to improving the cleaning effectiveness, the cleaning efficiency and the cleaning quality.
[0042] In addition, in some other embodiments, the guide assembly 11 can further include at least one third guide member, which is arranged in parallel with the first guide member 110 and is spaced apart from the first guide member 110 and the second guide member 111. Correspondingly, the moving assembly 33 includes at least one third moving member, which is movably connected with the third guide member and is connected with the cleaning member 32. Under the guidance of the first guide member 110, the second guide member 111 and the third guide member, the first moving member 330, the second moving member 331 and the third moving member can move cooperatively to drive the cleaning member 32 to move reciprocally. The third guide member and the third moving member can be applicable to a large cleaning device or a cleaning device with a relatively long cleaning member 32. In the case of a relatively long cleaning member 32, the third guide member and the third moving member can support the middle region of the cleaning member 32 to maintain the overall balance of the cleaning member 32, so that the outlet 320 is oriented uniformly and is less likely to be inclined, which is conducive to improving the accuracy of liquid discharge, cleaning uniformity and cleaning quality.
[0043] Specifically, the cleaning assembly 3 includes at least one cleaning member 32. In some exemplary embodiments, the cleaning assembly 3 can include one cleaning member 32, which is simple in arrangement and can move reciprocally in the cleaning space to cover a wider cleaning area and improve cleaning effectiveness. In some preferred embodiments, as shown in Figure 2 the cleaning assembly 3 can include at least two cleaning members 32, which can further expand the spraying area, improve the cleaning efficiency and effectively clean the corner gaps of the space to be cleaned, thereby greatly improving the cleaning quality.
[0044] In some exemplary embodiments, as shown in Figure 2 the outlet 320 of each of the at least two cleaning members 32 is arranged in alignment, i.e. in the axial direction perpendicular to the guide assembly 11, each cleaning member 32 is provided with a plurality of outlets 320, and the plurality of outlets 320 in at least one cleaning member 32 are arranged in alignment with the outlets 320 in at least another cleaning member 32, which can improve the cleaning intensity and facilitate the acceleration of cleaning efficiency.
[0045] In some other exemplary embodiments, the outlet 320 in at least one cleaning member 32 and the outlet 320 in at least another cleaning member 32 are arranged in misalignment in the axial direction perpendicular to the guide assembly 11 or in the direction perpendicular to the moving direction of the moving assembly 33. During the movement of the moving assembly 33, the misaligned outlets 320 can spray to different regions of the cleaning member 32 in the direction perpendicular to the moving direction, which is conducive to further improving the cleaning efficiency and cleaning quality.
[0046] In some example embodiments, the cleaning member 32 is provided with a connecting pipe 321, and a pressure pump 322 is arranged in the connecting pipe 321. One end of the connecting pipe 321 is connectable to a liquid storage device, and the liquid storage device stores a cleaning liquid or water. The pressure pump 322 is configured to supply the liquid to the cleaning member 32 through the connecting pipe 321, so that the liquid can be sprayed to the cleaning member 32 through the liquid outlet 320, and the cleaning member 32 can be effectively cleaned. In some specific embodiments, the pressure pump 322 can be a high-pressure pump, which can improve the effectiveness of the liquid sprayed to the cleaning member 32 and improve the cleaning reliability.
[0047] Specifically, as shown in Figure 2 The driving assembly 31 includes a second motor 310, a driving shaft 311, and a transmission assembly. The second motor 310 is in transmission connection with the transmission assembly through the driving shaft 311. The moving assembly 33 is provided with an engaging portion 332, which can engage with the transmission assembly. Under the driving action of the second motor 310, the transmission assembly can drive the moving assembly 33 to reciprocate along the axial direction of the guide assembly 11. The entire driving structure is simple, the transmission effectiveness is high, and the occupied space is relatively small, and the space utilization rate is high.
[0048] In some example embodiments, the transmission assembly is a first engaging member 312, which is fixed to the driving shaft 311 and engages with the engaging portion 332. Under the driving action of the second motor 310, the driving shaft 311 drives the first engaging member 312 to rotate. The first engaging member 312 drives the moving assembly 33 to reciprocate along the axial direction of the guide assembly 11 through the engaging portion 332 engaged therewith. The driving is simple and convenient, and the arrangement cost is low.
[0049] Optionally, the engaging portion 332 is arranged in the first moving member 330, the second moving member 331, or the third moving member. For example, the engaging portion 332 is arranged in the second moving member 331. Under the driving action of the second motor 310, the driving shaft 311 drives the first engaging member 312 to rotate. Through the engagement between the first engaging member 312 and the engaging portion 332, the second moving member 331 with the engaging portion 332 is driven to reciprocate along the axial direction of the second guide member 111. At the same time, the first moving member 330 and the cleaning member 32 move cooperatively with the second moving member 331, so as to realize the reciprocating movement of the cleaning member 32.
[0050] Specifically, in some exemplary embodiments, the transmission assembly comprises a driving gear set and a driven gear set engaged with the engaging portion 332 respectively, the second motor 310 is in transmission connection with the driving gear set through the driving shaft 311, the driving gear set is in transmission connection with the driven gear set, and the driven gear set is capable of being engaged with the engaging portion 332 and capable of being driven together with the driving gear set to drive the moving assembly 33 to reciprocate along the axial direction of the guide assembly 11, which is conducive to improving the structural stability of the driving assembly 31, improving the moving stability of the moving assembly 33 and the operation stability of the cleaning process, and further improving the cleaning quality and cleaning efficiency; in addition, the driven gear set can serve as a backup of the driving gear set, and in the case of failure of the driving gear set, the moving assembly 33 can also be driven to move through the driven gear set, further improving the overall operation stability of the cleaning device.
[0051] Specifically, as shown in Figure 1 and Figure 2 , the driving gear set comprises a first engaging member 312 and a first gear 313, and the first engaging member 312 and the first gear 313 are coaxially arranged on the driving shaft 311, wherein the first engaging member 312 (located below the second moving member 331 in Figure 2 , not shown) is engaged with the engaging portion 332, so that under the driving action of the second motor 310, the moving assembly 33 is driven to reciprocate through the first engaging member 312; the driven gear set comprises a second engaging member 314, a second gear 315 and a transmission shaft 316, and the second engaging member 314 (located below the second moving member 331 in Figure 2 , not shown) and the second gear 315 are coaxially arranged on the transmission shaft 316, wherein the second gear 315 is engaged with the first gear 313, so that under the driving action of the second motor 310, the second gear 315, the transmission shaft 316 and the second engaging member 314 are driven to rotate through the first gear 313, and the second engaging member 314 is engaged with the engaging portion 332, thereby capable of driving the moving assembly 33 having the engaging portion 332 to reciprocate along the axial direction of the guide assembly 11; the first engaging member 312 and the second engaging member 314 cooperate with each other and can serve as a backup of each other, improving the transmission stability and reliability and maintaining the operation stability of the entire cleaning device; in addition, the first engaging member 312 and the second engaging member 314 cooperate with each other, and in the axial direction of the guide assembly 11, the moving stroke of the moving assembly 33 can be further increased, the cleaning area of the cleaning member 32 is further expanded, which is conducive to improving the cleaning efficiency and cleaning quality.
[0052] In some exemplary embodiments, the first engaging member 312 and the second engaging member 314 can be gear structures, and the engaging portion 332 can be a rack structure, which has good engagement stability and is not easy to slip off.
[0053] Specifically, as shown in Figure 1As shown, in some exemplary embodiments, the driving gear set and the driven gear set can alternately engage with the meshing portion 332, i.e., the first meshing member 312 and the second meshing member 314 can alternately engage with the meshing portion 332; wherein the first meshing member 312 is provided with a first tooth portion on a first preset arc length; the second meshing member 314 is provided with a second tooth portion on a second preset arc length, and in the rotation process of the driving gear set and the driven gear set, the first tooth portion and the second tooth portion alternately engage with the meshing portion 332, which has good engagement stability and can also avoid the possible jamming of the first meshing member 312 and the second meshing member 314 when they simultaneously engage with the meshing portion 332, thereby improving the overall cleaning stability.
[0054] Specifically, as shown in the drawings, Figure 2 The cleaning device further comprises a connecting piece 4 and a drying assembly 5, the connecting piece 4 is fixedly connected with the moving assembly 33, and the drying assembly 5 is arranged on the connecting piece 4, i.e., the drying assembly 5 is connected with the moving assembly 33 through the connecting piece 4, thereby improving the structural reliability of the drying assembly 5; in some exemplary embodiments, one end of the connecting piece 4 is fixedly connected with the first moving piece 330, and the other end is fixedly connected with the second moving piece 331, which has high structural strength and good structural stability, and can provide good support for the drying assembly 5; in some optional embodiments, the connecting piece 4 has a plate-shaped structure, has a large support surface and good support effect, and is conducive to improving the structural stability.
[0055] Specifically, the drying assembly 5 is provided with at least one air sweeping piece, and the airflow generated by the air sweeping piece flows towards the to-be-cleaned piece 32 to accelerate the drying speed of the to-be-cleaned piece 32. In this way, the cleaning device integrates the fixed assembly 2, the cleaning assembly 3 and the drying assembly 5, which can further improve the cleaning convenience, improve the cleaning quality and cleaning efficiency, save time and labor, further reduce the dependence on manual labor, and save labor costs.
[0056] Specifically, as shown in the drawings, Figure 2 In some exemplary embodiments, the drying assembly 5 further comprises a first motor 52 connected to the connecting piece 4, and the at least one air sweeping piece comprises a first air sweeping piece 51, the first motor 52 is drivingly connected with the first air sweeping piece 51 to drive the first air sweeping piece 51 to blow air under the driving action of the first motor, which is simple and convenient to drive, occupies small space, is convenient to arrange, and the air blowing direction of the first air sweeping piece 51 is towards the to-be-cleaned piece 32, which can greatly accelerate the drying efficiency, realize cleaning and drying in the same tooling, greatly improve the cleaning convenience, accelerate the cleaning efficiency, and be conducive to improving the cleaning quality.
[0057] In some optional embodiments, the first motor 52 is provided with a motor cover body, and the motor cover body is sleeved outside the first motor 52 to play a protection role.
[0058] As shown in the drawings, Figure 2As shown, the first air sweeping member 51 comprises a driving shaft 510 and a first air sweeping part 511, wherein the first motor 52 is in driving connection with the driving shaft 510, the first air sweeping part 511 has a plurality of fan blades, and the first air sweeping part 511 is fixed on the driving shaft 510, so that the first air sweeping part 511 is driven to rotate by the driving shaft 510 under the driving action of the first motor 52 to blow air, which is simple in structure, convenient to arrange, and good in drying effect.
[0059] Specifically, as shown in the drawings, Figure 2 In some exemplary embodiments, the drying assembly 5 further comprises a transmission mechanism 54, and the at least one air sweeping member comprises a second air sweeping member 53, which is in driving connection with the first air sweeping member 51 through the transmission mechanism 54, so that the second air sweeping member 53 can rotate synchronously with the first air sweeping member 51 to blow air. In this way, the first air sweeping member 51 and the second air sweeping member 53 cooperate with each other, which is conducive to increasing the drying area, enhancing the drying air power, shortening the drying time, and thus improving the overall cleaning efficiency. In addition, the plurality of air sweeping members can also play a good drying effect on the corner gaps of the to-be-cleaned member 32, thereby improving the drying uniformity.
[0060] As shown in the drawings, Figure 2 The second air sweeping member 53 comprises a driven shaft 530 and a second air sweeping part 531, wherein the driving shaft 510 and the driven shaft 530 are in driving connection through the transmission mechanism 54, so that the driven shaft 530 is driven to rotate under the driving action of the first motor 52, and the driven shaft 530 is in rotatable connection with the connecting member 4, so as to improve the rotation reliability of the driven shaft 530, which can not only provide good supporting and positioning effect for the driven shaft 530, but also avoid interfering with the rotation of the driven shaft 530. The second air sweeping part 531 has a plurality of fan blades, and the second air sweeping part 531 is fixed on the driven shaft 530, so as to be driven to rotate by the driven shaft 530 to blow air, which is simple in structure, convenient to arrange, and conducive to further improving the drying efficiency, drying uniformity and drying quality.
[0061] In some optional embodiments, the transmission mechanism 54 is a transmission belt, which is low in cost, convenient to arrange, and good in transmission effect.
[0062] Specifically, as shown in the drawings, Figure 1 The fixing assembly 2 comprises a rotating member 22, a locking member 23 and a supporting member 21, wherein the supporting member 21 is fixedly connected with the supporting frame 1, the supporting member 21 is located on the inner side of the supporting frame 1, and the supporting member 21 has a supporting surface for supporting the to-be-cleaned member 32, which can support the to-be-cleaned member 32 when the to-be-cleaned member 32 is placed in the fixing assembly 2.
[0063] The rotating member 22 is rotationally connected with the support frame 1, and has an abutting surface for abutting against the to-be-cleaned member 32. When the to-be-cleaned member 32 is placed on the support surface, the support surface and the abutting surface can clamp the to-be-cleaned member 32 by rotating the rotating member 22, so as to effectively fix the to-be-cleaned member 32.
[0064] The locking member 23 can lock the rotating member 22 to limit the rotation of the rotating member 22 relative to the support frame 1. Under the locking action of the locking member 23, the rotating member 22 can be positioned on the support frame 1 at a desired angle, which is an angle at which the support surface and the abutting surface can clamp the to-be-cleaned member 32. The angle is the angle of the included angle between the rotating member 22 and the side wall of the support frame 1. Through the cooperation between the rotating member 22, the locking member 23 and the support member 21, the to-be-cleaned member 32 is fixed firmly during the cleaning process, which improves the stability and reliability of the cleaning process, and is also conducive to improving the cleaning quality and cleaning efficiency.
[0065] As shown in Figure 1 some optional embodiments, the support frame 1 is provided with a movable member 24 to facilitate the rotation of the rotating member 22. The locking member 23 is a bolt, which can clamp the rotating member 22 and the movable member 24. The locking is convenient, the fastening is good, the arrangement is convenient, and the cost is relatively low.
[0066] Specifically, as shown in Figure 1 the rotating member 22 includes a rotating part 220 and a fastening part 221 which are fixedly connected. The rotating part 220 is rotationally connected with the support frame 1, and the abutting surface is arranged at one end of the fastening part 221. The fastening part 221 can move in extension and retraction to adjust the distance between the abutting surface and the to-be-cleaned member 32, and press the to-be-cleaned member 32. Then, by rotating the rotating part 220, the rotation angle of the rotating member 22 is adjusted. In the case that the rotating part 220 is clamped, it is convenient to abut against the to-be-cleaned member 32, which improves the fixing stability. At the same time, the fastening part 221 is elongated to abut against the to-be-cleaned member 32 by the abutting surface, which can greatly improve the fixing firmness of the to-be-cleaned member 32. In some optional embodiments, a hydraulic cylinder 222 is arranged between the rotating part 220 and the fastening part 221. The fastening part 221 is driven to move in extension and retraction by the hydraulic cylinder 222. The structure arrangement is simple, the occupied space is small, and the driving reliability is good.
[0067] Specifically, the cleaning device includes at least one fixing assembly 2. In some exemplary embodiments, the cleaning device includes one fixing assembly 2, which is arranged conveniently and can effectively fix the to-be-cleaned member 32. In other exemplary embodiments, the cleaning device includes at least two fixing assemblies 2, which are located on the side wall of the support frame 1. The at least two fixing assemblies 2 can increase the contact surface between the fixing assembly 2 and the to-be-cleaned member 32, and improve the fixing reliability. In addition, as shown in Figure 1As shown, in some exemplary embodiments, at least one fixing component 2 and at least another fixing component 2 are respectively located on two opposite side walls in the support frame 1, which can improve the fixing balance and further improve the fixing stability, which is beneficial to improving the overall cleaning quality of the cleaning device.
[0068] The following describes specific embodiments of this utility model based on the above-described specific implementation methods.
[0069] Example 1
[0070] like Figures 1-2 As shown, this embodiment provides a cleaning device including a support frame 1, a fixing component 2 fixedly connected to the support frame 1, and a cleaning component 3. The support frame 1 has a cleaning space and a guide component 11 passing through the cleaning space. The cleaning space is a space within the inner cavity of the support frame 1 used to accommodate a cleaning component 32 and a component to be cleaned 32. The fixing component 2 has a fixing mounting position for fixing the component to be cleaned 32, which is located within the inner cavity of the support frame 1 or the cleaning space. The cleaning component 3 includes a driving component 31, a cleaning component 32, and a moving component 33. The moving component 33 can move the cleaning component 32 relative to the guide component 11 in coordination with the cleaning component 32. The cleaning component 32 has multiple liquid outlets 32. 0. The liquid from the outlet 320 is sprayed onto the part 32 to be cleaned. During the cleaning process, the part 32 to be cleaned is fixed to the fixed mounting position by the fixing component 2. The fixed mounting position is located on one side of the outlet 320 so that the liquid from the outlet 320 can be sprayed onto the part 32 to be cleaned. At the same time, the moving component 33 and the part 32 to be cleaned move synchronously, which drives the outlet 320 to move as well. This makes the outlet 320 reciprocate relative to the part 32 to be cleaned, which helps to increase the cleaning area, improve the cleaning quality and cleaning reliability. Moreover, the entire cleaning process is completed within the support frame 1, which has a high degree of integration and can greatly improve the cleaning efficiency and cleaning quality, and reduce the degree of manual intervention and labor costs.
[0071] Specifically, such as Figure 1 As shown, the guide component 11 is tilted, which makes it easier for cleaning personnel to stand on the sides of the support frame 1 to carry out cleaning operations, further improving the convenience of cleaning.
[0072] Specifically, such as Figure 2As shown, the guiding assembly 11 is arranged in the cleaning space, the guiding assembly 11 comprises a first guide 110 and a second guide 111 which are arranged in the cleaning space in a spaced manner; the moving assembly 33 comprises a first moving part 330 and a second moving part 331, the first moving part 330 is movably connected with the first guide 110, and the second moving part 331 is movably connected with the second guide 111; one end of the cleaning part 32 is fixedly connected with the first moving part 330, and the other end is fixedly connected with the second moving part 331; the driving assembly 31 is in transmission connection with the second moving part 331, under the guiding action of the first guide 110 and the second guide 111, the first moving part 330 and the second moving part 331 can move coordinately to drive the cleaning part 32 to make reciprocating motion, the balance is good, the stability of the synchronous movement of the moving assembly 33 and the cleaning part 32 can be greatly improved, and the operation stability of the cleaning device in the cleaning process is improved.
[0073] Specifically, as shown in Figure 2 The cleaning assembly 3 comprises two cleaning parts 32, and the liquid outlets 320 of the two cleaning parts 32 are arranged in a position opposite to each other, so that the spraying area can be enlarged, the cleaning efficiency can be improved, the corner gaps of the to-be-cleaned space can be effectively cleaned, and the cleaning quality can be greatly improved.
[0074] Specifically, the cleaning part 32 is provided with a connecting pipeline 321, the connecting pipeline 321 is provided with a high-pressure pump, one end of the connecting pipeline 321 can be connected with a liquid storage device, the liquid storage device stores cleaning liquid or water, and the high-pressure pump is used for inputting liquid into the cleaning part 32 through the connecting pipeline 321, so that the liquid can be sprayed to the to-be-cleaned part 32 through the liquid outlet 320, and the to-be-cleaned part 32 can be effectively cleaned.
[0075] Specifically, as shown in Figure 2 The driving assembly 31 comprises a second motor 310, a driving shaft 311 and a transmission assembly, the second motor 310 is in transmission connection with the transmission assembly through the driving shaft 311; the moving assembly 33 is provided with an engaging part 332 which can engage with the transmission assembly; under the driving action of the second motor 310, the transmission assembly can drive the moving assembly 33 to move reciprocatingly along the axial direction of the guiding assembly 11, the driving structure is simple, the transmission efficiency is high, and the occupied space is relatively small, and the space utilization rate is high.
[0076] Specifically, the transmission assembly comprises a driving gear set and a driven gear set which are alternately engaged with the engaging part 332, the second motor 310 is in transmission connection with the driving gear set through the driving shaft 311, the driving gear set is in transmission connection with the driven gear set, the driven gear set can engage with the engaging part 332, and the driving gear set and the driven gear set can cooperatively drive the moving assembly 33 to move reciprocatingly along the axial direction of the guiding assembly 11.
[0077] Specifically, as shown in Figure 1 andFigure 2 As shown, the driving gear set comprises a first engaging member 312 and a first gear 313 coaxially arranged on the driving shaft 311, wherein the first engaging member 312 is engaged with the engaging portion 332; the driven gear set comprises a second engaging member 314, a second gear 315 and a transmission shaft 316, the second engaging member 314 and the second gear 315 are coaxially arranged on the transmission shaft 316, wherein the second gear 315 is engaged with the first gear 313, so that under the driving action of the second motor 310, the second gear 315, the transmission shaft 316 and the second engaging member 314 are driven to rotate by the first gear 313, and the second engaging member 314 is engaged with the engaging portion 332, thereby enabling the moving assembly 33 with the engaging portion 332 to reciprocate along the axial direction of the guide assembly 11; the first engaging member 312 and the second engaging member 314 can be mutually replaced, which improves the transmission stability and reliability and maintains the operation stability of the entire cleaning device; in addition, the moving stroke of the moving assembly 33 can be further increased in the axial direction of the guide assembly 11, which further expands the cleaning area of the cleaning member 32 and improves the cleaning efficiency and quality.
[0078] Specifically, as shown in Figure 1 The first engaging member 312 and the second engaging member 314 can be alternately engaged with the engaging portion 332; wherein the first engaging member 312 is provided with a first tooth portion on a first preset arc length; the second engaging member 314 is provided with a second tooth portion on a second preset arc length, and the first tooth portion and the second tooth portion are alternately engaged with the engaging portion 332 during the rotation of the driving gear set and the driven gear set, which has good engagement stability and can avoid the possible jamming of the first engaging member 312 and the second engaging member 314 when they are simultaneously engaged with the engaging portion 332, thereby improving the overall cleaning stability.
[0079] Specifically, as shown in Figure 2 The cleaning device further comprises a connecting member 4 and a drying assembly 5, one end of the connecting member 4 is fixedly connected with the first moving member 330, and the other end is fixedly connected with the second moving member 331, and the drying assembly 5 is arranged on the connecting member 4, which has high structural strength and good structural stability, and can provide good support for the drying assembly 5.
[0080] Specifically, the drying assembly 5 is provided with a first air sweeping member 51 and a second air sweeping member 52, and the airflow generated by the air sweeping members flows to the to-be-cleaned member 32 to accelerate the drying speed of the to-be-cleaned member 32. The cleaning device integrates the fixed assembly 2, the cleaning assembly 3 and the drying assembly 5, which can further improve the cleaning convenience, the cleaning quality and the cleaning efficiency, save time and labor, and further reduce the dependence on manual labor and save labor costs.
[0081] Specifically, as shown in Figure 2As shown, the drying assembly 5 further comprises a first motor 52 connected to the connecting piece 4 and a transmission mechanism 54, the first motor 52 is in transmission connection with the first air sweeping piece 51 to drive the first air sweeping piece 51 to blow air under the driving action of the first electrode, the driving is simple and convenient, occupies small space, and is convenient to arrange; the second air sweeping piece 53 is in transmission connection with the first air sweeping piece 51 through the transmission mechanism 54, so that the second air sweeping piece 53 can rotate synchronously with the first air sweeping piece 51 to blow air, in this way, the first air sweeping piece 51 and the second air sweeping piece 53 cooperate with each other, which is helpful to increase the drying area, enhance the drying wind power, shorten the drying time, and further improve the overall cleaning efficiency; in addition, the two air sweeping pieces cooperate with each other, which can also play a good drying effect on the corner gap of the to-be-cleaned piece 32, and improve the drying uniformity.
[0082] Specifically, as shown in Figure 1 The fixing assembly 2 comprises a rotating piece 22, a locking piece 23 and a supporting piece 21, wherein the supporting piece 21 is fixedly connected with the supporting frame 1, the supporting piece 21 is located inside the supporting frame 1, and the supporting piece 21 has a supporting surface for supporting the to-be-cleaned piece 32, which can support the to-be-cleaned piece 32 well when the to-be-cleaned piece 32 is placed in the fixing assembly 2.
[0083] The rotating piece 22 is in rotation connection with the supporting frame 1, and the rotating piece 22 has an abutting surface for abutting the to-be-cleaned piece 32, when the to-be-cleaned piece 32 is placed on the supporting surface, the supporting surface and the abutting surface can clamp the to-be-cleaned piece 32 by rotating the rotating piece 22, so as to effectively fix the to-be-cleaned piece 32.
[0084] The locking piece 23 can lock the rotating piece 22 to limit the rotation of the rotating piece 22 relative to the supporting frame 1, and under the locking action of the locking piece 23, the rotating piece 22 can be positioned on the supporting frame 1 at a desired angle, which is an angle that can make the supporting surface and the abutting surface clamp the to-be-cleaned piece 32, and the angle is the included angle between the rotating piece 22 and the side wall of the supporting frame 1; through the cooperation among the rotating piece 22, the locking piece 23 and the supporting piece 21, the to-be-cleaned piece 32 is fixed firmly during the cleaning process, which improves the stability and reliability of the cleaning process, and is also helpful to improve the cleaning quality and cleaning efficiency.
[0085] As shown in Figure 1 The supporting frame 1 is provided with a movable piece 24 to facilitate the rotation of the rotating piece 22; the locking piece 23 is a bolt, which can clamp the rotating piece 22 and the movable piece 24, and the locking is convenient, the fastening is good, the arrangement is convenient, and the cost is low.
[0086] Specifically, as shown in Figure 1As shown, the rotating piece 22 comprises a fixedly connected rotating part 220 and a fastening part 221, the rotating part 220 is rotatably connected with the support frame 1, and the abutting surface is arranged at one end of the fastening part 221; wherein, the hydraulic cylinder 222 is arranged between the rotating part 220 and the fastening part 221, the fastening part 221 is driven to move in and out by the hydraulic cylinder 222, so as to adjust the distance between the abutting surface and the to-be-cleaned piece 32, and press the to-be-cleaned piece 32, then the rotating angle of the rotating piece 22 is adjusted through the rotation of the rotating part 220, in the case that the rotating part 220 is clamped, the abutting with the to-be-cleaned piece 32 is facilitated, the fixing stability is improved, and the fastening part 221 is elongated to abut against the to-be-cleaned piece 32 by the abutting surface, so that the fixing firmness of the to-be-cleaned piece 32 is greatly improved.
[0087] Specifically, the cleaning device comprises two fixing assemblies 2, which are respectively arranged on the opposite two side walls of the support frame 1, so that the fixing balance is improved, the fixing stability is further improved, and the cleaning quality of the whole cleaning device is improved.
[0088] Embodiment 2
[0089] The difference between this embodiment and embodiment 1 is that the guide assembly 11 is horizontally arranged, one end of the guide assembly 11 is fixedly connected with one side wall of the support frame 1, and the other end is fixedly connected with the other side wall of the support frame 1, that is, the first guide piece 110 and the second guide piece 111 are arranged in parallel and horizontally, so that the arrangement convenience is improved, and the structural stability is also good.
[0090] Embodiment 3
[0091] The difference between this embodiment and embodiment 1 is that the transmission assembly is a first engaging piece 312, the first engaging piece 312 is fixed on the driving shaft 311, and the first engaging piece 312 is engaged with the engaging part 332; correspondingly, the engaging part 332 is arranged in the second moving piece 331, so that under the driving action of the second motor 310, the driving shaft 311 drives the first engaging piece 312 to rotate, and through the engagement between the first engaging piece 312 and the engaging part 332, the second moving piece 331 with the engaging part 332 is driven to reciprocate along the axial direction of the second guide piece 111, at the same time, the first moving piece 330 and the cleaning piece 32 are cooperatively moved with the second moving piece 331, so that the driving is simple and convenient, and the arrangement cost is low.
[0092] The above description is only some embodiments of the present application and is not used to limit the present application. It should be understood by those skilled in the art that the present application can have various changes and improvements, and any modification, equivalent replacement and improvement according to the present application all fall within the scope of protection required by the present application.
Claims
1. A cleaning device, characterized in that, include The support frame (1) is provided with a cleaning space and a guide assembly (11) that passes through the cleaning space; The fixing component (2) is fixedly connected to the support frame (1) and has a fixing mounting position for fixing the part to be cleaned (32); The cleaning component (3) includes a drive component (31), a cleaning component (32), and a moving component (33). The moving component (33) is able to move the cleaning component (32) relative to the guide component (11) in coordination with the cleaning component (32). The cleaning component (32) is provided with a plurality of liquid outlets (320), and the liquid through the liquid outlets (320) is used to spray onto the component (32) to be cleaned.
2. The cleaning device according to claim 1, characterized in that, The guiding assembly (11) includes a first guide (110) and a second guide (111) spaced apart in the cleaning space; The moving component (33) includes a first moving part (330) and a second moving part (331). The first moving part (330) is movably connected to the first guide (110), and the second moving part (331) is movably connected to the second guide (111). One end of the cleaning part (32) is fixedly connected to the first moving part (330), and the other end is fixedly connected to the second moving part (331). Under the guidance of the first guide (110) and the second guide (111), the first moving part (330) and the second moving part (331) can move in coordination to drive the cleaning part (32) to reciprocate.
3. The cleaning device according to claim 1, characterized in that, The cleaning device further includes a connector (4) and a drying component (5), the connector (4) being fixedly connected to the moving component (33), and the drying component (5) being disposed on the connector (4); The drying assembly (5) is provided with at least one air-sweeping element, and the airflow generated by the air-sweeping element flows toward the part (32) to be cleaned.
4. The cleaning device according to claim 3, characterized in that, The drying assembly (5) further includes a first motor (52) connected to the connector (4), and the at least one air-sweeping component includes a first air-sweeping component (51), wherein the first motor (52) is drivenly connected to the first air-sweeping component (51).
5. The cleaning device according to claim 4, characterized in that, The drying assembly (5) further includes a transmission mechanism (54), and the at least one air-sweeping component includes a second air-sweeping component (53), which is connected to the first air-sweeping component (51) via the transmission mechanism (54).
6. The cleaning device according to claim 1, characterized in that, The drive assembly (31) includes a second motor (310), a drive shaft (311), and a transmission assembly. The second motor (310) is connected to the transmission assembly via the drive shaft (311). The moving component (33) is provided with a meshing part (332), which can mesh with the transmission component; Driven by the second motor (310), the transmission assembly can drive the moving assembly (33) to reciprocate along the axial direction of the guide assembly (11).
7. The cleaning device according to claim 6, characterized in that, The transmission assembly includes a drive gear set and a driven gear set that mesh with the meshing part (332) respectively. The second motor (310) is connected to the drive gear set via the drive shaft (311), and the drive gear set is connected to the driven gear set.
8. The cleaning device according to claim 1, characterized in that, The fixing component (2) includes a rotating component (22), a locking component (23) and a supporting component (21). The supporting component (21) is fixedly connected to the supporting frame (1) and has a supporting surface for supporting the part to be cleaned (32). The rotating component (22) is rotatably connected to the support frame (1). The rotating component (22) has an abutting surface for abutting the part to be cleaned (32). The support surface and the abutting surface can clamp the part to be cleaned (32). The locking member (23) can lock the rotating member (22) to restrict the rotation of the rotating member (22) relative to the support frame (1).
9. The cleaning device according to claim 8, characterized in that, The rotating component (22) includes a rotating part (220) and a fastening part (221) that are fixedly connected. The rotating part (220) is rotatably connected to the support frame (1), and the abutting surface is provided at one end of the fastening part (221). The fastening part (221) can extend and retract to adjust the distance between the contact surface and the part to be cleaned (32).
10. The cleaning apparatus according to any one of claims 1-9, characterized in that, The guide component (11) is set horizontally; or, The guide component (11) is inclined, and the angle formed between the axial direction and the horizontal direction of the guide component (11) is 3° to 45°.