A direct-connected feature phone
By designing a direct-connected functional machine, using the support rail and lifting device to directly connect to the main rail, the problem of large area of functional machines in the existing technology is solved, and a more flexible production line layout and cost reduction is achieved.
Patent Information
- Application Number
- CN202310305287.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-27
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2043-03-27
AI Technical Summary
In the prior art, the independent ring rails of functional machines such as dust removal, sterilization, and drying cover a large area, which limits the layout and cost of the production line.
A directly connected functional machine is designed, which directly connects to the main rail through the support rail, and uses a lifting device to guide the vehicle to the interior of the functional machine for dust removal, sterilization, drying and other operations, so as to realize the effective conveying of the vehicle and the execution of the process.
It effectively reduces the layout limitations and footprint of the production line, saves the cost of track laying, has wide applicability, and has no mutual interference between functional machines.
Smart Images

Figure CN116062392B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of direct-connection type functional machines, and particularly to a direct-connection type functional machine directly connected to a main rail. Background Art
[0002] In the operation process of the existing hanging production line, there are many post-operation processes. That is, after the production of clothes is completed, dust removal, sterilization, drying, etc. (in no particular order) are carried out first, and then packaging operations are carried out to provide consumers with a better consumption experience and also help in the storage and transportation of clothes.
[0003] Existing functional machines for dust removal, sterilization, drying, etc. are all connected to the main rail through independent ring rails. After the carriers on the main rail are connected to the ring rails, operations such as dust removal, sterilization, drying, etc. (in no particular order) are carried out through the functional machines. The floor areas of multiple independent ring rails are relatively large, which is not conducive to the overall layout of the production line. Summary of the Invention
[0004] To solve the problems existing in the prior art, the present invention provides a direct-connection type functional machine that can be directly connected to the main rail to perform functional operations such as dust removal, sterilization, and drying on clothes; the layout of the post-production line has less restrictions and a smaller floor area, which can effectively reduce costs and has wide applicability.
[0005] The technical solution for the present invention to solve the problem is to provide a direct-connection type functional machine for performing post-operation processes on the goods carried on the main rail carriers, including a cabinet, a branch rail, and a lifting device. The two ends of the branch rail are respectively connected to the main rail to guide the carriers on the main rail to the cabinet. A truncation point is preset at the position of the branch rail corresponding to the functional chamber of the cabinet. The lifting device is arranged on the cabinet, and a truncation block is arranged at the lifting end of the lifting device. When the lifting end descends, the truncation block can be filled into the truncation point and intercept the sliding carrier so that it stays above the truncation block. When the lifting end ascends, the truncation block carries the intercepted carrier thereon into the functional chamber.
[0006] Further, the branch rail includes an incoming rail slide, a turning bend rail, and a lifting rail. The front end of the incoming rail slide is connected to the main rail to connect the carriers on the main rail to the branch rail. The turning bend rail is used to connect the end of the incoming rail slide and the front end of the lifting rail. A sorting device is arranged in the middle of the turning bend rail to release the carriers sliding down one by one. The end of the turning bend rail is horizontal and provided with the truncation point. The end of the lifting rail is connected to the main rail to convey the carrier to the main rail.
[0007] Furthermore, a blocking device is also included on the steering curved rail. The blocking device is located behind the cut-off point to prevent the vehicle intercepted by the cut-off block from moving backward. The blocking device includes a cylinder and a stop baffle. When the cylinder drives the stop baffle to horizontally extend, the stop baffle is located above the steering curved rail behind the cut-off point, thereby blocking the downward sliding / backward movement of the vehicle. When the cylinder drives the stop baffle to horizontally retract, the vehicle can slide smoothly.
[0008] Furthermore, the lifting device includes an inclined substrate, a fixed bracket, and a telescopic bracket. The fixed bracket is fixed to the top of the cabinet. There is a rotational connection between the fixed bracket and the front end of the substrate. There is a rotational connection between the rear end of the substrate and the telescopic end of the telescopic bracket. The fixed end of the telescopic bracket is fixedly connected to the top of the cabinet and is located on the right side of the fixed bracket. The maximum length of the telescopic bracket is greater than the height of the fixed bracket.
[0009] Preferably, the maximum length of the telescopic bracket is three times the height of the fixed bracket.
[0010] Furthermore, a circulating and rotating belt, a guide rail, and a follower sheath are sequentially arranged in parallel along the direction of the substrate on the front surface of the substrate. A lifting block is fixed on the side of the belt close to the guide rail. A lifting arm is arranged on the guide rail. The lifting arm can slide along the guide rail. The fixed end of the lifting arm is fixed to the lifting block, so that the belt can drive the lifting arm to rise / fall when rotating. The follower end of the follower sheath is connected to the fixed end of the lifting arm. The fixed end of the follower sheath is fixedly connected to the substrate. The follower sheath is internally provided with a wire.
[0011] Furthermore, the lifting arm is inclined above the functional chamber. By adjusting the length of the telescopic bracket, the inclination angle of the lifting arm is adjusted, so that when the lifting end of the lifting arm rises to the end point, the vehicle on the cut-off block can be located in the functional chamber.
[0012] Furthermore, a limit block is arranged on the back side of the fixed end of the lifting arm. The limit block is provided with a sliding groove corresponding to the guide rail, so that the lifting arm can slide along the guide rail. A clamping notch is arranged on the front side of the fixed end of the lifting arm close to the belt. The clamping notch is used for fixedly connecting the lifting block, so that when the lifting block runs with the belt, it can drive the lifting arm to rise / fall.
[0013] Furthermore, the truncation block comprises a telescopic device, a telescopic plate, a fixed seat, a fixed plate, and a toggle member, the inner side of the telescopic device is fixedly connected to the fixed plate, the lower end of the fixed plate extends in a direction away from the telescopic device and is fixedly connected to the fixed seat, the fixed seat can be filled in the truncation point and docked with the branch rail, so that the carrier on the branch rail can slide down and enter onto the fixed seat; the telescopic end of the telescopic device is fixedly connected to the telescopic plate vertically downward, the telescopic plate is arranged parallel to the bottom of the fixed seat, a through-type cavity is opened in the middle of the fixed seat, the telescopic plate is provided with a vertical toggle member corresponding to the cavity, and the fixed seat is provided with an arc-shaped groove at the upper end of the cavity; when the telescopic end of the telescopic device is extended, the telescopic plate carries the toggle member down, so that the carrier sliding down to the fixed seat can stay in the groove; when the telescopic end of the telescopic device is retracted, the telescopic plate carries the toggle member up, so that the carrier staying in the groove can be ejected and continue to slide down along the branch rail.
[0014] Furthermore, an ejector is provided at the upper end of the toggle member, the size of the ejector is smaller than the inner size of the cavity, and the ejector is inclined along the running direction of the vehicle on the branch rail, so that when the ejector ejects the vehicle staying in the groove upward, the vehicle can slide down along the running direction.
[0015] Furthermore, the lower part of the fixing seat is a long block structure, and the upper part is a semicircular structure, and the radius of the semicircular structure is the same as the cross-sectional radius of the branch rail, and the radius of the arc-shaped groove is larger than the radius of the roller connecting shaft of the carrier, so that the carrier can be stably docked in the groove.
[0016] Furthermore, a plug-in plate is provided at the upper end of the fixing plate, and a connecting plate and a limit plate are provided at the lifting end of the lifting arm, and a plug-in gap is provided between the connecting plate and the limit plate so that the plug-in plate can be plugged into the plug-in gap, and a positioning hole and a locking hole are provided on the plug-in plate in sequence from bottom to top, and through holes are provided on the connecting plate and the limit plate corresponding to the positioning holes, and an arc-shaped strip hole is provided on the limit plate corresponding to the locking hole, and the plug-in plate is rotatably connected to the limit plate and the connecting plate through the positioning hole, so that the truncation block is rotatably connected to the lifting end of the lifting arm; the truncation block is rotated, and the rotation angle of the truncation block relative to the lifting arm is locked through the locking hole and the limit plate, so that the truncation block can be flush with the tracks on both sides of the truncation point when filled in the truncation point.
[0017] Furthermore, the cabinet has a built-in exhaust fan, the air intake port of the exhaust fan is located at the bottom left wall of the functional chamber, and the bottom plate of the functional chamber is inclined from the right wall to the left wall; the air outlet of the exhaust fan extends to the outside of the cabinet and a collection device is provided, and the collection device is used to collect dust and debris discharged from the functional chamber.
[0018] Furthermore, the cabinet has a built-in hair dryer, the top of the cabinet is provided with an air outlet, and the side wall of the functional chamber is provided with a plurality of air nozzles, and the hair dryer is used to supply air to the air outlet and the air nozzle to blow the mounted objects on the carrier in the functional chamber.
[0019] Furthermore, it also includes a humidifier, which is arranged at the lower rear side of the cabinet, and the humidification pipe of the humidifier is connected to the air outlet.
[0020] Furthermore, the air outlet includes an air inlet channel sunk in the cabinet and a blowing structure floating on the top of the functional chamber, the air inlet channel includes a first channel opening and a second channel opening, the first channel opening is connected to the air supply duct of the hair dryer, the second channel opening is connected to the humidification duct of the humidifier, and the second channel opening is located above the first channel opening; a lifting gap is opened in the middle of the front end of the blowing structure, presenting a "U"-shaped structure, and the lifting gap is used to reserve a lifting channel for the lifting device; a plurality of blowing air outlets are opened on both sides and the rear side of the lifting gap toward the inside of the functional chamber, and the blowing air outlets are all provided with wind guide plates, and the inclination direction of the wind guide plates is toward directly below the lifting gap.
[0021] Furthermore, an air intake plate is provided on the rear side of the cabinet to provide an air intake port for the hair dryer; an air intake frame is provided on the air intake plate, a filter is provided on the outside of the air intake frame, a turning plate is provided on the outside of the filter, a plurality of turning plates are provided on the turning plate, and the opening direction of the turning plate faces downward, so that when the hair dryer inhales air, the airflow enters from the bottom to the top, thereby reducing the suction force on other objects on the rear side of the cabinet.
[0022] Furthermore, a plurality of functional machines are arranged in sequence head to tail below the main rail; they can be divided into two columns and located on both sides of the main rail.
[0023] Preferably, the opening of the functional chamber is arranged on the front side wall of the cabinet, the branch rail is arranged on the front side of the cabinet to dock with the main rail, and the rear side of the cabinet of the previous functional machine corresponds to the branch rail of the next functional machine. It can be understood that the number of functional machines in each column is limited by the process space.
[0024] Furthermore, the cabinet body is equipped with a drying device and a sterilization device. The drying device is used to dry the items mounted on the carrier in the functional chamber, and the sterilization device is used to sterilize the items mounted on the carrier in the functional chamber.
[0025] Furthermore, the cabinet body also includes a control box, which is used to control the blower, exhaust fan, humidifier, drying device, sterilization device, the lifting of the lifting device, the lifting chain track on the supporting rail, and the sorting device. The control box can be arranged on one side of the cabinet body close to the main rail.
[0026] The beneficial effects of the present invention are as follows:
[0027] The present invention is a direct-connected functional machine. The carrier is directly guided to the descending node of the lifting device of the functional machine by the supporting rail, and the carrier is lifted into the interior of the functional machine by the lifting device. The functional modules carried in the functional machine perform corresponding operations, such as dust removal, sterilization, drying, etc. After the operations are completed, the carrier is sent back to the supporting rail by the lifting device and then conveyed to the main rail.
[0028] The short-section U-shaped supporting rail is docked with the main rail to realize the downward movement and uploading of the carrier, saving a large amount of space, facilitating the layout of the subsequent production line, and effectively reducing the cost of track laying.
[0029] The functional machine of the present invention has little restriction on clothes in the hanging production line and has wide applicability; there is no mutual interference between functional machines.
[0030] When the functional machines of the present invention are arranged side by side, the multi-layer board structure is used to reduce the suction force and change the wind direction. The adsorption effect of the air inlet of the blower on the clothes on the adjacent supporting rail is extremely small and can be ignored, which is beneficial to the normal operation of each functional machine and effectively reduces the structural wear cycle of the carrier. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The drawings incorporated into the specification and constituting a part of the specification illustrate embodiments of the present invention and, together with the description, are used to explain the principles of the present invention. In these drawings, like reference numerals are used to represent like elements. The following drawings are some embodiments of the present invention, not all embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0032] Figure 1 It is a layout schematic diagram of the supporting rail of a direct-connected functional machine according to an embodiment of the present invention;
[0033] Figure 2 It is a schematic diagram of the descending state of the lifting device of a direct-connected functional machine according to an embodiment of the present invention;
[0034] Figure 3 Front view internal structure schematic diagram of a direct-connected function machine according to an embodiment of the present invention;
[0035] Figure 4 Rear view internal structure schematic diagram of a direct-connected function machine according to an embodiment of the present invention;
[0036] Figure 5 Lifting state schematic diagram of a lifting device of a direct-connected function machine according to an embodiment of the present invention;
[0037] Figure 6 Docking schematic diagram of a truncation block and a support rail of a direct-connected function machine according to an embodiment of the present invention;
[0038] Figure 7 Pivoting state schematic diagram of a truncation block of a direct-connected function machine according to an embodiment of the present invention;
[0039] Figure 8 Mounting state schematic diagram of a truncation block of a direct-connected function machine according to an embodiment of the present invention;
[0040] Figure 9 Structure diagram of a lifting device of a direct-connected function machine according to an embodiment of the present invention;
[0041] Figure 10 Exploded view of a lifting device of a direct-connected function machine according to an embodiment of the present invention;
[0042] Figure 11 Layer decomposition schematic diagram of an air inlet plate of a direct-connected function machine according to an embodiment of the present invention;
[0043] Figure 12 Air outlet structure diagram of a direct-connected function machine according to an embodiment of the present invention.
[0044] In the figure: 1, cabinet; 2, support rail; 3, lifting device; 4, truncation block; 5, air outlet; 6, lifting arm; 7, hair dryer; 8, exhaust fan; 9, humidifier; 11, bottom plate; 12, air nozzle; 13, air inlet plate; 14, control box; 21, blocking device; 31, belt; 32, motor; 33, lifting block; 34, fixed bracket; 35, telescopic bracket; 36, follower sheath; 37, guide rail; 41, telescopic device; 42, telescopic plate; 43, fixed seat; 44, fixing plate; 45, toggling member; 51, first channel opening; 52, second channel opening; 53, blowing air outlet; 54, lifting gap; 61, clamping notch; 62, limiting block; 63, limiting plate; 81, suction port; 82, collection device; 91, humidifying pipe; 131, air inlet frame; 132, filter screen; 133, deflector. Detailed implementation manners
[0045] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.
[0046] To solve the above problems, the present invention proposes a direct-connected functional machine for performing the subsequent processes of the goods carried on the main rail vehicle. Please refer to Figures 1-12 , the functional machine includes a cabinet 1, a branch rail 2, and a lifting device 3. The two ends of the branch rail 2 are respectively docked with the main rail to guide the vehicle on the main rail to the cabinet 1. A cut-off point is preset at the position of the branch rail 2 corresponding to the functional chamber of the cabinet 1; a lifting device 3 is provided on the cabinet 1, and a cut-off block 4 is provided at the lifting end of the lifting device 3. When the lifting end descends, the cut-off block 4 can be filled into the cut-off point and intercept the sliding vehicle so that it stays above the cut-off block 4; when the lifting end ascends, the cut-off block 4 carries the intercepted vehicle thereon into the functional chamber.
[0047] It should be clear that in the subsequent processes of the hanging production line, including multiple process operations such as dust removal, sterilization, and drying, each function in the current subsequent process operates independently. It is necessary to set relatively independent loop rails and set corresponding dust removal machines, sterilization machines, drying machines, etc. to perform process operations in the loop rails. Each process operation occupies a large amount of floor space, and the layout is greatly restricted. However, in this application, the independent loop rail is deleted, and the branch rail is directly used as a two-way conveying rail, that is, the vehicle on the main rail is guided to the functional machine through the front half of the branch rail, and then the vehicle is conveyed back to the main rail through the rear half of the branch rail. During this period, the corresponding functional machine performs the corresponding required process operations, such as dust removal, sterilization, drying, etc.
[0048] Taking the dust removal machine as an example, a movable door panel is opened on the front of the cabinet 1 corresponding to the functional chamber to open / close the functional chamber. The branch rail 2 is suspended in front of the cabinet 1 and docked with the main rail. As Figure 2 shown, the branch rail 2 is generally U-shaped, and the front end is the incoming rail end, which guides the vehicle on the main rail to slide down. The lifting device 3 completes the transfer of the vehicle into the interior of the cabinet 1 to perform the process operation. After being transferred and docked with the branch rail 2 through the lifting device 3 and released, it is conveyed back to the main rail by the lifting chain rail at the rear end of the branch rail 2. It can be understood that before the vehicle establishes a driving relationship with the lifting chain rail, the vehicle slides down on the branch rail 2 by gravity.
[0049] In a specific embodiment, the branch rail 2 includes an incoming rail slide, a turning curved rail, and a lifting rail. The front end of the incoming rail slide is docked with the main rail to connect the vehicle on the main rail to the branch rail 2; the turning curved rail is used to connect the end of the incoming rail slide and the front end of the lifting rail. A sorting device is provided in the middle of the turning curved rail to release the vehicles one by one for sliding down; the end of the turning curved rail is horizontal and provided with a cut-off point; the end of the lifting rail is docked with the main rail to convey the vehicle onto the main rail.
[0050] Preferably, the front section of the lifting rail is a downward slide rail, the middle section is an upward rising rail with a lifting chain rail installed, and the rear section is a downward docking slide rail. The slide rail in the front section is directly docked with the cut-off point. When the vehicle slides down to the docking point between the front section and the middle section, it is driven by the lifting chain rail to run upward and finally slide downward along the rear section to the main rail.
[0051] Since the vehicles enter the cabinet 1 in a limited quantity, a sorting device can be provided in front of the cut-off point to release the vehicles one by one for sliding down into the cut-off point and be lifted into the functional chamber of the cabinet 1 by the lifting device 3.
[0052] In view of the interception effect of the cut-off point on the vehicle and the possibility of incorrect subsequent release directions, in order to prevent the vehicle from retreating, a blocking device 21 can be provided on the turning curved rail. After detecting that a sufficient number of vehicles have slid down, the blocking device 21 starts to operate to prevent the vehicle from retreating.
[0053] In a specific embodiment, the turning curved rail also includes a blocking device 21. Based on the running direction of the vehicle, the blocking device 21 is located behind the cut-off point to prevent the vehicle intercepted by the cut-off block 4 from retreating backward. The blocking device 21 includes a cylinder and a stop baffle. When the cylinder drives the stop baffle to horizontally extend, the stop baffle is located above the turning curved rail behind the cut-off point, thereby stopping the sliding / retreating of the vehicle; when the cylinder drives the stop baffle to horizontally retract, the vehicle can slide down smoothly.
[0054] It can be understood that the operating time of the blocking device 21 can be designed in relation to the sorting operation time of the sorting device for the vehicles, so that the stop baffle should not affect the sliding of the vehicle when the sorted and slid vehicle reaches the operating area of the blocking device 21, and the sorted and slid vehicle can be blocked by the stop baffle after being intercepted by the cut-off block 4 without retreating. At the same time, the vehicles sorted later can also be blocked to prevent the vehicles sorted later from colliding with the vehicle located on the cut-off block 4.
[0055] In a specific embodiment, the allocation device can allocate only one carrier at a time, which is first blocked by the blocking device 21 and finally stopped by the cut-off block 4, so that the carrier stays on the cut-off block 4. At this time, the corresponding functional operation of the functional machine can be executed; but for the branch rail 2, if the carrier thereon is in a waiting state and is not allocated and released until the functional operation is completed, it is relatively time-consuming and affects the efficiency; therefore, when the functional machine is executing the corresponding functional operation, the allocation device can continue to allocate a carrier and be pre-stopped by the blocking device 21. After the current carrier is released to the lifting rail by the cut-off block 4, the next carrier can be finally stopped directly on the cut-off block 4, and the exchange of the carrier on the cut-off block 4 can be quickly completed, thereby reducing the waiting time and effectively improving the working efficiency.
[0056] In an embodiment of the present application, the lifting device 3 is arranged on the top of the cabinet 1 in an inclined posture, and lifts the carrier on the branch rail 2 outside the functional chamber into the functional chamber. After completing the process operation, it is sent back to the branch rail 2 and transported back to the main rail.
[0057] In a specific embodiment, the lifting device 3 includes an inclined base plate, a fixed bracket 34, and a telescopic bracket 35. The fixed bracket 34 is fixed to the top of the cabinet 1, the fixed bracket 34 is rotatably connected to the front end of the base plate, and the rear end of the base plate is rotatably connected to the telescopic end of the telescopic bracket 35. The fixed end of the telescopic bracket 35 is fixed to the top of the cabinet 1 and is located on the right side of the fixed bracket 34. Figure 1 , Figure 2 It is understood that the maximum length of the telescopic bracket 35 is greater than the height of the fixed bracket 34 to ensure that the tilting posture of the substrate meets the requirements. Preferably, the maximum length of the telescopic bracket is three times the height of the fixed bracket.
[0058] On the front side of the substrate, a circulating belt 31, a guide rail 37, and a follower sheath 36 are sequentially arranged in parallel along the direction of the substrate. Figure 9 , Figure 10 As shown, the belt 31 is located at the outermost side, the guide rail 37 is in the middle, and the follower sheath 36 is at the innermost side. A lifting block 33 is fixed on the side of the belt 31 close to the guide rail 37, and a lifting arm 6 is arranged on the guide rail 37. The lifting arm 6 can slide along the guide rail 37, and the fixed end of the lifting arm 6 is fixed to the lifting block 33, so that the belt 31 can drive the lifting arm 6 to rise / fall when it rotates.
[0059] In one embodiment, the belt 31 is driven by a driving wheel and a driven wheel. The inner side of the belt 31 may be provided with teeth to mesh with the two wheels to improve the stability of the driving effect. The driving wheel may be connected to the motor 32 in a transmission manner, and the motor 32 may be installed on the back side of the substrate, such as Figure 9 shown.
[0060] Preferably, the follower end of the follower sheath 36 is connected to the fixed end of the lifting arm 6, the fixed end of the follower sheath 36 is fixedly connected to the substrate, and the follower sheath 36 is internally provided with a wire for protecting the wire and restricting the bending and movement range of the wire.
[0061] It can be understood that an activity notch is provided at the top of the functional chamber to reserve sufficient space for the lifting of the lifting arm 6.
[0062] Specifically, the lifting arm 6 is inclined above the functional chamber. The length of the telescopic bracket 35 is adjusted to adjust the inclination angle of the lifting arm 6, so that the carrier on the cut-off block 4 can be located in the functional chamber when the lifting end of the lifting arm 6 rises to the end point. Further, when the lifting end of the lifting arm 6 descends to the end point, the cut-off block 4 just completes the docking with the cut-off point and can receive and intercept the sliding carrier.
[0063] A limiting block 62 is arranged on the back side of the fixed end of the lifting arm 6. The limiting block 62 is provided with a sliding groove corresponding to the guide rail 37, so that the lifting arm 6 can slide along the guide rail 37; a clamping notch 61 is arranged on the front side of the fixed end of the lifting arm 6 close to the belt 31. The clamping notch 61 is used for fixedly connecting the lifting block 33, so that when the lifting block 33 runs along with the belt 31, the lifting arm 6 can be driven to lift / lower.
[0064] It can be understood that limiting ribs can be provided on both sides of the guide rail 37, and corresponding limiting grooves are provided in the sliding groove, so that after the guide rail 37 is combined with the limiting block 62, the lifting arm 6 can only slide along the guide rail 37. Limited by the running range of the lifting block 33, the lifting and lowering stroke of the lifting arm 6 is fixed, and the landing point of the lifting arm 6 can be adjusted by adjusting the length of the telescopic bracket 35 according to actual needs.
[0065] In this application, the cut-off block 4 is connected to the lifting end of the lifting arm 6, used to fill into the cut-off point to complete the supplementary track 2, and at the same time lift and lower along with the lifting arm 6 to complete the transfer operation of the carrier. The cut-off block 4 has the functions of intercepting the carrier, carrying the carrier and releasing the carrier.
[0066] In a specific embodiment, please refer to Figure 7 、 Figure 8The truncation block 4 includes a telescopic device 41, a telescopic plate 42, a fixed seat 43, a fixed plate 44, and a toggle piece 45. The inner side of the telescopic device 41 is fixedly connected to the fixed plate 44, and the lower end of the fixed plate 44 extends in a direction away from the telescopic device 41 and is fixedly connected to the fixed seat 43. The fixed seat 43 can be filled in the truncation point and docked with the branch rail 2, so that the carrier on the branch rail 2 can slide down onto the fixed seat 43; the telescopic end of the telescopic device 41 is fixedly connected to the telescopic plate 42 vertically downward, and the telescopic plate 42 is arranged parallel to the bottom of the fixed seat 43. A through cavity is opened in the middle of the fixed seat 43, and a vertical toggle piece 45 is arranged corresponding to the cavity of the telescopic plate 42. The fixed seat 43 is provided with an arc-shaped groove at the upper end of the cavity. The sliding carrier is intercepted by the groove, so that the carrier stays in the groove and rises and falls with the truncation block 4. When the telescopic end of the telescopic device 41 is extended, the telescopic plate 42 carries the toggle member 45 down, and the groove is completely exposed, so that the carrier that slides down to the fixed seat 43 can stay in the groove; when the telescopic end of the telescopic device 41 is retracted, the telescopic plate 42 carries the toggle member 45 up, and the groove is gradually and completely filled with the toggle member 45, so that the carrier that stays in the groove can be pushed out and continue to slide down along the branch rail 2.
[0067] In an embodiment of the present application, the lower portion of the fixed seat 43 is a long block structure, and the upper portion is a semicircular structure, and the radius of the semicircular structure is the same as the cross-sectional radius of the support rail 2, and the radius of the arc-shaped groove is larger than the radius of the roller connecting shaft of the carrier, so that the carrier can be stably docked in the groove.
[0068] A plug-in plate is provided at the upper end of the fixed plate 44, and a connecting plate and a limit plate 63 are provided at the lifting end of the lifting arm 6. The connecting plate and the limit plate 63 are arranged in parallel and separately, and a plug-in gap for the plug-in plate is reserved between the two, so that the plug-in plate can be plugged into the plug-in gap to complete the fixed installation of the cutting block 4 and the lifting arm 6.
[0069] For example, the plug-in plate is provided with positioning holes and locking holes from bottom to top, through holes are provided on the connection plate and the limit plate 63 corresponding to the positioning holes, and arc-shaped strip holes are provided on the limit plate 63 corresponding to the locking holes. The plug-in plate is rotatably connected with the limit plate 63 and the connection plate through the positioning holes, so that the cut-off block 4 is rotatably connected to the lifting end of the lifting arm 6; the arc-shaped strip hole and the locking hole can be locked by bolts, thereby locking the relative deflection angle between the cut-off block 4 and the lifting arm 6. Under normal circumstances, the cut-off block 4 can be kept in a vertical posture.
[0070] When it is necessary to adjust the relative deflection angle between the truncation block 4 and the lifting arm 6, the locking relationship between the locking hole and the bar hole can be loosened, and then the truncation block 4 can be rotated to obtain a suitable relative angle, and then the rotation angle of the truncation block 4 relative to the lifting arm 6 can be locked through the locking hole and the limit plate 63, so that the truncation block 4 can be flush with the tracks on both sides of the truncation point when filled in the truncation point.
[0071] like Figure 8 The figure shows the retraction of the toggle member 45. In order to stop the vehicle from sliding down, an arc-shaped groove is provided on the fixing seat 43. The groove is corresponding to the size of the connecting shaft of the roller of the vehicle, so that when the vehicle slides down to this point, it can stop in the groove.
[0072] like Figure 7 As shown, it is a schematic diagram of the ejection of the toggle member 45. In order to ensure that the sliding direction of the carrier when being ejected meets the requirements, an ejection member is provided at the upper end of the toggle member 45. The size of the ejection member is smaller than the inner size of the cavity. The ejection member is inclined along the running direction of the carrier on the branch rail 2, so that when the ejection member ejects the carrier staying in the groove upward, the carrier can slide down along the running direction.
[0073] It is understandable that when the carriers are released one by one by the distribution device, when the carriers slide down to the position of the groove, their sliding speed is relatively low and can be directly intercepted by the groove. In order to prevent the sliding carriers from directly rushing through the groove area, the following control strategy can be implemented based on the structure of the toggle member 45:
[0074] Based on the structure of the toggle member 45 in the above embodiment, when the vehicle slides down, the toggle member 45 can be extended first to stop and intercept the vehicle sliding down, and the blocking device 21 can be used to prevent the vehicle from retreating. After the vehicle is stopped, the toggle member 45 is retracted to allow the vehicle to slide down at a reduced speed into the groove of the fixing seat 43. Based on actual conditions, the inclination of the fixing seat 43 can be adaptively adjusted so that the stopped vehicle can slide down into the groove autonomously when the toggle member 45 is retracted.
[0075] As for the dust collector, the cabinet 1 is equipped with an exhaust fan 8 and a hair dryer 7 to implement dust removal operations. The air inlet 81 of the exhaust fan 8 is located at the bottom left wall of the functional chamber, and the bottom plate 11 of the functional chamber is tilted from the right wall to the left wall, so that the fallen dust and debris can smoothly enter the air inlet 81; the air outlet of the exhaust fan 8 extends to the outside of the cabinet 1 and a collection device 82 is provided, and the collection device 82 is used to collect dust and debris discharged from the functional chamber. It can be understood that the collection device 82 may include a cloth bag and an external anti-shake net, and the cloth bag is placed in the anti-shake net, and the cloth bag is used to collect discharged debris, dust, etc.
[0076] The top of the cabinet 1 is provided with an air vent 5, and the side wall of the functional chamber is provided with a plurality of air nozzles 12. The hair dryer 7 is used to supply air to the air vent 5 and the air nozzles 12 to blow the mounted objects on the carrier in the functional chamber.
[0077] As a preferred embodiment, it further includes a humidifier 9. The humidifier 9 is arranged below the rear side of the cabinet 1, and the humidifying pipe 91 of the humidifier 9 is communicated with the air outlet 5. It can be understood that the humidifying pipe 91 of the humidifier 9 is communicated with the air outlet 5, so that the dust-removing wind carries enough "moisture", which can effectively eliminate the static electricity effect on the clothes, and thus better blow the dust off.
[0078] In a specific embodiment, the air outlet 5 includes an air inlet channel settled in the cabinet 1 and a blowing structure floating on the top of the functional chamber. The air inlet channel includes a first channel opening 51 and a second channel opening 52. The first channel opening 51 is butt-connected and communicated with the air supply pipe of the hair dryer 7, and the second channel opening 52 is butt-connected and communicated with the humidifying pipe 91 of the humidifier 9. The second channel opening 52 is located above the first channel opening 51; a lifting gap 54 is formed in the middle of the front end of the blowing structure, presenting a "U" - shaped structure. The lifting gap 54 is used to reserve a lifting channel for the lifting device 3; a plurality of blowing air outlets 53 are formed on both sides and the rear side of the lifting gap 54 facing the inside of the functional chamber. Wind guiding plates are arranged at the blowing air outlets 53, and the inclination direction of the wind guiding plates faces directly below the lifting gap, so as to effectively blow the clothes carried on the carrier.
[0079] It can be understood that the stopping position of the truncation block 4 is directly below the area of the lifting gap 54, and the carried carrier is also located here. The wind guiding plates can concentrate the wind to the clothes.
[0080] In the actual layout of the dust collector, since the opening of the functional chamber is arranged on the front side wall of the cabinet 1, the supporting rail 2 is correspondingly arranged on the front side of the cabinet 1 and docked with the main rail. Therefore, the rear side of the cabinet 1 can correspond to the supporting rail 2 of the next cabinet 1, and a plurality of functional machines are arranged in sequence end to end below the main rail, and the outfeed machines can be arranged on both sides of the main rail.
[0081] Based on the layout consideration of the dust collector, an air inlet plate 13 is arranged on the rear side of the cabinet 1 to provide an air inlet port for the hair dryer 7; the air inlet port just corresponds to directly below the incoming - rail slide of the supporting rail 2. With the conventional structure of the air inlet port, it is very easy to adsorb the clothes hung on the carrier, resulting in phenomena such as the stagnation of the carrier and the shaking and dropping of the carrier.
[0082] To solve the above - mentioned possible problems caused by the layout, in this application, an air inlet frame 131 is opened on the air inlet plate 13. A filter screen 132 is arranged outside the air inlet frame 131, and a deflection plate 133 is arranged outside the filter screen 132. A plurality of turning plates are arranged on the deflection plate 133, and the opening direction of the turning plates faces downward, so that when the hair dryer 7 inhales air, the air flow enters from bottom to top, thereby reducing the adsorption force on other objects on the rear side of the cabinet 1. Without increasing the distance between the dust collectors, the mutual influence between individual machines is solved.
[0083] It should be clear that drying equipment, sterilization equipment, etc. can also be installed inside the cabinet body 1. The drying equipment is used to dry the items mounted on the carrier in the functional chamber, and the sterilization equipment is used to sterilize the items mounted on the carrier in the functional chamber, so as to perform corresponding process operations.
[0084] In the embodiment of the present application, the cabinet body 1 further includes a control box 14, which is used to control the blower 7, the exhaust fan 8, the humidifier 9, the drying equipment, the sterilization equipment, the lifting of the lifting device 3, the lifting chain track on the support rail 2 and the sorting device. The control box can be arranged on one side of the cabinet body close to the main rail, as Figure 3 shown in.
[0085] The content described above can be implemented alone or in various combinations, and these variant ways are all within the protection scope of the present invention.
[0086] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.
[0087] The above content is a further detailed description of the present invention in combination with specific preferred embodiments, and it cannot be determined that the specific embodiments of the present invention are only limited to these descriptions. For those of ordinary skill in the technical field to which the present invention pertains, without departing from the concept of the present invention, several simple deductions or substitutions can be made, and all should be regarded as belonging to the protection scope of the present invention.
Claims
1. A direct-connected functional machine used to perform the post-processing of the goods carried on the main rail carrier. It is characterized in that The cabinet comprises a cabinet body (1), a support rail (2), and a lifting device (3), wherein both ends of the support rail (2) are respectively connected to the main rail to guide the carrier on the main rail to the cabinet body (1), and a truncation point is preset at the position of the support rail (2) corresponding to the functional chamber of the cabinet body (1); the cabinet body (1) is provided with the lifting device (3), and a truncation block (4) is provided at the lifting end of the lifting device (3); the lifting end descends so that the truncation block (4) can be filled into the truncation point and intercept the sliding carrier so that it stays on the truncation block (4); the lifting end rises so that The cut-off block (4) carries the vehicle intercepted thereon into the functional chamber; the branch rail (2) comprises a rail entry slide rail, a turning curved rail, and a lifting rail; the front end of the rail entry slide rail is connected to the main rail to connect the vehicle on the main rail to the branch rail (2); the turning curved rail is used to connect the end of the rail entry slide rail and the front end of the lifting rail; a distribution device is provided in the middle of the turning curved rail to release the vehicles one by one to slide down; the end of the turning curved rail is horizontal and has the cut-off point; the end of the lifting rail is connected to the main rail to transport the vehicle to the main rail; The truncation block (4) comprises a telescopic device (41), a telescopic plate (42), a fixed seat (43), a fixed plate (44), and a toggle member (45); the inner side of the telescopic device (41) is fixedly connected to the fixed plate (44); the lower end of the fixed plate (44) extends in a direction away from the telescopic device (41) and is fixedly connected to the fixed seat (43); the fixed seat (43) can be filled in the truncation point and docked with the support rail (2), so that the carrier on the support rail (2) can slide down and enter onto the fixed seat (43); The telescopic end of the telescopic device (41) is fixedly connected to the telescopic plate (42) vertically downward, the telescopic plate (42) is arranged parallel to the bottom of the fixed seat (43), a through cavity is provided in the middle of the fixed seat (43), the telescopic plate (42) is provided with a vertical toggle member (45) corresponding to the cavity, and the fixed seat (43) is provided with an arc-shaped groove at the upper end of the cavity; when the telescopic end of the telescopic device (41) is extended, the telescopic plate (42) carries the toggle member (45) downward, so that the carrier that slides down onto the fixed seat (43) can stay in the groove; when the telescopic end of the telescopic device (41) is retracted, the telescopic plate (42) carries the toggle member (45) upward, so that the carrier that stays in the groove can be ejected and continue to slide down along the support rail (2).
2. A direct-connection functional machine according to claim 1, It is characterized in that The steering curved rail further includes a blocking device (21) located behind the cut-off point to prevent the vehicle intercepted by the cut-off block (4) from reversing backward; the blocking device (21) includes a cylinder and a stop baffle. When the cylinder drives the stop baffle to horizontally extend, the stop baffle is located above the steering curved rail behind the cut-off point, so as to block the downward sliding / reversing of the vehicle; when the cylinder drives the stop baffle to horizontally retract, the vehicle can slide down smoothly.
3. A direct-connected functional machine according to claim 1, characterized in that the lifting device (3) includes an inclined substrate, a fixed bracket (34), and a telescopic bracket (35). The fixed bracket (34) is fixed to the top of the cabinet (1). There is a rotational connection between the fixed bracket (34) and the front end of the substrate. There is a rotational connection between the rear end of the substrate and the telescopic end of the telescopic bracket (35). The fixed end of the telescopic bracket (35) is fixedly connected to the top of the cabinet (1) and is located on the right side of the fixed bracket (34). The maximum length of the telescopic bracket (35) is greater than the height of the fixed bracket (34).
4. A direct-connected functional machine according to claim 3, characterized in that on the front surface of the substrate, a circulating belt (31), a guide rail (37), and a follower sheath (36) are arranged in parallel in sequence along the direction of the substrate. A lifting block (33) is fixed on one side of the belt (31) close to the guide rail (37). A lifting arm (6) is arranged on the guide rail (37). The lifting arm (6) can slide along the guide rail (37). The fixed end of the lifting arm (6) is fixed to the lifting block (33), so that when the belt (31) rotates, it can drive the lifting arm (6) to rise / fall; the follower end of the follower sheath (36) is connected to the fixed end of the lifting arm (6), and the fixed end of the follower sheath (36) is fixedly connected to the substrate. The follower sheath (36) houses wires.
5. A direct-connected functional machine according to claim 4, characterized in that the lifting arm (6) is inclined above the functional chamber. By adjusting the length of the telescopic bracket (35), the inclination angle of the lifting arm (6) is adjusted, so that when the lifting end of the lifting arm (6) rises to the end point, the vehicle on the cut-off block (4) can be located in the functional chamber.
6. A direct-connected functional machine according to claim 4, characterized in that A limiting block (62) is provided on the dorsal side of the fixed end of the lifting arm (6). A sliding groove is provided on the limiting block (62) corresponding to the guide rail (37), so that the lifting arm (6) can slide along the guide rail (37); a clamping notch (61) is provided on the front side of the fixed end of the lifting arm (6) close to the belt (31), and the clamping notch (61) is used for fixedly connecting the lifting block (33), so that when the lifting block (33) runs along with the belt (31), the lifting arm (6) can be driven to rise / fall.
7. A direct-connected functional machine according to claim 1, characterized in that a ejecting member is provided at the upper end of the toggling member (45). The size of the ejecting member is smaller than the inner cavity size of the cavity. The ejecting member is inclined along the running direction of the carrier on the supporting rail (2), so that when the ejecting member ejects the carrier staying in the groove upward, the carrier can slide downward along the running direction.
8. A direct-connected functional machine according to claim 1, characterized in that the lower part of the fixed seat (43) is a long strip-shaped structure, and the upper part is a semi-circular structure. The radius of the semi-circular structure is the same as the cross-sectional radius of the supporting rail (2). The radius of the arc-shaped groove is larger than the radius of the roller connecting shaft of the carrier, so that the carrier can be stably parked in the groove.
9. A direct-connected functional machine according to claim 4, characterized in that a plug-in board is provided at the upper end of the fixing plate (44). A connecting plate and a limiting plate (63) are provided at the lifting end of the lifting arm (6). An insertion gap is provided between the connecting plate and the limiting plate (63), so that the plug-in board can be inserted into the insertion gap. The plug-in board is provided with a positioning hole and a locking hole in sequence from bottom to top. Through holes are provided on the connecting plate and the limiting plate (63) corresponding to the positioning hole. The limiting plate (63) is provided with an arc-shaped slot corresponding to the locking hole. The plug-in board is rotationally connected to the limiting plate (63) and the connecting plate through the positioning hole, so that the cutting block (4) is rotationally connected to the lifting end of the lifting arm (6); rotate the cutting block (4), and lock the rotation angle of the cutting block (4) relative to the lifting arm (6) through the locking hole and the limiting plate (63), so that when the cutting block (4) fills the cutting point, it can be flush with the tracks on both sides of the cutting point.
10. A direct-connected functional machine according to claim 1, characterized in that a hair dryer (7) is built in the cabinet (1). An air outlet (5) is provided at the top of the cabinet (1), and a plurality of air nozzles (12) are provided on the side wall of the functional chamber. The hair dryer (7) is used to supply air to the air outlet (5) and the air nozzles (12) to blow the mounted objects on the carrier in the functional chamber.
11. A direct-connected functional machine according to claim 10, characterized in that It further includes a humidifier (9), and the humidifier (9) is arranged below the rear side of the cabinet body (1). A humidifying pipe (91) of the humidifier (9) is communicated with the air outlet (5).
12. A direct-connected functional machine according to claim 11, characterized in that the air outlet (5) includes an air inlet channel settled in the cabinet body (1) and a blowing structure floating on the top of the functional chamber. The air inlet channel includes a first channel opening (51) and a second channel opening (52). The first channel opening (51) is butt-connected and communicated with a blowing pipe of the blower (7), and the second channel opening (52) is butt-connected and communicated with the humidifying pipe (91) of the humidifier (9). The second channel opening (52) is located above the first channel opening (51). A lifting gap (54) is formed in the middle of the front end of the blowing structure and is in a "U" shape. The lifting gap (54) is used to reserve a lifting channel for the lifting device (3); On both sides and the rear side of the lifting gap (54), a plurality of blowing air outlets (53) are formed towards the inside of the functional chamber. Wind guiding plates are arranged on the blowing air outlets (53), and the inclination direction of the wind guiding plates faces directly below the lifting gap.
13. A direct-connected functional machine according to claim 1, characterized in that A plurality of functional machines are arranged in sequence with their heads and tails corresponding below the main rail; the opening of the functional chamber is arranged on the front side wall of the cabinet body (1). The branch rail (2) is correspondingly arranged on the front side of the cabinet body (1) and is butted with the main rail. The rear side of the cabinet body (1) of the previous functional machine corresponds to the branch rail (2) of the next functional machine.
14. A direct-connected functional machine according to claim 1, characterized in that The cabinet body (1) is equipped with a drying device and a sterilization device. The drying device is used for drying the items mounted on the carrier in the functional chamber, and the sterilization device is used for sterilizing the items mounted on the carrier in the functional chamber.
Citation Information
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