Ferry type transfer device for hanging system
By setting guide rail sections and a traveling mechanism at the break point of the guide rail in the suspension system, the smooth transfer and sealed treatment of the vehicle are achieved, which solves the problems of low vehicle transfer efficiency and damage to guide rail material, and improves the working efficiency of functional machinery and the stability of the suspension system.
Patent Information
- Application Number
- CN202423263696.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In a suspension system, when a carrier enters a functional machine, the extension of the guide rail or the setting of the chute can affect the airtightness and energy loss. Furthermore, the transfer efficiency of the carrier in the prior art is low, which affects the working efficiency of the functional machine.
A guide rail section is installed at the break point of the guide rail in the suspension system. The guide rail section is connected to the ends of the guide rails on both sides of the break point. The vehicle is transferred through the traveling mechanism and sealed within the functional machinery. An independent closed door is used to seal the entrance and exit.
It enables smooth transport of vehicles, improves the working efficiency of functional machinery, avoids the impact of high temperature corrosion on guide rail materials, and maintains the stability and energy tightness of the suspension system.
Smart Images

Figure CN223575397U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a hanging system, in particular to a transfer device of a transfer system applied in the hanging system. BACKGROUND
[0002] The hanging system is used for carrying and conveying materials with multiple preparation processes, such as clothes, curtains, bedding, etc. After most of the processes are completed, the semi-finished products usually need to be shaped, dusted, arranged and subjected to other special processes. For these special processes, a large professional functional machine is usually required. Therefore, the functional machine is directly arranged on some hanging systems to complete these special processes, which requires the guide rail on the hanging system to be extended to the position of the functional machine so that the carrier can directly guide the material to the position of the functional machine. For a functional machine, such as a pressing machine, high-temperature steam is used as the working medium. If the guide rail is extended into the pressing chamber, the guide rail will be eroded. If the guide rail is arranged outside the functional machine, a sliding groove suitable for the forward movement of the carrier needs to be arranged on the functional machine. The sliding groove cannot be well sealed under the premise of adapting to the movement of the carrier, which will affect the sealing of the high-temperature medium, thereby causing unnecessary energy loss.
[0003] A kind of lint cleaning work station of hanging conveying line is disclosed in Chinese patent document (publication number: CN 215163998U), which relates to the technical field of hanging conveying line.The utility model discloses a hanging conveying line lint cleaning work station, including incoming station support rail, outgoing station support rail and conveying chain, incoming station support rail and outgoing station support rail are connected by conveying chain, incoming station support rail and outgoing station support rail are connected with main rail by rail changing mechanism respectively, further include lint cleaning machine, the lint cleaning machine is provided with the passageway for large piece of fabric, the passageway is located the conveying chain directly below, the top opening of the passageway, the bottom of the passageway is communicated with suction port;Along the direction of the incoming and outgoing of large piece of fabric, three openable and closable sliding doors are arranged in the passageway, three sliding doors are closed and the passageway is divided into first chamber and second chamber.The utility model combines lint cleaning machine and hanging conveying line, can efficiently clean large piece of fabric conveyed by hanging, reduce cost, and energy consumption is low.
[0004] The lint cleaning machine also needs to be provided with a sliding groove to adapt to the forward movement of the carrier, and the existence of the sliding groove will also affect the working efficiency of the lint cleaning machine. If the sliding groove is not set, the carrier and the hanging object can only be manually sent into the lint cleaning machine, which will affect the working efficiency. UTILITY MODEL CONTENTS
[0005] The utility model needs to solve the technical problem: provide a kind of hanging system transfer device of transfer, the transfer device can be carried into functional machine with carrier and the hanging object, and the working efficiency of functional machine is little.
[0006] The technical solution to the aforementioned technical problem is as follows: A suspension system transfer device, used to be installed at the break point of the guide rail in the suspension system, includes a guide rail section connected to a traveling mechanism. The guide rail section is characterized in that its length is less than the length of the break point, the guide rail section corresponds to the position of the guide rail, the guide rail section is located within the break point, and a hanger is provided at the position corresponding to the break point. The hanger has a track for the traveling mechanism to rest on. Under the action of external force, the traveling mechanism moves on the track, causing both ends of the guide rail section to respectively engage with the corresponding ends of the guide rail at the break point, thereby realizing the transfer of a carrier with attached materials.
[0007] In practical applications, a functional mechanism needs to be installed at the break point of the guide rail to perform functional processing on the objects attached to the carrier. This transfer device can be independent of the guide rail in the hoisting system and can be installed inside the functional mechanism. After the objects to be processed are connected to the functional mechanism, an openable and closing door can be used to close the entrance and exit of the functional mechanism during operation, thus enabling the objects to be processed in a closed manner. The break point can be a section of the middle part of the guide rail being removed, with both ends of the guide rail section connecting to the ends of the guide rail on both sides of the break point. After the objects are processed, they are transported to the downstream guide rail, and the carrier enters from one side of the functional mechanism and exits from the other. Alternatively, the break point can be the outer space of the end of a guide rail, allowing the carrier to enter and exit from one side of the functional mechanism.
[0008] Furthermore, the traveling mechanism includes rollers, specifically vertical rollers and horizontal rollers. The outer circumferential surface of the vertical rollers abuts against the upper surface of the track, while the outer circumferential surface of the horizontal rollers contacts the side of the track. This traveling mechanism offers smooth movement and stable operation on the track.
[0009] Furthermore, the traveling mechanism also includes a fixed plate, with a set of rollers at each of its opposite ends. There are two tracks, with one set of rollers engaging with one track. The fixed plate connects the rollers, ensuring good connection stability and facilitating stable movement of the rollers on the tracks.
[0010] Furthermore, the horizontal roller is connected to the fixed plate via a U-shaped connecting block; the vertical roller is connected to a T-shaped block, and a slot is provided at the end of the fixed plate, into which the T-shaped block is inserted. These structural features allow the roller to be well-suited for connection and fixation to the fixed plate.
[0011] Furthermore, a dust cover is provided on the outer side of the walking mechanism. The dust cover can effectively block external dust, preventing the accumulation of external dust from affecting the smooth movement of the rollers.
[0012] Further, the walking mechanism is at least two sets, the walking mechanism is connected on the cross bar, the guide rail section is hung on the cross bar. Through the setting of the cross bar, the connection of multiple walking mechanisms is facilitated, and the stability of the guide rail section is good.
[0013] Further, the lower side of the cross bar is connected with the adapter beam in parallel through a plurality of first connecting structures, and the guide rail section is hung on the lower side of the adapter beam through a plurality of second connecting structures. Through the setting of the adapter beam, the guide rail section is hung, and the height of the guide rail section can be adjusted by setting the adjustable connecting structure between the guide rail section and the adapter beam.
[0014] Further, the first connecting structure includes two vertical rods arranged in parallel, and the upper and lower ends of the two vertical rods are clamped on the adapter beam and the guide rail section respectively. The clamping of the two vertical rods on the cross bar and the adapter beam makes the connection between the cross bar and the adapter beam firm.
[0015] Further, the second connecting structure includes a curved connecting plate, and the connecting plate and the guide rail section are connected through an adjustable bolt. By adjusting the bolt, the height of the guide rail section can be adjusted, so that the guide rail section can adapt to the size of the hanging object.
[0016] Compared with the prior art, the utility model has the beneficial effects that: through the setting of the transfer device, the carrier on the guide rail can be transferred to the guide rail section from the outside of the functional machine, and then the carrier and the hanging object are transferred to the functional machine, the functional machine can perform closed treatment on the hanging object, the treatment demand of the hanging object can be well met, and the working efficiency of the functional machine is improved. The guide rail in the hanging system does not need to extend into the functional machine, the material for preparing the guide rail section can be selected as high-temperature-resistant and corrosion-resistant material, so that the guide rail section can adapt to the working condition inside the functional machine, and the material of the guide rail does not need to be considered, so that the working stability of the whole hanging system is not affected. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is the perspective view of the transfer device.
[0018] Figure 2 is Figure 1 the structure diagram after removing a dust cover in
[0019] Figure 3 is Figure 2 the explosion diagram of
[0020] Figure 4 is the enlarged structure diagram of the walking mechanism.
[0021] Figure 5 is Figure 4 an exploded view.
[0022] In the figure, 1, guide rail section; 2, adjustable bolt; 3, coupling plate; 4, hanger; 5, transfer crossbeam; 6, dust cover; 7, track; 8, air cylinder; 9, vertical roller; 10, fixed plate; 11, vertical rod; 12, crossbar; 13, coupling block; 14, T-shaped block; 15, horizontal roller; 16, embedding opening. DETAILED DESCRIPTION
[0023] In combination with the drawings of the specification, the present hanger system transfer device is applied in a hanger system, particularly at the position of the break of the guide rail in the hanger system, for transferring the carrier with the hanged object on the upstream side of the guide rail to the break in a transfer manner, particularly into the functional machine arranged at the break.
[0024] The structure of the present transfer device comprises a guide rail section 1 and a traveling mechanism, the length of the guide rail section 1 is less than the length of the break, the guide rail section 1 is arranged in the break, and the cross sections of the guide rail section 1 and the guide rail are generally congruent. A hanger 4 is arranged at the position corresponding to the break, the length of the hanger 4 is generally greater than the length of the break, the hanger 4 is provided with a track 7, and the traveling mechanism rests on the track 7. The position of the guide rail section 1 corresponds to the position of the guide rail, and the traveling mechanism can travel on the track 7 under the action of external force, so that the two ends of the guide rail section 1 are respectively connected with the end portions of the guide rail corresponding to the break, and the hanged portion on the carrier can smoothly enter the guide rail section 1 from the upstream guide rail, and the hanged portion on the carrier can also smoothly enter the downstream guide rail from the guide rail section 1 on the basis of the downstream side of the break being provided with the guide rail.
[0025] Generally, several carriers with the hanged objects can be accommodated on one guide rail section 1, a counting device can be arranged at the outlet end of the upstream guide rail to count the number of carriers entering the guide rail section 1; or manual counting can be performed. After the number of carriers entering the guide rail section 1 reaches a certain number, the traveling mechanism travels away from the upstream guide rail under the action of external force, and enters the functional machine arranged at the break position, so as to process the hanged objects. The movable left and right limiters can be arranged on the guide rail section 1 to stabilize the carriers on the guide rail section 1. The traveling of the traveling mechanism can be achieved by manpower, but generally by mechanical power. As shown in the figure, the air cylinder 8 is arranged horizontally on the hanger 4, and the traveling mechanism is drivingly connected with the air cylinder 8. Under the driving of the air cylinder 8, the traveling mechanism obtains the traveling power. If the downstream side of the break is also provided with the guide rail, two air cylinders 8 can be arranged, one of which promotes the present transfer device to travel between the upstream guide rail and the break, and the other promotes the present transfer device to travel between the downstream guide rail and the break.
[0026] As shown in the figure, the walking mechanism comprises several rollers, which are classified according to the setting mode, and have vertical rollers 9 and horizontal rollers 15. The wheel shafts of the vertical rollers 9 are located in the horizontal direction, and the wheel shafts of the horizontal rollers 15 are located in the vertical direction. The outer circumferential surface of the vertical roller 9 is in contact with the upper surface of the track 7, and plays a main supporting role; the outer circumferential surface of the horizontal roller 15 is used to contact the side surface of the track 7, and is used to limit the position of the vertical roller 9 on the track 7. In order to realize the installation of the rollers, the walking mechanism further comprises a fixed plate 10, which is horizontally arranged. The opposite ends of the fixed plate 10 are respectively provided with a group of the rollers. The track 7 is in two, and a group of rollers is used to contact one track 7. The horizontal roller 15 is connected to the L-shaped connecting block 13, which is fixedly connected to the lower surface of the fixed plate 10 by bolts; the vertical roller 9 is connected to the T-shaped block 14, and one bolt passes through the T-shaped block 14 and abuts against the wheel shaft of the vertical roller 9. The end of the fixed plate 10 is provided with a socket 16, and the T-shaped block 14 is inserted into the socket 16. The T-shaped block 14 is fixedly connected to the fixed plate 10 by bolts.
[0027] As shown in the figure, the walking mechanism is two sets, and multiple sets of walking mechanisms can be set according to actual needs. The walking mechanisms are connected to the cross rod 12. The fixed plate 10 in the walking mechanism is fixedly connected to the cross rod 12 by a bolt plug structure. The cross rod 12 is arranged below the track 7 and is arranged in parallel with the track 7. The guide rail section 1 is hung on the lower side of the cross rod 12. The lower side of the cross rod 12 is connected to the adapter beam 5 in parallel through a plurality of first connecting structures. The guide rail section 1 is hung on the lower side of the adapter beam 5 through a plurality of second connecting structures. The first connecting structure comprises two vertical rods 11 arranged in parallel. The vertical rods 11 are plate-shaped bodies. The upper and lower ends of the two vertical rods 11 are clamped and fixed to the adapter beam 5 and the cross rod 12 by bolts. The second connecting structure comprises curved connecting plates 3. The upper connecting plate 3 is in the shape of a Z, and the lower connecting plate 3 is in the shape of a T. The two connecting plates 3 are connected to the cross rod 12 and the adapter beam 5 by bolt plug structures, and are connected to each other by an adjustable bolt 2. The structure of the adjustable bolt 2 comprises a screw rod. Several nuts are threadedly connected to the screw rod. The interval between the guide rail section 1 and the adapter beam 5 is adjusted by turning the corresponding nut.
[0028] In order to provide certain protection, the outer side of the walking mechanism is provided with a dust cover 6. The dust cover 6 is in the shape of an L. The dust cover 6 is buckled to the fixed plate 10. The dust cover 6 covers the rollers. The dust cover 6 is fixedly connected to the fixed plate 10 by screws.
[0029] The bracket 4 is built by profile, the bracket 4 can provide platform for some sensors and other structure installation, the bracket 4 has high strength, has good anti-tilting ability when the mass distribution of the guide rail section 1 is uneven.The transfer device is an independent structure, uses modular design, can effectively shorten the maintenance time, reduces the influence to the customer production, and also can shorten the design cycle on other projects subsequently.The stress structure is concentrated on a bracket 4 in the structural design, the length of the stress arm is reduced as far as possible, the stress is cancelled as far as possible, the adverse effects of the moment generated inside on the overall structure can be reduced, which greatly simplifies the structure and reduces the volume of the structure, and also makes the installation more convenient.The combination of horizontal roller 15 and vertical roller 9 is used on the walking mechanism, the structure has good carrying capacity, and has good contact stability due to the dispersion of contact points, and has good fault tolerance rate for a certain degree of uneven weight distribution.From the cost point of view, the structure has good advantages in installation requirements, overall cost and later maintenance.Because the guide rail section 1 needs to be connected with the end of the guide rail at the break, the connection precision is required, the positioning guide block can be installed at the connection position to meet the actual use requirement.
Claims
1. A transfer device for a suspension system, used to be installed at the break point of a guide rail in the suspension system, comprising a guide rail section connected to a traveling mechanism, characterized in that, The length of the guide rail segment is less than the length of the break. The guide rail segment is positioned corresponding to the guide rail and is located within the break. A bracket is provided at the position corresponding to the break, and the bracket has a track for the traveling mechanism to rest on. The traveling mechanism moves on the track under the action of external force, so that the two ends of the guide rail segment are respectively connected to the corresponding ends of the guide rail at the break, thereby realizing the transfer of the carrier with the attached material.
2. The suspension system shuttle transfer device according to claim 1, characterized in that, The traveling mechanism includes rollers, which include vertical rollers and horizontal rollers. The outer peripheral surface of the vertical rollers abuts against the upper surface of the track, and the outer peripheral surface of the horizontal rollers is used to contact the side of the track.
3. The suspension system shuttle transfer device according to claim 2, characterized in that, The walking mechanism also includes a fixed plate, and a set of rollers is provided at each of the opposite ends of the fixed plate. There are two tracks, and one set of rollers is used to abut against one track.
4. The suspension system shuttle transfer device according to claim 3, characterized in that, The horizontal roller is connected to the fixed plate via a U-shaped connecting block; the vertical roller is connected to a T-shaped block, and a slot is provided at the end of the fixed plate, into which the T-shaped block is inserted.
5. The suspension system shuttle transfer device according to any one of claims 1 to 4, characterized in that, The walking mechanism is equipped with a dust cover on its outer side.
6. The suspension system shuttle transfer device according to any one of claims 1 to 4, characterized in that, The traveling mechanism consists of at least two sets, which are connected to the crossbar, and the guide rail section is suspended from the crossbar.
7. The suspension system shuttle transfer device according to claim 6, characterized in that, The lower side of the crossbar is connected to a transition beam in parallel by a number of first connecting structures, and the guide rail section is suspended on the lower side of the transition beam by a number of second connecting structures.
8. The suspension system shuttle transfer device according to claim 7, characterized in that, The first connecting structure includes two parallel uprights, with the upper and lower ends of the two uprights respectively clamped to the transition beam and the guide rail section.
9. The suspension system shuttle transfer device according to claim 7, characterized in that, The second connection structure includes a curved connecting plate, which is connected to the guide rail section by adjustable bolts.
Citation Information
Patent Citations
Hanging conveying line fluff cleaning work station
CN215163998U