Lifting type mechanical transfer device
By designing a combination of fixing plate, control rod, telescopic frame and hoisting rope body, the problem that existing transfer devices are difficult to extend into the sealed vehicle is solved, and the stable lifting and transfer of machinery is achieved.
Patent Information
- Application Number
- CN202422726985.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-08
AI Technical Summary
When the existing transfer device transfers the machinery through a telescopic arm, it is difficult to extend into the sealed vehicle, resulting in inconvenient transfer of the machinery.
A lifting mechanical transfer device is designed, including a fixing plate, a control rod, a telescopic frame, a contraction cylinder, an auxiliary gear ring and a lifting rope body. By controlling the motor and gear mechanism, the telescopic frame is adjusted and the lifting rope body is retracted and retracted, and the mechanical stable transfer is achieved with the clamp parts.
The stable lifting and transfer of machinery inside the sealed vehicle is achieved, and the transfer efficiency and stability are improved.
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Figure CN223304034U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of transfer devices, and more specifically, relates to a lifting mechanical transfer device. Background Art
[0002] Construction machinery is the mechanical equipment required for comprehensive mechanized construction projects required for various construction projects. It is mainly used for engineering construction in various fields, but because it needs to be adjusted at different positions, it needs to be moved during use, and thus a transfer device is required.
[0003] For example, application number: 202110674403.4 involves a lifting type engineering machinery transfer device, in which the top of the turntable is fixedly connected to a hydraulic telescopic rod and a column, respectively. The hydraulic telescopic rod and the column are both vertically arranged, and the top of the column is rotatably connected to one end of the support rod, and the other end of the support rod is hinged to a boom, and the telescopic end of the hydraulic telescopic rod is hinged to the support rod; the bottom end of the boom is fixedly connected to an adjusting chamber, and the bottom end of the adjusting chamber is connected to a second motor, and the top of the output shaft of the second motor is fixedly connected to an active bevel gear, and a driven bevel gear is respectively engaged on both sides of the active bevel gear, and the two driven bevel gears are respectively fixedly connected to one end of the two threaded shafts, and the other ends of the two threaded shafts are respectively threaded in two sleeves, and the two sleeves are respectively slidably connected to the left and right side walls of the adjusting chamber.
[0004] Based on the findings in the prior art, the existing transfer devices are mostly transported by means of telescopic arms when in use. However, since the vehicles carrying the machinery are sealed and the swing amplitude of the telescopic arms is large, it is difficult for them to extend into the interior of the vehicle, making it inconvenient to transfer the machinery into the sealed interior of the vehicle. Utility Model Content
[0005] In order to solve the above technical problems, the embodiments of the present disclosure relate to a lifting-type mechanical transfer device to solve the problem that the existing transfer devices are mostly transported by means of telescopic arms when in use, but since the vehicle carrying the machinery is sealed and the swing amplitude of the telescopic arm is large, it is difficult to extend it into the interior of the vehicle, making it inconvenient to transfer the machinery into the sealed interior of the vehicle.
[0006] In a first aspect, the present disclosure provides a lifting mechanical transfer device, which is achieved by the following specific technical means:
[0007] A lifting mechanical transfer device comprises: a transfer part; the transfer part comprises a fixed plate, a control rod and a telescopic frame; the telescopic frame is an L-shaped structure, the telescopic frame is provided with a threaded groove, the bottom of the telescopic frame is provided with a square plate, the bottom of the square plate of the telescopic frame is provided with a rectangular block, the rectangular block of the telescopic frame is provided with a control motor, and the telescopic frame is provided with two groups, the two groups of telescopic frames are respectively threadedly connected to the two groups of control rods, and the two groups of telescopic frames are respectively slidably connected to the two groups of fixed plates; a contraction part is provided below the transfer part, and the contraction part comprises a contraction cylinder, an auxiliary gear ring, a reverse cylinder and a lifting rope body; the reverse cylinder is rotatably connected to the bottom of the telescopic frame, The reverse cylinder is connected to the control motor on the telescopic frame, and the auxiliary gear ring is fixed to the rectangular block of the telescopic frame; the reverse cylinder is arranged as a cylindrical structure, and two groups of circular ring structures are provided on the outer wall of the reverse cylinder, and a columnar gear is provided on the reverse cylinder. The columnar gear of the reverse cylinder is connected with the cylindrical structure, and the reverse cylinder is rotatably connected to the inside of the contraction cylinder, and the two groups of columnar gears of the reverse cylinder and the auxiliary gear ring are connected by latches; a clamping part is provided below the transfer part, and the clamping part includes a fixed U frame and a lifting clamping frame; the fixed U frame is fixed to the telescopic frame, and a lifting rope body is inserted into the fixed U frame, and the lifting clamping frame is fixed to the end position of the lifting rope body.
[0008] At least in some embodiments, the transfer part also includes a fixed top frame; the fixed top frame is arranged as a U-shaped structure, a rectangular protrusion is provided on the outer wall of the fixed top frame, and there are two groups of fixed top frames, which are connected by two groups of rectangular plates; the fixed plate is a rectangular structure, a rectangular groove is provided inside the fixed plate, the rectangular groove of the fixed plate is connected with a rectangular through hole, a telescopic motor is provided on the fixed plate, and two groups of round rods are provided on the fixed plate. There are two groups of fixed plates in total, and the two groups of fixed plates are respectively fixed to the bottom of the fixed top frame by screws.
[0009] At least in some embodiments, the control rod is a threaded rod structure, and the two groups of control rods are respectively rotatably connected to the rectangular grooves of the fixed plate, and the two groups of control rods are respectively connected to the telescopic motors on the two groups of fixed plates.
[0010] At least in some embodiments, the shrinking tube is a cylindrical structure, the inner wall of the shrinking tube is provided with latching teeth, and the outer wall of the shrinking tube is provided with two groups of annular structures.
[0011] At least in some embodiments, the auxiliary gear ring is configured as a circular ring structure, a rectangular protrusion is provided on the outer wall of the auxiliary gear ring, two sets of columnar gears are rotatably connected to the auxiliary gear ring, and the two sets of columnar gears of the auxiliary gear ring are respectively connected to the shrinking tube through latches; the lifting rope body is wrapped around the outer wall of the shrinking tube, and the lifting rope body is wrapped around the outer wall of the reverse tube.
[0012] At least in some embodiments, the fixed U-frame is configured as a U-shaped structure, an arc-shaped through hole is provided on the fixed U-frame, and there are two groups of fixed U-frames; the lifting card frame is configured as a U-shaped structure, a rectangular protrusion is provided on the outer wall of the lifting card frame, and the lifting card frame is arranged below the fixed U-frame.
[0013] The lifting mechanical transfer device proposed in this utility model has the following beneficial effects:
[0014] 1. A fixed plate and a telescopic frame are provided. By fixing the control motor on the fixed plate, the control rod can be rotated to facilitate the rotation of the control rod. During the rotation, the telescopic frame is driven by the thread to adjust the telescopic frame, so as to drive the contraction part and the clamping part to move outward, which is convenient for the transfer of the machine. The telescopic frame is slidably connected to the inner and outer sides of the fixed plate to facilitate the transfer of the machine. The fixed plate is fixed to the top of the carrier through the fixed top frame, which is convenient for the lifting and transportation of the machine.
[0015] 2. A retraction cylinder and a reverse cylinder are provided. By rotating the reverse cylinder and connecting it inside the retraction cylinder, the two are rotated in opposite directions under the action of the auxiliary gear ring, which facilitates the retraction and extension of the lifting ropes on both sides, and facilitates the adjustment of the relative position of the lifting bracket by retraction and extension, so that the lifting and transfer can be carried out after the machine is clamped. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the three-dimensional assembly structure of the utility model in the contracted state.
[0017] Figure 2 It is a schematic diagram of the three-dimensional assembly structure of the utility model in a contracted state when viewed from above.
[0018] Figure 3 It is a schematic diagram of the three-dimensional assembly structure of the utility model in a hoisting state when viewed from above.
[0019] Figure 4 It is a schematic diagram of the exploded structure of the present utility model.
[0020] Figure 5 It is a schematic diagram of the exploded structure of the utility model when viewed from above.
[0021] Figure 6 It is a schematic diagram of the assembly structure of the shrinkage part of the utility model.
[0022] In the figure, the corresponding relationship between the component names and the drawing numbers is as follows:
[0023] 1. Transfer unit; 101. Fixed top frame; 102. Fixed plate; 103. Control rod; 104. Telescopic frame;
[0024] 2. Contraction part; 201. Contraction cylinder; 202. Auxiliary gear ring; 203. Reverse cylinder; 204. Hoisting rope;
[0025] 3. Clamp part; 301. Fixed U-frame; 302. Lifting clamp frame. DETAILED DESCRIPTION
[0026] The following is a further detailed description of the embodiments of the present invention in conjunction with the accompanying drawings and examples.
[0027] Example 1: As shown in the attached Figure 1 To the attached Figure 6 As shown: The utility model provides a lifting mechanical transfer device, comprising: a transfer part 1; the transfer part 1 comprises a fixed plate 102, a control rod 103 and a telescopic frame 104; the telescopic frame 104 is an L-shaped structure, the telescopic frame 104 is provided with a threaded groove, the bottom of the telescopic frame 104 is provided with a square plate, the bottom of the square plate of the telescopic frame 104 is provided with a rectangular block, the rectangular block of the telescopic frame 104 is provided with a control motor, and the telescopic frame 104 is provided with two groups, and the two groups of telescopic frames 104 are respectively threadedly connected to the two groups of control On the control rod 103, two sets of telescopic frames 104 are respectively slidably connected to the two sets of fixed plates 102; the telescopic frame 104 is used to perform telescopic adjustment under the drive of the control rod 103, so as to facilitate the adjustment of the contraction part 2 and the clamping part 3, and facilitate the transfer of the machine; a contraction part 2 is provided below the transfer part 1, and the contraction part 2 includes a contraction cylinder 201, an auxiliary gear ring 202, a reverse cylinder 203 and a lifting rope body 204; the reverse cylinder 203 is rotatably connected to the bottom of the telescopic frame 104, and the reverse cylinder 203 is rotatably connected to the bottom of the telescopic frame 104. The reverse cylinder 203 is connected to the control motor on the telescopic frame 104, and the auxiliary gear ring 202 is fixed to the rectangular block of the telescopic frame 104; the reverse cylinder 203 is set as a cylindrical structure, and two groups of annular structures are provided on the outer wall of the reverse cylinder 203. A columnar gear is provided on the reverse cylinder 203, and the columnar gear of the reverse cylinder 203 is connected to the cylindrical structure. The reverse cylinder 203 is rotatably connected to the inside of the contraction cylinder 201, and the two groups of columnar gears of the reverse cylinder 203 and the auxiliary gear ring 202 are connected by teeth; The direction cylinder 203 is used to rotate in the opposite direction with the shrinking cylinder 201 under the action of the auxiliary gear ring 202, so as to facilitate the retraction and extension of the bidirectional lifting rope 204, so as to facilitate the transfer of the machinery; a clamping part 3 is provided below the transfer part 1, and the clamping part 3 includes a fixed U frame 301 and a lifting clamping frame 302; the fixed U frame 301 is fixedly connected to the telescopic frame 104, and the lifting rope 204 is inserted into the fixed U frame 301, and the lifting clamping frame 302 is fixedly connected to the end position of the lifting rope 204.
[0028] Example 2: Based on Example 1, Figure 4As shown, the transfer part 1 also includes a fixed top frame 101; the fixed top frame 101 is set to a U-shaped structure, and a rectangular protrusion is provided on the outer wall of the fixed top frame 101. There are two groups of fixed top frames 101, and the two groups of fixed top frames 101 are connected by two groups of rectangular plates; the fixed top frame 101 is used to fix the entire device on a sealed vehicle body so that the entire device can be kept stable through the vehicle body, making it easy to use; the fixed plate 102 is a rectangular parallelepiped structure, and a rectangular groove is provided inside the fixed plate 102. The rectangular groove of the fixed plate 102 is connected to a rectangular through hole, and a telescopic motor is provided on the fixed plate 102. There are two groups of round rods on it, and there are two groups of fixed plates 102. The two groups of fixed plates 102 are respectively fixed to the bottom of the fixed top frame 101 by screws; the fixed plate 102 is used to assist in the installation of the control rod 103 and the telescopic frame 104, so that it is convenient to adjust while maintaining stability; the control rod 103 is a threaded rod structure, and the two groups of control rods 103 are respectively rotatably connected to the rectangular grooves of the fixed plate 102, and the two groups of control rods 103 are respectively connected to the telescopic motors on the two groups of fixed plates 102; the control rod 103 is used to drive the telescopic frame 104 to adjust under the action of the control motor to facilitate its telescopic adjustment.
[0029] In the embodiment of the present disclosure, Figure 6 As shown, the shrinking tube 201 is a cylindrical structure, the inner wall of the shrinking tube 201 is provided with a latching tooth, and the outer wall of the shrinking tube 201 is provided with two groups of annular structures; the shrinking tube 201 is used to cooperate with the reverse tube 203 to retract and release the lifting rope 204, so as to cooperate with the lifting rope 204 to transfer the machinery; the auxiliary gear ring 202 is set to a circular ring structure, and the outer wall of the auxiliary gear ring 202 is provided with a rectangular protrusion, and the auxiliary gear ring 202 is rotatably connected to two groups of columnar gears, and the two groups of columnar gears of the auxiliary gear ring 202 are respectively It is connected to the shrinking cylinder 201 through the latch teeth; the auxiliary gear ring 202 is used to constrain the two sets of columnar gears to facilitate the control of the shrinking cylinder 201 and the reverse cylinder 203, and to facilitate the reverse adjustment of the two under the action of the columnar gears; the lifting rope 204 is wrapped around the outer wall of the shrinking cylinder 201, and the lifting rope 204 is wrapped around the outer wall of the reverse cylinder 203; the lifting rope 204 is used to tighten under the control of the shrinking cylinder 201 and the reverse cylinder 203, so as to cooperate with the lifting bracket 302 to transfer the machine.
[0030] In the embodiment of the present disclosure, Figure 2As shown, the fixed U-frame 301 is set to a U-shaped structure, and an arc-shaped through hole is provided on the fixed U-frame 301. There are two groups of fixed U-frames 301; the fixed U-frame 301 is used to assist in restraining the lifting rope 204 to facilitate its telescopic processing; the lifting card frame 302 is set to a U-shaped structure, and a rectangular protrusion is provided on the outer wall of the lifting card frame 302. The lifting card frame 302 is set below the fixed U-frame 301; the lifting card frame 302 is used to fix the machine so that it can be transferred after being connected to the machine.
[0031] The specific usage and function of this embodiment are as follows:
[0032] In the present invention, during assembly, the fixed top frame 101 is fixed to the interior of the storage box of the vehicle by bolts, and the vehicle is parked next to the machine;
[0033] During the transfer process, the telescopic motor on the fixed plate 102 is started to drive the control rod 103 to rotate, and during the rotation process, the telescopic frame 104 is controlled by the thread to slide and adjust in the fixed plate 102, so that the telescopic frame 104 extends from the fixed plate 102 and the interior of the vehicle body and moves to the top of the machine, and then the control motor is started to drive the reverse cylinder 203 to rotate, and during the rotation process, the column gear on the auxiliary gear ring 202 is driven to rotate, so that the shrinking cylinder 201 is controlled to rotate through the teeth, and the reverse cylinder 203 and the shrinking cylinder 201 are rotated in the opposite direction, so that the lifting rope 204 is lowered, and the lifting bracket 302 is moved downward under the action of the lifting rope 204, and then the lifting bracket 302 is clamped with the machine, and after clamping, the reverse cylinder 203 is controlled to rotate in the opposite direction, so that it lifts the machine, thereby realizing the transfer of the machine.
[0034] In this article, there are several points to note:
[0035] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0036] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0037] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A lifting mechanical transfer device comprising: The transfer part (1) is characterized in that: the transfer part (1) includes a fixed plate (102), a control rod (103) and a telescopic frame (104); the telescopic frame (104) is an L-shaped structure, the telescopic frame (104) is provided with a threaded groove, the bottom of the telescopic frame (104) is provided with a square plate, the bottom of the square plate of the telescopic frame (104) is provided with a rectangular block, the rectangular block of the telescopic frame (104) is provided with a control motor, and the telescopic frame (104) is provided with two groups, the two groups of telescopic frames (104) are respectively threadedly connected to the two groups of control rods (103), and the two groups of telescopic frames (104) are respectively slidably connected to the two groups of fixed plates (102); a contraction part (2) is provided below the transfer part (1), and the contraction part (2) includes a contraction cylinder (201), an auxiliary gear ring (202), a reverse cylinder (203) and a hoisting rope body (204); the reverse cylinder (203) is rotatably connected to the bottom of the telescopic frame (104), and the reverse cylinder ( 203) is connected to the control motor on the telescopic frame (104), and the auxiliary gear ring (202) is fixed to the rectangular block of the telescopic frame (104); the reverse cylinder (203) is set as a cylindrical structure, and two groups of annular structures are provided on the outer wall of the reverse cylinder (203). A columnar gear is provided on the reverse cylinder (203), and the columnar gear of the reverse cylinder (203) is connected to the cylindrical structure. The reverse cylinder (203) is rotatably connected to the inside of the contraction cylinder (201), and the reverse The two sets of cylindrical gears of the cylinder (203) and the auxiliary gear ring (202) are connected through latching teeth; a latching part (3) is provided below the transfer part (1), and the latching part (3) includes a fixed U frame (301) and a lifting clamping frame (302); the fixed U frame (301) is fixed to the telescopic frame (104), a lifting rope (204) is inserted into the fixed U frame (301), and the lifting clamping frame (302) is fixed to the end position of the lifting rope (204).
2. A lifting mechanical transfer device according to claim 1, characterized in that: The transfer portion (1) further comprises a fixed top frame (101); the fixed top frame (101) is configured as a U-shaped structure, a rectangular protrusion is provided on the outer wall of the fixed top frame (101), two groups of fixed top frames (101) are provided, and the two groups of fixed top frames (101) are connected by two groups of rectangular plates; the fixed plate (102) is a rectangular parallelepiped structure, a rectangular groove is provided inside the fixed plate (102), the rectangular groove of the fixed plate (102) is connected to a rectangular through hole, a telescopic motor is provided on the fixed plate (102), two groups of round rods are provided on the fixed plate (102), and two groups of fixed plates (102) are provided, and the two groups of fixed plates (102) are respectively fixed to the bottom of the fixed top frame (101) by screws.
3. The lifting mechanical transfer device according to claim 1, characterized in that: The control rod (103) is a threaded rod structure. The two groups of control rods (103) are respectively rotatably connected to the rectangular grooves of the fixed plate (102). The two groups of control rods (103) are respectively connected to the telescopic motors on the two groups of fixed plates (102).
4. The lifting mechanical transfer device according to claim 1, characterized in that: The shrinking tube (201) is a cylindrical structure, the inner wall of the shrinking tube (201) is provided with latching teeth, and the outer wall of the shrinking tube (201) is provided with two groups of annular structures.
5. The lifting mechanical transfer device according to claim 1, characterized in that: The auxiliary gear ring (202) is configured as a circular ring structure, and a rectangular protrusion is provided on the outer wall of the auxiliary gear ring (202). Two groups of columnar gears are rotatably connected to the auxiliary gear ring (202), and the two groups of columnar gears of the auxiliary gear ring (202) are respectively connected to the shrinking cylinder (201) through latching teeth; the hoisting rope body (204) is wound around the outer wall of the shrinking cylinder (201), and the hoisting rope body (204) is wound around the outer wall of the reversing cylinder (203).
6. The lifting mechanical transfer device according to claim 1, characterized in that: The fixed U-frame (301) is configured as a U-shaped structure, the fixed U-frame (301) is provided with an arc-shaped through hole, and two groups of fixed U-frames (301) are provided; the lifting bracket (302) is configured as a U-shaped structure, the outer wall of the lifting bracket (302) is provided with a rectangular protrusion, and the lifting bracket (302) is arranged below the fixed U-frame (301).
Citation Information
Patent Citations
Lifting type engineering machine transfer device
CN113353811A