Up-down synchronous inclined surface capping machine

By designing a synchronous inclined plane capping machine, the problem of the guide device being unable to adapt to containers of different sizes is solved, achieving stable container transport and efficient capping, thus improving production efficiency and capping quality.

CN224091589UActive Publication Date: 2026-04-07崔文辉
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing capping machine's guiding device cannot quickly adapt to containers of different sizes, resulting in low production efficiency and requiring frequent shutdowns for adjustment or replacement of guiding components.

Method used

The machine employs a synchronous inclined capping machine. The spacing of the guide frame is adjusted by rotating the knob on the adjustment frame, and the mounting frame is moved by the hydraulic cylinder to ensure the stability of the container's linear movement and the vertical position of the capping assembly. The same model of motor and roller are used to keep the speed of transmission and capping assembly consistent, and an inclined capping assembly is set to gradually increase the clamping force.

Benefits of technology

It enables flexible adaptation to containers of different sizes, avoids offset or jamming, improves production efficiency and capping stability, and reduces the risk of container damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of capping machines, in particular to an up-down synchronous slope capping machine. Comprising a rack, a conveying assembly, a first motor, a gland assembly, a second motor, an adjusting frame and the like. A transmission assembly and a first motor are arranged in the middle of the rack, an output shaft of the first motor is connected with the transmission assembly, a gland assembly and a second motor are arranged on the upper portion of the rack, an output shaft of the second motor is connected with the gland assembly, and a plurality of adjusting frames are arranged on the front side and the rear side of the rack. The sliding rods on the front side and the rear side of the rack are connected with the two guide frames correspondingly, a plurality of cylinders are rotationally arranged on the opposite sides of the two guide frames, and a lead screw is in threaded connection with the interior of the adjusting frame. The screw rod and the lower pressing block can be driven to move up and down by rotating the knob on the adjusting frame, the sliding rod can be loosened or pressed, the distance between the guide frames can be flexibly adjusted, and the capping device is suitable for containers to be capped of different sizes.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of capping machine especially up and down synchronous bevel capping machine. BACKGROUND

[0002] Capping machine is a kind of equipment for closing container, is widely used in food, beverage, pharmaceutical, cosmetics etc. industry, it is mainly through exerting proper force and tightly pressing lid to container, to realize sealing, in the capping process, the container to be capped needs to be continuously conveyed to the capping area by the transmission assembly, and a guide device is usually used when conveying the container to be capped, which restrains the movement track of the container to prevent deviation, jamming or even falling caused by vibration, friction or external force interference.

[0003] In actual production process, the container to be capped has diversity in size, and the guide device of the existing capping machine is mostly of fixed structure, which cannot quickly adapt to containers of different sizes, and when the size of the container changes, it cannot be quickly adjusted, and the guide parts need to be frequently manually disassembled or replaced, which seriously affects the production efficiency. UTILITY MODEL CONTENTS

[0004] In order to overcome the shortcoming that the guide device of the existing capping machine cannot quickly adapt to containers of different sizes, the utility model provides an up and down synchronous bevel capping machine.

[0005] The technical implementation scheme of the utility model is: the up and down synchronous bevel capping machine comprises a rack, a transmission assembly, a first motor, a capping assembly, a second motor, an adjusting frame, a guide frame, a sliding rod, a knob, a lead screw, a lower pressing block and a cylinder, the middle part of the rack is provided with the transmission assembly and the first motor, the output shaft of the first motor is connected with the transmission assembly, the upper part of the rack is provided with the capping assembly and the second motor, the output shaft of the second motor is connected with the capping assembly, the front and rear sides of the rack are both provided with a plurality of adjusting frames, the sliding rod is slidably arranged in the adjusting frame, the sliding rods on the front and rear sides of the rack are respectively connected with two guide frames, a plurality of cylinders are rotatably arranged on the opposite side of the two guide frames, the lead screw is threadedly connected in the adjusting frame, the knob is arranged on the upper side of the lead screw, the lower pressing block is rotatably arranged on the lower side of the lead screw, and the lower pressing block is in close contact with the sliding rod.

[0006] Further, it further comprises a mounting frame, a guide rod and a hydraulic cylinder, the upper side of the rack is provided with the hydraulic cylinder, the piston of the hydraulic cylinder is connected with the mounting frame, the mounting frame is provided with the guide rod, the guide rod is slidably connected with the rack, and the mounting frame is connected with the capping assembly.

[0007] Further, the first motor and the second motor are of the same type, and the diameters of the rollers used by the transmission assembly and the capping assembly are the same.

[0008] Further, the capping assembly is arranged in a left-high right-low inclined manner.

[0009] Further, the cylinder is provided with a buffer layer outside.

[0010] Further, the sliding rod is provided with a limiting block at one end away from the guide frame.

[0011] The utility model discloses beneficial effects: 1, the utility model discloses a knob on the rotary adjusting frame can drive the screw rod and lower the block up and down movement, loosen or compress the sliding rod, can adjust the guide frame spacing flexibly, adapts to different size's container to be pressed cover, and the cylinder in the guide frame contacts the container to be pressed cover, ensures that the container to be pressed cover keeps linear motion in the transportation process of transmission assembly from left to right, avoids the deviation or the jam.

[0012] 2, the utility model discloses the hydraulic cylinder drive mounting frame up and down movement can accurately control the vertical position of the cover assembly, adapts to different height's container to be pressed cover, and the guide rod and the frame sliding fit provide the guide for mounting frame, guarantees the stability of the vertical motion of cover assembly.

[0013] 3, the utility model discloses the running speed of transmission assembly and cover assembly is identical, avoids the deviation or the jam of container in the process of pressing cover because of the speed difference, and through the inclination of cover assembly, the pressing force of cover assembly to the bottle cap will gradually increase, avoids the damage of bottle cap or the deformation of container caused by the sudden application of excessive pressure. DRAWINGS

[0014] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.

[0015] Figure 2 It is the three-dimensional structure schematic diagram of the utility model guide frame, knob and cylinder.

[0016] Figure 3 It is the sectional view of the adjusting frame of the utility model.

[0017] Figure 4 It is the three-dimensional structure schematic diagram of the second motor, guide rod and hydraulic cylinder of the utility model.

[0018] Drawing reference: 1_rack, 2_transmission assembly, 21_first motor, 3_cover assembly, 31_second motor, 4_mounting frame, 41_guide rod, 5_hydraulic cylinder, 6_adjusting frame, 7_guide frame, 71_sliding rod, 72_limiting block, 8_knob, 9_screw rod, 10_lowering block, 11_cylinder. DETAILED DESCRIPTION

[0019] The utility model will be specifically described below in connection with the drawings.

[0020] The up and down synchronous inclined plane cover press machine, such as Figures 1-4As shown, the assembly includes a frame 1, a transmission component 2, a first motor 21, a pressure cap component 3, a second motor 31, an adjusting frame 6, a guide frame 7, a sliding rod 71, a knob 8, a lead screw 9, a lower pressure block 10, and a cylinder 11. The transmission component 2 and the first motor 21 are located in the middle of the frame 1, and the output shaft of the first motor 21 is connected to the transmission component 2. The pressure cap component 3 and the second motor 31 are located on the upper part of the frame 1, and the output shaft of the second motor 31 is connected to the pressure cap component 3. Three adjusting frames 6 are provided on both the front and rear sides of the frame 1. The adjusting frame 6 is equipped with a sliding rod 71. The sliding rods 71 ​​on the front and rear sides of the frame 1 are respectively connected to two guide frames 7. Multiple cylinders 11 are rotatably provided on the opposite side of the two guide frames 7. The cylinders 11 will contact the container to be capped. The adjusting frame 6 is threadedly connected to a lead screw 9. A knob 8 is provided on the upper side of the lead screw 9. A lower pressing block 10 is rotatably provided on the lower side of the lead screw 9. The shape of the lower pressing block 10 is adapted to the sliding rod 71. A rubber pad is provided on the lower side of the lower pressing block 10. The lower pressing block 10 is in close contact with the sliding rod 71.

[0021] In use, by rotating the knob 8 on the adjusting frame 6, the lead screw 9 is driven to rise, causing the lower pressure block 10 to release the sliding rod 71. At this time, the sliding rod 71 can slide along the adjusting frame 6, which can adjust the distance between the two guide frames 7 to accommodate containers of different sizes to be capped. After adjustment, rotate the knob 8 in the opposite direction to move the lower pressure block 10 downward, and the sliding rod 71 is re-fixed. When the capping is working, the transmission component 2 transports the container to be capped from left to right. The cylinder 11 inside the guide frame 7 contacts the container to be capped to ensure that the container to be capped maintains a straight line during transportation and avoids deviation. The capping component 3 caps the container to be capped.

[0022] like Figure 4 As shown, it also includes a mounting frame 4, a guide rod 41, and a hydraulic cylinder 5. The hydraulic cylinder 5 is located on the upper side of the frame 1. The piston of the hydraulic cylinder 5 is connected to the mounting frame 4. The guide rod 41 is located on the mounting frame 4 and is slidably connected to the frame 1. The mounting frame 4 is connected to the capping assembly 3. The hydraulic cylinder 5 drives the mounting frame 4 to move up and down, precisely controlling the vertical position of the capping assembly 3 to adapt to containers of different heights to be capped. The guide rod 41 is slidably engaged with the frame 1 to provide guidance for the mounting frame 4 and ensure the stability of the vertical movement of the capping assembly 3.

[0023] The first motor 21 and the second motor 31 are of the same model, and the rollers used by the transmission component 2 and the capping component 3 are of the same diameter, ensuring that the operating speed of the transmission component 2 and the capping component 3 is consistent, and preventing the container from shifting or getting stuck due to speed differences during the capping process.

[0024] The capping assembly 3 is tilted with the left side higher than the right side. As the container to be capped gradually enters the capping area on the conveyor line, the clamping force of the capping assembly 3 on the cap will gradually increase, avoiding damage to the cap or deformation of the container caused by sudden excessive pressure, and facilitating the capping operation.

[0025] The buffer layer is arranged outside the cylinder 11, which can avoid rigid collision when the cylinder 11 directly contacts with the container to be capped, and reduce damage to the container to be capped.

[0026] As shown in Figure 3 The limiting block 72 is arranged at the end of the sliding rod 71 away from the guide frame 7, and can limit the sliding range of the sliding rod 71, and prevent the sliding rod 71 from sliding out of the adjusting frame 6 during the adjusting process.

[0027] It should be understood that the embodiments are only used for illustrating the utility model and are not used for limiting the scope of the utility model. In addition, it should be understood that after reading the content taught by the utility model, those skilled in the art can make various changes or modifications to the utility model, and these equivalent forms also fall within the scope defined by the claims attached to the application.

Claims

1. A synchronous inclined capping machine, comprising a frame, a transmission assembly, and a first motor, wherein the transmission assembly and the first motor are located in the middle of the frame, and the output shaft of the first motor is connected to the transmission assembly, characterized in that: It also includes a capping assembly, a second motor, an adjusting frame, a guide frame, a sliding rod, a knob, a lead screw, a lower pressing block, and cylinders. The upper part of the frame is equipped with a capping assembly and a second motor. The output shaft of the second motor is connected to the capping assembly. Multiple adjusting frames are provided on both the front and rear sides of the frame. A sliding rod is slidably installed inside the adjusting frame. The sliding rods on the front and rear sides of the frame are respectively connected to two guide frames. Multiple cylinders are rotatably installed on the opposite side of the two guide frames. A lead screw is threadedly connected inside the adjusting frame. A knob is provided on the upper side of the lead screw. A lower pressing block is rotatably installed on the lower side of the lead screw. The lower pressing block is in close contact with the sliding rod.

2. The upper and lower synchronous inclined surface capping machine according to claim 1, characterized in that: It also includes a mounting bracket, a guide rod, and a hydraulic cylinder. The hydraulic cylinder is located on the upper side of the frame, and the piston of the hydraulic cylinder is connected to the mounting bracket. The mounting bracket is equipped with a guide rod, which is slidably connected to the frame. The mounting bracket is connected to the pressure cap assembly.

3. The upper and lower synchronous inclined surface capping machine according to claim 2, characterized in that: The first motor and the second motor are of the same model, and the rollers used in the transmission assembly and the cover assembly have the same diameter.

4. The upper and lower synchronous inclined surface capping machine according to claim 3, characterized in that: The capping assembly is tilted with the left side higher than the right.

5. The upper and lower synchronous inclined surface capping machine according to claim 4, characterized in that: A buffer layer is provided on the outside of the cylinder.

6. The upper and lower synchronous inclined surface capping machine according to claim 5, characterized in that: It also includes a limit block, with a limit block provided at the end of the sliding rod away from the guide frame.