Cap screwing mechanism and high-speed cap screwing machine
By using an adjustable side clamp conveyor belt and capping wheel spacing design, the problem of limited applicability of existing high-speed capping machines is solved, enabling stable clamping and screwing of bottles of different sizes, thus improving the applicability and efficiency of the capping machine.
Patent Information
- Application Number
- CN202422296960.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The existing high-speed capping machine has an adjustable clamping belt and capping wheel spacing, which makes it unable to adapt to bottles and caps of different sizes, resulting in unstable clamping and insufficient screwing.
The design incorporates an adjustable gap between the side clamp conveyor belt and the capping rollers. This gap is achieved through an electrically controlled telescopic rod and a rotary drive assembly, ensuring full contact with the bottle body and cap.
It achieves stable clamping of bottles of different sizes and effective screwing of bottle caps, improving the applicability and efficiency of the capping machine.
Smart Images

Figure CN223576068U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of medicine production equipment, and specifically relates to a cap screwing mechanism and high-speed cap screwing machine. BACKGROUND
[0002] The high-speed cap screwing machine is a kind of high-efficiency automatic equipment, which is used for the automatic installation of bottle caps for various bottles quickly and accurately; the machine is completed by an automatic cap sorting, cap loading and cap screwing integrated assembly line.For the cap screwing part, the bottle is conveyed forward by a conveying belt and clamping belts on both sides, passes through cap screwing wheels, usually multiple sets of cap screwing wheels are arranged, and the cap screwing wheels are arranged on both sides of the bottle; after the cap loading and the pressing of the cap are completed, the bottle passes through the cap screwing wheels, the cap screwing wheels on both sides clamp the cap, and rotate in opposite directions; when the bottle passes through all the cap screwing wheels, the cap is tightened.
[0003] The clamping belts on both sides of the high-speed cap screwing machine are fixedly arranged, and the distance between the clamping belts on both sides is not adjustable; in addition, the positions of the cap screwing wheels on both sides are fixed, and the distance between the cap screwing wheels on both sides is not adjustable; when the bottle body and the cap outer diameter of the bottle to be processed are small, the clamping belts on both sides cannot fully contact the bottle body, and cannot play the roles of clamping the bottle stably and assisting the conveying; in addition, the cap screwing wheels cannot fully contact the cap from both sides of the cap, and cannot realize the screwing of the cap. The whole cap screwing machine can only be suitable for a single size of bottle. UTILITY MODEL CONTENTS
[0004] The utility model provides a kind of high-speed cap screwing machine, cap screwing machine is located on both sides of bottle, and the side clamping conveying belt for assisting conveying bottle and clamping and fixing bottle body is arranged to be movable;The distance between the side clamping conveying belt on both sides can be adjusted according to the bottle body outer diameter of bottle;In addition, the distance between the cap screwing wheels for screwing cap on both sides of cap is also adjustable;So it can be adaptively adjusted the distance between side clamping conveying belt and cap screwing wheel according to the model specification of bottle to be screwed;Make it can fully contact with bottle body and cover, on the basis of guaranteeing the stable conveying of bottle, the screwing of cap is completed.The utility model solves the problem that the distance between the side clamping conveying belt and cap screwing wheel of current cap screwing machine is not adjustable, and the single specification model of bottle that can be adapted.
[0005] In order to achieve the above technical purpose, the utility model is realized by the following technical scheme:
[0006] A kind of high-speed cap screwing machine, comprising: bottle conveying belt, side clamping conveying belt, machine body top box, cap screwing movement component and cap screwing wheel;
[0007] The side belt movement component is arranged on both sides of the bottle conveying belt, and the side clamping conveying belt is arranged on the side belt movement component;The side belt movement component is used to adjust the distance between the side clamping conveying belt on both sides.
[0008] The side clamp conveyor belt is above the bottle conveyor belt;
[0009] The bottle conveyor belt and the side clamp conveyor belt are above the top box of the fuselage;
[0010] The top box of the fuselage is below the cap rotating moving assembly, and two groups of cap rotating wheels are arranged on the cap rotating moving assembly;
[0011] The cap rotating moving assembly is used to adjust the distance between the two groups of cap rotating wheels; the two groups of cap rotating wheels are located directly above the bottle conveyor belt and the side clamp conveyor belt.
[0012] Preferably, the bottle conveyor belt is provided with side baffles on both sides;
[0013] A plurality of groups of transmission rollers are arranged at equal intervals between the two side baffles; the two ends of the transmission rollers are arranged on the side baffles through rotating shafts;
[0014] The bottle conveyor belt is arranged on the transmission rollers, and the bottle conveyor belt is driven by the transmission rollers;
[0015] The side baffles on both sides are each provided with a plurality of groups of side belt moving assemblies.
[0016] Preferably, the side belt moving assembly comprises an electric control telescopic rod and a supporting rod;
[0017] A plurality of electric control telescopic rods are arranged at equal intervals on the outer side of the side baffles;
[0018] The end of the telescopic section of each electric control telescopic rod is vertically provided with a supporting rod;
[0019] The upper end of the supporting rod is rotatably provided with a conveying wheel;
[0020] The outer side wall of the conveying wheel is provided with a side clamp conveyor belt.
[0021] Preferably, a motor is arranged directly above the first or last conveying wheel;
[0022] The rotor end of the motor is arranged at the center of the upper surface of the conveying wheel;
[0023] The bottom of the motor is vertically provided with a connecting rod, the lower end of the connecting rod is arranged at the center of the bottom of the motor, and the upper end of the connecting rod is movably arranged on the lower bottom surface of the top box of the fuselage through a sliding rail.
[0024] Preferably, an upper cover plate is arranged above the conveying wheel;
[0025] The rotor of the motor is connected to the center of the upper surface of the conveying wheel through the upper cover plate;
[0026] a suspension rod is vertically arranged near each end of the upper cover plate;
[0027] the lower end of the suspension rod is arranged on the surface of the upper cover plate, and the upper end of the suspension rod is movably arranged on the lower bottom surface of the top box of the fuselage.
[0028] Preferably, the rotating cover moving assembly comprises a moving slide rail and a moving plate.
[0029] a set of moving slide rails is arranged near each side of the lower bottom surface of the top box of the fuselage.
[0030] two moving plates are movably arranged on the moving slide rails.
[0031] a plurality of rotating cover wheels are symmetrically arranged on the opposite surfaces of the two moving plates through a rotating drive assembly, and the number of the rotating cover wheels arranged on the two moving plates is the same.
[0032] Preferably, a locking plate is arranged on each side of the upper side edge of the moving plate.
[0033] a locking screw is movably arranged on the locking plate through screw cooperation.
[0034] the upper end of the locking screw is in contact with the lower bottom surface of the top box of the fuselage, and the lower end of the locking screw extends out of the locking plate and is connected with a rotating handle.
[0035] Preferably, the rotating drive assembly comprises a drive box and a motor.
[0036] the drive box is arranged on the opposite surfaces of the two moving plates, and the drive boxes arranged on the opposite surfaces of the two moving plates are symmetrically arranged one by one.
[0037] a motor is arranged in the drive box, and the rotor of the motor penetrates through the lower bottom surface of the drive box.
[0038] the lower end of the rotor of the motor is arranged with a rotating cover wheel.
[0039] Preferably, a plurality of vertical vertical groove lines are arranged on the side wall of the rotating cover wheel at equal intervals.
[0040] The beneficial effects of the utility model are as follows:
[0041] The utility model provides a high -speed rotating cover machine for the interval between the side clamping conveying belt of clamping and assisting bottle conveying both sides of bottle body is set to adjustable structure, can according to the bottle body outer diameter size of the processed bottle, corresponding adjustment the interval between both sides of side clamping conveying belt, make it can be fully contacted on bottle body, auxiliary bottle conveying and keep bottle stable, make the cap can be successfully tightened by rotating cover wheel,
[0042] The bottle cap is provided with multiple groups of cap rotating wheels on both sides, the cap rotating wheels on both sides rotate in the same direction, the bottle cap between the cap rotating wheels can be screwed tightly, the distance between the cap rotating wheels on both sides is adjustable, the distance between the cap rotating wheels on both sides can be adjusted according to the outer diameter size of the bottle cap, the bottle cap is fully contacted with the side wall of the bottle cap, the bottle cap can be fully forced, and the bottle cap is screwed tightly. BRIEF DESCRIPTION OF DRAWINGS
[0043] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed for the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to these drawings without creative labor for those skilled in the art.
[0044] Figure 1 is a schematic diagram of the whole structure of the cap screwing machine part of the present application;
[0045] Figure 2 is a schematic diagram of the separation structure of the cap screwing part and the transmission part of the present application;
[0046] Figure 3 is a schematic diagram of the bottle conveying belt and the side clamping conveying belt structure of the present application;
[0047] Figure 4 is a schematic diagram of the bottle conveying belt and the transmission roller structure of the present application;
[0048] Figure 5 is a schematic diagram of the cap screwing moving assembly structure of the present application;
[0049] Figure 6 is a schematic diagram of the rotating driving assembly structure of the present application;
[0050] Figure 7 is a schematic diagram of the vertical groove pattern structure provided on the side wall of the cap rotating wheel of the present application.
[0051] In the drawings, the structure names represented by the respective reference numerals are as follows:
[0052] Bottle conveying belt, 101-side side baffle, 102-transmission roller, 2-side clamping conveying belt, 201-electric control telescopic rod, 202-supporting rod, 203-upper cover plate, 204-motor, 205-suspension rod, 206-conveying wheel, 3-cap rotating wheel, 301-moving plate, 3011-locking plate, 3012-locking screw, 302-driving box, 303-vertical groove pattern, 4-machine body top box, 401-moving slide rail. DETAILED DESCRIPTION
[0053] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0054] Embodiment 1: A high-speed cap screwing machine comprises a bottle conveying belt 1, a side clamping conveying belt 2, a machine body top box 4, a cap screwing moving assembly and a cap screwing wheel 3.
[0055] As shown in Figure 1 , the two sides of the bottle conveying belt 1 are provided with side baffles 101 for protection and shielding, and a plurality of groups of transmission rollers 102 are arranged at equal intervals between the two side baffles 101, the two ends of the transmission roller 102 are arranged on the side baffles 101 through the rotating shaft, and the transmission roller 102 can rotate; the bottle conveying belt 1 is arranged on the transmission roller 102, and the positional relationship between the transmission roller 102 and the bottle conveying belt 1 is as shown in Figure 4 ; the rotor of the motor is connected to one end face of the first group or the last group or the first group and the last group of transmission rollers 102, the motor drives the corresponding transmission roller 102 to rotate actively, thereby driving the entire bottle conveying belt 1 to drive, and the bottle is placed on the bottle conveying belt 1 to move.
[0056] As shown in Figure 1 or Figure 2 , a plurality of groups of side belt moving assemblies are arranged at equal intervals on the outer side surfaces of the two side baffles 101, and the side clamping conveying belt 2 is arranged above the two side belt moving assemblies; the distance between the two side clamping conveying belts 2 can be adjusted by the side belt moving assembly; as shown in Figure 3 , the side belt moving assembly comprises an electric control telescopic rod 201 and a supporting rod 202
[0057] A plurality of electric control telescopic rods 201 are arranged at equal intervals on the outer side surfaces of the side baffles 101; the telescopic section end of each electric control telescopic rod 201 is vertically provided with a supporting rod 202; the upper end of the supporting rod 202 is rotatably provided with a conveying wheel 206; specifically, the upper end of the supporting rod 202 is rotatably provided at the center position of the lower surface of the conveying wheel 206 through the rotating shaft; the conveying wheel 206 can rotate relative to the supporting rod 202; the outer side wall of the conveying wheel 206 is provided with the side clamping conveying belt 2. The conveying wheel 206 can drive the side clamping conveying belt 2 to drive; the power source needs to be provided in the above-mentioned conveying wheel 206, and the power source is preferably arranged at the first or last conveying wheel 206; as shown in Figure 1As shown, the embodiment in both sides of the conveying wheel 206, and all located in the first conveying wheel 206 directly above the setting motor 204, the rotor end of the motor 204 is set to the conveying wheel 206 on the surface of the center, the bottom of the motor 204 is vertically set to the connecting rod, the lower end of the connecting rod is set to the center of the bottom of the motor 204, the upper end of the connecting rod is movably set to the lower bottom surface of the top box 4 of the fuselage, specifically, the slide rail is set on the lower bottom surface of the top box 4 of the fuselage, the slide block is set on the upper end of the connecting rod, and the movable block is embedded in the slide rail; the connecting rod provides a suspension connection structure for the motor 204, and in addition, the connecting rod is movable relative to the top box 4 of the fuselage, so as not to hinder the movement of the side clamping conveyor belt 2 on both sides, and adjust the distance between the side clamping conveyor belts 2 on both sides;
[0058] The bottom of the motor 204 is vertically provided with a connecting rod, the lower end of the connecting rod is provided at the center of the bottom of the motor 204, and the upper end of the connecting rod is movably provided on the lower bottom surface of the top box 4 of the fuselage. Specifically, the slide rail is arranged on the lower bottom surface of the top box 4 of the fuselage, the slide block is arranged on the upper end of the connecting rod, and the movable block is movably embedded in the slide rail; the connecting rod provides a suspension connection structure for the motor 204, and in addition, the connecting rod is movable relative to the top box 4 of the fuselage, so as not to hinder the movement of the side clamping conveyor belt 2 on both sides, and adjust the distance between the side clamping conveyor belts 2 on both sides;
[0059] From the upper cover, the cap in the embodiment, the bottle is all completed on the bottle conveying belt 1 all processes; at the cap, it is required to keep the stability of the bottle body while the bottle moves, so the side clamping conveyor belt 2 mainly functions to clamp the bottle from both sides of the bottle body, and assists in conveying; before processing, according to the outer diameter size of the bottle body of the bottle, the electric control telescopic rod 201 is controlled to extend or shrink, so as to drive the side clamping conveyor belts 2 on both sides to move towards each other or move away from each other, and the distance between the side clamping conveyor belts 2 on both sides is adjusted to be sufficient to contact on the bottle body.
[0060] When the bottle is conveyed to the cap machine, the cap mechanism for screwing the cap is located directly above the bottle conveying belt 1 and the side clamping conveyor belt 2; as Figure 1 or Figure 2 As shown, the lower part of the top box 4 of the fuselage is provided with a cap moving assembly, and two groups of cap wheels 3 are arranged on the cap moving assembly and located on both sides; the distance between the cap wheels 3 on both sides is adjusted by the cap moving assembly, so that the cap wheels 3 can be in full contact with the cap; after the cap on the bottle passes through the cap wheels 3 on both sides, the cap can be tightened by the cap wheels;
[0061] As shown, Figure 5 The cap moving assembly mentioned above comprises: a moving slide rail 401 and a moving plate 301;
[0062] A group of moving slide rails 401 is arranged near the lower bottom surface of the top box 4 of the fuselage; two moving plates 301 are movably arranged on the moving slide rail 401; the two moving plates 301 can move towards each other or move away from each other on the moving slide rail 401;
[0063] A plurality of cap wheels 3 are symmetrically arranged on the opposite surfaces of the two moving plates 301 by a rotary drive assembly; and the number of cap wheels 3 arranged on the two moving plates 301 is the same, and the cap wheels 3 arranged on the opposite surfaces of the two moving plates 301 are symmetrically arranged one by one. When the cap passes through the cap wheels 3 on both sides, the rotary drive assemblies on both sides control the cap wheels 3 on both sides to rotate in the same direction, so as to tighten the cap.
[0064] As shown in Figure 6 The rotating driving assembly comprises a driving box 302 and a motor 204.
[0065] The driving box 302 is arranged on the opposite surfaces of the two moving plates 301, and the driving boxes 302 arranged on the opposite surfaces of the two moving plates 301 are symmetrical to each other; one driving box 302 is arranged corresponding to each rotating cap wheel 3, and the driving boxes 302 are arranged at equal intervals; the motor 204 is arranged in the driving box 302, the rotor of the motor 204 penetrates through the lower bottom surface of the driving box 302, and there is no contact between the rotor and the driving box 302; the lower end of the rotor of the motor 204 is provided with the rotating cap wheel 3. The motor 204 drives the rotating cap wheel 3 to rotate, thereby realizing the tightening of the bottle cap. In the embodiment, four rotating driving assemblies are arranged on each moving plate 301, that is, four rotating cap wheels 3 are arranged on each side.
[0066] As a preferred embodiment, the moving plates 301 on the two sides move towards or away from each other, thereby driving the rotating cap wheels 3 on the two lower sides to move towards or away from each other, so as to adjust the distance between the rotating cap wheels 3 on the two sides; after the distance between the rotating cap wheels 3 is adjusted to be sufficient to contact the bottle cap, it is necessary to keep the position of the rotating cap wheels 3 fixed, that is, keep the distance between the rotating cap wheels 3 on the two sides unchanged; therefore, it is necessary to arrange a locking structure on the moving plate 301; as shown in Figure 5 Two sides of the upper edge of the moving plate 301 are respectively provided with a locking plate 3011; the upper surface of the locking plate 3011 is attached to the lower bottom surface of the top box 4 of the machine body; the locking plate 3011 is movably penetrated through a locking screw 3012 through thread cooperation; the upper end of the locking screw 3012 contacts the lower bottom surface of the top box 4 of the machine body, and the lower end of the locking screw 3012 extends out of the locking plate 3011 and is connected with a rotating handle. After the position of the moving plate 301 is adjusted, the locking screw 3012 is rotated to gradually abut the lower bottom surface of the top box 4 of the machine body, thereby fixing the position of the moving plate 301; that is, the distance between the rotating cap wheels 3 on the two sides is fixed.
[0067] In the embodiment 1, the conveying wheel 206 for driving the side clamping conveying belt 2 is directly exposed, and in the production process, some linear ropes or silk-like materials are easily twisted into the conveying wheel 206 and wound on the conveying wheel 206 and the support rod 202 below, so that the conveying wheel 206 cannot rotate, the side clamping conveying belt 2 cannot be driven, and the auxiliary conveying effect on the bottle is affected.
[0068] As shown in Figure 1As shown, the upper cover plate 203 is arranged above the conveying wheel 206; the upper cover plate 203 is located above the conveying wheel 206 and covers the conveying wheel 206 and the upper gap of the side clamping conveying belt 2, but the upper cover plate 203 does not contact the conveying wheel 206 and the side clamping conveying belt 2 and does not affect the normal operation of the conveying wheel 206 and the side clamping conveying belt 2;
[0069] The rotor of the motor 204 controlling the active rotation of the conveying wheel 206 penetrates the upper cover plate 203 and is connected to the center of the upper surface of the conveying wheel 206; the rotor does not contact the upper cover plate 203; the motor 204 is also arranged with a connecting rod above, and the connecting structure of the connecting rod and the motor 204 and the lower bottom surface of the top box 4 of the fuselage is the same as that in Embodiment 1;
[0070] A suspension rod 205 is vertically arranged at each end close to the upper cover plate 203; the lower end of the suspension rod 205 is arranged on the surface of the upper cover plate 203 and suspends the entire upper cover plate 203; the upper end of the suspension rod 205 is movably arranged on the lower bottom surface of the top box 4 of the fuselage through a sliding rail; specifically, a sliding rail is arranged on the lower bottom surface of the top box 4 of the fuselage, and a sliding block is arranged on the upper end of the suspension rod 205 and movably embedded in the sliding rail; in this way, the suspension rod 205 suspends the upper cover plate 203 on one hand, and when the side clamping conveying belt 2 moves, the suspension rod 205 does not hinder the movement of the side clamping conveying belt 2, and the upper cover plate 203 can move synchronously with the side clamping conveying belt 2 and the conveying wheel 206.
[0071] In Embodiment 3, based on the basis of Embodiment 1, the cap is rotated by the cap rotating wheel 3 on both sides, and the cap rotating wheel 3 needs to be attached to the side wall of the cap; therefore, when the cap rotating wheel 3 rotates, the cap rotating wheel 3 can drive the cap to rotate due to the friction between the cap rotating wheel 3 and the side wall of the cap, so as to achieve the purpose of tightening the cap; that is, the greater the friction between the side wall surface of the cap rotating wheel 3 and the side wall of the cap, the easier the cap is tightened under the action of the cap rotating wheel 3, and the more ideal the tightening degree is;
[0072] Since the side wall of most caps is designed with a plurality of vertical strip convex lines, the purpose is to make it easier for the user to tighten or loosen the cap when rotating the cap; based on the structure of the side wall of the cap, as shown in Figure 7 In this embodiment, a plurality of vertical strip groove lines 303 are arranged on the side wall of the cap rotating wheel 3 at equal intervals; in this way, when the side wall of the cap contacts the side wall of the cap rotating wheel 3, the vertical strip groove lines 303 on the cap rotating wheel 3 contact and cooperate with the convex lines on the side wall of the cap, greatly improving the friction between the cap rotating wheel 3 and the cap, so as to make the cap be quickly screwed tightly.
[0073] In the description of the specification, the description of the terms "one embodiment", "an example", "a specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0074] The preferred embodiments of the utility model disclosed above are only used for helping to set forth the utility model. The preferred embodiments do not describe all the details exhaustively, and also do not limit the utility model to only the specific embodiments described. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that the technicians in the technical field described can well understand and utilize the utility model. The utility model is limited only by the claims and the entire scope and equivalents thereof.
Claims
1. A capping mechanism, characterized in that, include: Capping moving assembly and capping wheel; The cap-screw moving assembly is located below the top box of the machine body; The capping moving assembly is equipped with two sets of capping wheels; The capping moving assembly is used to adjust the distance between the two sets of capping wheels; The cap moving assembly includes: a moving slide rail and a moving plate; A set of sliding rails is installed on each side near the bottom surface of the top box of the fuselage; Two movable plates are movably mounted on the movable slide rail; Several capping wheels are symmetrically arranged on the opposite surfaces of the two movable plates via a rotation drive assembly; and the number of capping wheels on the two movable plates is the same. A locking plate is provided on each of the two sides of the upper edge of the movable plate; A locking screw passes through the locking plate via a threaded connection. The upper end of the locking screw contacts the lower bottom surface of the top box of the machine body, and the lower end of the locking screw extends out of the locking plate and is connected to the screw handle.
2. The capping mechanism according to claim 1, characterized in that, The rotary drive assembly includes: a drive box and a motor; The drive box is disposed on the opposite surface of the two moving plates, and the drive boxes disposed on the opposite surface of the two moving plates are symmetrical. A motor is installed inside the drive box, and the rotor of the motor passes through the bottom surface of the drive box; A cover wheel is provided at the lower end of the rotor of the motor.
3. The capping mechanism according to claim 2, characterized in that, The side wall of the capping wheel has several vertical grooves at equal intervals.
4. A high-speed capping machine, characterized in that, include: Bottle conveyor belt, side clamp conveyor belt, capping mechanism as described in any one of claims 1 to 3; Side belt moving components are provided on both sides of the bottle conveyor belt, and the side clamping conveyor belt is provided on the side belt moving components; the side belt moving components are used to adjust the distance between the side clamping conveyor belts on both sides. The side clamp conveyor belt is located above the bottle conveyor belt; A top box is provided above the bottle conveyor belt and the side clamp conveyor belt; The screw cap mechanism is located below the top box of the fuselage.
5. A high-speed capping machine according to claim 4, characterized in that, Side baffles are provided on both sides of the bottle conveyor belt; Several sets of transmission rollers are arranged at equal intervals between the two side baffles; the two ends of the transmission rollers are mounted on the side baffles via rotating shafts; The bottle conveyor belt is mounted on the drive roller, and the drive roller drives the bottle conveyor belt to move. Several sets of side-belt moving components are provided on both sides of the side baffle.
6. The high-speed capping machine according to claim 5, characterized in that, The side-mounted moving assembly includes: an electrically controlled telescopic rod and a support rod; Several of the electrically controlled telescopic rods are equally spaced on the outer side of the side baffle; Each of the aforementioned electrically controlled telescopic rods has a vertically installed support rod at the end of its telescopic section; A transmission wheel is rotatably mounted at the upper end of the support rod; A side-clamp conveyor belt is provided on the outer wall of the conveyor wheel.
7. A high-speed capping machine according to claim 6, characterized in that, A motor is positioned directly above the first or last conveyor wheel; The rotor end of the motor is located at the center of the upper surface of the transmission wheel; A connecting rod is vertically installed at the bottom of the motor. The lower end of the connecting rod is located at the center of the bottom of the motor, and the upper end of the connecting rod is movably installed on the bottom surface of the top box of the motor body via a slide rail.
8. A high-speed capping machine according to claim 7, characterized in that, A top cover plate is provided above the conveyor wheel; The rotor of the motor passes through the upper cover plate and is connected to the center of the upper surface of the transmission wheel; A suspension rod is vertically installed at each end near the upper cover plate; The lower end of the suspension rod is disposed on the surface of the upper cover plate, and the upper end of the suspension rod is movably disposed on the lower bottom surface of the top box of the fuselage via a slide rail.