Multi-layer synchronous transmission system of nylon rope winder
Through the multi-layer synchronous transmission system of nylon rope winder, the problems of complex installation of transmission methods and waste of space are solved, the synchronous movement of the deflector plate and simplified installation are realized, and the adaptability is widely used in the field of animal husbandry and breeding.
Patent Information
- Application Number
- CN202420443401.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-07
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-03-07
AI Technical Summary
The existing pull rod deflector system has trouble installing and fixing the transmission method, and the space is wasteful, making it difficult to achieve consistent opening angles on each floor.
The nylon rope winder multi-layer synchronous transmission system is adopted. Through the linkage of power devices, transmission pipes, rope winders and traction ropes, the guide members and the deflector adjust the support arms, the synchronous movement of the deflector is achieved, simplifying the installation process and reducing space occupation.
It achieves better synchronization of the deflector, simple operation, simplified installation, small space occupancy, wide adaptability and low cost.
Smart Images

Figure CN223168886U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of livestock breeding, and particularly relates to a multi-layer synchronous transmission system of a nylon rope winder. Background Art
[0002] At present, the pull rod type deflector system used in the livestock breeding industry adopts a transmission method of a fixed pulley + a speed reducer. When using this transmission method, the installation and fixation are troublesome. During installation, the size needs to be measured for each layer, and the required installation space is large. Generally, about 500 mm of space needs to be reserved, resulting in waste of space. When used in a stacked deflector system, it is difficult to meet the requirement that the opening angle of each layer is the same with the currently used "fixed pulley + speed reducer" transmission method. Content of the Utility Model
[0003] The utility model provides a multi-layer synchronous transmission system of a nylon rope winder. Through the linkage of a power device, a transmission pipe, a rope winder, a traction rope, etc., it can ensure the synchronous movement of the deflector, which is convenient for operation and simple to install.
[0004] The utility model provides a multi-layer synchronous transmission system of a nylon rope winder. The transmission system includes a power device, a transmission pipe, a rope winder, a traction rope, a guide member, and a deflector adjusting support arm. The power device and the rope winder are fixed on the transmission pipe. The guide member of the first layer is installed on the frame, and the deflector adjusting support arm is installed on the deflector at a position corresponding to the guide member. The traction rope includes a first traction rope and a second traction rope. One end of the first traction rope is fixedly connected to the rope winder, and the other end of the first traction rope extends longitudinally along the direction of the deflector to the end of the deflector. One end of the second traction rope is fixed on the deflector adjusting support arm, and the other end passes through the guide member and is connected to the first traction rope. The power device provides power output for the transmission system, such as a reduction motor, a hand crank, etc. One end of the transmission pipe is fixed on the transmission shaft of the reduction motor and is fixed on the wall / column through a transmission pipe bracket. The reduction motor is also fixed on the wall / column through a reduction motor base.
[0005] Further, the guide members of other layers except the first layer are installed on the frame, and the deflector adjusting support arms are installed on the deflectors at positions corresponding to the guide members of the respective layers.
[0006] Further, the guide members of other layers except the first layer are installed on the lower side of the deflector of the upper layer, and the deflector adjusting support arms are installed on the deflectors at positions corresponding to the guide members of the respective layers.
[0007] Further, reserved holes are provided on the deflector adjusting support arm.
[0008] Further, the counterweight is connected to the deflector adjusting arm through a reserved hole. Without installing a pulley, reserved holes can be provided on the deflector, on which the counterweight can be hung to increase the self-weight of the deflector, so that the first traction rope is in a taut state. According to the width and length of the deflector, the weight of the counterweight is generally not less than 6 kg. The reserved holes are located on the outer side to prevent the counterweight from colliding with the deflector.
[0009] Further, a pulley is provided at the end of the first traction rope.
[0010] Further, the counterweight is connected to the first traction rope through a pulley to ensure that the first traction rope is in a taut state and prevent the first traction rope from slipping out of the rope winding device.
[0011] Further, the height of the threaded winding groove of the rope winding device of other layers except the first layer is greater than the height of the threaded winding groove of the rope winding device of the first layer.
[0012] Further, the transmission pipe is fixed to the installation base through a transmission pipe bracket. The installation base generally refers to a wall / column.
[0013] Further, the nylon bushing is fixed to the transmission pipe bracket. The nylon bushing is of a split structure, which is convenient for disassembly, replacement, and prolongs the service life.
[0014] A multi-layer synchronous transmission system for a nylon rope winding device includes a power device, a transmission pipe, a rope winding device, a traction rope, etc. It not only has a simple installation, occupies a small space, but also can ensure that the inclination angles of each deflector are the same, which is convenient for control and operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0016] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0017] Figure 2 is a schematic diagram of the structure of the rope winding device of the present invention;
[0018] Figure 3 is a schematic diagram of the structures of the deflector adjusting arm and the guide member of the present invention;
[0019] Figure 4 is an effect diagram when the multi-layer deflectors of the present invention are opened;
[0020] Figure 5This is the usage effect diagram of the present utility model.
[0021] Among them, 1 is the power device, 2 is the transmission pipe, 3 is the rope winding device, 3-1 is the threaded rope winding groove, 4 is the traction rope, 4-1 is the first traction rope, 4-2 is the second traction rope, 5 is the guiding member, 6 is the deflector adjusting support arm, 7 is the transmission pipe bracket, 8 is the reserved hole, 9 is the counterweight, 10 is the pulley, and 11 is the nylon bushing. Specific embodiments
[0022] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0023] As Figures 1-5 shown, the present utility model provides a nylon rope winding device multi-layer synchronous transmission system. The transmission system includes a power device 1, a transmission pipe 2, a rope winding device 3, a traction rope 4, a guiding member 5, and a deflector adjusting support arm 6. The power device 1 and the rope winding device 3 are fixed on the transmission pipe 2. The first-layer guiding member 5 is installed on the frame, and the deflector adjusting support arm 6 is installed on the deflector at a position corresponding to the guiding member 5. The traction rope 4 includes a first traction rope 4-1 and a second traction rope 4-2. One end of the first traction rope 4-1 is fixedly connected to the rope winding device 3, and the other end of the first traction rope 4-1 longitudinally extends along the direction of the deflector to the end of the deflector. One end of the second traction rope 4-2 is fixed on the deflector adjusting support arm 6, and the other end passes through the guiding member 5 and is connected to the first traction rope 4-1. The power device 1 provides power output for the transmission system, such as a reduction motor, a hand crank, etc. One end of the transmission pipe 2 is fixed on the transmission shaft of the reduction motor and is fixed on the wall / column through the transmission pipe bracket 7. The reduction motor is also fixed on the wall / column through the reduction motor base. The motor can be placed at different positions of the transmission pipe according to the usage situation.
[0024] The guiding members 5 of other layers except the first layer are installed on the frame, and the deflector adjusting support arms 6 are installed on the deflectors at positions corresponding to the guiding members 5 of the corresponding layers.
[0025] The guiding members 5 of other layers except the first layer are installed on the lower side of the deflector of the upper layer, and the deflector adjusting support arms 6 are installed on the deflectors at positions corresponding to the guiding members 5 of the corresponding layers.
[0026] The deflector adjusting support arm 6 is provided with a reserved hole 8.
[0027] The counterweight 9 is connected to the deflector adjusting arm 6 through the reserved hole 8, increasing the self-weight of the deflector, so that the first towing rope 4-1 is in a tensioned state. According to the width and length of the deflector, the weight of the counterweight 9 is generally not less than 6 kg. The position of the reserved hole 8 is on the outer side, which can prevent the counterweight 9 from colliding with the wall.
[0028] A pulley 10 is provided at the end of the first towing rope 4-1.
[0029] The counterweight 9 is connected to the deflector adjusting arm 6 through the pulley 10, ensuring that the first towing rope 4-1 is in a tensioned state and preventing the first towing rope 4-1 from slipping out of the rope winder 3.
[0030] The height of the threaded wire groove 3-1 of the rope winder 3 for other layers except the first layer is greater than the height of the threaded wire groove 3-1 of the rope winder 3 for the first layer.
[0031] The transmission pipe 2 is fixed to the installation base through the transmission pipe bracket 7. The installation base generally refers to the wall / column.
[0032] The nylon bushing 11 is fixed to the transmission pipe bracket 7, which is convenient for disassembly, replacement and prolongs the service life.
[0033] Usage Mode 1: The utility model provides a multi-layer synchronous transmission system for a nylon rope winder, which is used in current conventional breeding sheds. The transmission system includes a power device 1, a transmission pipe 2, a rope winder 3, a traction rope 4, a guide member 5, and a deflector adjustment support arm 6. The power device 1 and the rope winder 3 are fixed on the transmission pipe 2. The first-layer guide member 5 is installed on the frame, and the deflector adjustment support arm 6 is installed on the deflector at a position corresponding to the guide member 5. The traction rope 4 includes a first traction rope 4-1 and a second traction rope 4-2. One end of the first traction rope 4-1 is fixedly connected to the rope winder 3, and the other end of the first traction rope 4-1 longitudinally extends along the direction of the deflector to the end of the deflector. One end of the second traction rope 4-2 is fixed on the deflector adjustment support arm 6, and the other end passes through the guide member 5 and is connected to the first traction rope 4-1. The power device 1 provides power output for the transmission system, such as a reduction motor, a hand crank, etc. One end of the transmission pipe 2 is fixed on the transmission shaft of the reduction motor and is fixed on the wall / column through a transmission pipe bracket 7. The reduction motor is also fixed on the wall / column through a reduction motor base. The guide members 5 of other layers except the first layer are also installed on the frame, and the deflector adjustment support arm 6 is installed on the deflector at a position corresponding to the guide member 5 of the corresponding layer. A reserved hole 8 is provided on the deflector adjustment support arm 6. A counterweight 9 is connected to the deflector adjustment support arm 6 through the reserved hole 8 to increase the self-weight of the deflector and keep the first traction rope 4-1 in a tensioned state. According to the width and length of the deflector, the weight of the counterweight 9 is generally not less than 6 kg. The position of the reserved hole 8 is on the outer side, which can prevent the counterweight 9 from colliding with the wall. It is also possible not to provide a reserved hole and use a pulley 10 instead. A pulley 10 is provided at the end of the first traction rope 4-1. The counterweight 9 is connected to the deflector adjustment support arm 6 through the pulley 10 to ensure that the first traction rope 4-1 is in a tensioned state and prevent the first traction rope 4-1 from slipping out of the rope winder 3. The transmission pipe 2 is fixed on the installation base through a transmission pipe bracket 7. The installation base generally refers to the wall / column. A nylon bushing 11 is fixed on the transmission pipe bracket 7, which is convenient for disassembly, replacement, and extends the service life. In this usage mode, a rope winder of the same size can be used for the rope winder.
[0034] Usage Mode 2: It is used in the internal and external, open-layer cascading linkage pull rope type livestock diversion plate ventilation system. The transmission system includes a power device 1, a transmission pipe 2, a rope winder 3, a traction rope 4, a guide member 5, and a diversion plate adjusting support arm 6. The power device 1 and the rope winder 3 are fixed on the transmission pipe 2. The first-layer guide member 5 is installed on the frame, and the diversion plate adjusting support arm 6 is installed on the diversion plate at a position corresponding to the guide member 5. The traction rope 4 includes a first traction rope 4-1 and a second traction rope 4-2. One end of the first traction rope 4-1 is fixedly connected to the rope winder 3, and the other end of the first traction rope 4-1 longitudinally extends along the direction of the diversion plate to the end of the diversion plate. One end of the second traction rope 4-2 is fixed on the diversion plate adjusting support arm 6, and the other end passes through the guide member 5 and is connected to the first traction rope 4-1. The power device 1 provides power output for the transmission system, such as a reduction motor, a hand crank, etc. One end of the transmission pipe 2 is fixed on the transmission shaft of the reduction motor and is fixed on the wall / column through a transmission pipe bracket 7. The reduction motor is also fixed on the wall / column through a reduction motor base. The guide members 5 of the other layers except the first layer are installed on the lower side of the upper-layer diversion plate, and the diversion plate adjusting support arm 6 is installed on the diversion plate at a position corresponding to the guide member 5 of the layer where it is located. A reserved hole 8 is provided on the diversion plate adjusting support arm 6. A counterweight 9 is connected to the diversion plate adjusting support arm 6 through the reserved hole 8 to increase the self-weight of the diversion plate and keep the first traction rope 4-1 in a taut state. According to the width and length of the diversion plate, the weight of the counterweight 9 is generally not less than 6 kg. The position of the reserved hole 8 is on the outer side, which can prevent the counterweight 9 from colliding with the wall. It is also possible not to provide a reserved hole and use a pulley 10 instead. A pulley 10 is provided at the end of the first traction rope 4-1. The counterweight 9 is connected to the diversion plate adjusting support arm 6 through the pulley 10 to ensure that the first traction rope 4-1 is in a taut state and prevent the first traction rope 4-1 from slipping out of the rope winder 3. The height of the threaded winding groove 3-1 of the rope winder 3 of the other layers except the first layer is greater than the height of the threaded winding groove 3-1 of the rope winder 3 of the first layer. The transmission pipe 2 is fixed on the installation base through a transmission pipe bracket 7. The installation base generally refers to the wall / column. A nylon bushing 11 is fixed on the transmission pipe bracket 7, which is convenient for disassembly, replacement, and prolongs the service life.
[0035] The nylon bushing is of an arc-shaped structure, and the steel pipe is further fixed by bolts or self-tapping screws through through holes. This nylon bushing is easy to install, replace, and operate.
[0036] The nylon rope winder includes a rope winder body which is of a hollow structure. The outer surface is provided with a threaded rope winding groove, with the number of turns being at least two. The height of the threaded rope winding groove is 3 mm to 15 mm. The overall diameter of the nylon rope winder is 35 mm to 140 mm, and the diameter of the rope winder body is 25 mm to 125 mm. A first fixing part is arranged at the upper part of the rope winder body, and a second fixing part is arranged at the lower part of the nylon rope winder. A clamping hole, an extended nut with an opening, and a tightening bolt are arranged on one side of the second fixing part. A through hole is arranged on one side of the extended nut. After the first traction rope passes through the clamping hole arranged on the second fixing part and the through hole of the extended nut, the tightening bolt is used to tighten the traction rope on the rope winder. The self-tapping screw fixes the first rope winder on the steel pipe through the fixing holes of the first fixing part and the second fixing part. This nylon rope winder is easy to install and operate, and can ensure the synchronization of the multi-layer transmission of the deflector (when used for the deflector).
[0037] When used for the deflector of structures such as the laminated type, different-sized rope winders can be used in combination to achieve the effect of synchronous opening angles. For example: when the diameter of the steel pipe is 32 mm, the diameter of the threaded rope winding groove of the first-layer rope winder is 50 mm, and the diameters of the threaded rope winding grooves of other layers of rope winders are 48 mm, and the opening angles are the same during normal opening.
[0038] When the livestock breeding shed needs ventilation, just turn on the motor. The motor drives the traction rope to rotate. The two traction ropes are stressed simultaneously. Under the interaction of the deflector adjusting arm and the guiding part, the deflector rotates synchronously to form a ventilation space. When the ventilation space reaches the best state, turn off the motor.
[0039] In summary, the present utility model can at least achieve the following beneficial effects:
[0040] 1. A multi-layer synchronous transmission system of a nylon rope winder designed by the present utility model can ensure better synchronization of the deflector and is easier to operate by operating the transmission system.
[0041] 2. A multi-layer synchronous transmission system of a nylon rope winder designed by the present utility model can play the role of replacing a pulley through the interaction between the transmission pipe and the rope winder, occupies a small space, and has a wide adaptability.
[0042] 3. A multi-layer synchronous transmission system of a nylon rope winder designed by the present utility model has a wide application field, can be used in various livestock breeding industries, is simple in design, easy to install, and has a low cost.
[0043] Finally, it should be noted that: The above are only the preferred embodiments of the present utility model, which are only used to illustrate the technical solutions of the present utility model and are not used to limit the protection scope of the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model are all included in the protection scope of the present utility model.
Claims
1. A multi-layer synchronous transmission system for a nylon winding device, characterized in that, The transmission system includes a power device, a transmission pipe, a rope winder, a traction rope, a guide member, and a deflector adjusting arm. The power device and the rope winder are fixed on the transmission pipe. The first-layer guide member is installed on the frame, and the deflector adjusting arm is installed on the deflector at a position corresponding to the guide member. The traction rope includes a first traction rope and a second traction rope. One end of the first traction rope is fixedly connected to the rope winder, and the other end of the first traction rope longitudinally extends along the direction of the deflector to the end of the deflector. One end of the second traction rope is fixed on the deflector adjusting arm, and the other end passes through the guide member and is connected to the first traction rope.
2. The multi-layer synchronous transmission system of a nylon rope winder according to claim 1, characterized in that, The guide members of the other layers except the first layer are installed on the frame, and the deflector adjusting arm is installed on the deflector at a position corresponding to the guide member of the layer where it is located.
3. A multi-layer synchronous transmission system of a nylon rope winder according to claim 1, characterized in that, The guide members of the other layers except the first layer are installed on the lower side of the deflector of the upper layer, and the deflector adjusting arm is installed on the deflector at a position corresponding to the guide member of the layer where it is located.
4. A multi-layer synchronous transmission system of a nylon rope winder according to any one of claims 2 or 3, characterized in that, The deflector adjusting arm is provided with a reserved hole.
5. A multi-layer synchronous transmission system of a nylon rope winder according to claim 4, characterized in that, The counterweight is connected to the deflector adjusting arm through the reserved hole.
6. A multi-layer synchronous transmission system for a nylon rope winder according to any one of claims 2 or 3, characterized in that, A pulley is provided at the end of the first traction rope.
7. A multi-layer synchronous transmission system of a nylon rope winder according to claim 6, characterized in that, After passing through the end pulley, the counterweight is connected to the first traction rope.
8. A multi-layer synchronous transmission system of a nylon rope winder according to claim 3, characterized in that, The height of the threaded winding groove of the rope winder of the other layers except the first layer is greater than the height of the threaded winding groove of the rope winder of the first layer.
9. A multi-layer synchronous transmission system of a nylon rope winder according to claim 1, characterized in that, The transmission pipe is fixed on the installation foundation through a transmission pipe bracket.
10. A multi-layer synchronous transmission system of a nylon rope winder according to claim 9, characterized in that, The nylon bushing is fixed on the transmission pipe bracket.