CN219045065U - Strand making mechanism of rope tying machine - Google Patents

Strand making mechanism of rope tying machine Download PDF

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Publication number
CN219045065U
CN219045065U CN202223205056.XU CN202223205056U CN219045065U CN 219045065 U CN219045065 U CN 219045065U CN 202223205056 U CN202223205056 U CN 202223205056U CN 219045065 U CN219045065 U CN 219045065U
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Prior art keywords
yarn
frame
rope
yarn feeding
strand
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CN202223205056.XU
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Chinese (zh)
Inventor
谢作右
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Pingyang County Left And Right Lacing Machinery Co ltd
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Pingyang County Left And Right Lacing Machinery Co ltd
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Abstract

The utility model discloses a strand making mechanism of a rope making machine, which comprises a strand making rack, a first yarn feeding assembly arranged on the strand making rack, a second yarn feeding assembly positioned above the first yarn feeding assembly, at least one second yarn feeding assembly, each second yarn feeding assembly, a rotating disc, a yarn feeding rack arranged on the rotating disc and a first yarn barrel rotationally arranged on the yarn feeding rack, wherein the first yarn barrel is transversely arranged on the yarn feeding rack, and each second yarn feeding assembly comprises a rotating frame, a second yarn barrel rotationally arranged on the rotating frame, a yarn passing shaft arranged on the rotating frame and used for passing first yarns unreeled by the first yarn barrel, and a plurality of yarn passing rods circumferentially arranged on the rotating frame and positioned on the outer side of the yarn passing shaft. The rope-making machine is reasonable in structural design, and the situation that the rope is made unevenly due to the change of the gravity of the yarns is avoided during the rope making, so that the rope-making quality and efficiency are further improved.

Description

Strand making mechanism of rope tying machine
Technical Field
The utility model relates to the technical field of rope making equipment, in particular to a strand making mechanism of a rope making machine.
Background
The rope machine is also called a rope making machine, can twist a plurality of yarns into a strand or rope, and generally comprises a paying-off device, a strand making device, a rope twisting device and a wire collecting device. The utility model discloses a system strand, ply, rope machine as disclosed in CN102899947A, wherein first power source connection drive wheel is connected the axis of rotation connecting wire dish and is connected the stopper, and the ply point dress is in the place of the place ahead butt joint that corresponds with the system strand machine, and the second power source is connected with the system rope machine axis of rotation, and the frame drive wheel is connected with system rope axis of rotation, and system rope axis of rotation drive wheel is connected with the transmission shaft, and the transmission shaft is connected with the recess drive wheel. The second power source is connected with a force source driving wheel, the force source driving wheel is connected with a rope making machine driving wheel, the rope making machine driving wheel is connected with a rope making machine driving shaft, the rope making machine driving shaft is connected with a speed reducing device, the speed reducing device is connected with a speed reducing connecting rod, the speed reducing connecting rod is connected with a moving rod, the moving rod is connected with a rope loading disc, and the rope loading disc is connected with a rope loading brake. The utility model can simultaneously carry out stranding, rope making and rope collecting on the same machine, and the wire is not blocked and broken due to the brittle and small raw material wire and the joint during wire outgoing and stranding.
However, the rope making machine in the technical scheme can only ply and make ropes for yarns with a small number of strands, and the situation that the ropes are made unevenly due to the change of the gravity of the finished ropes exists during the strand making.
Disclosure of Invention
The utility model overcomes the defects of the prior art, and provides the strand making mechanism of the rope making machine, which has reasonable structural design and can not cause uneven rope making caused by the change of the gravity of yarns during strand making, thereby further increasing the quality and efficiency of rope making.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides a strand machine of rope machine's system strand mechanism, including the system strand frame, locate the first yarn subassembly that send in the system strand frame, be located the second yarn subassembly that send of first yarn subassembly top, first yarn subassembly that send is equipped with at least one, the second yarn subassembly that send is equipped with at least one, every second yarn subassembly that send all includes the rotary disk, locate the yarn carrier on the rotary disk and rotate the first yarn section of thick bamboo that sets up in sending the yarn carrier, first yarn section of thick bamboo transversely sets up in sending the yarn carrier, every second yarn subassembly that send all includes the rotating frame, rotate the second yarn section of thick bamboo that sets up in the rotating frame, locate on the rotating frame and supply the first yarn of first yarn section of thick bamboo to unreel to pass through the spool, locate a plurality of thread bars that cross on the rotating frame and lie in the spool outside in circumference arrangement, the second yarn section of thick bamboo transversely sets up in the rotating frame, thread bars are used for through the second yarn that unreel by the second yarn section of thick bamboo, multiunit second yarn twines on first yarn and make the strand.
Preferably, the strand making machine frame is provided with a wire harness assembly, the wire harness assembly comprises a wire harness wheel, a roller frame provided with a roller and yarn feeding plates which are arranged on the outer side of the wire harness wheel and correspond to the second yarn feeding assembly, and each yarn feeding plate is provided with a transmission wheel and a coil above a coil passing shaft.
Preferably, the rotating frame is provided with a fixed shaft in a penetrating way, and the fixed shaft is provided with a penetrating hole through which the first yarn passes and is conveyed to the bobbin.
Preferably, the first yarn feeding assembly is provided with three, the bottom of each rotary disk is fixedly connected with a first gear sleeve, a first motor is arranged on the strand making rack, and the first motor drives the first gear sleeve to rotate through a first belt.
Preferably, the second yarn feeding assembly is provided with three, the bottom of each rotating frame is fixedly connected with a second gear sleeve, the fixed shaft penetrates through the second gear sleeve, a bearing is arranged between the fixed shaft and the second gear sleeve, a second motor is arranged on the strand making frame, and the second motor drives the second gear sleeve to rotate through a second belt.
Preferably, at least two support plates are arranged above the rotating frame, a support frame is arranged at the position corresponding to the support plates on the strand making frame, a bearing outer ring is arranged on the support frame, and a bearing inner ring fixedly connected with the support plates is arranged in the bearing outer ring.
Preferably, a speed reducing wheel is arranged on one side of the rotating frame, which is positioned on the second yarn barrel, a fixed block is arranged on the rotating frame, and a speed reducing rope which penetrates through the speed reducing wheel is adjustably arranged on the fixed block.
The utility model has the beneficial effects that: the rope-making machine is reasonable in structural design, and the situation that the rope is made unevenly due to the change of the gravity of the yarns is avoided during the rope making, so that the rope-making quality and efficiency are further improved.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present utility model;
FIG. 2 is a schematic view showing the structure of a first yarn feeding assembly according to an embodiment of the present utility model;
FIG. 3 is a schematic view showing the structure of a second yarn feeding assembly and a harness assembly according to an embodiment of the present utility model;
FIG. 4 is a schematic view showing the structure of a second yarn feeding assembly according to an embodiment of the present utility model;
FIG. 5 is a schematic diagram of a beam line assembly according to an embodiment of the present utility model;
FIG. 6 is a schematic view showing the structure of a strand machine frame according to an embodiment of the present utility model.
In the figure: a1, a strand making machine frame; a2, a first yarn feeding component; a21, rotating the disc; a22, a yarn feeding frame; a23, a first yarn cylinder; a24, a first motor; a25, a first belt; a3, a second yarn feeding component; a31, a rotating frame; a32, a second yarn cylinder; a33, passing through a spool; a34, a wire passing rod; a35, fixing shaft; a36, perforating; a37, a second gear sleeve; a38, a second motor; a39, a second belt; a4, a wire harness assembly; a41, a wire harness wheel; a42, a roller frame; a43, rolling wheels; a44, a yarn feeding plate; a45, a conveying wheel; a46, passing through a coil; a5, supporting the plate; a51, a supporting frame; a52, bearing outer ring; a53, bearing inner ring.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 to 6, a strand making mechanism of a rope making machine comprises a strand making rack A1, a first yarn feeding assembly A2 arranged on the strand making rack A1, a second yarn feeding assembly A3 positioned above the first yarn feeding assembly A2, at least one first yarn feeding assembly A2 is arranged, at least one second yarn feeding assembly A3 is arranged, each second yarn feeding assembly A3 comprises a rotary disk a21, a yarn feeding rack a22 arranged on the rotary disk a21 and a first yarn drum a23 rotatably arranged on the yarn feeding rack a22, the first yarn drum a23 is transversely arranged on the yarn feeding rack a22, each second yarn feeding assembly A3 comprises a rotary rack a31, a second yarn drum a32 rotatably arranged on the rotary rack a31, a plurality of yarn passing rods a34 circumferentially arranged on the rotary rack a31 and positioned on the outer side of the yarn passing shafts a33, the second yarn drum a32 is transversely arranged on the rotary rack a31 and used for winding the second yarn passing through the second yarn drums a 32; the strand machine frame A1 is provided with a wire harness assembly A4, the wire harness assembly A4 comprises a wire harness wheel A41, a roller frame A42 provided with a roller A43 and yarn feeding plates A44 arranged outside the wire harness wheel A41 and corresponding to the second yarn feeding assembly A3, and each yarn feeding plate A44 is provided with a transmission wheel A45 and a passing coil A46 positioned above a passing spool A33; the rotating frame A31 is provided with a fixed shaft A35 in a penetrating way, the fixed shaft A35 is provided with a penetrating hole A36, and the first yarn passes through the penetrating hole A36 and is conveyed to the thread passing shaft A33; the first yarn feeding assemblies A2 are three, the bottom of each rotary disk A21 is fixedly connected with a first gear sleeve, a first motor A24 is arranged on the stranding frame A1, and the first motor A24 drives the first gear sleeve to rotate through a first belt A25; the second yarn feeding assemblies A3 are three, the bottom of each rotating frame A31 is fixedly connected with a second gear sleeve A37, a fixed shaft A35 penetrates through the second gear sleeve A37, a bearing is arranged between the fixed shaft A35 and the second gear sleeve A37, a second motor A38 is arranged on the strand making frame A1, and the second motor A38 drives the second gear sleeve A37 to rotate through a second belt A39; at least two support plates A5 are arranged above the rotating frame A31, a support frame A51 is arranged at a position corresponding to the support plate A5 on the strand making frame A1, a bearing outer ring A52 is arranged on the support frame A51, and a bearing inner ring A53 fixedly connected with the support plate A5 is arranged in the bearing outer ring A52; a speed reducing wheel is arranged on one side of the rotating frame A31, which is positioned on the second yarn barrel A32, a fixed block is arranged on the rotating frame A31, and a speed reducing rope which penetrates through the speed reducing wheel is adjustably arranged on the fixed block.
In the present utility model, the first yarn, i.e., the core yarn, is unwound from the first yarn feeding assembly A2 and enters the second yarn feeding assembly A3 through the perforation a36 of the fixed shaft a35, and then the core yarn enters the through-bobbin a33, wherein the core yarn may be transferred to the through-bobbin a33 through the guide wheel (not shown). Simultaneously, the second yarns are unwound from the second yarn packages a32, and a plurality of groups of second yarns enter the corresponding yarn passing rods a34 and are wound on the core yarns, thereby completing the manufacture of the folded yarns. Wherein, the rotary disk A21 and the rotary frame A31 can rotate when the core yarn and the second yarn are unreeled, so that the manufacture of the strand can be realized. Further, by arranging the first bobbin a23 and the second bobbin a32 in the lateral direction, even if the yarn quality on the first bobbin a23 and the second bobbin a32 is reduced, the normal unreeling of the yarn and the quality of the yarn strand production are not affected. The arrangement of the bearing outer ring A52 and the bearing inner ring A53 ensures that the rotating frame A31 rotates more stably and smoothly. After the yarn is manufactured in each second yarn feeding assembly A3, each yarn passes through the passing coil a46 and the conveying wheel a45 on the corresponding yarn feeding plate a44 and is conducted to the wire bundling wheel a41, and each yarn is conducted by the wire bundling wheel a41 and is then transferred to the corresponding roller a43 and matched with the stranding and rope rolling mechanism of the rope tying machine to finish stranding operation of a plurality of yarns.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (7)

1. The utility model provides a strand machine of rope making machine's system strand mechanism, a serial communication port, including the system strand frame, locate the first yarn subassembly that send in the system strand frame, be located the second yarn subassembly that send of first yarn subassembly top, first yarn subassembly that send is equipped with at least one, the second yarn subassembly that send is equipped with at least one, every second yarn subassembly that send all includes the rotary disk, locate the yarn carrier on the rotary disk and rotate the first yarn section of thick bamboo that sets up in sending the yarn carrier, first yarn section of thick bamboo transversely sets up in sending the yarn carrier, every second yarn subassembly that send all includes the swivel mount, rotate the second yarn section of thick bamboo that sets up in the swivel mount, locate the spool that crosses that supplies first yarn section of thick bamboo to unreel to pass through on the swivel mount, a plurality of thread bars that cross spool outside are located to the circumference arrangement, the second yarn section of thick bamboo transversely sets up in the swivel mount, cross the thread bar is used for through the second yarn that unreel by the second yarn section of thick bamboo, multiunit second yarn twines on first yarn section of thick bamboo and make.
2. The stranding mechanism of claim 1, wherein the stranding frame is provided with a wire harness assembly, the wire harness assembly comprises a wire harness wheel, a roller frame provided with rollers, and yarn feeding plates arranged outside the wire harness wheel and corresponding to the second yarn feeding assembly, and each yarn feeding plate is provided with a transmission wheel and a passing coil above the passing spool.
3. A stranding mechanism of a rope tying machine according to claim 1 or 2, wherein the rotating frame is provided with a stationary shaft through which the first yarn passes and is fed to the spool.
4. A stranding mechanism of a rope tying machine according to claim 3 wherein the first yarn feeding assemblies are three, the bottom of each rotary disc is fixedly connected with a first gear sleeve, a first motor is arranged on the stranding frame, and the first motor drives the first gear sleeve to rotate through a first belt.
5. A rope making mechanism according to claim 3, wherein the second yarn feeding assemblies are three, the bottom of each rotary frame is fixedly connected with a second gear sleeve, the fixed shaft is arranged in the second gear sleeve in a penetrating way, a bearing is arranged between the fixed shaft and the second gear sleeve, a second motor is arranged on the rope making frame, and the second motor drives the second gear sleeve to rotate through a second belt.
6. The stranding mechanism of claim 5, wherein at least two support plates are disposed above the rotating frame, a support frame is disposed on the stranding frame corresponding to the support plates, a bearing outer ring is disposed on the support frame, and a bearing inner ring fixedly connected with the support plates is disposed in the bearing outer ring.
7. The stranding mechanism of a rope tying machine according to claim 1, wherein a speed reducing wheel is provided on a side of the rotating frame located on the second bobbin, a fixed block is provided on the rotating frame, and a speed reducing rope passing through the speed reducing wheel is adjustably provided on the fixed block.
CN202223205056.XU 2022-11-30 2022-11-30 Strand making mechanism of rope tying machine Active CN219045065U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223205056.XU CN219045065U (en) 2022-11-30 2022-11-30 Strand making mechanism of rope tying machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223205056.XU CN219045065U (en) 2022-11-30 2022-11-30 Strand making mechanism of rope tying machine

Publications (1)

Publication Number Publication Date
CN219045065U true CN219045065U (en) 2023-05-19

Family

ID=86318323

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223205056.XU Active CN219045065U (en) 2022-11-30 2022-11-30 Strand making mechanism of rope tying machine

Country Status (1)

Country Link
CN (1) CN219045065U (en)

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