Phi 650 high-speed tubular hemp rope machine

By designing a Φ650 high-speed tubular hemp rope machine, the problems of large rotational sway and low balance accuracy of frame-type hemp rope machines were solved, enabling efficient production of three-strand and four-strand rope cores.

CN223907236UActive Publication Date: 2026-02-13GUIZHOU QIANLI IND CO LTD
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Patent Information

Application Number
CN202520327490.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-02-13
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

Existing frame-type hemp rope machines suffer from large swings, low balance accuracy, and low speed during rotation, resulting in low production efficiency.

Method used

The machine adopts a Φ650 high-speed tubular hemp rope machine, including components such as a brake, brake wheel, motor, tail assembly, protective cover, and bearing assembly. It is designed with a Φ650 high-speed tubular structure, and the main machine speed reaches 400 rpm, which improves the rotational balance accuracy and production efficiency.

Benefits of technology

It achieves small rotational sway, high balance accuracy, and significantly improved production efficiency, enabling the production of three-strand and four-strand rope cores.

✦ Generated by Eureka AI based on patent content.

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Abstract

A phi650 high-speed tubular hemp rope machine comprises a band-type brake, a band-type brake wheel, a motor, a machine tail assembly, a first protective cover, a first barrel assembly, a first large bearing assembly, a second large bearing assembly, a second protective cover, a machine head protective cover, a base, a second barrel assembly, a cog belt, a cog belt wheel and a small cog belt wheel. The band-type brake is arranged on the band-type brake wheel; the band-type brake wheel is arranged on the motor; the motor is connected with the small tooth-shaped belt wheel; the first protective cover and the second protective cover are arranged on the base; the first barrel assembly is connected with the tail assembly and the first large bearing assembly; the second cylinder assembly is connected with the first large bearing assembly and the second large bearing assembly; the tooth-shaped belt is connected with the small tooth-shaped belt wheel and the tooth-shaped belt wheel; the toothed belt wheel is connected with the tail assembly; and the machine head protective cover is arranged on the ground. The device is simple in structure, the rotating speed of a main machine can reach 400 revolutions per minute, three strands of ropes and four strands of rope cores can be produced, the swing is small during rotation, the balance precision is high, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of Φ650 high-speed tubular rope machine, belong to steel rope production equipment technical field. BACKGROUND

[0002] In steel rope product industry, the fiber rope core of more than Φ28mm is four-strand rope core, is produced using frame fence type hemp rope machine, and the machine swings greatly when producing, and balance precision is small, and rotation speed is only 60 revolutions / minute, and production efficiency is low. CONTENT OF UTILITY MODEL

[0003] The utility model solves the technical problem that existing technology exists frame fence type hemp rope machine swing greatly when rotating, and balance precision is small, and rotation speed is low.

[0004] In order to solve the above technical problem, the utility model adopts the following technical scheme:

[0005] Φ650 high-speed tubular rope machine, including clutch, clutch wheel, motor, tail assembly, first protective cover, first barrel assembly, first large bearing assembly, second large bearing assembly, second protective cover, head protective cover, base A, second barrel assembly, toothed belt, toothed pulley and pinion toothed pulley;

[0006] The clutch is provided on the clutch wheel;

[0007] The clutch wheel is provided on the motor;

[0008] The motor is connected with the pinion toothed pulley;

[0009] The first protective cover and the second protective cover are provided on the base A;

[0010] The first barrel assembly is connected with the tail assembly and the first large bearing assembly;

[0011] The second barrel assembly is connected with the first large bearing assembly and the second large bearing assembly;

[0012] The toothed belt is connected with the pinion toothed pulley and the toothed pulley;

[0013] The toothed pulley is connected with the tail assembly;

[0014] The head protective cover is provided on the ground.

[0015] Wherein, the tail assembly is composed of base B, bearing seat lower seat, flange, bearing seat, toothed pulley and shaft;The bearing seat lower seat is provided on the base B, the flange is connected with the shaft, the shaft is connected with the bearing seat, and the toothed pulley is connected with the shaft.

[0016] Wherein the first cylinder assembly is composed of the first lantern seat, the first frame, the first 650 I-beam, the second lantern seat, the second frame, the second 650 I-beam, the third lantern seat, the cylinder and the fourth lantern seat; the first lantern seat is connected with the first frame, the first 650 I-beam is arranged in the first frame, the second lantern seat is connected with the first frame, the second lantern seat is arranged in the cylinder, the second frame is connected with the fourth lantern seat and the third lantern seat, the third lantern seat is arranged in the cylinder, and the second 650 I-beam is arranged in the second frame.

[0017] Wherein the second cylinder assembly is composed of the frame, the threading seat, the I-beam, the thread passing wheel and the lantern seat; the I-beam is arranged in the frame, one end of the frame is connected with the lantern seat, and the other end is connected with the first large bearing assembly and the second large bearing assembly respectively.

[0018] Wherein the first large bearing assembly is composed of the connecting sleeve A, the bearing A, the bearing upper cover A and the bearing seat bottom; the connecting sleeve A is connected with the bearing A, and the bearing A is arranged in the bearing upper cover A and the bearing seat bottom.

[0019] Wherein the second large bearing assembly is composed of the connecting sleeve B, the bearing upper cover B, the bearing B, the multifunctional machine head and the bearing lower seat; the connecting sleeve B is connected with the bearing B, the bearing is arranged between the bearing upper cover B and the bearing lower seat, and the multifunctional machine head is arranged on one side of the connecting sleeve B.

[0020] The beneficial effects of the above technical scheme are:

[0021] The utility model discloses simple structure, and the host computer rotating speed can reach 400 turns per minute, can produce three -stranded rope and four -stranded rope core, swing is small when rotating, and the balance precision is high, and the production efficiency is enhanced. DRAWINGS

[0022] Figure 1 It is the structure schematic diagram of the utility model.

[0023] In the drawing: 1 - clutch, 2 - clutch wheel, 3 - motor, 4 - tail assembly, 5 - first protective cover, 6 - first cylinder assembly, 7 - first large bearing assembly, 8 - second large bearing assembly, 9 - second protective cover, 10 - machine head protective cover, 11 - base A, 12 - second cylinder assembly, 13 - cog belt, 14 - cog belt wheel, 15 - small cog belt wheel.

[0024] Figure 2 It is the structure schematic diagram of tail assembly.

[0025] In the drawing: 4.1 - base B, 4.2 - bearing seat lower seat, 4.3 - flange, 4.4 - bearing seat, 14 - cog belt wheel, 4.5 - shaft.

[0026] Figure 3 It is the structure schematic diagram of first cylinder assembly.

[0027] In the diagram: 6.1 - First lantern base, 6.2 - First frame, 6.3 - First 650 I-beam wheel, 6.4 - Second lantern base, 6.5 - Second frame, 6.6 - Second 650 I-beam wheel, 6.7 - Third lantern base, 6.8 - Cylinder body, 6.9 - Fourth lantern base.

[0028] Figure 4 A schematic diagram of the assembly of the second cylinder.

[0029] In the diagram: 12.1 - Frame, 12.2 - Threading seat, 12.3 - I-beam reel, 12.4 - Thread guide reel, 12.5 - Lantern holder.

[0030] Figure 5 This is a schematic diagram of the first large bearing assembly.

[0031] In the diagram: 7.1-Connecting sleeve A, 7.2-Bearing A, 7.3-Bearing cover A, 7.4-Bearing seat bottom.

[0032] Figure 6 This is a schematic diagram of the assembly of the second largest bearing.

[0033] In the diagram: 8.1-Connecting sleeve B, 8.2-Bearing cover B, 8.3-Bearing B, 8.4-Multi-functional machine head, 8.5-Bearing. Detailed Implementation

[0034] The present invention will be further described in detail below with reference to the accompanying drawings:

[0035] like Figure 1 As shown, the Φ650 high-speed tubular hemp rope machine includes a brake 1, a brake wheel 2, a motor 3, a tail assembly 4, a first protective cover 5, a first cylinder assembly 6, a first large bearing assembly 7, a second large bearing assembly 8, a second protective cover 9, a head protective cover 10, a base A11, a second cylinder assembly 12, a toothed belt 13, a toothed pulley 14, and a small toothed pulley 15.

[0036] The brake 1 is mounted on the brake wheel 2;

[0037] The brake wheel 2 is mounted on the motor 3;

[0038] The motor 3 is connected to the small toothed pulley 15;

[0039] The first protective cover 5 and the second protective cover 9 are disposed on the base A11;

[0040] The first cylindrical assembly 6 is connected to the tail assembly 4 and the first large bearing assembly 7;

[0041] The second cylindrical assembly 12 is connected to the first large bearing assembly 7 and the second large bearing assembly 8;

[0042] The toothed belt 13 is connected with the pinion gear 15 and the toothed pulley 14;

[0043] The toothed pulley 14 is connected with the tail assembly 4;

[0044] The machine head protective cover 10 is arranged on the ground.

[0045] The tail assembly 4 is composed of a base B4.1, a bearing seat lower seat 4.2, a flange 3, a bearing seat 4, a toothed pulley 14 and a shaft 4.5; the bearing seat lower seat 2 is arranged on the base 1, the flange 3 is connected with the shaft 4.5, the shaft 4.5 is connected with the bearing seat 4, and the toothed pulley 14 is connected with the shaft 4.5, as shown in Figure 2 .

[0046] The first cylinder assembly 6 is composed of a first lantern seat 6.1, a first frame 6.2, a first 650 I-beam 6.3, a second lantern seat 6.4, a second frame 6.5, a second 650 I-beam 6.6, a third lantern seat 6.7, a cylinder 6.8 and a fourth lantern seat 6.9; the first lantern seat 6.1 is connected with the first frame 6.2, the first 650 I-beam 6.3 is arranged in the first frame 6.2, the second lantern seat 6.4 is connected with the first frame 6.2, the second lantern seat 6.4 is arranged in the cylinder 6.8, the second frame 6.5 is connected with the fourth lantern seat 6.9 and the third lantern seat 6.7, the third lantern seat 6.7 is arranged in the cylinder 6.8, and the second 650 I-beam 6.6 is arranged in the second frame 6.5, as shown in Figure 3 .

[0047] The second cylinder assembly 12 is composed of a frame 12.1, a threading seat 12.2, an I-beam 12.3, a wire passing wheel 12.4 and a lantern seat 12.5; the I-beam 12.3 is arranged in the frame 12.1, one end of the frame 12.1 is connected with the lantern seat 12.5, and the other end is connected with the first large bearing assembly 7 and the second large bearing assembly 8, respectively, as shown in Figure 4 .

[0048] The first large bearing assembly 7 is composed of a connecting sleeve A7.1, a bearing A7.2, a bearing upper cover A7.3 and a bearing seat bottom 7.4; the connecting sleeve A7.1 is connected with the bearing A7.2, and the bearing A7.2 is arranged in the bearing upper cover A7.3 and the bearing seat bottom 7.4, as shown in Figure 5 .

[0049] The second large bearing assembly 8 is composed of a connecting sleeve B8.1, a bearing upper cover B8.2, a bearing B8.3, a multifunctional machine head 8.4 and a bearing lower seat 8.5; the connecting sleeve B8.1 is connected with the bearing B8.3, the bearing B8.3 is arranged between the bearing upper cover B8.2 and the bearing lower seat 8.5, and the multifunctional machine head 8.4 is arranged on one side of the connecting sleeve B8.1, as shown in Figure 6 .

[0050] The utility model operation principle:

[0051] Motor 3 rotation drives sprocket 15 rotation, sprocket 15 drives toothed belt 13 and sprocket 14 rotation, sprocket 14 drives first cylinder assembly 6 and second cylinder assembly 12 together rotation, each has two filled fiber strand spool in first cylinder assembly 6 and second cylinder assembly 12, fiber strand passes from cylinder outer wall, synthetic fiber rope on multifunctional machine head 8.4 on second large bearing assembly 8, passes multifunctional machine head 8.4 and is rolled up to take-up machine, (take-up machine is not marked on the drawing).

Claims

1. A high speed tubular twine machine of Φ 650 characterized in that: It includes the clutch (1), clutch wheel (2), motor (3), tail assembly (4), the first protective cover (5), the first cylinder assembly (6), the first large bearing assembly (7), the second large bearing assembly (8), the second protective cover (9), the head protective cover (10), base A (11), the second cylinder assembly (12), the toothed belt (13), toothed belt pulley (14) and pinion pulley (15); The clutch (1) is provided on the clutch wheel (2); The clutch wheel (2) is provided on the motor (3); The motor (3) is connected with the pinion pulley (15); The first protective cover (5) and the second protective cover (9) are provided on the base A (11); The first cylinder assembly (6) is connected with the tail assembly (4) and the first large bearing assembly (7); The second cylinder assembly (12) is connected with the first large bearing assembly (7) and the second large bearing assembly (8); The toothed belt (13) is connected with the pinion pulley (15) and the toothed belt pulley (14); The toothed belt pulley (14) is connected with the tail assembly (4); The head protective cover (10) is provided on the ground.

2. A Φ 650 high speed twine rope machine as claimed in claim 1 characterized in that: The tail assembly (4) is composed of base B (4.1), bearing seat lower seat (4.2), flange (4.3), bearing seat (4.4), toothed belt pulley (14) and shaft (4.5); the bearing seat lower seat (4.2) is provided on the base B (4.1), the flange (4.3) is connected with the shaft (4.5), the shaft (4.5) is connected with the bearing seat (4.4), and the toothed belt pulley (14) is connected with the shaft (4.5).

3. The Φ 650 high speed twine rope machine according to claim 1, characterized in that: The first cylinder assembly (6) is composed of first lantern seat (6.1), first frame (6.2), first 650 I-beam (6.3), second lantern seat (6.4), second frame (6.5), second 650 I-beam (6.6), third lantern seat (6.7), cylinder (6.8) and fourth lantern seat (6.9); the first lantern seat (6.1) is connected with the first frame (6.2), the first 650 I-beam (6.3) is provided in the first frame (6.2), the second lantern seat (6.4) is connected with the first frame (6.2), the second lantern seat (6.4) is provided in the cylinder (6.8), the second frame (6.5) is connected with the fourth lantern seat (6.9) and the third lantern seat (6.7), the third lantern seat (6.7) is provided in the cylinder (6.8), and the second 650 I-beam (6.6) is provided in the second frame (6.5).

4. The Φ 650 high speed twine rope machine of claim 1, wherein: The second cylinder assembly (12) is composed of frame (12.1), threading seat 12.2, I-beam (12.3), wire passing pulley (12.4) and lantern seat (12.5); the I-beam (12.3) is provided in the frame (12.1), one end of the frame (12.1) is connected with the lantern seat (12.5), and the other end is connected with the first large bearing assembly (7) and the second large bearing assembly (8) respectively.

5. The Φ 650 high speed twine rope machine of claim 1, wherein: The first large bearing assembly (7) is composed of a connecting sleeve A (7.1), a bearing A (7.2), a bearing upper cover A (7.3) and a bearing seat bottom (7.4); the connecting sleeve A (7.1) is connected with the bearing A (7.2), and the bearing A (7.2) is arranged in the bearing upper cover A (7.3) and the bearing seat bottom (7.4).

6. The Φ 650 high speed tubular twine applicator of claim 1, wherein: The second large bearing assembly (8) is composed of a connecting sleeve B (8.1), a bearing upper cover B (8.2), a bearing B (8.3), a multifunctional machine head (8.4) and a bearing lower seat (8.5); the connecting sleeve B (8.1) is connected with the bearing B (8.3), the bearing B (8.3) is arranged between the bearing upper cover B (8.2) and the bearing lower seat (8.5), and the multifunctional machine head (8.4) is arranged on one side of the connecting sleeve B (8.1).