Conveying mechanism for steel bar production and processing

By designing a fixed clamping and heat dissipation mechanism on the conveyor, the problem of unstable swaying of the steel bar in the arc-shaped plate groove was solved, achieving stable conveying of the steel bar and heat dissipation of the components, thereby improving the stability of the conveyor and the service life of the components.

CN223645513UActive Publication Date: 2025-12-09HUBEI FENGHUA SPECIAL STEEL MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422016976.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-12-09
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

In existing conveyors, the steel bars are unstable and prone to detachment during steel bar processing, affecting the stability of the conveyor.

Method used

A fixed clamping mechanism was designed, including an elastic connecting component and a clamping and fixing component. The steel bar is clamped to prevent shaking through the cooperation of an external threaded ring and an internal threaded clamping seat. At the same time, a heat dissipation mechanism is set up to dissipate heat from the drive main roller and the auxiliary rotating roller using a blower component.

Benefits of technology

It improves the conveying stability during steel bar processing, prevents steel bars from falling out, and extends the service life of conveyor components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a steel bar production processing conveying mechanism which comprises a conveyor main body, the conveyor main body comprises a main frame, auxiliary rotating rollers are installed in the middle of the interior of the main frame at equal intervals through bearings, and driving main rollers are rotationally connected to the two ends of the upper surface of the main frame through bearings. A motor is mounted at the end part of the driving main roller on the surface of the main frame; by designing a fixed clamping mechanism, an external thread ring can rotate in an internal thread clamping seat to fixedly mount an anti-skid pad, one end of a steel bar abuts against the surface of the anti-skid pad to push a supporting sliding rod to be embedded into a mounting rod, and after the steel bar is completely placed on the surface of an arc-shaped plate groove, the steel bar can be fixed to the surface of the arc-shaped plate groove. And the pressing spring deforms to drive the supporting sliding rod to be elastically connected with the mounting rod until the supporting sliding rod tightly presses the internal thread clamping base on the surface of the end of the steel bar for reinforcing mounting, and the steel bar is clamped and fixed to the surface of the arc-shaped plate groove and is stably conveyed through the conveying belt.
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Description

Technical Field

[0001] This utility model belongs to the field of conveyor technology, specifically relating to a steel bar production and processing conveying mechanism. Background Technology

[0002] A steel bar is a metal rod made of steel, and its cross-sectional shape is generally circular. During the processing and production of steel bars, they need to be transported from one end to the processing equipment at the other end. Usually, the steel bars are transported by a conveyor. The existing conveyor is the equipment used for transporting steel bars during the processing and production. When the conveyor transports the steel bars, it clamps and fixes the steel bars for transport, making the transport more stable and improving the stability of the conveyor during the steel bar processing and production.

[0003] Existing conveying mechanisms directly place the steel bars in the arc-shaped groove on the conveyor belt during steel bar processing and conveying. The conveyor belt then drives the steel bars forward. The arc-shaped groove has an arc-shaped structure, which makes it difficult to clamp and fix the steel bars when they are being conveyed. This causes the steel bars to sway and become unstable within the groove when the conveyor vibrates during operation. Severe swaying can easily cause the steel bars to detach from the placement plate, affecting the stability of the conveyor during steel bar processing. Therefore, this utility model proposes a steel bar production and processing conveying mechanism. Utility Model Content

[0004] The purpose of this utility model is to provide a steel bar production and processing conveying mechanism to solve the problem mentioned in the background art that when conveying steel bars during steel bar processing and production, it is not easy to clamp and fix the steel bars when they are conveyed in the arc-shaped plate groove. This causes the steel bars to shake and become unstable in the arc-shaped plate groove when the conveyor operation generates vibration. When the shaking is severe, the steel bars are easy to fall out of the placement plate, which affects the stability of the conveyor during steel bar processing and production.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a steel bar production and processing conveying mechanism, comprising a conveyor body, the conveyor body including a main frame, auxiliary rotating rollers equidistantly mounted at the middle position of the main frame via bearings, drive main rollers rotatably connected to both ends of the upper surface of the main frame via bearings, a motor mounted at the end of the drive main rollers on the surface of the main frame, a conveyor belt conveying at the connection of the two drive main rollers, and arc-shaped grooves fixed equidistantly on the outer surface of the conveyor belt by screws; the conveyor body also includes:

[0006] A fixed clamping mechanism is provided, and the fixed clamping mechanism includes elastic connecting components disposed at both ends of the arc-shaped plate groove, and clamping and fixing components are provided at the ends of the elastic connecting components;

[0007] A heat dissipation mechanism, including a heat dissipation component disposed inside the main frame, wherein a blower component is disposed at the middle position of the front surface of the main frame.

[0008] Preferably, the elastic connection assembly includes connecting plates fixedly mounted at both ends of the arc-shaped plate groove by screws, and mounting rods are fixedly mounted on the surface of the connecting plates by screws, with supports sliding inside the mounting rods.

[0009] Preferably, the clamping and fixing assembly includes an internally threaded clamping seat that is fixedly mounted on the end of the support slide rod by bolts. The internally threaded clamping seat has an externally threaded ring that rotates inside, and the surface of the externally threaded ring is provided with an anti-slip pad.

[0010] Preferably, the anti-slip pad and the interior of the internal threaded clamping seat are rotatably fixedly connected by the external threaded ring, and the internal threaded clamping seat and the mounting rod are elastically connected to the support slide rod by the compression spring.

[0011] Preferably, the heat dissipation assembly includes a main air intake channel located at the middle of the top of the front surface of the main frame, and a connecting pipe is fixedly installed inside the main frame between two auxiliary rotating rollers, with heat dissipation vents equidistantly opened on both sides of the connecting pipe.

[0012] Preferably, the end of the connecting pipe is connected to the main air intake channel, and the heat dissipation port and the connecting pipe are an integral structure.

[0013] Preferably, the blower assembly includes a mounting base that is fixedly mounted on the front surface of the main frame by bolts. The rear end of the mounting base is provided with an air inlet. A motor is mounted inside the mounting base through a connecting bracket. A fan blade is fixed to the end of the motor by screws. The end of the fan blade is connected to the interior of the main air intake channel.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] By designing a fixed clamping mechanism, the external threaded ring can rotate inside the internal threaded clamping seat to fix the anti-slip pad. One end of the steel rod abuts against the surface of the anti-slip pad, pushing the support slide rod to embed into the interior of the mounting rod. After the steel rod is completely placed on the surface of the arc-shaped plate groove, the compression spring deforms, causing the support slide rod to elastically connect with the mounting rod. The internal threaded clamping seat is then pressed tightly against the end surface of the steel rod by the support slide rod for reinforcement. The steel rod is clamped and fixed on the surface of the arc-shaped plate groove and stably conveyed by the conveyor belt, improving the stability of the conveyor body during the steel rod processing and production conveying. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2This utility model Figure 1 Enlarged structural diagram of section A;

[0018] Figure 3 This utility model Figure 2 Enlarged structural diagram of section B;

[0019] Figure 4 This utility model Figure 2 Enlarged structural diagram of section C;

[0020] Figure 5 This is a cross-sectional view of the mounting rod, supporting slide rod, and compression spring of this utility model.

[0021] Figure 6 This is a schematic diagram of the main frame, main air intake channel and connecting pipe structure of this utility model;

[0022] Figure 7 This utility model Figure 6 Enlarged structural diagram of section D in the middle;

[0023] In the diagram: 100, conveyor body; 101, main frame; 102, conveyor belt; 103, arc-shaped trough; 1031, connecting plate; 1032, mounting rod; 1033, internal thread clamping seat; 1034, anti-slip pad; 1035, support slide bar; 1036, external thread ring; 1037, compression spring; 104, motor; 105, drive main roller; 1051, mounting seat; 1052, main air inlet channel; 1053, connecting pipe; 1054, heat dissipation vent; 1055, fan blade; 1056, motor; 106, auxiliary rotating roller. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figures 1 to 7This utility model provides a technical solution: a steel bar production and processing conveying mechanism, including a conveyor body 100, the conveyor body 100 including a main frame 101, auxiliary rotating rollers 106 are equidistantly installed at the middle position of the main frame 101 via bearings, and drive main rollers 105 are rotatably connected to both ends of the upper surface of the main frame 101 via bearings. A motor 104 is installed at the end of the drive main roller 105 on the surface of the main frame 101. The main frame 101 contacts the ground, stably placing the conveyor body 100 at the position for steel bar processing and production. When the motor 104 is energized, it drives the main drive roller 105 to rotate. A conveyor belt 102 is conveyed at the connection point of the two main drive rollers 105. Arc-shaped grooves 103 are fixed to the outer surface of the conveyor belt 102 at equal intervals by screws. The rotation of the main drive rollers 105 drives the conveyor belt 102 to move along with the arc-shaped grooves 103. During conveying, the conveyor belt 102 contacts the surface of the auxiliary rotating roller 106 for support and assistance. The steel bars are placed on the surface of the arc-shaped grooves 103 and conveyed along with the conveyor belt 102 to the processing location. The conveyor body 100 is also equipped with:

[0026] The fixed clamping mechanism includes elastic connecting components at both ends of the arc-shaped plate groove 103. The ends of the elastic connecting components are provided with clamping and fixing components. When the conveyor body 100 conveys steel bars, the steel bars are placed on the surface of the arc-shaped plate groove 103 and then fixed and conveyed by the fixed clamping mechanism. This makes it less prone to shaking and instability when vibration occurs during conveying, thus improving the stability of the conveyor body 100 during the steel bar processing and production conveying.

[0027] To facilitate the elastic connection of the drive connection assembly to the anti-slip pad 1034 and to enable easy clamping and reinforcement during installation, in this embodiment, preferably, the elastic connection assembly includes a connecting plate 1031 fixedly mounted at both ends of the arc-shaped plate groove 103 by screws. An installation rod 1032 is fixedly mounted on the surface of the connecting plate 1031 by screws. A support slide rod 1035 slides inside the installation rod 1032. A compression spring 1037 is welded to the end of the support slide rod 1035 at the connection point inside the installation rod 1032. The compression spring 1037 elastically connects the support slide rod 1035 inside the installation rod 1032, facilitating the elastic clamping and fixing of the anti-slip pad 1034 through the support slide rod 1035.

[0028] In order to facilitate the clamping and fixing of the steel bar on the surface of the arc-shaped plate groove 103 by means of the clamping and fixing assembly, in this embodiment, preferably, the clamping and fixing assembly includes an internal thread clamping seat 1033 that is fixedly installed on the end of the support slide rod 1035 by bolts. The internal thread clamping seat 1033 has an external thread ring 1036 that rotates inside. The surface of the external thread ring 1036 is provided with an anti-slip pad 1034. The anti-slip pad 1034 is fixed to the surface of the internal thread clamping seat 1033 by the external thread ring 1036 until the support slide rod 1035 drives the anti-slip pad 1034 to elastically clamp and fix the end of the steel bar for reinforcement, so as to facilitate stable transport of the steel bar.

[0029] The heat dissipation mechanism includes a heat dissipation component installed inside the main frame 101. A blower component is installed at the middle position of the front surface of the main frame 101. When the conveyor body 100 conveys steel bars, the heat generated by the drive main roller 105 and the auxiliary rotating roller 106 driving the conveyor belt 102 is dissipated by the heat dissipation mechanism. This prevents the conveyor body 100 from being heated by friction and causing rapid damage, and improves the convenience of heat dissipation of the drive main roller 105 and the auxiliary rotating roller 106 during steel bar processing.

[0030] In order to facilitate the cooling process of the drive main roller 105 and the auxiliary rotating roller 106 by blowing air onto their surfaces through the heat dissipation assembly, in this embodiment, preferably, the heat dissipation assembly includes a main air intake channel 1052 located at the middle position of the top of the front surface of the main frame 101. A connecting pipe 1053 is fixedly installed inside the main frame 101 between the two auxiliary rotating rollers 106. Heat dissipation ports 1054 are equally spaced on both sides of the connecting pipe 1053. After air enters the main air intake channel 1052, it enters the connecting pipe 1053 again and is blown onto the surfaces of the drive main roller 105 and the auxiliary rotating roller 106 through the heat dissipation ports 1054 for cooling.

[0031] To facilitate faster heat dissipation through air blowing, in this embodiment, preferably, the air blowing assembly includes a mounting base 1051 fixed to the front surface of the main frame 101 by bolts. The rear end of the mounting base 1051 is provided with an air inlet hole to facilitate air intake when the motor 1056 blows air inside the mounting base 1051. The motor 1056 is mounted inside the mounting base 1051 through a connecting bracket. The end of the motor 1056 is fixed with a fan blade 1055 by screws. The end of the fan blade 1055 is connected to the interior of the main air intake channel 1052. The motor 1056 drives the fan blade 1055 to rotate and blow air into the interior of the main air intake channel 1052, which facilitates heat dissipation.

[0032] The model number of the motor 1056 in this utility model is CM06IG6SB.

[0033] The working principle and usage process of this utility model: When using this steel bar production and processing conveying mechanism, the main frame 101 contacts the ground to stably place the conveyor body 100 at the position of steel bar processing and production. The motor 104 is powered on and drives the main drive roller 105 to rotate. The rotation of the main drive roller 105 drives the conveyor belt 102 to transport the steel bars with the arc-shaped trough 103. When the conveyor belt 102 is transporting the steel bars, it contacts the surface of the auxiliary rotating roller 106 to support the transport. When the steel bars are transported by the conveyor body 100, they are placed on the surface of the arc-shaped trough 103 and transported together with the conveyor belt 102 to the processing and production position.

[0034] Then, before the conveyor body 100 is processed and produced, the external threaded ring 1036 is rotated inside the internal threaded clamping seat 1033 to fix the anti-slip pad 1034. When the steel bar is placed on the surface of the arc-shaped plate groove 103, one end of the steel bar abuts against the surface of the anti-slip pad 1034 and pushes the support slide rod 1035 into the interior of the mounting rod 1032 until the steel bar is completely placed on the surface of the arc-shaped plate groove 103. Then, the compression spring 1037 deforms and drives the support slide rod 1035 to elastically connect with the mounting rod 1032 until the internal threaded clamping seat 1033 is pressed tightly against the end surface of the steel bar through the support slide rod 1035 for reinforcement and installation. Thus, the steel bar is clamped and fixed on the surface of the arc-shaped plate groove 103 and stably conveyed by the conveyor belt 102. When vibration occurs during conveying, it is not easy to shake or become unstable, which improves the stability of the conveyor body 100 during the processing and production of steel bars. When the steel bar is conveyed to the end, it will automatically fall off by its own weight.

[0035] Finally, when the conveyor body 100 is conveying steel bars during production, and the drive main roller 105 and auxiliary rotating roller 106 are in contact with the inner surface of the conveyor belt 102 for a long time and become heated due to friction, the motor 1056 can be energized to drive the fan blade 1055 to rotate. When the fan blade 1055 rotates, it blows air into the main air intake channel 1052. The air in the main air intake channel 1052 then enters the connecting pipe 1053. After the air enters the connecting pipe 1053, it blows air onto the surface of the drive main roller 105 or auxiliary rotating roller 106 through the heat dissipation port 1054 for heat dissipation treatment. This facilitates faster heat dissipation of the interior, prevents rapid damage due to friction and heat, and improves the convenience of heat dissipation for the drive main roller 105 and auxiliary rotating roller 106 during steel bar production.

[0036] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A steel bar production and processing conveying mechanism, comprising a conveyor body (100), the conveyor body (100) comprising a main frame (101), auxiliary rotating rollers (106) being equidistantly mounted at the middle position of the main frame (101) via bearings, drive main rollers (105) being rotatably connected to both ends of the upper surface of the main frame (101) via bearings, motors (104) being mounted at the ends of the drive main rollers (105) on the surface of the main frame (101), a conveyor belt (102) being conveyed at the connection of the two drive main rollers (105), and arc-shaped plate grooves (103) being equidistantly fixed to the outer surface of the conveyor belt (102) by screws, characterized in that: The conveyor body (100) is also provided with: A fixed clamping mechanism is provided, and the fixed clamping mechanism includes elastic connecting components disposed at both ends of the arc-shaped plate groove (103), and the ends of the elastic connecting components are provided with clamping and fixing components; The heat dissipation mechanism includes a heat dissipation component disposed inside the main frame (101), and a blower component is disposed at the middle position of the front surface of the main frame (101).

2. The steel bar production and processing conveying mechanism according to claim 1, characterized in that: The elastic connection assembly includes connecting plates (1031) fixedly installed at both ends of the arc-shaped plate groove (103) by screws. An installation rod (1032) is fixedly installed on the surface of the connecting plate (1031) by screws. A support slide rod (1035) slides inside the installation rod (1032). A compression spring (1037) is welded to the end of the support slide rod (1035) at the internal connection of the installation rod (1032).

3. The steel bar production and processing conveying mechanism according to claim 2, characterized in that: The clamping and fixing assembly includes an internally threaded clamping seat (1033) that is fixedly installed at the end of the support slide (1035) by bolts. An externally threaded ring (1036) is rotatably mounted inside the internally threaded clamping seat (1033), and an anti-slip pad (1034) is provided on the surface of the externally threaded ring (1036).

4. The steel bar production and processing conveying mechanism according to claim 3, characterized in that: The anti-slip pad (1034) and the internal threaded clamping seat (1033) are rotatably and fixedly connected by the external threaded ring (1036), and the internal threaded clamping seat (1033) and the mounting rod (1032) are elastically connected by the compression spring (1037) and the support slide rod (1035).

5. The steel bar production and processing conveying mechanism according to claim 1, characterized in that: The heat dissipation assembly includes a main air intake channel (1052) located at the middle of the top of the front surface of the main frame (101). A connecting pipe (1053) is fixedly installed inside the main frame (101) between two auxiliary rotating rollers (106). Heat dissipation vents (1054) are provided at equal intervals on both sides of the connecting pipe (1053).

6. The steel bar production and processing conveying mechanism according to claim 5, characterized in that: The end of the connecting pipe (1053) is connected to the main air intake channel (1052), and the heat dissipation port (1054) and the connecting pipe (1053) are an integral structure.

7. The steel bar production and processing conveying mechanism according to claim 5, characterized in that: The blower assembly includes a mounting base (1051) that is fixedly mounted on the front surface of the main frame (101) by bolts. An air inlet is provided at the tail end of the mounting base (1051). A motor (1056) is mounted inside the mounting base (1051) through a connecting bracket. A fan blade (1055) is fixed to the end of the motor (1056) by screws. The end of the fan blade (1055) is connected to the interior of the main air intake channel (1052).