Aluminum bar furnace with translation discharging mechanism
By introducing a V-shaped support structure and a rotatable guide roller translational discharge mechanism into the aluminum rod furnace, the problem of inaccurate discharge from the aluminum rod furnace was solved, achieving stable guidance and surface protection of the aluminum rods, and improving product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional aluminum rod furnaces lack precise guidance during discharge, causing aluminum rods to easily deviate and wobble, and to be easily scratched or indented, affecting the product qualification rate.
The aluminum rod furnace is designed with a translational discharge mechanism. It adopts a V-shaped support structure and a rotatable guide roller, combined with a drive system of connecting shafts, gears and racks, to achieve stable positioning and rolling friction guidance of the aluminum rods, and adapt to different types of aluminum rods.
It achieves stable translation of aluminum rods, reduces surface scratches and indentations, improves product qualification rate, and adapts to the output requirements of aluminum rods of different sizes.
Smart Images

Figure CN224051027U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of translation discharging, especially relates to aluminium bar furnace with translation discharging mechanism. BACKGROUND
[0002] In the aluminium processing industry, the heating treatment of aluminium bars is a key link in the production process. As the core equipment for heating aluminium bars, the performance and discharging mode of the aluminium bar furnace directly affect the quality and efficiency of the subsequent processing procedures. With the continuous development of the aluminium processing industry, higher and higher requirements are put forward for the uniformity of aluminium bar heating, the efficiency and accuracy of discharging and the like.
[0003] The traditional aluminium bar furnace lacks precise guidance when discharging, which leads to the deviation and shaking of the aluminium bar in the conveying process, often requiring additional manual intervention for correction, and the sliding of the aluminium bar on the guide piece is extremely easy to cause scratches and indentations on the relatively soft surface of the aluminium bar after heating, thereby reducing the qualified rate of products. UTILITY MODEL CONTENTS
[0004] The utility model provides aluminium bar furnace with translation discharging mechanism in view of the prior art problem, and the specific technical scheme is as follows:
[0005] The aluminium bar furnace with translation discharging mechanism includes a body and a discharging mechanism arranged at the outlet position of the body, and the discharging mechanism includes:
[0006] A bottom support;
[0007] A driving piece, which is installed on the bottom support and has an output end abutting against the tail of the aluminium bar;
[0008] Two groups of supporting pieces, which are symmetrically arranged above the bottom support and form a V-shaped supporting space between the two groups of supporting pieces, and the supporting piece includes a bottom plate and a plurality of groups of guide rollers equidistantly arranged along the extension path of the bottom plate, and the guide roller is rotationally arranged on the bottom plate.
[0009] As a further technical scheme of the utility model, the bottom support is of an L-shaped structure, including a horizontally arranged base plate and a vertically arranged side plate, the supporting piece is arranged above the base plate, and the driving piece is installed on the side plate.
[0010] As a further technical scheme of the utility model, the surface of the guide roller is provided with a silica gel coating.
[0011] As a further technical scheme of the utility model, the tail of each bottom plate is correspondingly provided with a connecting shaft and a gear, the connecting shaft is rotationally connected to the side plate, the gear is coaxially connected to one end of the connecting shaft, and the two gears are meshed with each other.
[0012] As a further technical scheme of the utility model, the side plate is connected with a connecting plate, a screw rod is rotatably connected to the connecting plate, and one end of the screw rod is rotatably connected with a rack.
[0013] As a further technical scheme of the utility model, the bottom plate is arranged on the surface of the base plate, and one end of the bottom plate arranged on the base plate is arranged as an arc structure concentric with the connecting shaft.
[0014] The utility model has the advantages as follows:
[0015] (1) In the application, the V-shaped supporting space formed by the two supporting members can quickly position the aluminum bar, and can stably support aluminum bars of different sizes, while limiting the aluminum bar from moving in a non-axial direction, ensuring stable translation of the aluminum bar on a preset path; and the rotatable guide roller guides the aluminum bar, which can convert the sliding friction of the traditional aluminum bar during translation into rolling friction, reducing scratches and indentations on the surface of the aluminum bar, effectively protecting the surface quality of the aluminum bar and improving the pass rate of the product.
[0016] (2) In the application, the connecting shaft and the gear are arranged to drive the two supporting members to rotate in opposite directions, thereby adjusting the inclination angle of the V-shaped structure to be suitable for aluminum bars of different models, and the connecting plate and the screw rod are cooperated to drive the rack to slide, which can ensure the supporting effect of the supporting members after rotation. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The overall structure schematic diagram of the aluminum bar furnace with the translation discharge mechanism is shown;
[0018] Figure 2 The structure schematic diagram in the aluminum bar discharge process is shown;
[0019] Figure 3 The overall structure schematic diagram of the discharge mechanism is shown;
[0020] Figure 4 The structure schematic diagram of the supporting member is shown;
[0021] Figure 5 The cooperation structure schematic diagram of the gear and the rack is shown.
[0022] LEGEND:
[0023] 100, body; 110, aluminum bar; 200, discharge mechanism; 210, bottom support; 211, base plate; 212, side plate; 220, driving member; 230, supporting member; 231, bottom plate; 232, guide roller; 240, connecting shaft; 250, gear; 260, connecting plate; 270, screw rod; 280, rack. DETAILED DESCRIPTION
[0024] In order to make the purpose, technical scheme and advantages of the utility model embodiment more clear, the utility model technical scheme will be described clearly and completely below in combination with embodiments.
[0025] Figure 1 The overall structure schematic diagram of the aluminum bar furnace with the translation discharging mechanism is shown; Figure 1 In the aluminum bar furnace with the translation discharging mechanism, the aluminum bar furnace with the translation discharging mechanism comprises a body 100 and a discharging mechanism 200 arranged at the outlet position of the body 100; wherein the body 100 is used for heating the aluminum bar 110 inside it, and the discharging mechanism 200 is used for assisting the discharging of the aluminum bar 110; it needs to be explained that the discharging mechanism 200 can be arranged not only at the outlet position of the body 100, but also at the inlet position of the body 100, and is used for assisting the feeding of the aluminum bar 110.
[0026] Figure 2 The structure schematic diagram in the discharging process of the aluminum bar 110 is shown; Figure 2 In the embodiment, the discharging mechanism 200 comprises a bottom support 210 and a driving piece 220 installed on the bottom support 210; wherein the bottom support 210 is used for supporting the aluminum bar 110 to be discharged, and the output end of the driving piece 220 abuts against the tail of the aluminum bar 110, and can push the aluminum bar 110 to assist the discharging; it needs to be explained that in the embodiment, the driving piece 220 is realized by a push rod, but in some other embodiments, other transmission structures such as a chain wheel and chain can also be realized; for example, the push rod is installed on the chain, and the driving chain wheel is rotated to drive the chain to push the push rod to push the aluminum bar 110 to translate.
[0027] Figure 3 The overall structure schematic diagram of the discharging mechanism 200 is shown; Figure 3 In the embodiment, the bottom support 210 is of L-shaped structure, comprising a horizontally arranged base plate 211 and a vertically arranged side plate 212, and two groups of supporting pieces 230 are symmetrically arranged above the base plate 211, and a V-shaped supporting space is formed between the two groups of supporting pieces 230; the V-shaped supporting space can quickly position the aluminum bar, and can stably support the aluminum bars of different sizes, and can limit the movement of the aluminum bar in the non-axial direction, and ensure the stable translation of the aluminum bar on the preset path.
[0028] Figure 4 The structure schematic diagram of the supporting piece 230 is shown; Figure 4In the specific implementation, the supporting member 230 comprises a bottom plate 231 arranged along the length direction of the base plate 211 and a plurality of groups of guide rollers 232 arranged equidistantly along the extension path of the bottom plate 231, and the guide rollers 232 are rotationally arranged on the bottom plate 231; here, the rotation can be a rotating shaft, a bearing or the like, and is not specifically limited; the guide rollers 232 can be used to guide the aluminum bar, so as to convert the sliding friction of the traditional aluminum bar in translation into rolling friction, reduce the scratches and indentations on the surface of the aluminum bar, effectively protect the surface quality of the aluminum bar, and improve the qualified rate of the product; the surface of the guide roller 232 is provided with a silica gel coating; the silica gel coating can withstand a high temperature and still maintain stable performance in a high-temperature environment such as aluminum bar furnace discharge, so that the silica gel coating has excellent buffering and damping capacity, and can deform rapidly to absorb a large amount of impact force when the aluminum bar contacts the guide roller, thereby effectively protecting the surface of the aluminum bar.
[0029] Figure 5 A schematic view of the matching structure of the gear 250 and the rack 280 is shown; Figure 5 In the specific implementation, the tail of each bottom plate 231 is provided with a connecting shaft 240 and a gear 250, the connecting shaft 240 is rotationally connected to the side plate 212, the gear 250 is coaxially connected to one end of the connecting shaft 240, the two gears 250 are engaged with each other, the side plate 212 is connected with a connecting plate 260, the connecting plate 260 is rotationally connected with a screw rod 270, one end of the screw rod 270 is rotationally connected with a rack 280, and the rack 280 is slidingly arranged on the side plate 212 and engaged with one of the gears 250; the connecting shaft 240 and the gear 250 are arranged at one end of the bottom plate 231, and form a swing arm in cooperation with the supporting member 230, and when the rack 280 is driven to slide, one of the gears 250 is driven to rotate, and since the two gears 250 are engaged with each other, the two swing arms are driven to rotate in opposite directions, so as to adjust the inclination angle of the V-shaped structure to be suitable for different models of the aluminum bar 110, and the cooperation of the connecting plate 260 and the screw rod 270 can drive the rack 280 to slide, so as to ensure the stability of the rack 280 after movement.
[0030] The bottom plate 231 is arranged on the surface of the base plate 211, and one end of the bottom plate 231 arranged on the surface of the base plate 211 is arranged in an arc shape concentric with the connecting shaft 240; through the structure design, the bottom plate 231 can be prevented from interfering with the surface of the base plate 211 during rotation, and the base plate 211 can be used to support the bottom plate 231.
[0031] The above embodiments are only used to illustrate the technical solutions of the present application, but not limit the same.
Claims
1. An aluminum bar furnace with a translational discharge mechanism, comprising a body (100) and a discharge mechanism (200) arranged at the exit position of the body (100), characterized in that, The discharging mechanism (200) comprises: a bottom support (210); a driving member (220) mounted on the bottom support (210), with an output end of the driving member (220) abutting against a tail of the aluminum bar (110); and two groups of supporting members (230) symmetrically arranged above the bottom support (210) and forming a V-shaped supporting space therebetween, each of the supporting members (230) comprising a bottom plate (231) and a plurality of groups of guide rollers (232) equidistantly arranged along an extension path of the bottom plate (231), with the guide rollers (232) rotationally arranged on the bottom plate (231).
2. The aluminum bar furnace with a translational discharge mechanism according to claim 1, characterized in that: The bottom support (210) is in an L-shaped structure, comprising a horizontally arranged base plate (211) and a vertically arranged side plate (212), with the supporting members (230) arranged above the base plate (211) and the driving member (220) mounted on the side plate (212).
3. The aluminum bar furnace with a translation discharge mechanism according to claim 2, characterized in that: The guide rollers (232) are provided with a silica gel coating on surfaces thereof.
4. The aluminum bar furnace with a translation discharge mechanism according to claim 3, characterized in that: A connecting shaft (240) and a gear (250) are correspondingly arranged at a tail of each of the bottom plates (231), with the connecting shaft (240) rotationally connected to the side plate (212) and the gear (250) coaxially connected to one end of the connecting shaft (240), and the two gears (250) meshing with each other.
5. The aluminum bar furnace with a translational outfeed mechanism according to claim 4, characterized in that: A connecting plate (260) is connected to the side plate (212), with a screw rod (270) rotationally connected to the connecting plate (260) and a rack (280) rotationally connected to one end of the screw rod (270), the rack (280) being slidingly arranged on the side plate (212) and meshing with one of the gears (250).
6. The aluminum bar furnace with a translational discharge mechanism according to claim 5, characterized in that: The bottom plate (231) is arranged in abutment with a surface of the base plate (211), and one end of the bottom plate (231) in abutment with the base plate (211) is arranged in an arc-shaped structure concentric with the connecting shaft (240).