Parallel serial production equipment for tunnel furnaces

文档序号:985559 发布日期:2020-11-06 浏览:18次 中文

阅读说明:本技术 一种隧道炉并列串联式生产设备 (Parallel serial production equipment for tunnel furnaces ) 是由 乔会武 于 2020-07-16 设计创作,主要内容包括:本发明公开了一种隧道炉并列串联式生产设备,包括并列的两个隧道炉,每个隧道炉端部设置成型机,隧道炉内部设置传送钢带,隧道炉与成型机之间设置出料装置,出料装置包括挡板和推料板以及驱动推料板移动的驱动结构,挡板位于传送钢带的端部,挡板与传送钢带的输送方向垂直;两个传送钢带之间间隔设置落料口,落料口的正下方设置斜向滑道,斜向滑道的最低处与成型机的放料处连接。实现了一个生产车间配套两条百米隧道炉生产线,六台成型机,采用出料装置进行自动出料,提高了工作效率,节省了人工成本,便于管理,提高了生产利润率。(The invention discloses a parallel serial production device of tunnel furnaces, which comprises two parallel tunnel furnaces, wherein a forming machine is arranged at the end part of each tunnel furnace, a conveying steel belt is arranged in each tunnel furnace, a discharging device is arranged between each tunnel furnace and the forming machine, the discharging device comprises a baffle plate, a material pushing plate and a driving structure for driving the material pushing plate to move, the baffle plate is positioned at the end part of the conveying steel belt, and the baffle plate is vertical to the conveying direction of the conveying steel belt; and blanking ports are arranged between the two conveying steel belts at intervals, an inclined slideway is arranged right below the blanking ports, and the lowest part of the inclined slideway is connected with a discharging part of the forming machine. The supporting two hundred meters tunnel furnace production lines of a workshop and six forming machines are realized, and the discharging devices are adopted to automatically discharge, so that the working efficiency is improved, the labor cost is saved, the management is convenient, and the production profit rate is improved.)

1. A parallel serial production device of tunnel furnaces is characterized by comprising two parallel tunnel furnaces, wherein a forming machine is arranged at the end part of each tunnel furnace, a conveying steel belt is arranged in each tunnel furnace, a discharging device is arranged between each tunnel furnace and the forming machine, the discharging device comprises a baffle plate, a material pushing plate and a driving structure for driving the material pushing plate to move, the baffle plate is positioned at the end part of the conveying steel belt, and the baffle plate is vertical to the conveying direction of the conveying steel belt; and blanking ports are arranged between the two conveying steel belts at intervals, an inclined slideway is arranged right below the blanking ports, and the lowest part of the inclined slideway is connected with a discharging part of the forming machine.

2. The parallel serial production equipment of claim 1, wherein the two tunnel furnaces are arranged in parallel in a horizontal direction, the conveying steel belt comprises a left steel belt and a right steel belt, the pushing plate comprises a left pushing plate and a right pushing plate, the left pushing plate is positioned on the outer side of the left steel belt, and the right pushing plate is positioned on the outer side of the right steel belt.

3. The parallel serial production equipment of the tunnel furnace according to claim 2, further comprising a mounting table, wherein the driving structure comprises a driving cylinder fixedly mounted on the mounting table, the driving cylinder comprises a left cylinder and a right cylinder, and a cylinder shaft of the left cylinder is vertically connected with the outer side of the left material pushing plate; the cylinder shaft of the right cylinder is vertically connected with the outer side of the right material pushing plate; the left air cylinder drives the left material pushing plate to horizontally move above the left steel belt; and the right cylinder drives the right material pushing plate to horizontally move above the right steel belt.

4. The parallel serial production equipment of the tunnel furnace according to claim 2, further comprising a mounting table, wherein a bearing seat is arranged on the mounting table, a transmission screw is rotatably mounted on the bearing seat through a bearing along the horizontal direction, and the transmission screw is perpendicular to the conveying direction of the conveying steel belt; the driving structure comprises a driving motor fixedly arranged on the mounting table; a motor shaft of the driving motor is connected with the transmission lead screw; the outer side of the baffle is provided with a threaded sleeve which is sleeved on the transmission screw rod in a threaded connection mode; one end of the left material pushing plate is fixedly connected with the left end of the baffle, and one end of the right material pushing plate is fixedly connected with the right end of the baffle; the left material pushing plate, the right material pushing plate and the baffle form a U-shaped structure.

5. The production facility in series of parallel tunnel furnaces as claimed in claim 1, wherein the two tunnel furnaces are arranged in a vertical direction.

Technical Field

The invention relates to the technical field of tunnel furnaces, in particular to parallel serial production equipment of tunnel furnaces.

Background

At present, the tunnel furnace production equipment is matched with a hundred-meter tunnel furnace, three forming machines and a conveying belt in a production workshop, so that the labor cost is high, and the working efficiency is not high.

Disclosure of Invention

The invention aims to provide parallel serial production equipment for tunnel furnaces.

In order to achieve the purpose, the invention provides the following technical scheme: a parallel serial production device for tunnel furnaces comprises two parallel tunnel furnaces, wherein a forming machine is arranged at the end part of each tunnel furnace, a conveying steel belt is arranged in each tunnel furnace, a discharging device is arranged between each tunnel furnace and the forming machine, the discharging device comprises a baffle plate, a material pushing plate and a driving structure for driving the material pushing plate to move, the baffle plate is positioned at the end part of the conveying steel belt, and the baffle plate is vertical to the conveying direction of the conveying steel belt; and blanking ports are arranged between the two conveying steel belts at intervals, an inclined slideway is arranged right below the blanking ports, and the lowest part of the inclined slideway is connected with a discharging part of the forming machine.

Furthermore, the two tunnel furnaces are arranged in parallel along the horizontal direction, the conveying steel belt comprises a left steel belt and a right steel belt, the material pushing plate comprises a left material pushing plate and a right material pushing plate, the left material pushing plate is located on the outer side of the left steel belt, and the right material pushing plate is located on the outer side of the right steel belt.

The driving structure comprises a driving cylinder fixedly arranged on the mounting table, the driving cylinder comprises a left cylinder and a right cylinder, and a cylinder shaft of the left cylinder is vertically connected with the outer side of the left material pushing plate; the cylinder shaft of the right cylinder is vertically connected with the outer side of the right material pushing plate; the left air cylinder drives the left material pushing plate to horizontally move above the left steel belt; and the right cylinder drives the right material pushing plate to horizontally move above the right steel belt.

The conveying device further comprises an installation platform, wherein a bearing seat is arranged on the installation platform, a transmission lead screw is rotatably installed on the bearing seat along the horizontal direction through a bearing, and the transmission lead screw is vertical to the conveying direction of the conveying steel belt; the driving structure comprises a driving motor fixedly arranged on the mounting table; a motor shaft of the driving motor is connected with the transmission lead screw; the outer side of the baffle is provided with a threaded sleeve which is sleeved on the transmission screw rod in a threaded connection mode; one end of the left material pushing plate is fixedly connected with the left end of the baffle, and one end of the right material pushing plate is fixedly connected with the right end of the baffle; the left material pushing plate, the right material pushing plate and the baffle form a U-shaped structure.

Further, the two tunnel furnaces are arranged in a vertical direction.

The invention has the following technical effects: the supporting two hundred meters tunnel furnace production lines of a workshop and six forming machines are realized, and the discharging devices are adopted to automatically discharge, so that the working efficiency is improved, the labor cost is saved, the management is convenient, and the production profit rate is improved.

Drawings

FIG. 1 is a schematic side view of the apparatus of example 1;

FIG. 2 is a schematic upper view of the apparatus of example 1;

FIG. 3 is a schematic upper view of the apparatus of example 2.

Reference numerals: 1. a tunnel furnace; 11. an installation table; 2. a forming machine; 3. conveying a steel belt; 31. a left steel belt; 32. a right steel band; 33. producing a product; 4. a material pushing plate; 41. a left pusher plate; 42. a right pusher plate; 43. a left cylinder; 44. a right cylinder; 5. a blanking port; 51. an oblique slideway; 6. a baffle plate; 7. a bearing seat; 71. a drive screw; 73. a drive motor; 74. and (4) a threaded sleeve.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

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