Degassing unit who possesses diversified rotor and pressure temperature monitoring

文档序号:428518 发布日期:2021-12-24 浏览:21次 中文

阅读说明:本技术 一种具备多方位转子和压力温度监测的除气装置 (Degassing unit who possesses diversified rotor and pressure temperature monitoring ) 是由 傅先强 于 2021-09-14 设计创作,主要内容包括:本发明公开了一种具备多方位转子和压力温度监测的除气装置,包括底座,底座上方设置有支架,支架上方设置有压力表杆和压力表,压力表左侧设置有温度表杆和温度表,温度表左侧设置有旋转装置,旋转装置上部连接设置有进气管道,支架中间设置有处理箱,处理箱内部盛置有铝液,旋转装置下端设置有除气转子,右侧除气转子附近设置有加热保护管,加热保护管内部设置有电加热装置,本发明通过设置的压力表、温度表和多方位转子使得常规除气装置能够具备实时监测温度、压力等数据和提高除气效率等功能。(The invention discloses a degassing device with a multidirectional rotor and pressure and temperature monitoring, which comprises a base, wherein a support is arranged above the base, a pressure gauge rod and a pressure gauge are arranged above the support, a temperature gauge rod and a thermometer are arranged on the left side of the pressure gauge, a rotating device is arranged on the left side of the thermometer, an air inlet pipeline is connected to the upper portion of the rotating device, a processing box is arranged in the middle of the support, aluminum liquid is contained in the processing box, a degassing rotor is arranged at the lower end of the rotating device, a heating protection pipe is arranged near the degassing rotor on the right side, and an electric heating device is arranged in the heating protection pipe.)

1. The utility model provides a possesses diversified rotor and pressure temperature monitoring's degassing unit, includes base (1), its characterized in that: base (1) top is provided with support (2), support (2) top is provided with manometer pole (501) and manometer (5), manometer (5) left side is provided with thermometer pole (601) and thermometer (6), thermometer (6) left side is provided with rotary device (7), rotary device (7) upper portion is connected and is provided with admission line (8), be provided with in the middle of support (2) and handle case (11), it has aluminium liquid (9) to handle case (11) inside splendid attire, rotary device (7) lower extreme is provided with degassing rotor (10), near right side degassing rotor (10) are provided with heating protection tube (3), inside electric heater unit (4) that is provided with of heating protection tube (3).

2. The degasser with multi-orientation rotor and pressure temperature monitoring as claimed in claim 1 wherein: the rotating devices (7) are two, are identical in size and shape and are fixedly arranged with the support (2).

3. The degasser with multi-orientation rotor and pressure temperature monitoring as claimed in claim 1 wherein: the air inlet pipeline (8) is provided with two parts which are connected with the upper part of the rotating device (7), and the air inlet direction is from left to right.

4. The degasser with multi-orientation rotor and pressure temperature monitoring as claimed in claim 1 wherein: the two degassing rotors (10) are also arranged at the lower end of the rotating device (7), each degassing rotor (10) is arranged in three heads, the orientation of each degassing rotor is that one head is arranged at the left lower part and the right lower part, and the degassing rotors are fixedly connected with the main body of the rotating device (7).

5. The degasser with multi-orientation rotor and pressure temperature monitoring as claimed in claim 1 wherein: the temperature meter (6) is set to have a monitoring range of 0-150 ℃, and the pressure meter (5) is set to have a monitoring range of 0-4 kPa.

6. The degasser with multi-orientation rotor and pressure temperature monitoring as claimed in claim 1 wherein: the thermometer (6) and the pressure gauge (5) are fixedly connected with the support (2), the thermometer and the pressure gauge are adjacently arranged in parallel left and right, and the height setting is consistent.

Technical Field

The invention relates to the field of chemical equipment, in particular to a degassing device with a multi-directional rotor and pressure and temperature monitoring functions.

Background

Casting is a relatively early metal hot working process mastered by human beings, and has a history of about six thousand years. Casting is a method of casting liquid metal into a casting cavity adapted to the shape of a part, and cooling and solidifying the liquid metal to obtain the part or a blank, wherein the cast substance is mostly metal (such as copper, iron, aluminum, tin, lead and the like) which is originally in a solid state but is heated to a liquid state, the material of the casting mold can be sand or metal or even ceramic, and the method used can be different according to different requirements. Slag and gas are easily generated in the casting process, and when impurities and gas are not removed and casting is carried out, the casting is easy to generate defects of air holes, looseness and the like, so that the quality of the finished casting is reduced, the working efficiency of people is reduced, and the current use requirements of people cannot be met. Therefore, it is necessary to perform degassing operation of the metal solution using a degassing apparatus of good quality.

However, most degassing devices have the problems that data such as temperature, pressure and the like cannot be monitored in real time and degassing efficiency is not high, and therefore a degassing device with a multi-directional rotor and pressure and temperature monitoring is provided.

Disclosure of Invention

The invention aims to provide a degassing device with a multi-directional rotor and pressure and temperature monitoring, which aims to solve the problems that the degassing device provided in the background technology cannot monitor data such as temperature, pressure and the like in real time and has low degassing efficiency.

The purpose and the effect of the invention are achieved by the following specific technical means:

the utility model provides a gas removal equipment who possesses diversified rotor and pressure temperature monitoring, the on-line screen storage device comprises a base, the base top is provided with the support, the support top is provided with manometer pole and manometer, the manometer left side is provided with thermometer pole and thermometer, the thermometer left side is provided with rotary device, rotary device connects on upper portion and is provided with the admission line, be provided with the processing case in the middle of the support, it has aluminium liquid to handle the incasement portion splendid attire, the rotary device lower extreme is provided with the degassing rotor, near right side degassing rotor is provided with the heating protection tube, the inside electric heater unit that is provided with of heating protection tube.

Furthermore, the rotating devices are provided with two rotating devices, the size and the shape of the rotating devices are all consistent, and the rotating devices and the support are fixedly arranged.

Furthermore, the air inlet pipeline is provided with two positions which are connected with the upper part of the rotating device, and the air inlet direction is from left to right.

Furthermore, the degassing rotors are arranged at the lower end of the rotating device, and each degassing rotor is provided with three heads, faces to the left and right lower parts and is fixedly connected with the rotating device main body.

Furthermore, the temperature meter is set to have a monitoring range of 0-150 ℃, and the pressure meter is set to have a monitoring range of 0-4 kPa.

Furthermore, the thermometer and the pressure gauge are fixedly connected with the support, the thermometer and the pressure gauge are adjacently arranged in parallel left and right, and the height setting is consistent.

Compared with the prior art, the invention has the following advantages:

1. according to the invention, the pressure gauge and the temperature gauge arranged above the support are used for monitoring and displaying two indexes in real time when the operation is carried out in the degassing device, and through the design, the purpose of conveniently and intuitively knowing the temperature and pressure change in the degassing device is achieved.

2. According to the invention, through the multi-head rotor arranged at the lower end of the rotating device, when the degassing device starts to work, the introduced inert gas can enter the molten aluminum through the three-head rotor, so that the degassing operation can be carried out more efficiently, and through the design, the problem of low efficiency in degassing inside the degassing device is solved.

Drawings

FIG. 1 is a full cross-sectional view of the overall construction of the present invention;

FIG. 2 is an enlarged view of a portion of the present invention;

FIG. 3 is an enlarged view of a portion of the present invention;

FIG. 4 is an enlarged view of a portion of the present invention;

in FIGS. 1-4: 1. a base; 2. a support; 3. heating the protection tube; 4. an electric heating device; 5. a pressure gauge; 501. a pressure gauge stem; 6. a thermometer; 601. a thermometer rod; 7. a rotating device; 8. an air intake duct; 9. aluminum liquid; 10. a degassing rotor; 11. and (4) a treatment box.

Detailed Description

It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

Referring to fig. 1 to 4, a gas removal equipment who possesses diversified rotor and pressure temperature monitoring, including base 1, base 1 top is provided with support 2, support 2 top is provided with manometer pole 501 and manometer 5, manometer 5 left side is provided with thermometer pole 601 and thermometer 6, thermometer 6 left side is provided with rotary device 7, 7 upper portion of rotary device connects and is provided with admission line 8, be provided with in the middle of the support 2 and handle case 11, it has aluminium liquid 9 to handle the inside splendid attire of case 11, 7 lower extremes of rotary device are provided with gas removal rotor 10, near right side gas removal rotor 10 is provided with heating protection tube 3, the inside electric heater unit 4 that is provided with of heating protection tube 3.

In a specific implementation, the two rotating devices 7 are provided, have the same size and shape, and are fixedly arranged with the bracket 2.

In the specific implementation, the air inlet duct 8 is provided with two positions, which are connected with the upper part of the rotating device 7, and the air inlet direction is from left to right.

In the embodiment, two degassing rotors 10 are provided, which are also provided at the lower end of the rotating device 7, and each degassing rotor 10 is provided with three heads, which are respectively oriented at the left and right lower ends and are fixedly connected with the main body of the rotating device 7.

In specific implementation, the temperature meter 6 is set to have a monitoring range of 0-150 ℃, and the pressure gauge 5 is set to have a monitoring range of 0-4 kpa.

In the specific implementation, the thermometer 6 and the pressure gauge 5 are both fixedly connected with the support 2, and the thermometer and the pressure gauge are adjacently arranged in parallel from left to right, and the heights of the thermometer and the pressure gauge are consistent.

The invention relates to a use method and a working principle of a degassing device with a multi-directional rotor and pressure and temperature monitoring.

After the device is installed, firstly, the installation and the safety protection of the device are checked, the power supply of the degassing device is connected, the aluminum liquid is placed in the processing box 11, then, the inert gas is introduced into the aluminum liquid in the processing box 11 through the gas inlet pipeline 8, the switch is turned on, the rotating device 7 starts to rotate, the inert gas can enter the aluminum liquid in three directions through the three-head degassing rotor 10, meanwhile, the pressure gauge 5 and the thermometer 6 above the bracket 2 also monitor corresponding indexes in real time, and finally, the problems that the degassing device cannot monitor data such as temperature and pressure in real time and degassing efficiency is not high are solved.

In summary, although the present invention has been described in detail with reference to the foregoing description, it will be apparent to those skilled in the art that modifications may be made to the above-described embodiments or portions thereof, and any modifications, equivalents, improvements and the like made within the spirit and principle of the present invention should be included in the scope of the present invention.

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