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不锈钢反应釜的溢液保护装置

发布时间:2020-12-03 10:09:07      点击:

不锈钢反应釜在进行操作的过程中,其溢液保护装置包括了筒体、设置在筒体下侧的排液口,设置在筒体下侧的排液口,设在筒体上端面中心位置的对接导管,在简体上端面开设的出气孔,设置在对接导管正下方的柱状浮体,用于封堵上述对接导管下端口的弹性垫圈。

其对接导管的一端连接其反应釜的溢流口,在进行操作的过程中其另外-端会延伸到筒体内;弹性垫圈设在柱状浮体的上端面。溢液保护装置,不但能暂存溢液,而且能在范围内阻止溢流,反馈控制加料装置或发出报警信号。

它的工艺要求通常情况下会包括其反应釜的容积、工作压力、工作温度、工作介质及腐蚀情况、传热面积、搅拌形式、转速及功率、配装那些接管等几项内容。这些要求一般以表格及示意图形式反映在工艺部提出的设备设计要求单中。

不锈钢反应釜在进行机械设计的过程中,先要对设计要求单中的各项内容进行分析,通常压力、温度、介质腐蚀等是反应釜机械设计时考虑的主要因素。如果是存在若两个以上矛盾的复杂过程的话,就要找出它的主要矛盾。在一般情况下,压力是设备设计中的主要矛盾,它往往对设备的材料选择,结构和形状的确定起决定作用,因此,要先考虑。

在使用过程中该反应釜主要是通过其电加热装置将其导热油的温度升高到所需要的温度,使用时会通过其导热油油浴将热量传递给釜体内物料,这样就可以达到其物料的反应温度了。在运行不锈钢反应釜的过程中需要合理的利用其热能,在进行使用的过程中选择其I艺操作条件,这样就可以加强其保温措施,提高其传热效率,这样就可以减少热损失,这样余热或反应后产生的热能综合利用。其耐腐蚀以及耐高温,整个设备在进行使用的过程中都是很方便的,其设备主要是采用其电热棒加热夹套里面的导热油,这样就会使得导热有温度升到其所需要的温度。在进行设计的过程中是很紧凑且简洁的,其设备在进行操作的过程中简单,实现其加热以及制冷的反应,然后在机型搅拌,这样和设而在生产效率高且产率好,成本少。
不锈钢储罐
During the operation of the stainless steel reactor, its overflow protection device includes a cylinder, a liquid discharge port arranged on the lower side of the cylinder body, and a liquid discharge port arranged on the lower side of the cylinder body, which is located at the center of the upper end surface of the cylinder body The butt joint pipe of the Simplified Chinese has an air outlet opening on the upper end surface, and a columnar floating body directly below the butt joint pipe is used to seal the elastic gasket of the lower port of the butt joint pipe.

One end of the docking pipe is connected to the overflow port of the reactor, and the other end will extend into the cylinder during operation; the elastic gasket is arranged on the upper end surface of the cylindrical floating body. The overflow protection device can not only temporarily store the overflow, but also prevent the overflow within the range, feedback control the feeding device or send out an alarm signal.

Its process requirements usually include the volume of the reactor, working pressure, working temperature, working medium and corrosion conditions, heat transfer area, stirring form, speed and power, and the fittings of those connecting pipes. These requirements are generally reflected in the equipment design requirements list proposed by the Process Department in the form of tables and schematic diagrams.

In the process of mechanical design of the stainless steel reactor, the contents of the design requirement list must be analyzed first. Usually, pressure, temperature, medium corrosion, etc. are the main factors considered in the mechanical design of the reactor. If there is a complex process involving two or more contradictions, the main contradiction must be found. In general, pressure is the main contradiction in equipment design. It often determines the material selection, structure and shape of the equipment, so it must be considered first.

During use, the reactor is mainly used to raise the temperature of its heat transfer oil to the required temperature through its electric heating device. When used, heat is transferred to the materials in the reactor through its heat transfer oil bath, so that it can reach its The reaction temperature of the material is up. In the process of operating the stainless steel reactor, it is necessary to make reasonable use of its thermal energy. In the process of using it, select its operating conditions, so that it can strengthen its insulation measures and improve its heat transfer efficiency, so as to reduce heat loss. Comprehensive utilization of waste heat or heat generated after reaction. It is resistant to corrosion and high temperature, and the whole equipment is very convenient in the process of use. The equipment mainly uses its electric heating rod to heat the heat transfer oil in the jacket, which will make the heat conduction temperature rise to the required level temperature. The design process is very compact and concise. The equipment is simple in the process of operation. It realizes its heating and cooling reactions, and then stirs in the model. This combination of design has high production efficiency and good yield. Low cost.

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