Refractory material cross-linking device

文档序号:1683011 发布日期:2020-01-03 浏览:48次 中文

阅读说明:本技术 一种耐火材料交联装置 (Refractory material cross-linking device ) 是由 李明震 于 2019-10-23 设计创作,主要内容包括:本发明提供一种耐火材料交联装置,涉及耐火材料交联技术领域,包括控制室以及设置于控制室内的交联腔,控制室内设置有溶液池和加热器,交联腔包括腔体以及设置于腔体内的第一辊和第二辊,腔体至少有一部分为弧形,第一辊上设置有第一转轴、第一凸齿以及用于驱动第一转轴转动的驱动电机,第二辊上设置有第二转轴以及与第一凸齿连接的第二凸齿,第二转轴通过连接杆与第一转轴连接,腔体上设置有通孔。本发明一种耐火材料交联装置结构简单,工作稳定,可以对多组酶进行固定,酶的固定效果好,且可以控制酶的固定速率,使得交联效果更好。(The invention provides a refractory material crosslinking device, which relates to the technical field of refractory material crosslinking and comprises a control chamber and a crosslinking cavity arranged in the control chamber, wherein a solution pool and a heater are arranged in the control chamber, the crosslinking cavity comprises a cavity body, a first roller and a second roller which are arranged in the cavity body, at least one part of the cavity body is arc-shaped, a first rotating shaft, a first convex tooth and a driving motor used for driving the first rotating shaft to rotate are arranged on the first roller, a second rotating shaft and a second convex tooth connected with the first convex tooth are arranged on the second roller, the second rotating shaft is connected with the first rotating shaft through a connecting rod, and a through hole is formed in the cavity body. The refractory material crosslinking device is simple in structure, stable in work, capable of fixing a plurality of groups of enzymes, good in enzyme fixing effect, and capable of controlling the enzyme fixing rate, so that the crosslinking effect is better.)

1. A refractory cross-linking apparatus, characterized by: comprises a control chamber (1) and a cross-linking cavity (2) arranged in the control chamber (1), a solution pool (11) and a heater (12) are arranged in the control chamber (1), the crosslinking cavity (2) comprises a cavity (21) and a first roller (22) and a second roller (23) which are arranged in the cavity (21), at least one part of the cavity (21) is arc-shaped, the first roller (22) is provided with a first rotating shaft (221), a first convex tooth (222) and a driving motor (223) for driving the first rotating shaft (221) to rotate, the second roller (23) is provided with a second rotating shaft (231) and a second convex tooth (232) connected with the first convex tooth (222), the second rotating shaft (231) is connected with the first rotating shaft (221) through a connecting rod (24), and a through hole (211) is formed in the cavity (21).

2. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: and a sensing electrode is arranged on the second convex tooth (232).

3. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the number of the heaters (12) is at least one.

4. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the heater (12) is arranged at the joint of two adjacent inner walls of the control chamber (1).

5. The apparatus for cross-linking a refractory material as set forth in claim 4, wherein: at least one part of the heater (12) is arc-shaped.

6. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the number of the second rollers (23) is at least one.

7. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the first convex teeth (222) are rubber pieces.

8. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the number of the through holes (211) is at least one.

9. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: and a chamber door (13) is arranged at the end part of the control chamber (1).

10. The apparatus for cross-linking a refractory material as claimed in claim 1, wherein: the radius of the cavity (21) is greater than the sum of the radius of the first roller (22) and the diameter of the second roller (23).

Technical Field

The invention relates to the technical field of refractory material crosslinking,

in particular, the present invention relates to a refractory cross-linking apparatus.

Background

In recent years, functional materials have been developed for various applications according to their properties, and as an example thereof, attempts have been made to visualize mechanical stresses such as compression, tension, and bending to which the materials are subjected.

Further, the structure of the functional refractory material can be synthesized into a desired form of molecular skeleton, and since the structural change is small, the process of non-radiative deactivation is slow, high luminous efficiency is exhibited, and the like, and there are many advantages in terms of physical properties. On the other hand, it is considered that, similarly to inorganic materials, when the molecular skeleton which becomes the basic structure is rigid, it is difficult to change the physical properties resulting from the flexibility of the structure, and the materials stay in the state where the physical properties are static, and therefore, it is necessary to adopt a crosslinking technique, and the refractory material is chemically inert and stable, and it is necessary to perform production by using bio-enzyme catalytic crosslinking.

The cross-linking fixing method mainly comprises a gas phase and a liquid phase and a gas-liquid mixing mode, in the prior art, carbon paste is used for cross-linking fixing of a biological enzyme catalyst to be an immobilized carrier, an optical fiber electrochemical luminescence glucose biological sensing electrode is manufactured, an enzyme catalytic reaction, luminol electrochemical oxidation and a chemiluminescence reaction are carried out on the surface of the electrode at the same time, only one enzyme on the sensing electrode can be fixed at a time, and the efficiency is low.

Therefore, in order to solve the above problems, it is necessary to design a reasonable refractory cross-linking device for the implementation of refractory visualization attempts.

Disclosure of Invention

The invention aims to provide a refractory material cross-linking device which is simple in structure, stable in work, capable of fixing a plurality of groups of enzymes, good in enzyme fixing effect, and capable of controlling the enzyme fixing rate and enabling the cross-linking effect to be better.

In order to achieve the purpose, the invention is realized by adopting the following technical scheme:

the utility model provides a refractory material cross-linking device, includes the control room and set up in cross-linking chamber in the control room, be provided with solution pond and heater in the control room, cross-linking chamber include the cavity and set up in first roller and second roller in the cavity, the cavity has at least partly to be the arc, be provided with first pivot, first dogtooth on the first roller and be used for the drive first pivot pivoted driving motor, be provided with the second pivot on the second roller and with the second dogtooth that first dogtooth is connected, the second pivot pass through the connecting rod with first pivot is connected, be provided with the through-hole on the cavity.

Preferably, the first roller is a fixed roller.

Preferably, the second teeth are provided with sensing electrodes.

Preferably, the number of the heaters is at least one.

Preferably, the heater is disposed at a junction between two adjacent inner walls of the control chamber.

Preferably, at least a portion of the heater is curved.

Preferably, the number of the second rollers is at least one.

Preferably, the first convex teeth are rubber members.

Preferably, the number of the through holes is at least one.

Preferably, the control chamber is provided with a chamber door at an end thereof.

Preferably, the radius of the cavity is larger than the sum of the radius of the first roller and the diameter of the second roller.

The refractory material crosslinking device has the beneficial effects that: simple structure, job stabilization can fix multiunit enzyme, and the fixed effectual of enzyme, and can control the fixed rate of enzyme for the cross-linking effect is better.

Drawings

FIG. 1 is a schematic front view of one embodiment of the present invention;

FIG. 2 is a schematic side view of one embodiment of the present invention;

in the figure: 1. the device comprises a control chamber, 11, a solution pool, 12, a heater, 13, a door, 2, a cross-linking cavity, 21, a cavity, 211, a through hole, 22, a first roller, 221, a first rotating shaft, 222, a first convex tooth, 223, a driving motor, 23, a second roller, 231, a second rotating shaft, 232, a second convex tooth, 24 and a connecting rod.

Detailed Description

The invention is further described below with reference to the accompanying drawings and examples.

At present, the structure of a functional refractory material can be synthesized into a desired form of molecular skeleton, and since the structural change is small, the process of non-radiative deactivation is slow, and high luminous efficiency is exhibited, and the functional refractory material has many advantages in terms of physical properties. On the other hand, it is considered that, similarly to inorganic materials, when the molecular skeleton which becomes the basic structure is rigid, it is difficult to change the physical properties resulting from the flexibility of the structure, and the materials stay in the state where the physical properties are static, and it is necessary to adopt a crosslinking technique, and the refractory material has chemical inertness and stability, and it is necessary to perform production by using bio-enzyme catalytic crosslinking

The cross-linking fixing method mainly comprises a gas phase and a liquid phase and a gas-liquid mixing mode, in the prior art, carbon paste is used for cross-linking fixing of a biological enzyme catalyst to be an immobilized carrier, an optical fiber electrochemical luminescence glucose biological sensing electrode is manufactured, an enzyme catalytic reaction, luminol electrochemical oxidation and a chemiluminescence reaction are carried out on the surface of the electrode at the same time, only one enzyme on the glucose sensing electrode can be fixed at each time, and the efficiency is low.

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