Glass reaction kettle for platinum catalyst production
By installing supports and wheels on the glass reactor for platinum catalyst production, combined with a cylinder-driven rotating shaft agitator design, the problems of complex installation and inconvenient cleaning and maintenance of traditional reactors are solved, improving the ease of operation and agitation effect.
Patent Information
- Application Number
- CN202520243780.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Traditional glass reactors used for platinum catalyst production are complex to install, adjust experimental conditions, and change reactants, and are inconvenient to clean and maintain.
A glass reactor for platinum catalyst production was designed. By installing a bracket and wheels on the placement ring, the reactor can be easily fixed and moved. The stirring blades are driven up and down by a cylinder-driven rotating shaft, which improves the ease of operation and stirring effect.
It enables convenient installation and replacement of the reaction vessel, improves experimental efficiency and stirring effect, and simplifies the equipment cleaning and maintenance process.
Smart Images

Figure CN223717143U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of reaction kettle, more specifically, the utility model relates to a glass reaction kettle for platinum catalyst production. BACKGROUND
[0002] The reaction kettle is a comprehensive reaction container, which is widely used in petroleum, chemical industry, rubber, pesticide, dye, medicine, food and metallurgy fields, and is used for completing processes such as vulcanization, nitration, hydrogenation, alkylation, polymerization and condensation.
[0003] The traditional glass reaction kettle for platinum catalyst production has the following disadvantages: the process of installing the traditional glass reaction kettle for platinum catalyst production on a movable frame (usually referred to as a movable frame or stainless steel frame) is relatively complex, researchers may need to frequently adjust experimental conditions or replace reactants in experiments, and it is inconvenient to clean, maintain and replace parts of the equipment, therefore, it needs to be improved. UTILITY MODEL CONTENT
[0004] In order to overcome the shortcomings of the prior art, the utility model provides a glass reaction kettle for platinum catalyst production, which has the advantages of convenient use.
[0005] In order to achieve the above purpose, the utility model provides the following technical scheme: a glass reaction kettle for platinum catalyst production, comprising a placing ring, the outer side of the placing ring is uniformly fixedly installed with a support, the bottom of the support is fixedly installed with a wheel, the upper side of the support is fixedly installed with a fixed bottom ring, the upper side of the fixed bottom ring is uniformly fixedly installed with a connecting block, the upper side of the connecting block is fixedly installed with an elastic block, the upper side of the support is fixedly installed with an outer ring block located outside the fixed bottom ring, the inner side of the outer ring block is movably installed with a threaded ring, the lower side of the threaded ring is fixedly installed with a triangular clasp ring, the triangular clasp ring corresponds to the elastic block, the upper side of the threaded ring is fixedly installed with a rotating knob located above the outer ring block, the diameter of the placing ring is smaller than the diameter of the fixed bottom ring, and the upper side of the placing ring is movably installed with a reaction kettle.
[0006] As a preferred technical scheme of the utility model, the upper side of the reaction kettle is fixedly installed with a base, the upper side of the base is fixedly installed with a gas cylinder, the lower side of the gas cylinder is fixedly installed with an extension rod extending into the interior of the reaction kettle, the outer side of the extension rod is movably sleeved with a rotating shaft, the outer side of the rotating shaft is uniformly fixedly installed with a stirring blade, the interior of the rotating shaft is provided with a movable groove, and the lower side of the extension rod is fixedly installed with a movable block located in the movable groove.
[0007] As a preferred embodiment of this utility model, a platform is fixedly installed inside the reactor, a mounting base is fixedly installed above the platform, a cylinder is fixedly installed above the mounting base, and the bottom end of the rotating shaft extends into the interior of the cylinder.
[0008] As a preferred embodiment of this utility model, an arc-shaped groove is provided on the inner side of the cylinder, and an arc-shaped block is fixedly installed on the outer side of the rotating shaft, with the arc-shaped block corresponding to the arc-shaped groove.
[0009] As a preferred embodiment of this utility model, a handle is fixedly installed on the outer side of the top of the reactor, and the handle is located on both sides of the base.
[0010] As a preferred embodiment of this utility model, a threaded groove is provided on the inner side of the outer ring block, and the threaded groove corresponds to the threaded ring.
[0011] As a preferred embodiment of this utility model, the two ends of the base are fixedly installed with feed pipes extending into the interior of the reactor, and the bottom of the reactor is fixedly installed with a discharge pipe.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] 1. This utility model involves placing the reactor from top to bottom above the placement ring, then rotating the knob to move the triangular retaining ring downwards and compress the elastic block. At this time, the elastic block contracts inwards to fix the reactor. Compared with the traditional glass reactor for platinum catalyst production, this glass reactor for platinum catalyst production, by inserting the reactor and rotating the knob, allows the elastic block to clamp and fix the outer wall of the reactor, making it easier for workers to replace and install the reactor.
[0014] 2. This utility model uses a starting cylinder to drive the rotating shaft to move the arc-shaped block inside the arc-shaped groove, thereby rotating the rotating shaft. The rotating stirring blades stir the inside of the reactor from top to bottom. Compared with traditional glass reactors for platinum catalyst production, this glass reactor for platinum catalyst production improves the stirring effect and accelerates the reaction efficiency by using rotating stirring blades to stir the inside of the reactor from top to bottom. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the bracket of this utility model;
[0017] Figure 3 This is a schematic cross-sectional view of the fixing bottom ring of this utility model;
[0018] Figure 4 forFigure 3 A local enlarged structure schematic view at the middle A;
[0019] Figure 5 A horizontal section schematic view of the reaction kettle of the utility model;
[0020] Figure 6 A Figure 5 A local enlarged structure schematic view at the middle B;
[0021] Figure 7 A schematic view of the utility model rotation shaft.
[0022] In the figure: 1, the placement ring; 2, the support; 3, the wheel; 4, the fixed bottom ring; 5, the connecting block; 6, the elastic block; 7, the outer ring block; 8, the screw groove; 9, the threaded ring; 10, the triangular clasp; 11, the knob; 12, the reaction kettle; 13, the handle; 14, the base; 15, the air cylinder; 16, the telescopic rod; 17, the rotation shaft; 18, the movable groove; 19, the movable block; 20, the stirring blade; 21, the cylinder; 22, the mounting seat; 23, the table body; 24, the arc-shaped groove; 25, the arc-shaped block; 26, the feeding pipe; 27, the discharge pipe. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] As Figures 1 to 7 shown, the utility model provides a kind of glass reaction kettle for platinum catalyst production, including placement ring 1, the outside of placement ring 1 is uniformly fixed and installed with support 2, the bottom of support 2 is fixed and installed with wheel 3, the top of support 2 is fixed and installed with fixed bottom ring 4, the top of fixed bottom ring 4 is uniformly fixed and installed with connecting block 5, the top of connecting block 5 is fixed and installed with elastic block 6, the top of support 2 is fixed and installed with the outer ring block 7 located in the outside of fixed bottom ring 4, the inside of outer ring block 7 is movably installed with threaded ring 9, the bottom of threaded ring 9 is fixed and installed with triangular clasp 10, triangular clasp 10 corresponds with elastic block 6, the top of threaded ring 9 is fixed and installed with knob 11 located in the top of outer ring block 7, the diameter of placement ring 1 is less than the diameter of fixed bottom ring 4, the top of placement ring 1 is movably installed with reaction kettle 12.
[0025] The reaction kettle 12 is placed from top to bottom in the upper part of the placement ring 1, and since the diameter of the placement ring 1 is smaller than the diameter of the fixed bottom ring 4, the reaction kettle 12 can be supported by the placement ring 1, then the rotating knob 11 is rotated to drive the threaded ring 9 to rotate in the internal screw groove 8, drive the triangular clamping ring 10 to move downward, and the triangular clamping ring 10 extrudes the elastic block 6 to deform the elastic block 6, at this time the elastic block 6 shrinks inward to fix the reaction kettle 12.
[0026] By placing the reaction kettle 12 from top to bottom in the upper part of the placement ring 1, then rotating the rotating knob 11 to drive the triangular clamping ring 10 to extrude the elastic block 6, at this time the elastic block 6 shrinks inward to fix the reaction kettle 12, compared with the traditional platinum catalyst production glass reaction kettle, the platinum catalyst production glass reaction kettle inserts the reaction kettle 12, then rotates the rotating knob 11 to make the elastic block 6 clamp and fix the outer wall of the reaction kettle 12, which is convenient for workers to replace and install the reaction kettle.
[0027] Among them, the air cylinder 15 is installed, the air cylinder 15 is fixedly installed below the extension rod 16 extending into the reaction kettle 12, the extension rod 16 is movably sleeved with the rotating shaft 17, the rotating shaft 17 is uniformly fixedly installed with the stirring blade 20, the rotating shaft 17 is provided with the movable groove 18 in the inside, and the movable block 19 is fixedly installed below the extension rod 16 and located in the movable groove 18.
[0028] Start the air cylinder 15, drive the extension rod 16 to move downward, drive the rotating shaft 17 to move downward through the movable block 19, drive the arc-shaped block 25 to move in the arc-shaped groove 24, thereby drive the rotating shaft 17 to rotate, drive the stirring blade 20 to rotate, and the stirring blade 20 rotates to stir upward and downward in the inside of the reaction kettle 12, thereby improving the stirring effect.
[0029] By starting the air cylinder 15, the rotating shaft 17 drives the arc-shaped block 25 to move in the arc-shaped groove 24, thereby driving the rotating shaft 17 to rotate, and the stirring blade 20 rotates to stir upward and downward in the inside of the reaction kettle 12, compared with the traditional platinum catalyst production glass reaction kettle, the platinum catalyst production glass reaction kettle drives the stirring blade 20 to rotate to stir upward and downward in the inside of the reaction kettle 12, thereby improving the stirring effect and accelerating the reaction efficiency.
[0030] Among them, the extension rod 16 is fixedly installed in the inside of the reaction kettle 12, the installation seat 22 is fixedly installed above the table body 23, the cylinder 21 is fixedly installed above the installation seat 22, and the bottom end of the rotating shaft 17 extends to the inside of the cylinder 21.
[0031] The rotating shaft 17 moves up and down in the inside of the cylinder 21, thereby driving the arc-shaped block 25 to move back and forth in the arc-shaped groove 24.
[0032] The inner side of the cylinder 21 is provided with an arc-shaped slot 24, and the outer side of the rotating shaft 17 is fixedly provided with an arc-shaped block 25 corresponding to the arc-shaped slot 24.
[0033] The telescopic rod 16 drives the rotating shaft 17 to move downward through the movable block 19, so that the rotating shaft 17 drives the arc-shaped block 25 to move in the arc-shaped slot 24, thereby driving the rotating shaft 17 to rotate.
[0034] The outer side of the top end of the reaction kettle 12 is fixedly provided with a handle 13 located on both sides of the base 14.
[0035] The handle 13 is arranged on both sides of the reaction kettle 12, so that the staff can conveniently take out the reaction kettle 12 through the handle 13.
[0036] The inner side of the outer ring block 7 is provided with a screw groove 8 corresponding to the threaded ring 9.
[0037] The rotating knob 11 drives the threaded ring 9 to rotate, so that the threaded ring 9 rotates in the screw groove 8 and drives the triangular clasp ring 10 to move downward.
[0038] The two ends of the base 14 are fixedly provided with a feeding pipe 26 extending into the reaction kettle 12, and the bottom of the reaction kettle 12 is fixedly provided with a discharging pipe 27.
[0039] The reaction material is placed in the placing ring 1 through the feeding pipe 26, and the residual material after reaction is conveniently taken out through the discharging pipe 27.
[0040] The working principle and use process of the utility model are as follows:
[0041] The reaction kettle 12 is placed above the placing ring 1 from top to bottom, because the diameter of the placing ring 1 is smaller than that of the fixed bottom ring 4, the reaction kettle 12 can be supported by the placing ring 1, then the rotating knob 11 is rotated to drive the threaded ring 9 to rotate, so that the threaded ring 9 rotates in the screw groove 8 and drives the triangular clasp ring 10 to move downward, the triangular clasp ring 10 moves downward to extrude the elastic block 6, so that the elastic block 6 is deformed, and at this moment, the elastic block 6 is inwardly contracted to fix the reaction kettle 12.
[0042] The cylinder 15 is started to drive the telescopic rod 16 to move downward, so that the telescopic rod 16 drives the rotating shaft 17 to move downward through the movable block 19, so that the rotating shaft 17 drives the arc-shaped block 25 to move in the arc-shaped slot 24, thereby driving the rotating shaft 17 to rotate, so that the rotating shaft 17 drives the stirring blade 20 to rotate, the stirring blade 20 rotates to stir the inside of the reaction kettle 12 upward and downward, thereby improving the stirring effect.
[0043] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0044] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and alterations can be made therein without departing from the spirit and scope of the application, which is defined by the appended claims and their equivalents.
Claims
1. A glass reactor for the production of platinum catalysts, comprising a holding ring (1), characterized in that: The outer side of the placement ring (1) is uniformly fixedly installed with a support (2), the bottom of the support (2) is fixedly installed with a wheel (3), the upper side of the support (2) is fixedly installed with a fixed bottom ring (4), the upper side of the fixed bottom ring (4) is uniformly fixedly installed with a connecting block (5), the upper side of the connecting block (5) is fixedly installed with an elastic block (6), the upper side of the support (2) is fixedly installed with an outer ring block (7) located outside the fixed bottom ring (4), the inner side of the outer ring block (7) is movably installed with a threaded ring (9), the lower side of the threaded ring (9) is fixedly installed with a triangular clasp ring (10) corresponding to the elastic block (6), the upper side of the threaded ring (9) is fixedly installed with a rotating knob (11) located above the outer ring block (7), the diameter of the placement ring (1) is smaller than that of the fixed bottom ring (4), and the upper side of the placement ring (1) is movably installed with a reaction kettle (12).
2. The glass reaction kettle for producing a platinum catalyst according to claim 1, characterized by: The upper side of the reaction kettle (12) is fixedly installed with a base (14), the upper side of the base (14) is fixedly installed with a gas cylinder (15), the lower side of the gas cylinder (15) is fixedly installed with a telescopic rod (16) extending into the reaction kettle (12), the outer side of the telescopic rod (16) is movably sleeved with a rotating shaft (17), the outer side of the rotating shaft (17) is uniformly fixedly installed with a stirring blade (20), the inner side of the rotating shaft (17) is provided with a movable groove (18), and the lower side of the telescopic rod (16) is fixedly installed with a movable block (19) located in the movable groove (18).
3. The glass reactor for producing a platinum catalyst according to claim 2, characterized by: The inner side of the reaction kettle (12) is fixedly installed with a table body (23), the upper side of the table body (23) is fixedly installed with a mounting seat (22), the upper side of the mounting seat (22) is fixedly installed with a cylinder (21), and the bottom end of the rotating shaft (17) extends into the cylinder (21).
4. The glass reaction kettle for producing a platinum catalyst according to claim 3, characterized by: The inner side of the cylinder (21) is provided with an arc-shaped groove (24), and the outer side of the rotating shaft (17) is fixedly installed with an arc-shaped block (25) corresponding to the arc-shaped groove (24).
5. The glass reactor for producing a platinum catalyst according to claim 1, characterized by: The top end of the reaction kettle (12) is fixedly installed with a handle (13) located on both sides of the base (14).
6. The glass reactor for producing a platinum catalyst according to claim 1, characterized by: The inner side of the outer ring block (7) is provided with a screw groove (8) corresponding to the threaded ring (9).
7. The glass reactor for producing a platinum catalyst according to claim 2, characterized by: Both ends of the base (14) are fixedly installed with a feeding pipe (26) extending into the reaction kettle (12), and the bottom of the reaction kettle (12) is fixedly installed with a discharging pipe (27).