CN221173704U - Pressure monitoring device for reaction kettle - Google Patents

Pressure monitoring device for reaction kettle Download PDF

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Publication number
CN221173704U
CN221173704U CN202321580327.1U CN202321580327U CN221173704U CN 221173704 U CN221173704 U CN 221173704U CN 202321580327 U CN202321580327 U CN 202321580327U CN 221173704 U CN221173704 U CN 221173704U
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China
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pressure monitoring
annular
seat
monitoring device
reaction kettle
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CN202321580327.1U
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Chinese (zh)
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李丹
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Individual
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Individual
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Abstract

The utility model provides a reaction kettle pressure monitoring device which comprises a pressure monitoring probe arranged at the top of a monitoring table, wherein a signal transmitter is arranged at the top of the monitoring table, an annular rotating seat is arranged at the bottom of the monitoring table, an annular fixing seat is arranged at the bottom of the annular rotating seat, a rotating mechanism is arranged in the annular rotating seat and comprises a driving motor, the output end of the driving motor is connected with a driving shaft, a cavity is formed in the annular rotating seat, and the driving shaft extends to the outer wall of the cavity and is provided with a driving gear. The pressure monitoring device of the reaction kettle solves the problems that the existing pressure monitoring device is limited to the adjustment of the height of the pressure monitoring probe, and is inconvenient to carry out rotary motion on the pressure monitoring probe, so that the monitoring efficiency of the pressure monitoring probe on the reaction kettle is reduced.

Description

Pressure monitoring device for reaction kettle
Technical Field
The utility model relates to the technical field of pressure monitoring of reaction kettles, in particular to a pressure monitoring device of a reaction kettle.
Background
The reaction kettle is a common reaction container in the production process of chemical enterprises, the reaction kettle needs to bear great pressure in the production process, the surface of the pressure reaction kettle can be aged after long-time work, and the pressure leakage of the aged reaction kettle can occur in the production process, so that the safety production of enterprises is seriously influenced.
The utility model discloses a reation kettle pressure monitoring device is disclosed to authority bulletin number CN215374322U, through rotatory annular roating seat, utilize the interact power of connecting rod one and connecting rod two to drive the fixed block and move to the direction of keeping away from annular roating seat, make fixed block and reation kettle inner wall laminate mutually, thereby be applicable to the reation kettle of different internal diameters, the pressure monitoring probe on this pressure monitoring device can be adjusted the use height of pressure monitoring probe through hydraulic lift when using, however the device is limited to the regulation to pressure monitoring probe height, be inconvenient for carrying out rotary motion to pressure monitoring probe, make pressure monitoring probe obtain reducing to the monitoring efficiency in the reation kettle.
Therefore, it is necessary to provide a new pressure monitoring device for a reaction kettle to solve the above technical problems.
Disclosure of utility model
In order to solve the technical problems, the utility model provides a pressure monitoring device of a reaction kettle, which is convenient for carrying out rotary motion on a pressure monitoring probe.
The pressure monitoring device of the reaction kettle comprises a pressure monitoring probe arranged at the top of a monitoring table, wherein a signal transmitter is arranged at the top of the monitoring table, an annular rotating seat is arranged at the bottom of the monitoring table, an annular fixing seat is arranged at the bottom of the annular rotating seat, and a rotating mechanism is arranged inside the annular rotating seat.
In order to achieve the effect of rotating the pressure monitoring probe, the utility model provides the pressure monitoring device for the reaction kettle, preferably, the rotating mechanism comprises a driving motor, the output end of the driving motor is connected with a transmission shaft, a cavity is formed in the annular rotating seat, the transmission shaft extends to the outer wall of the cavity and is provided with a driving gear, one side of the cavity, which is positioned in the driving gear, is connected with a driven gear, a rotating shaft is arranged in the driven gear, and the rotating shaft extends out of the top end of the annular rotating seat and is connected with the bottom of the monitoring table.
In order to achieve the effect that the rotation of the monitoring table is firmer and more reliable, the utility model provides the pressure monitoring device for the reaction kettle, preferably, a circular chute is formed in the annular rotary seat, two sliding blocks which are distributed in a bilateral symmetry mode are arranged in the circular chute, a connecting block is connected to the inside of the circular chute and positioned at the top of the sliding block, and the connecting block extends out of the top end of the annular rotary seat and is connected with one side of the bottom of the monitoring table.
In order to achieve the effect that the monitoring device is suitable for reaction kettles with different inner diameters, as the pressure monitoring device for the reaction kettles provided by the utility model, preferably, the top of the annular fixed seat is hinged with a first connecting rod, the top of the annular rotary seat is hinged with a second connecting rod, one side of the top of the second connecting rod is connected with a fixed block, the other end of the first connecting rod is hinged with the other end of the second connecting rod, a through groove is formed in the annular fixed seat, the inner side wall of the through groove is connected with a first saw tooth, the outer wall of the annular rotary seat is connected with a second saw tooth, and the first saw tooth is connected with the second saw tooth.
In order to achieve the effect of adjusting the height of the pressure monitoring probe, the utility model provides the pressure monitoring device of the reaction kettle, preferably, the top of the monitoring table is connected with a hydraulic cylinder, and the ejector rod of the hydraulic cylinder is connected with the bottom of the pressure monitoring probe.
Compared with the prior art, the utility model has the beneficial effects that:
This reation kettle pressure monitoring device drives transmission shaft and drive gear through the driving motor in the annular roating seat and rotates, and drive gear drives driven gear and rotation axis and rotates, drives monitoring platform and the pressure monitoring probe at its top through the rotation axis and carries out rotary motion, makes pressure monitoring probe obtain improving reation kettle's monitoring efficiency, has solved current pressure monitoring device and has only been limited to the regulation to pressure monitoring probe height, is inconvenient for carrying out rotary motion to pressure monitoring probe for pressure monitoring probe obtains the problem that reduces to reation kettle internal monitoring efficiency.
Drawings
FIG. 1 is a schematic structural diagram of a preferred embodiment of a pressure monitoring device for a reaction vessel according to the present utility model;
FIG. 2 is an enlarged schematic view of the utility model at A in FIG. 1;
Fig. 3 is a top view of the structure of the present utility model.
Wherein: 1. a monitoring station; 101. a hydraulic cylinder; 2. a pressure monitoring probe; 3. a signal transmitter; 4. an annular rotating seat; 401. a driving motor; 402. a transmission shaft; 403. a chamber; 404. a drive gear; 405. a driven gear; 406. a rotation shaft; 407. a circular chute; 408. a slide block; 409. a connecting block; 410. a second connecting rod; 411. a fixed block; 412. a second serration; 5. an annular fixing seat; 501. a first connecting rod; 502. a through groove; 503. a first serration.
Detailed Description
The utility model will be further described with reference to the drawings and embodiments.
Referring to fig. 1, fig. 2 and fig. 3 in combination, fig. 1 is a schematic structural diagram of a preferred embodiment of a pressure monitoring device for a reaction kettle according to the present utility model; FIG. 2 is an enlarged schematic view of the utility model at A in FIG. 1; fig. 3 is a top view of the structure of the present utility model. The utility model provides a reation kettle pressure monitoring device, is including setting up in the pressure monitoring probe 2 at monitoring station 1 top, and monitoring station 1 top is provided with signal transmitter 3, and pressure monitoring probe 2 passes through the wire with signal transmitter 3 to be connected, and monitoring station 1 bottom is provided with annular roating seat 4, and annular roating seat 4 bottom is provided with annular fixing base 5, and annular roating seat 4 inside is provided with slewing mechanism.
Referring to fig. 1 and 2, the rotating mechanism comprises a driving motor 401, the output end of the driving motor 401 is connected with a transmission shaft 402, a cavity 403 is formed in an annular rotating seat 4, the transmission shaft 402 extends to the outer wall of the cavity 403 and is provided with a driving gear 404, a driven gear 405 is connected to one side of the driving gear 404 inside the cavity 403, a rotating shaft 406 is arranged inside the driven gear 405, the top end of the rotating shaft 406 extending out of the annular rotating seat 4 is connected with the bottom of a monitoring table 1, the driving motor 401 is externally connected with a power supply, the driving motor 401 in the annular rotating seat 4 drives the transmission shaft 402 to rotate with the driving gear 404, the driving gear 404 drives the driven gear 405 to rotate with the rotating shaft 406, and the pressure monitoring probe 2 at the top of the monitoring table 1 is driven by the rotating shaft 406 to perform rotary motion, so that the monitoring efficiency of the pressure monitoring probe 2 on the reaction kettle is improved.
Referring to fig. 1 and 2, circular chute 407 is provided inside annular rotating seat 4, and circular chute 407 is inside to be provided with two sliders 408 that are bilateral symmetry and distribute, and circular chute 407 is inside, be located the slider 408 top and be connected with connecting block 409, and connecting block 409 extends annular rotating seat 4 top and is connected with monitoring station 1 bottom one side, and when monitoring station 1 rotated, it slides in circular chute 407 to drive slider 408 through connecting block 409, makes the rotatory in-process of monitoring station 1 more firm reliable through slider 408.
Referring to fig. 1 and 3, the top of the annular fixed seat 5 is hinged with a first connecting rod 501, the top of the annular rotating seat 4 is hinged with a second connecting rod 410, one side of the top of the second connecting rod 410 is connected with a fixed block 411, the other end of the first connecting rod 501 is hinged with the other end of the second connecting rod 410, a through groove 502 is formed in the annular fixed seat 5, the inner side wall of the through groove 502 is connected with a first saw tooth 503, the outer wall of the annular rotating seat 4 is connected with a second saw tooth 412, the first saw tooth 503 is connected with the second saw tooth 412, and the fixed block 411 is driven to move in a direction far away from the annular rotating seat 4 by the interaction force of the first connecting rod 501 and the second connecting rod 410, so that the fixed block 411 is attached to the inner wall of a reaction kettle, and the reaction kettle is suitable for reaction kettles with different inner diameters.
Referring to fig. 1 and 3, the top of the monitoring table 1 is connected with a hydraulic cylinder 101, a push rod of the hydraulic cylinder 101 is connected with the bottom of the pressure monitoring probe 2, and the use height of the pressure monitoring probe 2 can be adjusted through the hydraulic cylinder 101, so that the practicability of the pressure monitoring probe 2 is improved.
The implementation principle of the pressure monitoring device of the reaction kettle provided by the embodiment of the utility model is as follows: when the pressure monitoring probe 2 is used, the driving motor 401 in the annular rotating seat 4 drives the transmission shaft 402 and the driving gear 404 to rotate, the driving gear 404 drives the driven gear 405 and the rotating shaft 406 to rotate, and the rotating shaft 406 drives the monitoring table 1 and the pressure monitoring probe 2 at the top of the monitoring table to rotate, so that the monitoring efficiency of the pressure monitoring probe 2 on the reaction kettle is improved.
Standard parts used in the utility model can be purchased from the market, special-shaped parts can be customized according to the description of the specification and the drawings, the specific connection modes of all parts adopt conventional means such as mature bolts, rivets and welding in the prior art, the machinery, the parts and the equipment adopt conventional types in the prior art, the circuit connection adopts conventional connection modes in the prior art, the details are not described herein, and the structures and principles of the parts known to the skilled in the art are known by the skilled artisan through technical manuals or by conventional experimental methods.
Although embodiments of the present utility model have been shown 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 principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides a reation kettle pressure monitoring device which characterized in that: including setting up in pressure monitoring probe (2) at monitoring platform (1) top, monitoring platform (1) top is provided with signal transmitter (3), monitoring platform (1) bottom is provided with annular roating seat (4), annular roating seat (4) bottom is provided with annular fixing base (5), annular roating seat (4) inside is provided with slewing mechanism.
2. The reactor pressure monitoring device of claim 1, wherein: the rotating mechanism comprises a driving motor (401), the output end of the driving motor (401) is connected with a transmission shaft (402), a cavity (403) is formed in the annular rotating seat (4), the transmission shaft (402) extends to the outer wall of the cavity (403) and is provided with a driving gear (404), a driven gear (405) is connected to one side of the driving gear (404) inside the cavity (403), a rotating shaft (406) is arranged inside the driven gear (405), and the top end of the annular rotating seat (4) extends out of the rotating shaft (406) and is connected with the bottom of the monitoring table (1).
3. The reactor pressure monitoring device of claim 1, wherein: circular spout (407) have been seted up to inside annular roating seat (4), circular spout (407) inside is provided with two slider (408) that are bilateral symmetry and distribute, circular spout (407) are inside, be located slider (408) top and be connected with connecting block (409), connecting block (409) extend annular roating seat (4) top and are connected with monitoring platform (1) bottom one side.
4. The reactor pressure monitoring device of claim 1, wherein: the utility model discloses a ring-shaped fixed seat (5) top articulates has head rod (501), ring-shaped rotating seat (4) top articulates has second connecting rod (410), second connecting rod (410) top one side is connected with fixed block (411), the head rod (501) other end articulates with the second connecting rod (410) other end, logical groove (502) have been seted up to ring-shaped fixed seat (5) inside, logical groove (502) inside wall is connected with first sawtooth (503), ring-shaped rotating seat (4) outer wall connection has second sawtooth (412), first sawtooth (503) are connected with second sawtooth (412).
5. The reactor pressure monitoring device of claim 1, wherein: the top of the monitoring table (1) is connected with a hydraulic cylinder (101), and a push rod of the hydraulic cylinder (101) is connected with the bottom of the pressure monitoring probe (2).
CN202321580327.1U 2023-06-20 2023-06-20 Pressure monitoring device for reaction kettle Active CN221173704U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321580327.1U CN221173704U (en) 2023-06-20 2023-06-20 Pressure monitoring device for reaction kettle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321580327.1U CN221173704U (en) 2023-06-20 2023-06-20 Pressure monitoring device for reaction kettle

Publications (1)

Publication Number Publication Date
CN221173704U true CN221173704U (en) 2024-06-18

Family

ID=91464856

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321580327.1U Active CN221173704U (en) 2023-06-20 2023-06-20 Pressure monitoring device for reaction kettle

Country Status (1)

Country Link
CN (1) CN221173704U (en)

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