Turbine flow and temperature integrated sensor with protection
By designing protective components to physically protect the integrated turbine flow and temperature sensor, the problem of sensor susceptibility to damage is solved, and the stability and adaptability of the sensor are protected.
Patent Information
- Application Number
- CN202422326477.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-09-24
AI Technical Summary
During the installation of traditional turbine flow and temperature integrated sensors, the external sensor housing is exposed, making it susceptible to mechanical impact or collision during use, which can damage the sensor and affect measurement accuracy and service life.
A protective component was designed, including a bottom mounting plate, an adjusting rod, an adjusting seat, a shielding cylinder, and a protective rubber pad. Through threaded connections and an elastic limiting structure, it achieves physical protection for the sensor and is adaptable to sensors of different sizes.
It effectively prevents the sensor from being subjected to mechanical shock and vibration, extends its service life, and is compatible with sensors of different sizes, ensuring measurement accuracy and stability.
Smart Images

Figure CN223756073U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to turbine flow, temperature integral type sensor field, concretely relates to a turbine flow, temperature integral type sensor with protection. BACKGROUND
[0002] Turbine flow, temperature integral type sensor is a kind of equipment integrated turbine flowmeter and temperature sensor, it is used to measure the flow and temperature of fluid simultaneously.This kind of integral design sensor has the following characteristics and advantages:1, the flow measurement and temperature measurement function are integrated in one device, reduce installation space and complexity, facilitate in narrow environment use;2, turbine flowmeter measures fluid flow by the rotation of turbine, usually with high precision, suitable for strict flow measurement application;3, can real-time monitoring the flow and temperature of fluid, facilitate to the overall analysis of fluid state, suitable for industrial process monitoring and control and other advantages.
[0003] In actual assembly use, when the traditional turbine flow, temperature integral type sensor is installed and monitored on equipment, the external sensor shell is in bare state, so that it is easily subjected to mechanical impact or collision in use, resulting in that sensor shell and sensor components in its interior are damaged, further affect its normal work, and the damaged sensor can cause measurement precision to decline, produce wrong data, affect the control and decision of system;Therefore, a turbine flow with protection is provided to solve the above problems. UTILITY MODEL CONTENT
[0004] In view of one or more of the above defects or improvement needs of prior art, the utility model provides a turbine flow, temperature integral type sensor with protection, which has the advantages of physical protection for turbine flow, temperature integral type sensor, wide adaptation range, and can be applied to turbine flow, temperature integral type sensors of different sizes.
[0005] To achieve the above object, the utility model provides a turbine flow, temperature integral type sensor with protection, which comprises an industrial equipment body and a turbine flow, temperature integral type sensor body;
[0006] A protection assembly is further assembled on the industrial equipment body.
[0007] The protection assembly comprises a bottom mounting plate mounted on the industrial equipment body;The upper end surface of the bottom mounting plate is provided with four adjusting light rods in rectangular shape, and the four adjusting light rods are vertically arranged and surround the turbine flow, temperature integral type sensor body.
[0008] Four adjusting light poles are arranged outside the adjusting seat, and four limiting compression springs are arranged outside the adjusting light poles, the bottom of the limiting compression spring is connected with the bottom mounting plate, and the top of the limiting compression spring is in abutment with the bottom of the adjusting seat.
[0009] The bottom of the adjusting seat is detachably provided with a shielding cylinder.
[0010] As a further improvement of the utility model, the shielding cylinder is a cylindrical cylinder and is provided with an opening at the bottom, the shielding cylinder covers the turbine flow and temperature integrated sensor body, and a protective rubber pad is attached to the inner top wall of the shielding cylinder.
[0011] As a further improvement of the utility model, a threaded hole is formed in the adjusting seat, a threaded line matched with the adjusting seat is engraved on the outer wall of the top of the shielding cylinder, and the shielding cylinder is screwed on the adjusting seat.
[0012] As a further improvement of the utility model, a through hole is formed in the bottom mounting plate along the center, the through hole is larger than the size of the turbine flow and temperature integrated sensor body and can pass through the turbine flow and temperature integrated sensor body, the top of the four adjusting light poles is commonly supported by a top plate, and a plurality of screw holes are formed in the bottom of the bottom mounting plate.
[0013] As a further improvement of the utility model, two adjusting light poles on the same side are arranged in a group and are commonly sleeved with a clamping seat outside, through holes are formed in the two clamping seats and can pass through the adjusting light poles, a clamping groove is formed in one side of the through hole of the clamping seat, a tension bolt is threadedly connected to each clamping seat, and the tension bolt penetrates the clamping groove adjacent to the clamping seat.
[0014] Overall, compared with the prior art, the above technical scheme conceived by the utility model has the beneficial effects including:
[0015] The utility model discloses a turbine flow temperature integral type sensor with protection, in actual use, through the mutual cooperation of multiple structures in the protection assembly that is arranged, the user makes the adjustment seat can drive the shielding cylinder synchronous movement downward by the downward adjustment, at this moment, the user drives the shielding cylinder to move downward until the turbine flow temperature integral type sensor body is covered, thereby under the common protection of the adjustment light pole and the shielding cylinder, the turbine flow temperature integral type sensor body in the shielding cylinder can avoid the physical impact of outside, thereby realize the physical protection to the turbine flow temperature integral type sensor body, compared with the traditional bare placement turbine flow temperature integral type sensor body, the protection assembly that the application sets up can provide the physical protection for the turbine flow temperature integral type sensor body, prevents mechanical impact, vibration and other possible damage environmental factor, prolongs the service life of turbine flow temperature integral type sensor body.
[0016] The utility model discloses a turbine flow temperature integral type sensor with protection, through the elastic limit between the adjustment seat and the limit compression spring of sliding setting in the protection assembly and the height limit of clamping seat to adjustment seat, make in actual use, the protection assembly of the application can realize the physical protection to the turbine flow temperature integral type sensor body of different size height, thereby can according to the flexible adjustment of turbine flow temperature integral type sensor body of different size, ensure no matter turbine flow temperature integral type sensor body installation height, can get effective protection. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is whole installation structure schematic drawing of the utility model;
[0018] Figure 2 It is whole installation structure schematic drawing of the utility model;
[0019] Figure 3 It is whole installation structure schematic drawing of the utility model;
[0020] Figure 4 It is whole installation structure schematic drawing of the utility model;
[0021] In all drawings, same reference signs represent same technical features, specifically: 1, industrial equipment body;2, turbine flow temperature integral type sensor body;3, protection assembly;31, bottom mounting plate;32, through hole;33, adjustment light pole;34, limit compression spring;35, adjustment seat;36, shielding cylinder;37, protection rubber pad;38, top plate;39, clamping seat;310, clamping groove;311, loose bolt. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be apparently and completely described in connection with 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 of ordinary skill in the art without creative labor fall within the scope of the utility model.
[0023] Embodiment
[0024] By Figures 1-4 A kind of turbine flow, temperature integrated sensor with protection is given, including industrial equipment body 1 and turbine flow, temperature integrated sensor body 2;Turbine flow, temperature integrated sensor body 2 is assembled on industrial equipment body 1,
[0025] Industrial equipment body 1 is also equipped with protective assembly 3;
[0026] Wherein protective assembly 3 includes the bottom mounting plate 31 installed on industrial equipment body 1;Four adjusting light poles 33 are vertically arranged and surrounded in the turbine flow, temperature integrated sensor body 2, and the upper end surface of the bottom mounting plate 31 is provided with a rectangle;
[0027] Four adjusting light poles 33 are commonly slidably provided with adjusting seat 35, and four limiting compression springs 34 are further sleeved outside four adjusting light poles 33, the bottom of four limiting compression springs 34 is connected with the bottom mounting plate 31, and the top thereof is abutted with the bottom of adjusting seat 35;
[0028] Adjusting seat 35 bottom is detachably provided with shielding cylinder 36.
[0029] In actual use in the embodiment, the user drives the shielding cylinder 36 to move downward until the turbine flow, temperature integrated sensor body 2 is covered by the shielding cylinder 36, so that the turbine flow, temperature integrated sensor body 2 in the shielding cylinder 36 can be protected from physical impact from the outside under the protection of adjusting light pole 33 and shielding cylinder 36, thereby realizing physical protection of the turbine flow, temperature integrated sensor body 2.
[0030] Specifically, refer to Figures 2-4The shielding cylinder 36 is a cylindrical cylinder with an open bottom, and the turbine flow and temperature integrated sensor body 2 is covered in the shielding cylinder 36. A protective rubber pad 37 is attached to the inner top wall of the shielding cylinder 36.
[0031] In actual use, the user can move the adjusting seat 35 downward to drive the shielding cylinder 36 to move downward synchronously. The user can cover the turbine flow and temperature integrated sensor body 2 by moving the shielding cylinder 36 downward until the turbine flow and temperature integrated sensor body 2 is covered. The turbine flow and temperature integrated sensor body 2 in the shielding cylinder 36 is protected from physical impact from the outside world under the protection of the adjusting light rod 33 and the shielding cylinder 36, thereby achieving physical protection of the turbine flow and temperature integrated sensor body 2.
[0032] Further, the protective rubber pad 37 can further improve the protection of the turbine flow and temperature integrated sensor body 2, and prevent the shielding cylinder 36 from damaging the turbine flow and temperature integrated sensor body 2 when it is pressed to cover.
[0033] Specifically, referring to Figure 3 A threaded hole is formed in the adjusting seat 35, and a threaded line is formed on the top outer wall of the shielding cylinder 36. The shielding cylinder 36 is threadedly connected to the adjusting seat 35.
[0034] In actual use, different sizes of turbine flow and temperature integrated sensor bodies 2 require different sizes of shielding cylinders 36 for covering and protection. Therefore, in the preferred embodiment, the shielding cylinder 36 and the adjusting seat 35 are threadedly connected, so that the user can freely replace the shielding cylinder 36 according to the size of the turbine flow and temperature integrated sensor body 2, thereby ensuring that the turbine flow and temperature integrated sensor body 2 of different sizes can be completely covered by the shielding cylinder 36. The threadedly connected adjusting seat 35 and shielding cylinder 36 can also be quickly disassembled, so that the shielding cylinder 36 is more portable when it is replaced and repaired.
[0035] It should be noted that the thread connection between the adjusting seat 35 and the shielding cylinder 36 is a conventional connection method, so the thread lines between the two are not shown in the embodiment drawings of the application.
[0036] Specifically, referring to Figures 1-3 A through hole 32 is formed in the bottom mounting plate 31 along the center, and the through hole 32 is larger than the size of the turbine flow and temperature integrated sensor body 2 and can pass through the turbine flow and temperature integrated sensor body 2. The four adjusting light rods 33 have a top plate 38 supported at the top. A plurality of screw holes are formed in the bottom of the bottom mounting plate 31.
[0037] In actual use, the through hole 32 formed in the bottom mounting plate 31 is used for the turbine flow and temperature integrated sensor body 2 to pass through, and the screw hole formed in the bottom of the bottom mounting plate 31 is used for cooperating with a screw pin to realize the installation on the industrial equipment body 1; in the preferred embodiment, a hole groove corresponding to the screw hole of the bottom mounting plate 31 is formed in the industrial equipment body 1.
[0038] Specifically, referring to Figures 1-3 , the two adjacent adjusting light poles 33 on the same side are arranged in a group, and the outer parts of the two adjusting light poles 33 are jointly sleeved with clamping seats 39; the two ends of the two clamping seats 39 are both provided with through holes, and the two clamping seats 39 are used for the adjusting light poles 33 to pass through; the through hole of the clamping seat 39 is also provided with a clamping groove 310 on one side; a tension bolt 311 is threadedly connected to each clamping seat 39, and the tension bolt 311 penetrates the clamping groove 310 adjacent to the tension bolt 311.
[0039] In the embodiment, when the shielding cylinder 36 covers the turbine flow and temperature integrated sensor body 2, the user rotates the tension bolt 311, at this time, the tension bolt 311 arranged can gradually separate from the limiting of the clamping groove 310, so that the clamping groove 310 can loosen the clamping of the adjusting light pole 33, at this time, the user can move the clamping seat 39 on the protection assembly 3, so that the clamping seat 39 can limit the rising height of the adjusting seat 35, so as to cooperate with the rebound of the limiting compression spring 34, realize that the adjusting seat 35 drives the shielding cylinder 36 to cover and protect the turbine flow and temperature integrated sensor body 2 at all times.
[0040] Further, through the elastic limiting between the adjusting seat 35 and the limiting compression spring 34 slidingly arranged in the protection assembly 3, and the height limiting of the clamping seat 39 to the adjusting seat 35, in actual use, the protection assembly 3 of the present application can realize the physical protection of the turbine flow and temperature integrated sensor body 2 with different sizes and heights, so that it can be flexibly adjusted according to the turbine flow and temperature integrated sensor body 2 with different sizes, and ensure that the turbine flow and temperature integrated sensor body 2 can be effectively protected regardless of the installation height.
[0041] The turbine flow and temperature integrated sensor with protection of the utility model:
[0042] First step: in actual use, when the turbine flow and temperature integrated sensor body 2 is installed on the industrial equipment body 1, at this time, the user can install the protection assembly 3, during which, the user uses the screw pin matched with the screw hole in the bottom of the bottom mounting plate 31, so that the bottom mounting plate 31 can be positioned and installed on the industrial equipment body 1, then the user can adjust the protection assembly 3, so that the protection assembly 3 can protect the shell of the turbine flow and temperature integrated sensor body 2;
[0043] Second step: during this period, the user moves the adjusting seat 35 downward, so that the adjusting seat 35 can drive the shielding cylinder 36 to move downward synchronously, at this time, the user drives the shielding cylinder 36 to move downward until the turbine flow and temperature integrated sensor body 2 is covered, under the protection of the adjusting light pole 33 and the shielding cylinder 36, the turbine flow and temperature integrated sensor body 2 in the shielding cylinder 36 can avoid physical impact from the outside world, so as to realize the physical protection of the turbine flow and temperature integrated sensor body 2; at the same time, after the shielding cylinder 36 is adjusted, the user loosens the tension bolt 311, so that the clamping groove 310 can loosen the clamping of the adjusting light pole 33, at this time, the user can move the clamping seat 39, so that the clamping seat 39 can limit the rising height of the adjusting seat 35, so as to cooperate with the rebound of the limiting compression spring 34, realize that the adjusting seat 35 drives the shielding cylinder 36 to cover the turbine flow and temperature integrated sensor body 2 for protection.
[0044] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A turbine flow, temperature integrated sensor with protection, comprising an industrial device body (1) and a turbine flow, temperature integrated sensor body (2), characterized in that; The turbine flow and temperature integrated sensor body (2) is assembled on the industrial equipment body (1); The industrial equipment body (1) is also assembled with a protection assembly (3); The protection assembly (3) comprises a bottom mounting plate (31) mounted on the industrial equipment body (1); the upper end surface of the bottom mounting plate (31) is provided with four adjusting light rods (33) in a rectangular shape, and the four adjusting light rods (33) are vertically arranged and surround the turbine flow and temperature integrated sensor body (2) inside. The four adjusting light rods (33) are commonly provided with an adjusting seat (35) outside, and the four adjusting light rods (33) are also sleeved with a limiting compression spring (34) outside, the bottom of the limiting compression spring (34) is connected with the bottom mounting plate (31), and the top thereof abuts against the bottom of the adjusting seat (35). The bottom of the adjusting seat (35) is detachably provided with a shielding cylinder (36).
2. The turbine flow, temperature integral sensor with protection of claim 1, wherein, The shielding cylinder (36) is a cylindrical cylinder with an open bottom, the turbine flow and temperature integrated sensor body (2) is covered inside the shielding cylinder (36), and a protective rubber pad (37) is attached to the inner top wall of the shielding cylinder (36).
3. The turbine flow, temperature integral sensor with protection of claim 1, wherein, Threaded holes are formed in the adjusting seat (35), and the top outer wall of the shielding cylinder (36) is engraved with a thread line matched with the adjusting seat (35); the shielding cylinder (36) is threadedly connected to the adjusting seat (35).
4. The turbine flow, temperature integral sensor with protection of claim 1, wherein, A through hole (32) is formed in the bottom mounting plate (31) along the center thereof, the through hole (32) is larger than the size of the turbine flow and temperature integrated sensor body (2) and can pass through the turbine flow and temperature integrated sensor body (2); a top plate (38) is commonly supported on the top of the four adjusting light rods (33); a plurality of screw holes are formed in the bottom of the bottom mounting plate (31).
5. The turbine flow, temperature integral sensor with protection of claim 1, wherein, Two adjusting light rods (33) on the same side are provided in a group and are commonly sleeved with a clamping seat (39) outside; through holes are formed in both ends of the two clamping seats (39) and can pass through the adjusting light rods (33); a clamping groove (310) is formed on one side of the through hole of the clamping seat (39); a tension bolt (311) is threadedly connected to each clamping seat (39), and the tension bolt (311) penetrates the clamping groove (310) adjacent thereto.