Glass floating meter detection device

By designing a glass float detection device with an electric telescopic rod and a positioning component, the problem of water surface fluctuation and shaking in glass float detection is solved, and accurate and fast measurement results are achieved.

CN223435877UActive Publication Date: 2025-10-14LIAONING INST OF METROLOGY
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Patent Information

Application Number
CN202422660160.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-10-14
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Existing glass float meters are prone to shaking during testing due to artificial placement causing water surface fluctuations and the lack of a positioning device, which affects the accuracy of the measurement value.

Method used

A glass float detection device including an electric telescopic rod and a positioning assembly is designed. The electric telescopic rod is used to position the glass float, and the positioning assembly is used to prevent shaking to ensure measurement accuracy.

Benefits of technology

It effectively prevents water surface fluctuations, ensures the accuracy and quick reading of measurement values, and avoids damage to the glass float due to excessive clamping force.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass floating meter detection device, which relates to the technical field of glass floating meters and comprises a detection component, the detection component comprises an electric telescopic rod, the electric telescopic rod is mounted on a water tank, a connecting plate is mounted at the other end of the electric telescopic rod, and a miniature electric telescopic rod is arranged at the bottom of the connecting plate. A moving rod is mounted at the output end of the micro electric telescopic rod, a first moving block and a positioning assembly are mounted on the moving rod, the positioning assembly comprises a connecting strip, the connecting strip is mounted at the bottom of the first moving block, a limiting strip is mounted on the connecting strip, a positioning rod is slidably mounted in the connecting strip, a positioning block is mounted on the positioning rod, and a spring is mounted on the connecting strip; according to the utility model, through the arrangement of the detection assembly and the positioning assembly, water surface fluctuation can be prevented, so that a worker can observe the glass floating meter body more accurately, the glass floating meter body can be prevented from shaking along with buoyancy, and a measured value can be read quickly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass float meter technical field, especially a kind of glass float meter detection device. BACKGROUND

[0002] Glass float meter is a kind of in liquid can vertically free float, by its immersion in liquid depth to directly measure liquid density, relative density or solution concentration instrument, float meter measurement basic principle is according to Archimedes law, namely when float in liquid balance, it is displaced liquid weight equal to the weight of float itself. Such by its immersion in liquid depth, i.e. by scale, liquid density, relative density or concentration can be directly obtained, glass float meter needs to be calibrated when production.

[0003] Existing glass float meter is generally placed in water and then the scale of float is observed when detecting, but staff needs to place glass float meter in water when detecting alone, then record data, manual placement can cause water surface fluctuation, affect observation data, and glass float meter shakes left and right with buoyancy when entering water, cannot quickly and accurately read measured value, so a kind of glass float meter detection device is required. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of glass float meter detection device to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of glass float meter detection device, including water tank, glass float meter body is arranged on the water tank;

[0006] Detection assembly, the detection assembly includes electric telescopic rod, the electric telescopic rod is installed on water tank, the other end of the electric telescopic rod is installed with connecting plate, the bottom of the connecting plate is provided with micro electric telescopic rod, the output end of the micro electric telescopic rod is installed with shift rod, the shift rod is installed with first shift block, the first shift block is installed with first rack gear, the connecting plate is rotatably installed with rotating rod, the rotating rod is installed with gear, the first rack gear is engaged on gear, the gear is engaged with second rack gear, the second rack gear is installed with second shift block;

[0007] Positioning assembly, the positioning assembly includes connecting strip, the connecting strip is installed at the bottom of first shift block, the connecting strip is installed with limiting strip, the connecting strip is slidably installed with positioning rod, the positioning rod is installed with positioning block, the connecting strip is installed with spring, the other end of the spring is installed on the support block.

[0008] Preferably, the bottom of the connecting plate is installed with protective cover, and the micro electric telescopic rod is installed in the protective cover.

[0009] Preferably, the connecting plate bottom is provided with a sliding bar, and the second moving block top is provided with a sliding block which is slidingly installed in the sliding bar.

[0010] Preferably, the rotating rod is provided with a limiting block which is installed on the top of the connecting plate.

[0011] Preferably, the water tank is provided with a drain port which is provided with a valve.

[0012] Preferably, the positioning rod is provided with a positioning block which is provided with a soft pad.

[0013] The beneficial effects of the present application are as follows:

[0014] In the present application, the glass float body is placed between the two soft pads by the setting of the detection assembly, the micro electric telescopic rod is started, the micro electric telescopic rod drives the moving rod to move, the moving rod drives the first moving block and the second moving block to move, the first moving block drives the connecting strip to move, the connecting strip drives the positioning block to move, the first moving block and the second rack drive the two positioning blocks to move, and the glass float body can be positioned, then the electric telescopic rod is started again, the glass float body is moved into the water in the water tank, when it is in the water, the micro electric telescopic rod is operated in reverse, the two positioning blocks are slowly moved away, when the glass float body can float, the glass float body can be calibrated and detected, and the water surface fluctuation can be prevented, so that the staff can observe the glass float body more accurately.

[0015] In the present application, by the setting of the positioning assembly, when the glass float body is positioned, the glass float body drives the positioning block to move, the positioning block drives the positioning rod to move, the positioning rod drives the supporting block to move, and the supporting block drives the spring to stretch, so that the two positioning blocks can be prevented from crushing the glass float body due to excessive clamping force, and when the glass float body floats again, although the positioning blocks are away from the glass float body, the two positioning blocks form a ring, the glass float body can be prevented from shaking with the buoyancy, and the measurement value can be read quickly. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The present application provides a three-dimensional structure schematic view of a glass float detection device;

[0017] Figure 2 The present application provides a first rack, gear and other structure schematic view of a glass float detection device;

[0018] Figure 3 The present application provides a sliding bar, sliding block and other structure schematic view of a glass float detection device;

[0019] Figure 4 The utility model provides a kind of limit block, soft pad and the structural schematic diagram of other structures of glass float meter detection device.

[0020] In the drawing: 1, water tank;2, glass float meter body;31, electric telescopic rod;32, connecting plate;33, micro electric telescopic rod;34, shift rod;35, first shift block;36, first rack;37, rotating rod;38, gear;39, second rack;310, second shift block;311, protective cover;312, slide bar;313, sliding block;314, limit block;315, drain;41, connecting strip;42, limit strip;43, positioning rod;44, positioning block;45, spring;46, support block;47, soft pad. DETAILED DESCRIPTION

[0021] 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, not all the embodiments.

[0022] Embodiment 1:

[0023] As shown in the drawing, Figures 1-4 The utility model provides a kind of glass float meter detection device, including water tank 1, water tank 1 is provided with glass float meter body 2;

[0024] The detection assembly can make the worker more accurate when observing the glass float meter body 2. The detection assembly comprises an electric telescopic rod 31, the electric telescopic rod 31 is installed on the water tank 1, the other end of the electric telescopic rod 31 is provided with a connecting plate 32, the bottom of the connecting plate 32 is provided with a micro electric telescopic rod 33, the output end of the micro electric telescopic rod 33 is provided with a moving rod 34, the moving rod 34 is provided with a first moving block 35, the first moving block 35 is provided with a first rack 36, a rotating rod 37 is rotatably installed in the connecting plate 32, the rotating rod 37 is provided with a gear 38, the first rack 36 is engaged on the gear 38, the gear 38 is engaged with a second rack 39, the second rack 39 is provided with a second moving block 310, the glass float meter body 2 is placed between the two soft pads 47, the micro electric telescopic rod 33 is started, the micro electric telescopic rod 33 drives the moving rod 34 to move, the moving rod 34 drives the first moving block 35 and the second moving block 310 to move, at the same time, the first moving block 35 drives the connecting strip 41 to move, the connecting strip 41 drives the positioning block 44 to move, the first moving block 35 and the second rack 39 drive the two positioning blocks 44 to move, so that the glass float meter body 2 is positioned, then the electric telescopic rod 31 is started, the glass float meter body 2 is moved into the water in the water tank 1, when it is in the water, the micro electric telescopic rod 33 is operated in reverse, the two positioning blocks 44 are slowly moved away, when the glass float meter body 2 can float, the glass float meter body 2 is calibrated and detected, so that the water surface fluctuation is prevented, and the worker can observe the glass float meter body 2 more accurately.

[0025] Further, referring to Figure 2 The bottom of the connecting plate 32 is provided with a protective cover 311, the micro electric telescopic rod 33 is installed in the protective cover 311, the protective cover 311 can protect and support the micro electric telescopic rod 33, so that the micro electric telescopic rod 33 can stably operate.

[0026] Further, referring to Figure 3 The bottom of the connecting plate 32 is provided with a sliding strip 312, the top of the second moving block 310 is provided with a sliding block 313, the sliding block 313 is slidingly installed in the sliding strip 312, the sliding strip 312 and the sliding block 313 can limit the position of the second moving block 310, so that the second moving block 310 only slides on the connecting plate 32.

[0027] Further, referring to Figure 4 The rotating rod 37 is provided with a limiting block 314, the limiting block 314 is installed on the top of the connecting plate 32, the limiting block 314 can limit the position of the rotating rod 37, so that the rotating rod 37 is prevented from falling into the connecting plate 32.

[0028] Further, referring to Figure 1 The water tank 1 is provided with a drain port 315, the drain port 315 is provided with a valve, the drain port 315 can drain the water in the water tank 1.

[0029] Example 2:

[0030] like Figure 4 As shown, based on the embodiment 1, the positioning assembly is provided to prevent the glass float body 2 from shaking due to the buoyancy, and the measurement value can be read more quickly.

[0031] The positioning assembly includes a connecting bar 41, which is mounted on the bottom of the first moving block 35. A limit bar 42 is mounted on the connecting bar 41. A positioning rod 43 is slidably mounted in the connecting bar 41, and a positioning block 44 is mounted on the positioning rod 43. A spring 45 is mounted on the connecting bar 41, and a support block 46 is mounted on the positioning rod 43. The other end of the spring 45 is mounted on the support block 46. When the glass float body 2 is positioned, the glass float body 2 will drive the positioning block 44 to move, and the movement of the positioning block 44 will drive the positioning rod 43 to move. The movement of the positioning rod 43 drives the support block 46 to move, and the movement of the support block 46 drives the spring 45 to stretch. This can prevent the clamping force of the two positioning blocks 44 from being too large to crush the glass float body 2, and when the glass float body 2 floats again, although the positioning block 44 is away from and does not contact the glass float body 2, the two positioning blocks 44 form a circle, which can prevent the glass float body 2 from shaking with the buoyancy, and the measurement value can be read faster.

[0032] Further, refer to Figure 4 A positioning block 44 is mounted on the positioning rod 43 , and a soft pad 47 is mounted on the positioning block 44 . The setting of the soft pad 47 can make the glass float body 2 more firmly fixed when the glass float body 2 is fixed.

[0033] The utility model discloses a working principle: when using, the glass float meter body 2 is placed between two soft pads 47, and the miniature electric telescopic rod 33 is started, and the miniature electric telescopic rod 33 drives the shift rod 34 to move, and the shift rod 34 moves and drives the first shift block 35 to move, and the first shift block 35 moves and drives the first rack 36 to move, and the first rack 36 moves and drives the gear 38 to rotate, and the gear 38 rotates and drives the second rack 39 to move, and the second rack 39 moves and drives the second shift block 310 to move, and simultaneously, the first shift block 35 moves and drives the connecting strip 41 to move, and the connecting strip 41 moves and drives the positioning rod 43 to move, and the positioning rod 43 moves and drives the positioning block 44 to move, and the positioning block 44 moves and drives the soft pad 47 to move, and the first shift block 35 and the second rack 39 move and drive two positioning blocks 44 to move, and the glass float meter body 2 can be positioned, and then the electric telescopic rod 31 is started, and the glass float meter body 2 is moved to the water in the water tank 1, when being in the water, the miniature electric telescopic rod 33 is operated reversely, and two positioning blocks 44 are slowly separated, when the glass float meter body 2 can float, the glass float meter body 2 can be calibrated and detected, and the water surface fluctuation can be prevented, the staff can be more accurate when observing the glass float meter body 2, and the glass float meter body 2 can be positioned, the glass float meter body 2 can not shake with buoyancy, and the measured value can be read faster.

[0034] The above is only the preferred embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model, and all should be covered in the protection scope of the utility model.

Claims

1. A glass float detection device, characterized in that: include: A water tank (1), wherein a glass float meter body (2) is provided on the water tank (1); A detection component, the detection component comprises an electric telescopic rod (31), the electric telescopic rod (31) is installed on the water tank (1), the other end of the electric telescopic rod (31) is installed with a connecting plate (32), the bottom of the connecting plate (32) is provided with a micro electric telescopic rod (33), the output end of the micro electric telescopic rod (33) is installed with a shift rod (34), the shift rod (34) is installed with a first shift block (35), the first shift block (35) is installed with a first rack (36), a rotating rod (37) is rotatably installed in the connecting plate (32), the rotating rod (37) is installed with a gear (38), the first rack (36) is meshed with the gear (38), the gear (38) is meshed with a second rack (39), and the second rack (39) is installed with a second shift block (310); A positioning assembly, the positioning assembly includes a connecting bar (41), the connecting bar (41) is installed at the bottom of the first moving block (35), a limiting bar (42) is installed on the connecting bar (41), a positioning rod (43) is slidably installed in the connecting bar (41), a positioning block (44) is installed on the positioning rod (43), a spring (45) is installed on the connecting bar (41), a supporting block (46) is installed on the positioning rod (43), and the other end of the spring (45) is installed on the supporting block (46).

2. A glass float detection device according to claim 1, characterized in that: A protective cover (311) is installed at the bottom of the connecting plate (32), and the micro electric telescopic rod (33) is installed in the protective cover (311).

3. A glass float detection device according to claim 2, characterized in that: A slide bar (312) is installed at the bottom of the connecting plate (32), and a slider (313) is installed at the top of the second moving block (310). The slider (313) is slidably installed in the slide bar (312).

4. A glass float detection device according to claim 1, characterized in that: A limit block (314) is installed on the rotating rod (37), and the limit block (314) is installed on the top of the connecting plate (32).

5. A glass float detection device according to claim 1, characterized in that: The water tank (1) is provided with a drain outlet (315), and the drain outlet (315) is provided with a valve.

6. A glass float detection device according to claim 1, characterized in that: A positioning block (44) is installed on the positioning rod (43), and a soft pad (47) is installed on the positioning block (44).