Multi-channel parallel bubbling point testing device

By designing a multi-channel parallel bubble point testing device, which includes a test container, sealing device, connecting device, bubble generating device, measuring device, and monitoring device, the influence of temperature and humidity on data acquisition was solved, and accurate bubble point testing was achieved.

CN223808408UActive Publication Date: 2026-01-16TIANJIN BEXIF TECH CO LTD
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Patent Information

Application Number
CN202423267890.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-16
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing bubble point testing devices are inconvenient for data acquisition under the influence of temperature and humidity, resulting in large testing errors.

Method used

A multi-channel parallel bubble point testing device was designed, comprising a test container, a sealing device, a connecting device, a bubble generating device, a measuring device, a holding device, and a monitoring device, which are respectively used to provide a test site, seal, conduct, bubble, test, and monitor temperature and humidity, and record data through a laser rangefinder and sensors.

Benefits of technology

It enables precise data acquisition under varying temperature and humidity conditions, reducing testing errors and improving testing accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bubbling point testing devices, in particular to a multichannel parallel bubbling point testing device which provides a place through a testing container, is sealed through a sealing device, is conducted through a communicating device, is bubbled through a bubbling device and is tested through a measuring device. The test container and the communication device are supported through the containing device, and the temperature and humidity in the test container are monitored through the monitoring device; comprising a test body; the device comprises a testing machine body and further comprises a testing container, a sealing device, a communicating device, a foaming device, a measuring device, a containing device and a monitoring device, the testing container, the communicating device, the foaming device and the containing device are all installed on the testing machine body, the sealing device is installed on the communicating device, the measuring device is installed on the foaming device, and the monitoring device is installed on the testing container.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of foaming point testing device, in particular to a kind of multi-channel parallel foaming point testing device. BACKGROUND

[0002] In the scientific research experiment in the field of material science, chemical engineering etc., the foaming point of various materials needs to be tested. Multi-channel parallel foaming point testing device provides flexible and efficient testing means, which helps researchers quickly obtain experimental data and analyze.

[0003] For example, the existing technology represented by application No. CN202322722447.7, which mainly includes a detector, a test container, a lid, a conduit, and a foaming piece. The detector is connected to the test container on both sides. The test container is connected to the lid on the top. The detector is connected to the conduit on the back. The conduit is connected to the adjacent lid. The lid is connected to the foaming piece on the bottom. The utility model makes the foam piece move upward by rotating the adjusting nut, which is driven by the upward movement of the foam piece. The height and area of the bubbles generated in the test container can be recorded and detected by the laser range finder.

[0004] During use, it was found that the existing foaming point testing device is not convenient for data collection due to the influence of temperature and humidity on data, resulting in large test errors. Therefore, a multi-channel parallel foaming point testing device is needed. Utility model content

[0005] To solve the above technical problems, the utility model provides a multi-channel parallel foaming point testing device that provides a place through a test container, is sealed through a sealing device, is connected through a communication device, is foamed through a foaming device, is tested through a measuring device, is supported through a holding device, and is monitored through a monitoring device.

[0006] The utility model discloses a kind of multi-channel parallel foaming point testing devices, including test body;Still including test container, sealing device, intercommunicating device, foaming device, measuring device, holding device and monitoring device, test container, intercommunicating device, foaming device and holding device are all installed on test body, sealing device is installed on intercommunicating device, measuring device is installed on foaming device, monitoring device is installed on test container;Test container provides place, sealing device is sealed, intercommunicating device is conducted, foaming device is foamed, measuring device is tested, holding device is supported, and monitoring device is monitored to temperature and humidity;By the test container provides place, by sealing device is sealed, by intercommunicating device is conducted, by foaming device is foamed, by measuring device is tested, by holding device is supported to test container and intercommunicating device, by monitoring device is monitored to temperature and humidity inside test container.

[0007] Preferably, the test body includes a tester, the bottom end of the tester is provided with a plurality of supporting legs, and the side end of the tester is provided with a switch; the tester provides testing, the supporting legs support the tester, and the switch starts the tester.

[0008] Preferably, the test container includes a test bin, a feeding hopper and a first pipeline, the test bin is installed at the top end of the tester, the feeding hopper is communicatively installed at the top end of the test bin, the side end of the test bin is provided with an observation window, and the output end of the first pipeline is in communication with the input end of the test bin; the test bin provides a testing place, and the observation window facilitates observation of the inside of the test bin.

[0009] Preferably, the sealing device includes a sealing cover, a second pipeline and a third pipeline, the sealing cover is installed at the top end of the feeding hopper, the output end of the second pipeline is in communication with the input end of the sealing cover, the input end of the third pipeline is in communication with the output end of the sealing cover, and the output end of the third pipeline is communicatively installed on the input end of the first pipeline; the sealing cover plays a sealing role, and the third pipeline conveys overflowing foam to the bottom of the test bin.

[0010] Preferably, the intercommunicating device includes a mounting seat, a fourth pipeline and a connecting piece, the mounting seat is communicatively installed at the side end of the tester, the input end of the fourth pipeline is in communication with the output end of the mounting seat, the output end of the fourth pipeline is in communication with the input end of the connecting piece, and the output end of the connecting piece is in communication with the input end of the second pipeline; the fourth pipeline and the connecting piece play a role in conducting.

[0011] Preferably, the foaming device includes a foamer, and the foamer is installed at the top end of the tester; the foamer foams the solution.

[0012] Preferably, the measuring device comprises a lead screw, an adjusting nut, a foam sheet and a laser range finder, the lead screw is installed at the top end of the frother, the adjusting nut is installed on the lead screw through threaded connection, the foam sheet is installed at the top end of the adjusting nut, and the laser range finder is installed on the second pipeline; the foam sheet is moved by rotating the adjusting nut, and the height of the foam sheet is monitored conveniently by the laser range finder.

[0013] Preferably, the containing device comprises a support one and two groups of support two, the support one is installed at the top end of the tester, and the two groups of support two are installed at the side ends of the support one; the test bin is placed on the top end of the support one conveniently, the test bin is cleaned conveniently, and the fourth pipeline is placed conveniently by the support two.

[0014] Preferably, the monitoring device comprises a temperature sensor and a humidity sensor, and the temperature sensor and the humidity sensor are installed at the side end of the test bin; the temperature and humidity in the test bin are recorded by the temperature sensor and the humidity sensor.

[0015] Compared with the prior art, the utility model has the advantages that: the test container is provided with a place, is sealed by the sealing device, is communicated by the communication device, is frothed by the frothing device, is tested by the measuring device, the test container and the communication device are supported by the containing device, and the temperature and humidity in the test container are monitored by the monitoring device. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is the structure axonometric drawing of the utility model;

[0017] Figure 2 is Figure 1 The enlarged structure axonometric drawing of the test machine body and the frothing device in the utility model;

[0018] Figure 3 is Figure 1 The enlarged structure axonometric drawing of the test machine body and the test container in the utility model;

[0019] Figure 4 is Figure 1 The enlarged structure axonometric drawing of the test machine body and the sealing device in the utility model;

[0020] Figure 5 is Figure 1 The enlarged structure axonometric drawing of the test machine body and the containing device structure in the utility model.

[0021] Marked in the drawing: 01, test body; 11, tester; 12, supporting leg; 13, switch; 02, test container; 21, test bin; 22, feeding hopper; 23, observation window; 24, first pipeline; 03, sealing device; 31, sealing cover; 32, second pipeline; 33, third pipeline; 04, communication device; 41, mounting seat; 42, fourth pipeline; 43, connecting piece; 05, foaming device; 51, foamer; 06, measuring device; 61, lead screw; 62, adjusting nut; 63, foam piece; 64, laser range finder; 07, holding device; 71, support one; 72, support two; 08, monitoring device; 81, temperature sensor; 82, humidity sensor. DETAILED DESCRIPTION

[0022] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the related drawings. The present application can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.

[0023] Embodiment 1

[0024] A multi-channel parallel foaming point testing device, comprising a test body 01; characterized in that it further comprises a test container 02, a sealing device 03, a communication device 04, a foaming device 05, a measuring device 06, a holding device 07 and a monitoring device 08, the test container 02, the communication device 04, the foaming device 05 and the holding device 07 are all installed on the test body 01, the sealing device 03 is installed on the communication device 04, the measuring device 06 is installed on the foaming device 05, and the monitoring device 08 is installed on the test container 02;

[0025] The test container 02 provides a place, the sealing device 03 seals, the communication device 04 conducts, the foaming device 05 foams, the measuring device 06 tests, the holding device 07 supports, and the monitoring device 08 monitors temperature and humidity;

[0026] The test body 01 comprises a tester 11, and a plurality of supporting legs 12 are arranged at the bottom end of the tester 11, and a switch 13 is arranged at the side end of the tester 11;

[0027] The test container 02 comprises a test bin 21, a feeding hopper 22 and a first pipeline 24, the test bin 21 is installed at the top end of the tester 11, the feeding hopper 22 is communicated and installed at the top end of the test bin 21, the test bin 21 is provided with an observation window 23 at the side end, and the output end of the first pipeline 24 is communicated with the input end of the test bin 21;

[0028] The sealing device 03 comprises a sealing cover 31, a second pipeline 32 and a third pipeline 33, the sealing cover 31 is installed at the top end of the feeding hopper 22, the output end of the second pipeline 32 communicates with the input end of the sealing cover 31, the input end of the third pipeline 33 communicates with the output end of the sealing cover 31, and the output end of the third pipeline 33 is communicated and installed on the input end of the first pipeline 24;

[0029] The communication device 04 comprises a mounting seat 41, a fourth pipeline 42 and a connecting piece 43, the mounting seat 41 is communicated and installed at the side end of the tester 11, the input end of the fourth pipeline 42 communicates with the output end of the mounting seat 41, the output end of the fourth pipeline 42 communicates with the input end of the connecting piece 43, and the output end of the connecting piece 43 communicates with the input end of the second pipeline 32;

[0030] The foaming device 05 comprises a foamer 51, and the foamer 51 is installed at the top end of the tester 11;

[0031] The measuring device 06 comprises a lead screw 61, an adjusting nut 62, a foam sheet 63 and a laser range finder 64, the lead screw 61 is installed at the top end of the foamer 51, the adjusting nut 62 is installed on the lead screw 61 in a threaded connection mode, the foam sheet 63 is installed at the top end of the adjusting nut 62, and the laser range finder 64 is installed on the second pipeline 32;

[0032] The containing device 07 comprises a support one 71 and two groups of support twos 72, the support one 71 is installed at the top end of the tester 11, and the two groups of support twos 72 are both installed at the side end of the support one 71;

[0033] The test container 02 provides a place, the sealing device 03 seals, the communication device 04 communicates, the foaming device 05 foams, the measuring device 06 tests, and the containing device 07 supports;

[0034] The assistant solution for testing foaming performance is introduced into the test bin 21, then the sealing cover 31 is covered at the top end of the feeding hopper 22, then the switch 13 is pressed, the gas is introduced into the test bin 21 through the fourth pipeline 42 and the foamer 51, the gas is foamed through the foamer 51, the bubbles of the assistant solution are upwardly lifted to the foam sheet 63, the foam sheet 63 drives the adjusting nut 62 to rotate and move upwardly, the upward moving height of the foam sheet 63 is detected through the laser range finder 64, after the test, the test bin 21 is conveniently placed at the top end of the support one 71, the test bin 21 is conveniently cleaned, and the fourth pipeline 42 is conveniently placed through the support two 72.

[0035] Example 2

[0036] As shown in the embodiment 1, the monitoring device 08 is further included; Figures 1 to 5

[0037] ​The monitoring device 08 comprises a temperature sensor 81 and a humidity sensor 82, both of which are installed at the side end of the test chamber 21.

[0038] The monitoring device 08 monitors the temperature and humidity.

[0039] Meanwhile, the temperature and humidity inside the test chamber 21 are recorded by the temperature sensor 81 and the humidity sensor 82.

[0040] The multi-channel parallel foaming point testing device of the utility model, in working, first, the auxiliary solution of testing foaming performance is introduced into the test chamber 21, then the sealing cover 31 is covered at the top end of the feeding hopper 22, then the switch 13 is pressed, the gas is introduced into the test chamber 21 through the fourth pipeline 42 and the foamer 51, the foaming is carried out through the foamer 51, the gas bubble of the auxiliary solution produces the foam sheet 63 and makes the foam sheet 63 drive the adjusting nut 62 to rotate and move upward, the upward moving height of the foam sheet 63 is detected through the laser range finder 64, meanwhile, the temperature and humidity inside the test chamber 21 are recorded through the temperature sensor 81 and the humidity sensor 82, after testing, the test chamber 21 is conveniently placed at the top end of the support one 71, the test chamber 21 is conveniently cleaned, the fourth pipeline 42 is conveniently placed through the support two 72.

[0041] The tester 11, the foamer 51, the laser range finder 64, the temperature sensor 81 and the humidity sensor 82 of the utility model are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the technical personnel in the field paying creative labor.

[0042] The main function realized by the utility model is to record the temperature and humidity.

[0043] The above only is the preferred implementation mode of the utility model, and it should be pointed out that, for the ordinary technical personnel in the technical field, on the premise that the technical principle of the utility model is not departed from, a plurality of improvements and variations can be made, and these improvements and variations should be regarded as the protection range of the utility model.

Claims

1. A multi-channel parallel bubble point testing device comprising a testing body (01); characterized in that, The test container (02), the sealing device (03), the communication device (04), the foaming device (05), the measuring device (06), the containing device (07) and the monitoring device (08) are all installed on the test body (01), the sealing device (03) is installed on the communication device (04), the measuring device (06) is installed on the foaming device (05), and the monitoring device (08) is installed on the test container (02); The test container (02) provides a place, the sealing device (03) seals, the communication device (04) conducts, the foaming device (05) foams, the measuring device (06) tests, the containing device (07) supports, and the monitoring device (08) monitors temperature and humidity.

2. A multi-channel parallel bubble point test apparatus as claimed in claim 1, wherein, The test body (01) comprises a tester (11), and a plurality of supporting legs (12) are arranged at the bottom end of the tester (11).

3. A multi-channel parallel bubble point test apparatus as claimed in claim 2, wherein, The test container (02) comprises a test bin (21), a feeding hopper (22) and a first pipeline (24), the test bin (21) is installed at the top end of the tester (11), the feeding hopper (22) is communicatively installed at the top end of the test bin (21), an observation window (23) is arranged at the side end of the test bin (21), and the output end of the first pipeline (24) is in communication with the input end of the test bin (21).

4. A multi-channel parallel bubble point test apparatus as defined in claim 3, wherein, The sealing device (03) comprises a sealing cover (31), a second pipeline (32) and a third pipeline (33), the sealing cover (31) is installed at the top end of the feeding hopper (22), the output end of the second pipeline (32) is in communication with the input end of the sealing cover (31), the input end of the third pipeline (33) is in communication with the output end of the sealing cover (31), and the output end of the third pipeline (33) is communicatively installed on the input end of the first pipeline (24).

5. A multi-channel parallel bubble point test apparatus as defined in claim 4, wherein, The communication device (04) comprises a mounting seat (41), a fourth pipeline (42) and a connecting piece (43), the mounting seat (41) is communicatively installed at the side end of the tester (11), the input end of the fourth pipeline (42) is in communication with the output end of the mounting seat (41), the output end of the fourth pipeline (42) is in communication with the input end of the connecting piece (43), and the output end of the connecting piece (43) is in communication with the input end of the second pipeline (32).

6. A multi-channel parallel bubble point test apparatus as defined in claim 2, wherein, The foaming device (05) comprises a foamer (51), and the foamer (51) is installed at the top end of the tester (11).

7. A multi-channel parallel bubble point test apparatus as defined in claim 6, wherein, The measuring device (06) comprises a lead screw (61), an adjusting nut (62), a foam sheet (63) and a laser range finder (64), the lead screw (61) is installed at the top end of the foamer (51), the adjusting nut (62) is installed on the lead screw (61) in a threaded connection mode, the foam sheet (63) is installed at the top end of the adjusting nut (62), and the laser range finder (64) is installed on the second pipeline (32).

8. A multi-channel parallel bubble point test apparatus as defined in claim 2, wherein, The containing device (07) comprises a support one (71) and two groups of support twos (72), the support one (71) is installed at the top end of the tester (11), and the two groups of support twos (72) are both installed at the side end of the support one (71).

9. A multi-channel parallel bubble point test apparatus as defined in claim 3, wherein, The monitoring device (08) comprises a temperature sensor (81) and a humidity sensor (82), both of which are installed at the side end of the test chamber (21).

Citation Information

Patent Citations

  • A device for testing foaming performance

    CN220961452U