Portable sampling equipment for mixing tower
By designing a portable mixing tower sampling equipment, the combination of placement insertion plate and test tube splint is used to solve the problems of single functions of existing equipment and complex sample processing, and the convenient and efficient sampling and detection of chemical raw materials is achieved.
Patent Information
- Application Number
- CN202421897765.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-07
AI Technical Summary
In chemical production, the existing sampling equipment has a relatively single function of sampling and detection of chemical raw materials in the mixing reaction tower, and requires additional equipment for sample processing, which is less practical.
A portable sampling equipment for hybrid towers is designed, including sampling and testing boxes, placement insertion plates, test tube splints and other components. Through hiddenly installed placement insertion plates and test tube splints, the protective storage and fixed placement of test tubes are realized, simplifying the sampling and detection process.
The device can carry a certain number of test tubes, simplifying the sampling and testing process, improving the accuracy and practicality of the testing, and does not require additional equipment, which is very convenient.
Smart Images

Figure CN223010634U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sampling equipment, in particular to a portable sampling equipment for a mixing tower. Background Technique
[0002] In chemical production, it is necessary to sample and detect chemical raw materials in a mixing reaction tower. When sampling liquid chemical products, the existing sampling equipment has a relatively single detection function, and it is also necessary to separately carry tools for processing samples in steps such as preparation and addition of reagents, with low practicability. For this reason, we propose a portable sampling equipment for a mixing tower. Content of the Utility Model
[0003] The utility model mainly solves the technical problems existing in the above-mentioned prior art, and provides a portable sampling equipment for a mixing tower.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme. A portable sampling equipment for a mixing tower includes a sampling and detection box. Components for detecting chemical products are placed inside the sampling and detection box. A storage slot is opened in the upper side area inside the sampling and detection box. The inner wall surface of the storage slot is smooth, and limiting cavities are opened on the left and right inner side walls. Columns are fixedly installed inside both of the two limiting cavities. A vertically sliding test tube clamp is clamped between the two limiting cavities. Insertion holes for test tubes to be inserted are preset inside the test tube clamp. An assembly and disassembly cavity is opened on the left outer wall surface of the sampling and detection box. The assembly and disassembly cavity is of a T-shaped structure and communicates with the inside of the sampling and detection box. Locking insertion holes communicating with the outside of the sampling and detection box are opened on both inner wall surfaces on both sides of the opening direction of the assembly and disassembly cavity. A placement insertion plate is inserted and installed inside the assembly and disassembly cavity. The size of the placement insertion plate corresponds to the internal size of the assembly and disassembly cavity. The surface of the end of the placement insertion plate entering the sampling and detection box is provided with equally spaced test tube slots.
[0005] Further, installation insertion holes are opened on both outer surface sides of the end of the placement insertion plate corresponding to the sampling and detection box. A cover plate is movably installed between the two installation insertion holes. The width of the cover plate corresponds to the internal slot size of the placement insertion plate.
[0006] Further, equally spaced test tube slots are also opened on the side wall surface of the cover plate corresponding to the placement insertion plate. After the cover plate and the surface of the placement insertion plate are rotationally fitted, the test tube slots on the surface of the cover plate and the test tube slots on the surface of the placement insertion plate correspond to each other.
[0007] Further, telescopic cavities are opened on both outer side walls of the T-shaped end of the placement insertion plate. An adjustment cavity is opened on the side wall surface of the placement insertion plate away from the sampling and detection box. A jack is opened between the telescopic cavity and the adjustment cavity to communicate with each other.
[0008] Furthermore, a clamping projection of a safety helmet structure is movably installed inside the telescopic cavity. A locking bolt is fixedly installed at the tail of the clamping projection. The locking bolt passes through an insertion hole inside the telescopic cavity and extends into the adjustment cavity. An adjustment spring is sleeved outside the locking bolt.
[0009] Beneficial effects
[0010] The utility model provides a portable sampling device for a mixing tower, which has the following beneficial effects:
[0011] 1. For the portable sampling device for a mixing tower, by providing a concealed placement insertion plate, after moving the cover plate above the placement insertion plate, the cover plate is movably installed between two installation insertion holes. After the cover plate is installed, it can be flipped above the placement insertion plate. Tube clamping grooves are provided on the mutually corresponding sides of the cover plate and the placement insertion plate. When the surfaces of the cover plate and the placement insertion plate are in contact, the tube clamping grooves on both sides will correspond to each other to form an enclosure. Inserting the test tube to be used between the enclosures of the two tube clamping grooves can protect and store the test tube. Then, fix the locking bolt on the rear wall surface of the clamping projection, sleeve the adjustment spring outside the locking bolt, and then insert the entire locking bolt into the telescopic cavity and pass through the hole inside the telescopic cavity to extend into the adjustment cavity, and finally lock it with a nut. When the test tube is stored inside the placement insertion plate, insert the placement insertion plate into the disassembly and assembly cavity. When the placement insertion plate is completely inserted, the two clamping projections will correspond to the locking insertion holes provided on both sides inside the disassembly and assembly cavity. The two clamping projections will rebound under the action of elastic force and snap into the corresponding locking insertion holes to complete the locking of the placement insertion plate. This device can carry a certain number of test tubes for testing without the need for additional configuration, which is very convenient.
[0012] 2. For the portable sampling device for a mixing tower, by providing a test tube clamping plate for placing test tubes, insert the fixed upright column into the limit cavities provided on both side walls inside the storage clamping groove. After the test tube clamping plate is erected between the two upright columns, lock it by sleeving a nut on the top of the upright column. The test tube clamping plate is suspended inside the storage clamping groove and has a certain distance from the bottom surface of the storage clamping groove. When this device is performing tests, the sampled test tubes can be arranged and inserted into the test tube clamping plate to wait for the next step of testing. With the test tube clamping plate for placing test tubes, more materials can be sampled for multiple tests, making the test results more accurate. During the sampling and testing process of this device, the test tubes can be conveniently fixed and placed, which is conducive to multiple sampling and testing. Description of the drawings
[0013] The structures, ratios, sizes, etc. depicted in this specification are only used to cooperate with the content disclosed in the specification for those familiar with this technology to understand and read, and are not used to limit the limited conditions under which the utility model can be implemented. Therefore, they do not have any technical essence.
[0014] Figure 1 It is a schematic diagram of the overall structure;
[0015] Figure 2 It is a schematic diagram of the structure for placing the insertion plate;
[0016] Figure 3 It is a schematic diagram at position A;
[0017] Figure 4 It is a schematic diagram of the structure of the clamping bump.
[0018] Legend:
[0019] 1. Sampling detection box; 2. Storage card slot; 3. Limiting cavity; 4. Test tube clamping plate; 5. Disassembly and assembly cavity; 6. Locking jack; 7. Insertion plate for placement; 8. Adjustment cavity; 9. Installation jack; 10. Test tube card slot; 11. Cover plate; 12. Telescopic cavity; 13. Clamping bump; 14. Locking bolt; 15. Adjusting spring. Specific implementation mode
[0020] A portable sampling device for a mixing tower, as Figures 1 to 4 shown, includes a sampling detection box 1. Components for detecting chemical products are placed inside the sampling detection box 1. A storage card slot 2 is opened in the upper side area inside the sampling detection box 1. The inner wall surface of the storage card slot 2 is smooth and limiting cavities 3 are opened on both the left and right inner side walls. Columns are fixedly installed inside both limiting cavities 3. A vertically sliding test tube clamping plate 4 is clamped between the two limiting cavities 3. An insertion hole for inserting a test tube is preset inside the test tube clamping plate 4. A disassembly and assembly cavity 5 is opened on the left side wall surface outside the sampling detection box 1. The disassembly and assembly cavity 5 is of a T-shaped structure and communicates with the inside of the sampling detection box 1. Locking jacks 6 communicating with the outside of the sampling detection box 1 are opened on both inner wall surfaces on both sides of the opening direction of the disassembly and assembly cavity 5. An insertion plate 7 for placement is inserted and installed inside the disassembly and assembly cavity 5.
[0021] The size of the insertion plate 7 for placement corresponds to the size inside the disassembly and assembly cavity 5. A test tube card slot 10 for placing a test tube is opened on the surface of the end of the insertion plate 7 that enters the sampling detection box 1.
[0022] Installation jacks 9 are opened on both outer surface sides of the end of the insertion plate 7 for placement corresponding to the sampling detection box 1. A cover plate 11 is movably installed between the two installation jacks 9. The width of the cover plate 11 corresponds to the size of the inner card slot of the insertion plate 7. Test tube card slots 10 arranged at equal intervals are opened on the side wall surface of the cover plate 11 corresponding to the insertion plate 7. After the cover plate 11 is rotationally attached to the surface of the insertion plate 7, the test tube card slots 10 on the surface of the cover plate 11 correspond to the test tube card slots 10 on the surface of the insertion plate 7. The test tube is better clamped and fixed after being placed between the two test tube card slots 10.
[0023] On both outer side walls of the T-shaped end of the placement plug board 7, telescopic cavities 12 are provided. On one side wall of the placement plug board 7 away from the sampling detection box 1, an adjustment cavity 8 is provided. An insertion hole is provided between the telescopic cavity 12 and the adjustment cavity 8 for communication. A clamping protrusion 13 in the shape of a safety cap is movably installed inside the telescopic cavity 12. A locking bolt 14 is fixedly installed at the tail of the clamping protrusion 13. The locking bolt 14 passes through the insertion hole inside the telescopic cavity 12 and extends into the adjustment cavity 8, and is locked by a nut. An adjustment spring 15 is sleeved on the surface of the locking bolt 14.
[0024] The working principle of the present utility model:
[0025] By providing a concealed placement plug board 7, after moving the cover plate 11 above the placement plug board 7, the cover plate 11 is movably installed between the two installation insertion holes 9. After the cover plate 11 is installed, it can be flipped above the placement plug board 7. On the sides of the cover plate 11 and the placement plug board 7 corresponding to each other, test tube card slots 10 are provided. When the cover plate 11 is attached to the surface of the placement plug board 7, the test tube card slots 10 on both sides will correspond to each other to form an enclosure. Insert the test tube to be used into the enclosure formed by the two test tube card slots 10 to protect and store the test tube. Then, fix the locking bolt 14 on the rear wall surface of the clamping protrusion 13, sleeve the adjustment spring 15 on the outside of the locking bolt 14, and then insert the entire locking bolt 14 into the telescopic cavity 12 and pass through the hole inside the telescopic cavity 12 and extend into the adjustment cavity 8, and finally lock it with a nut. When the test tube is stored inside the placement plug board 7, insert the placement plug board 7 into the disassembly and assembly cavity 5. When the placement plug board 7 is completely inserted, the two clamping protrusions 13 will correspond to the locking insertion holes 6 provided on both sides inside the disassembly and assembly cavity 5. The two clamping protrusions 13 rebound under the action of elastic force and are snapped into the corresponding locking insertion holes 6 to complete the locking of the placement plug board 7. This device can carry a certain number of test tubes for testing without the need for additional configuration, which is very convenient.
[0026] By providing a test tube clamping plate 4 for placing test tubes, insert the fixed upright post into the limiting cavities 3 provided on both side walls inside the storage card slot 2. After the test tube clamping plate 4 is erected between the two upright posts, a nut is sleeved on the top of the upright post and tightened. The test tube clamping plate 4 is suspended inside the storage card slot 2 and has a certain distance from the bottom surface of the storage card slot 2. When this device is performing detection, the sampled test tubes can be arranged and inserted into the test tube clamping plate 4 to wait for the next step of detection. With the test tube clamping plate 4 for placing test tubes, more materials can be sampled for multiple detections, making the detection results more accurate. During the sampling and detection process of this device, the test tubes can be conveniently fixed and placed, which is beneficial for multiple sampling detections.
[0027] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed.
Claims
1. A portable sampling device for a mixing tower, comprising a sampling and testing box (1), wherein components for detecting chemical products are placed inside the sampling and testing box (1), and a card storage slot (2) is provided in the upper area inside the sampling and testing box (1), characterized in that: The inner wall surface of the storage slot (2) is smooth and the inner left and right side wall surfaces are provided with limit cavities (3). The two limit cavities (3) are fixedly installed with columns. A test tube clamp (4) that slides up and down is clamped between the two limit cavities (3). The test tube clamp (4) is preset with a plug hole for inserting a test tube. The outer left side wall surface of the sampling and testing box (1) is provided with a disassembly and assembly cavity (5). The disassembly and assembly cavity (5) is a T-shaped structure connected to the interior of the sampling and testing box (1). The inner wall surfaces on both sides of the opening direction of the disassembly and assembly cavity (5) are provided with locking plug holes (6) connected to the outside of the sampling and testing box (1). A placement plug plate (7) is inserted and installed inside the disassembly and assembly cavity (5).
2. A portable sampling device for a mixing tower according to claim 1, characterized in that: The size of the placement plug plate (7) corresponds to the internal size of the disassembly and assembly cavity (5), and the surface of one end of the placement plug plate (7) that enters the interior of the sampling and testing box (1) is provided with test tube slots (10) arranged at equal distances.
3. A portable sampling device for a mixing tower according to claim 1, characterized in that: The outer surfaces of both sides of one end of the placement plug plate (7) corresponding to the sampling and testing box (1) are provided with mounting holes (9), and a cover plate (11) is movably installed between the two mounting holes (9), and the width of the cover plate (11) corresponds to the size of the internal card slot of the placement plug plate (7).
4. A portable sampling device for a mixing tower according to claim 3, characterized in that: The cover plate (11) is also provided with test tube clamping grooves (10) arranged at equal intervals on a side wall surface corresponding to the placement plug plate (7). After the cover plate (11) and the surface of the placement plug plate (7) are rotated and fitted, the test tube clamping grooves (10) on the surface of the cover plate (11) and the test tube clamping grooves (10) on the surface of the placement plug plate (7) correspond to each other.
5. A portable sampling device for a mixing tower according to claim 1, characterized in that: The outer wall surfaces of both sides of the T-shaped end of the placement plug plate (7) are provided with telescopic cavities (12), and the wall surface of one side of the placement plug plate (7) away from the sampling and testing box (1) is provided with an adjustment cavity (8), and a plug hole is provided between the telescopic cavity (12) and the adjustment cavity (8) so as to communicate with each other.
6. A portable sampling device for a mixing tower according to claim 5, characterized in that: A locking protrusion (13) of a helmet structure is movably installed inside the telescopic cavity (12), a locking bolt (14) is fixedly installed at the tail of the locking protrusion (13), the locking bolt (14) passes through the insertion hole inside the telescopic cavity (12) and extends into the inside of the adjustment cavity (8), and an adjustment spring (15) is sleeved on the outside of the locking bolt (14).