WEIGHING STRUCTURE AND ADSORBED GAS MEASURING EQUIPMENT
20210372901 ยท 2021-12-02
Inventors
- Shuyong Hu (Chengdu, CN)
- Tingting Qiu (Chengdu, CN)
- Boning Zhang (Chengdu, CN)
- Jiatie Zhang (Chengdu, CN)
- Xindong Wang (Chengdu, CN)
- Wenhai Huang (Chengdu, CN)
Cpc classification
G01N5/02
PHYSICS
G01G19/52
PHYSICS
International classification
Abstract
The disclosure provides a weighing structure and adsorbed gas measuring equipment, and belongs to the field of gas detection. The weighing structure comprises a mounting plate connected with a balance, a plurality of mounting rings and lifting devices, a plurality of mounting holes are formed in the mounting plate, and the upper portions of the mounting rings pass through the mounting holes; the lower portions of the mounting rings are provided with suspension wires for hoisting mounted objects, the mounting holes are in clearance fit with the mounting rings, and the lifting devices provide upward supporting force for the mounting rings. The measuring equipment further comprises a kettle body, and a cavity for accommodating the weighing structure and a support for supporting the balance are arranged in the kettle body, wherein weights or a sample cylinder are/is arranged at the lower ends of the suspension wires, and a heating layer and a gas injection nozzle are arranged outside the kettle body. According to the disclosure, the problem of inaccurate weighing caused by a weighing structure in the prior art is solved.
Claims
1. A weighing structure, characterized by comprising a mounting plate connected with a balance, a plurality of mounting rings and lifting devices, wherein a plurality of mounting holes are formed in the mounting plate, and the upper portions of the mounting rings pass through the mounting holes; the lower portions of the mounting rings are provided with suspension wires for hoisting mounted objects, the mounting holes are in clearance fit with the mounting rings, and the lifting devices provide upward supporting force for the mounting rings.
2. The weighing structure according to claim 1, characterized in that the mounting holes are arranged side by side or in a staggered mode along the width direction of the mounting plate.
3. The weighing structure according to claim 2, characterized in that each mounting ring comprises vertical side columns, the cross sections of the upper portions of the side columns are larger than those of the lower portions of the side columns, and each lifting device comprises a lifting rod and motors which are arranged at the two ends of the lifting rod and drive the lifting rod to ascend and descend; sleeve holes matched with the lower portions of the side columns are formed in the lifting rod, and the cross sections of the sleeve holes are smaller than those of the upper portions of the side columns.
4. The weighing structure according to claim 3, characterized in that the mounting ring is in frame shapes, the number of the side columns is two, and two sleeve holes matched with the two side columns are formed in the lifting rod respectively.
5. Adsorbed gas measuring equipment, characterized by comprising the weighing structure according to any one of claims 1 to 4, wherein the equipment further comprises a kettle body, a cavity for accommodating the weighing structure and a support for supporting the balance are arranged in the kettle body, weights or a sample cylinder are/is arranged at the lower ends of the suspension wires, and a heating layer and a gas injection nozzle are arranged outside the kettle body.
6. The adsorbed gas measuring equipment according to claim 5, characterized in that the heating layer sleeves the lower portion of the kettle body, and the kettle body is internally provided with a temperature detection device.
7. The adsorbed gas measuring equipment according to claim 6, characterized in that the numbers of the mounting rings and the mounting holes are both three.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
[0009]
[0010]
[0011] In the figures, 1 is a kettle body, 2 is a cavity, 3 is a balance, 4 is a heating layer, 5 is a weighing structure, 6 is a sample cylinder, 51 is a mounting plate, 52 is a mounting hole, 53 is a mounting ring, 54 is a side column, 55 is a lifting rod, 56 is a sleeve hole, 57 is a suspension wire, and 58 is a motor.
DESCRIPTION OF THE EMBODIMENTS
[0012] The technical scheme of the disclosure is further described in conjunction with the following drawings and embodiments.
[0013] As shown in
[0014] As shown in
[0015] Based on the weighing structure 5, the disclosure further provides adsorbed gas measuring equipment further comprises a kettle body 1, a cavity 2 for accommodating the weighing structure and a support for supporting the balance 3 are arranged in the kettle body 1, weights or a sample cylinder 6 are/is arranged at the lower ends of the suspension wires 57, and a heating layer 4 and a gas injection nozzle are arranged outside the kettle body 1. The kettle body 1 is used for guaranteeing a simulation environment, the gas injection nozzle is used for injecting gas and vacuumizing, and the heating layer 4 is used for heating so as to simulate the influence of various temperatures and pressures on weighing. Furthermore, the heating layer 4 sleeves the lower portion of the kettle body 1, and the kettle body 1 is internally provided with a temperature detection device. The sample cylinder 6 and the weights are positioned at the lower portion of the cavity 2 of the kettle body 1, and the heating layer 4 is arranged at the lower part, so that the part is better guaranteed. Correspondingly, the experiment needs to measure the three target objects of the weight I, the weight II and the sample cylinder 6 for multiple times, so that three mounting holes 52 are needed.
[0016] In working hours, the lifting rod 55 corresponding to the mounting ring 53 needing to be weighed descends, and after the mounting ring 53 makes contact with the mounting hole 52, the lifting rod 55 continues to descend by a certain distance until the lifting rod 55 is not stressed at all, and the lifting rods 55 corresponding to other mounting rings 53 are not changed. When switching is needed, the lifting rod 55 corresponding to the weighed mounting ascends, the lifting rod 55 continues to advance upwards by a certain distance after being stressed until the mounting plate 51 is not stressed at all, and then the lifting rod 55 at the next weighing position is put down. As shown in
[0017] Finally, it is noted that the above-mentioned embodiments are only used for illustrating the technical scheme of the disclosure but not restricting the scope of protection of the disclosure; and although the disclosure is described in detail by reference to a better embodiment, those ordinary skilled in the art should understand that the technical scheme of the disclosure can be amended or equally substituted but not departing from the purpose and scope of the technical scheme of the disclosure and should be contained in the scope of claims of the disclosure.