Waste sample treatment device for high-throughput sequencing operation
By designing the barrel body and the internal threaded sleeve and anti-slip pad of the support frame, the stability problem of the waste sample processing device in high-throughput sequencing operations is solved, and stable installation and convenient adjustment on the detection table are achieved.
Patent Information
- Application Number
- CN202422786973.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The barrel of the waste sample processing device used in high-throughput sequencing operations is difficult to clamp and position, has poor stability, and is difficult to securely install on a testing bench.
A device including a barrel body, a support frame, a splint, a guide rod and a positioning bolt was designed. The barrel body was stably installed on the test bench through the cooperation of an internal threaded sleeve and an anti-slip pad, and the height of the splint was adjusted by sliding the guide rod and the top plate.
The stability and installation convenience of the waste sample barrel on the test bench are improved, ensuring the stability and adjustment convenience during use.
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Figure CN223303366U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of waste sample processing devices, and more specifically, to a waste sample processing device for high-throughput sequencing operations. Background Art
[0002] High-throughput sequencing technology, also known as "next-generation" sequencing or massively parallel sequencing, differs from traditional Sanger (dideoxy sequencing) in that it can sequence a large number of nucleic acid molecules in parallel. Typically, a single sequencing reaction can produce at least 100Mb of sequencing data.
[0003] During high-throughput sequencing operations, the waste samples generated need to be placed in a recycling barrel for centralized processing. However, the barrel is placed relative to the detection table, which makes it inconvenient to clamp and position it according to usage needs, and the stability is poor. Therefore, we proposed a waste sample processing device for high-throughput sequencing operations to solve the above problems. Utility Model Content
[0004] 1. Technical problems to be solved
[0005] In response to the problems existing in the prior art, the purpose of the present invention is to provide a waste sample processing device for high-throughput sequencing operations, wherein the barrel body is used to hold waste samples of high-throughput sequencing operations. When the barrel body is used, the positioning bolt is disassembled relative to the internal threaded sleeve of the support frame, and the support frame can be directly placed on the support surface. The anti-slip pad has an anti-slip protection effect, thereby improving the stability of the barrel body. The base can also be directly plugged into the test bench according to the specifications of the test bench, and the splint is located below the test bench. Then, the positioning bolt is screwed into the internal threaded sleeve of the support frame, and the plug-in end of the positioning bolt extends to the inside of the limit ring. The end face of the positioning bolt fits with the reinforcement seat, and the positioning bolt is continued to be screwed until the splint is pressed against the lower surface of the test bench. The installation process is stable and the use effect is good.
[0006] 2. Technical solution
[0007] In order to solve the above problems, the present invention adopts the following technical solutions.
[0008] A waste sample processing device for high-throughput sequencing operations comprises a barrel, a liquid level window provided on the surface of the barrel, and a handle welded to the outer wall of the barrel. A base is welded to the bottom of the barrel, a support frame is welded to one end of the base, a clamping plate is inserted between the base and the support frame, a reinforcement seat is fixedly connected to the bottom of the clamping plate, a limit ring is fixedly connected to the lower surface of the reinforcement seat, guide rods are symmetrically mounted on the surface of the clamping plate, and a top plate is welded to the end of each guide rod.
[0009] Positioning bolts are screwed onto the surface of the support frame.
[0010] Preferably, a through hole is provided at the bottom of the support frame, and an internal threaded sleeve is fixedly connected to the opening position of the through hole of the support frame.
[0011] Preferably, the positioning bolt passes through the internal threaded sleeve, and the positioning bolt and the internal threaded sleeve are spirally connected.
[0012] Preferably, an anti-slip pad is symmetrically bonded to the lower surface of the support frame, and the anti-slip pad is located outside the positioning bolt.
[0013] Preferably, the plug-in end of the positioning bolt extends to the interior of the limiting ring, and the end face of the positioning bolt fits with the reinforcement seat.
[0014] Preferably, guide holes are symmetrically provided on the surface of the base, and the guide rods pass through the guide holes and are slidably arranged.
[0015] Preferably, the top plate is located outside the barrel body, and the top plate and the base are arranged in parallel.
[0016] 3. Beneficial effects
[0017] Compared with the prior art, the advantages of the present invention are:
[0018] (1) The barrel of this solution is used to hold discarded samples from high-throughput sequencing operations. When using the barrel, the positioning bolt is disassembled relative to the internal threaded sleeve of the support frame, and the support frame can be directly placed on the support surface. The anti-slip pad has an anti-slip protection effect, which improves the stability of the barrel. The base can also be directly plugged into the test bench according to the specifications of the test bench. The splint is located below the test bench. Then, the positioning bolt is screwed into the internal threaded sleeve of the support frame. The plug-in end of the positioning bolt extends to the inside of the limit ring. The end face of the positioning bolt fits with the reinforcement seat. Continue to screw the positioning bolt until the splint is pressed against the lower surface of the test bench. The installation process is stable and the use effect is good.
[0019] (2) In this scheme, the splint is fixedly connected to the top plate through a guide rod. The guide rod passes through the guide hole and is set to slide. During the process of adjusting the height of the splint, the guide rod slides relative to the guide hole, which has a good auxiliary guiding effect and the adjustment process is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0021] Figure 2 This is a schematic diagram of the barrel body and support frame structure of the utility model;
[0022] Figure 3This is a schematic diagram of the base and support structure of the utility model;
[0023] Figure 4 This is a schematic diagram of the structure of the splint and top plate of the utility model.
[0024] Description of the numbers in the figure:
[0025] 1. Barrel body; 2. Liquid level window; 3. Base; 301, guide hole; 4. Support frame; 5. Clamping plate; 6. Top plate; 7. Guide rod; 8. Positioning bolt; 9. Anti-slip pad; 10. Internally threaded sleeve; 11. Reinforcement seat; 12. Limiting ring. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0027] Example 1:
[0028] See also Figure 1-4 A waste sample processing device for high-throughput sequencing operations includes a barrel body 1, a liquid level window 2 set on the surface of the barrel body 1, and a handle welded to the outer wall of the barrel body 1. A base 3 is welded to the bottom of the barrel body 1, a support frame 4 is welded to one end of the base 3, a clamping plate 5 is inserted between the base 3 and the support frame 4, a reinforcement seat 11 is fixedly connected to the bottom of the clamping plate 5, a limit ring 12 is fixedly connected to the lower surface of the reinforcement seat 11, a guide rod 7 is symmetrically installed on the surface of the clamping plate 5, and a top plate 6 is welded to the end of the guide rod 7;
[0029] A positioning bolt 8 is screwed onto the surface of the support frame 4 .
[0030] A through hole is provided at the bottom of the support frame 4, and an internal threaded sleeve 10 is fixedly connected to the opening position of the through hole of the support frame 4. The positioning bolt 8 passes through the internal threaded sleeve 10, and the positioning bolt 8 and the internal threaded sleeve 10 are spirally connected. The lower surface of the support frame 4 is symmetrically bonded with an anti-slip pad 9, and the anti-slip pad 9 is located on the outside of the positioning bolt 8. The plug-in end of the positioning bolt 8 extends to the inside of the limit ring 12, and the end face of the positioning bolt 8 fits with the reinforcement seat 11.
[0031] It should be noted that the barrel body 1 is used to hold discarded samples from high-throughput sequencing operations. When the barrel body 1 is used, the positioning bolt 8 is disassembled relative to the internal threaded sleeve 10 of the support frame 4, and the support frame 4 can be directly placed on the support surface. The anti-slip pad 9 has an anti-slip protection effect, which improves the stability of the barrel body 1; the base 3 can also be directly plugged into the test bench according to the specifications of the test bench, and the splint 5 is located below the test bench. Then, the positioning bolt 8 is screwed into the internal threaded sleeve 10 of the support frame 4, and the plug-in end of the positioning bolt 8 extends to the inside of the limit ring 12. The end face of the positioning bolt 8 fits with the reinforcement seat 11, and the positioning bolt 8 is continued to be screwed until the splint 5 is pressed onto the lower surface of the test bench. The installation process is stable and the use effect is good.
[0032] See Figure 1-4 The surface of the base 3 is symmetrically provided with guide holes 301 , the guide rod 7 passes through the guide hole 301 and is slidably arranged, the top plate 6 is located outside the barrel body 1 , and the top plate 6 and the base 3 are arranged in parallel.
[0033] It should be noted that the splint 5 is fixedly connected to the top plate 6 through the guide rod 7. The guide rod 7 passes through the guide hole 301 and is slidingly arranged. During the process of adjusting the height of the splint 5, the guide rod 7 slides relative to the guide hole 301, which has a good auxiliary guiding effect and facilitates the adjustment process.
[0034] When in use: the barrel body 1 is used to hold discarded samples of high-throughput sequencing operations. When the barrel body 1 is in use, the positioning bolt 8 is disassembled relative to the internal threaded sleeve 10 of the support frame 4, and the support frame 4 can be directly placed on the supporting surface. The anti-slip pad 9 has an anti-slip protection effect, which improves the stability of the barrel body 1; the base 3 can also be directly plugged into the test bench according to the specifications of the test bench, and the splint 5 is located at the lower position of the test bench. Then, the positioning bolt 8 is screwed into the internal threaded sleeve 10 of the support frame 4, and the plug-in end of the positioning bolt 8 extends to the inside of the limit ring 12. The end face of the positioning bolt 8 fits with the reinforcement seat 11, and the positioning bolt 8 is continued to be screwed until the splint 5 is pressed against the lower surface of the test bench. The installation process is stable and the use effect is good; the splint 5 is fixedly connected to the top plate 6 by the guide rod 7. The guide rod 7 passes through the guide hole 301 and is slidably arranged. In the process of adjusting the height of the splint 5, the guide rod 7 slides relative to the guide hole 301, which has a good auxiliary guiding effect and the adjustment process is convenient.
[0035] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed in the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.
Claims
1. A waste sample processing device for high-throughput sequencing operations, comprising a barrel (1), a liquid level window (2) arranged on the surface of the barrel (1), and a handle welded to the outer wall of the barrel (1), characterized in that: The bottom of the barrel body (1) is welded with a base (3), one end of the base (3) is welded with a support frame (4), a clamping plate (5) is inserted between the base (3) and the support frame (4), the bottom of the clamping plate (5) is fixedly connected to a reinforcement seat (11), the lower surface of the reinforcement seat (11) is fixedly connected to a limiting ring (12), the surface of the clamping plate (5) is symmetrically mounted with a guide rod (7), and the end of the guide rod (7) is welded with a top plate (6); Positioning bolts (8) are screwed onto the surface of the support frame (4).
2. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: A through hole is provided at the bottom of the support frame (4), and an internal threaded sleeve (10) is fixedly connected to the opening of the through hole of the support frame (4).
3. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: The positioning bolt (8) passes through the internal threaded sleeve (10), and the positioning bolt (8) and the internal threaded sleeve (10) are screw-connected.
4. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: The lower surface of the support frame (4) is symmetrically bonded with an anti-slip pad (9), and the anti-slip pad (9) is located outside the positioning bolt (8).
5. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: The plug-in end of the positioning bolt (8) extends to the interior of the limiting ring (12), and the end face of the positioning bolt (8) fits in with the reinforcement seat (11).
6. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: The surface of the base (3) is symmetrically provided with guide holes (301), and the guide rod (7) passes through the guide hole (301) and is slidably arranged.
7. The waste sample processing device for high-throughput sequencing according to claim 1, characterized in that: The top plate (6) is located outside the barrel body (1), and the top plate (6) and the base (3) are arranged in parallel.