Dual-purpose quartz pot capable of dissipating and sealing gas
The design of the quartz pot with its locking groove and supporting locking protrusion enables rapid switching between gas dissipation and sealing functions, solving the problems of limited functionality and safety hazards of existing quartz pots, and improving ease of operation and equipment efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN FENGCHUAN CHEM REAGENT TECH CO LTD
- Filing Date
- 2025-05-16
- Publication Date
- 2026-04-17
AI Technical Summary
Existing quartz pots have limited functionality in terms of gas dissipation and sealing, making it difficult to switch between functions flexibly. They are also cumbersome to operate and pose safety hazards.
A quartz pot consisting of a lid and a body was designed. The adjustable engagement of the locking groove and the supporting locking protrusion enables rapid gas switching. The position adjustment of the supporting locking protrusion allows for gas dispersion or containment. Combined with the design of the baffle plate, the operator is protected.
It enables flexible switching between gas dissipation and sealing functions, simplifies operation procedures, improves efficiency, ensures the stability and safety of gas sealing, reduces operational difficulty, and extends equipment life.
Smart Images

Figure CN224127324U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of chemical equipment technology, and in particular to a quartz pot that can be used for both dispersing and sealing gases. Background Technology
[0002] Quartz pots, as commonly used reaction vessels, are widely used in various gas-related experiments and processes. Currently, some experimental operations using quartz pots require the escape or containment of gases generated during the reaction process. Most existing quartz pots are designed for a single function, only providing gas containment or gas release. If different functions are required, new pots must be purchased or replaced repeatedly. For example, some devices achieve gas containment through fixed sealing structures, but these cannot be easily adjusted when gas release is needed, resulting in cumbersome and inefficient experimental procedures. Therefore, existing quartz pot structures are difficult to flexibly switch according to actual needs and cannot meet usage requirements.
[0003] In addition, to meet usage requirements, some quartz pots require the replacement of parts or complex structural adjustments to achieve different escape or sealing functions. However, this operation increases the difficulty and time cost, and is cumbersome, increasing the workload.
[0004] Third, existing quartz pots have significant shortcomings in terms of ease of operation and safety protection. Furthermore, the gas escapes upwards, mostly directly towards the operator's hands or face; the poorly designed path could lead to harmful gases directly injuring operators, posing a safety hazard.
[0005] Therefore, there is an urgent need for a new type of quartz pot or related device. Utility Model Content
[0006] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a quartz pot that can be used for both dispersing and sealing gases.
[0007] The technical solution adopted by this utility model to solve its technical problem is:
[0008] A quartz pot for both dispersing and sealing gases, the quartz pot including a top cover and a pot body, the top cover being arranged horizontally and the pot body being arranged vertically, the pot body and the top cover being coaxially and detachably connected, the lower surface of the top cover being able to be tightly fitted and connected to the upper surface of the pot body.
[0009] The upper cover includes an upper cover body, a handle, a baffle plate, and a support engagement protrusion. The upper cover body is arranged horizontally, the handle is arranged vertically, and the lower surface of the handle is vertically and coaxially connected to the upper surface of the upper cover. The baffle plate is arranged vertically and is tightly connected to the upper cover body coaxially. The baffle plate is coaxially arranged at the outer edge of the upper cover, and the bottom of the baffle plate extends downward to the upper part of the pot body. The diameter of the baffle plate is larger than the diameter of the pot body, and the inner surface of the baffle plate can be spaced apart from the upper outer surface of the pot body.
[0010] The support engagement protrusion is arranged vertically and extends downward from the lower surface of the upper cover body, extending between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate. Multiple support engagement protrusions are evenly distributed and spaced along the circumferential direction. The support engagement protrusion can be detachably set on the upper surface of the pot body. When the support engagement protrusion is set on the upper surface of the pot body, the lower bottom surface of the support engagement protrusion extends between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate. The baffle plate can guide the gas to escape downward.
[0011] The pot body includes a pot body, a cavity, and a locking groove. The pot body is arranged vertically and the pot body and the cavity are coaxially arranged. The cavity extends downward from the upper surface of the pot body and extends above the lower bottom surface of the pot body. The cavity can hold the substances used by the quartz pot in operation.
[0012] The locking grooves are located on the top of the pot body and are evenly distributed at intervals along the circumference. The locking grooves extend downward from the upper surface of the pot body. The number of locking grooves is the same as the number of supporting locking protrusions. The locking grooves and supporting locking protrusions can be directly opposite each other vertically and can be tightly and movably locked together, so that the top cover and the pot body can be tightly fitted together. The locking grooves and supporting locking protrusions are installed by being directly opposite each other vertically.
[0013] Furthermore, both the lid and the pot body are made of quartz.
[0014] Furthermore, the upper cover body, handle, cover plate, and support locking protrusion are integrally formed.
[0015] Furthermore, at least four locking grooves and supporting locking protrusions are provided, and the locking grooves are evenly distributed and spaced along the circumferential direction at the edge of the upper surface of the pot body.
[0016] Furthermore, both the pot body and the top cover are cylindrical.
[0017] The advantages and positive effects of this utility model are as follows:
[0018] 1. In use, the substance to be reacted is placed into the cavity of the pot. If gas needs to be released, the locking groove and the supporting locking protrusion are staggered. Then, the top cover is connected and installed to the pot. Because of the height of the supporting locking protrusion, there is a gap between the top cover and the pot, allowing the reacted gas to escape from the pot. Under the action of the baffle, the gas flows downward after escaping from the pot, protecting the workers. If gas needs to be sealed, the locking groove and the supporting locking protrusion are aligned vertically. Then, the top cover is connected and installed to the pot. Because the locking groove and the supporting locking protrusion are correspondingly locked, the top cover and the pot are tightly connected, preventing the gas from flowing out and sealing it inside the pot cavity. Thus, this device can meet the dual needs of gas release and sealing.
[0019] This invention utilizes an adjustable locking groove and supporting locking protrusion design, allowing for quick switching between escaping gas and closed gas modes simply by rotating the top cover. No additional accessories or complex operations are required, significantly improving the equipment's applicability and efficiency. When the locking groove and supporting locking protrusion are installed vertically aligned, the top cover fits tightly against the pot body, forming a reliable seal that effectively prevents gas leakage and ensures the stability of the reaction gas in closed mode. The integrated handle and top cover design facilitates lifting and rotation adjustment, simplifying the usage process and reducing operational difficulty. It is particularly suitable for scenarios requiring frequent mode switching. The pot body cavity design is adaptable to various reactants, meeting different experimental or production needs. It also facilitates cleaning and maintenance, extending the equipment's lifespan.
[0020] 2. This quartz pot features an adjustable design with locking grooves and supporting locking protrusions. Simply rotate the top cover to quickly switch between escaping gas and closed gas modes without the need for additional accessories or complicated operations, significantly improving the applicability and efficiency of the equipment.
[0021] 3. When the locking groove and the supporting locking protrusion of this quartz pot are installed with the top and bottom aligned, the top cover fits tightly with the pot body, forming a reliable seal, effectively preventing gas leakage and ensuring the stability of the reaction gas in the closed mode.
[0022] 4. The handle and lid of this quartz pot are integrated, making it easy to lift and rotate for adjustment. This simplifies the usage process and reduces the difficulty of operation. It is especially suitable for scenarios that require frequent mode switching. The pot body cavity design can accommodate a variety of reactive substances to meet different experimental or production needs. It is also easy to clean and maintain, extending the service life of the equipment.
[0023] 5. The lid and body of this quartz pot are both made of quartz material, which meets usage requirements, extends lifespan, and reduces production costs. Attached Figure Description
[0024] Figure 1This is a three-dimensional schematic diagram of the structural connection of this utility model;
[0025] Figure 2 for Figure 1 A three-dimensional schematic diagram of the structural connection of the upper and middle covers;
[0026] Figure 3 for Figure 2 Top view of the structural connection;
[0027] Figure 4 for Figure 2 A top-view diagram of the structural connections;
[0028] Figure 5 for Figure 1 A three-dimensional schematic diagram of the structural connections of the middle pot body;
[0029] Figure 6 for Figure 1 A three-dimensional schematic diagram of the structural connection of a quartz pot when the supporting and engaging protrusions of the upper and middle lid are connected to the engaging grooves of the pot body.
[0030] Figure 7 for Figure 1 A three-dimensional structural connection diagram of a quartz pot when the supporting and locking protrusions of the upper and middle lid are intersected but not connected with the locking grooves of the pot body. Detailed Implementation
[0031] The present invention will be further described in detail below with reference to specific embodiments. The following embodiments are only descriptive and not limiting, and should not be used to limit the protection scope of the present invention.
[0032] Unless otherwise specified, all raw materials used in this invention are commercially available products. Unless otherwise specified, all methods used in this invention are conventional methods in the field. The quantities of all substances used in this invention are conventional usage quantities. Structures and connections not described in detail in this invention can be understood as conventional technical means in the field.
[0033] A quartz pot that can both dissipate and contain gases, such as Figures 1 to 7 As shown, the quartz pot includes an upper cover 1 and a pot body 2. The upper cover is arranged in a horizontal direction, and the pot body is arranged in a vertical direction. The pot body and the upper cover are coaxially and detachably connected. The lower surface of the upper cover can be tightly fitted and connected to the upper surface of the pot body.
[0034] The upper cover includes an upper cover body 1-1, a handle 1-2, a baffle plate 1-3, and a support and engagement protrusion 1-4. The upper cover body is arranged horizontally, and the handle is arranged vertically. The lower surface of the handle is vertically and coaxially connected to the upper surface of the upper cover, so that the operator can lift the upper cover by the handle. The baffle plate is arranged vertically and is coaxially and tightly connected to the upper cover body. The baffle plate is coaxially arranged at the outer edge of the upper cover, and the bottom of the baffle plate extends downward to the upper part of the pot body. The diameter of the baffle plate is larger than the diameter of the pot body, and the inner surface of the baffle plate can be spaced apart from the upper outer surface of the pot body.
[0035] The supporting engagement protrusions are arranged vertically and extend downward from the lower surface of the upper cover body, extending between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate. Multiple supporting engagement protrusions are evenly distributed at intervals along the circumference and can be detachably mounted on the upper surface of the pot body. When the supporting engagement protrusions are mounted on the upper surface of the pot body, the lower bottom surface of the supporting engagement protrusions extends between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate, thus creating a gap between the upper cover body and the pot body, which is convenient for use when gas needs to escape outwards. The baffle plate guides the gas downwards, preventing direct contact with the operator. The handle and upper cover are integrated, making it easy to lift and rotate for adjustment, simplifying the usage process and making it convenient to operate, especially suitable for scenarios that require frequent mode switching.
[0036] The pot body includes a pot body 2-1, a cavity 2-2, and a locking groove 2-3. The pot body is arranged vertically and coaxially with the cavity. The cavity extends downward from the upper surface of the pot body and is located above the lower bottom surface of the pot body. The cavity can hold the substances used in the quartz pot. The cavity design of the pot body can accommodate a variety of reactive substances, meet different experimental or production needs, facilitate cleaning and maintenance, and extend the service life of the equipment.
[0037] The engaging grooves are located on the top of the pot body and are evenly distributed at intervals along the circumference. These grooves extend downwards from the upper surface of the pot body. The number of engaging grooves is the same as the number of supporting engaging protrusions. The engaging grooves and supporting engaging protrusions are vertically aligned and can be tightly engaged to connect with the pot body, ensuring a tight fit between the lid and the pot body. This prevents the reaction gas from escaping from the cavity and meets the requirements of closed operation. The vertical alignment of the engaging grooves and supporting engaging protrusions ensures a tight fit between the lid and the pot body, forming a reliable seal, effectively preventing gas leakage and ensuring the stability of the reaction gas in closed operation.
[0038] In use, the substance to be reacted is placed into the cavity of the pot. If gas needs to escape, the locking groove and the supporting locking protrusion are staggered. Then, the top cover is connected and installed to the pot. Because of the heightening of the supporting locking protrusion, there is a gap between the top cover and the pot, allowing the reacted gas to escape from the pot. Under the action of the baffle, the gas flows downward after escaping from the pot, protecting the workers. If gas needs to be sealed, the locking groove and the supporting locking protrusion are aligned vertically. Then, the top cover is connected and installed to the pot. Because the locking groove and the supporting locking protrusion are correspondingly locked, the top cover and the pot are tightly connected, preventing the gas from flowing out and sealing it inside the pot cavity. Thus, this device can meet the dual needs of gas escaping and sealing.
[0039] This invention utilizes an adjustable locking groove and supporting locking protrusion design, allowing for quick switching between escaping gas and closed gas modes simply by rotating the top cover. No additional accessories or complex operations are required, significantly improving the equipment's applicability and efficiency. When the locking groove and supporting locking protrusion are installed vertically aligned, the top cover fits tightly against the pot body, forming a reliable seal that effectively prevents gas leakage and ensures the stability of the reaction gas in closed mode. The integrated handle and top cover design facilitates lifting and rotation adjustment, simplifying the usage process and reducing operational difficulty. It is particularly suitable for scenarios requiring frequent mode switching. The pot body cavity design is adaptable to various reactants, meeting different experimental or production needs. It also facilitates cleaning and maintenance, extending the equipment's lifespan.
[0040] In this embodiment, both the lid and the pot body are made of quartz material, which meets the usage requirements, extends the service life, and reduces production costs.
[0041] In this embodiment, the upper cover body, handle, baffle plate, and supporting engagement protrusion are integrally formed, and the pot body, cavity, and engagement groove are integrally formed, which is convenient to manufacture, has a solid structure, extends service life, and brings convenience to manufacturing and use.
[0042] In this embodiment, at least four locking grooves and supporting locking protrusions are provided. The locking grooves are evenly distributed and spaced along the circumferential direction at the upper surface edge of the pot body, so that the gas inside the pot can be better dissipated.
[0043] In this embodiment, both the pot body and the top cover are cylindrical, which allows the quartz pot to better dissipate gas.
[0044] Although embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will understand that various substitutions, variations, and modifications are possible without departing from the spirit and scope of the present invention and the appended claims. Therefore, the scope of the present invention is not limited to the contents disclosed in the embodiments.
Claims
1. A quartz boat for both degassing and sealing gases, characterized by: The quartz pot includes a top cover and a pot body. The top cover is arranged horizontally, and the pot body is arranged vertically. The pot body and the top cover are detachably connected coaxially. The lower surface of the top cover can be tightly fitted and connected to the upper surface of the pot body. The upper cover includes an upper cover body, a handle, a baffle plate, and a support engagement protrusion. The upper cover body is arranged horizontally, the handle is arranged vertically, and the lower surface of the handle is vertically and coaxially connected to the upper surface of the upper cover. The baffle plate is arranged vertically and is tightly connected to the upper cover body coaxially. The baffle plate is coaxially arranged at the outer edge of the upper cover, and the bottom of the baffle plate extends downward to the upper part of the pot body. The diameter of the baffle plate is larger than the diameter of the pot body, and the inner surface of the baffle plate can be spaced apart from the upper outer surface of the pot body. The support engagement protrusion is arranged vertically and extends downward from the lower surface of the upper cover body, extending between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate. Multiple support engagement protrusions are evenly distributed and spaced along the circumferential direction. The support engagement protrusion can be detachably set on the upper surface of the pot body. When the support engagement protrusion is set on the upper surface of the pot body, the lower bottom surface of the support engagement protrusion extends between the lower bottom surface of the upper cover body and the lower bottom surface of the baffle plate. The baffle plate can guide the gas to escape downward. The pot body includes a pot body, a cavity, and a locking groove. The pot body is arranged vertically and the pot body and the cavity are coaxially arranged. The cavity extends downward from the upper surface of the pot body and extends above the lower bottom surface of the pot body. The cavity can hold the substances used by the quartz pot in operation. The locking grooves are located on the top of the pot body and are evenly distributed at intervals along the circumference. The locking grooves extend downward from the upper surface of the pot body. The number of locking grooves is the same as the number of supporting locking protrusions. The locking grooves and supporting locking protrusions can be directly opposite each other vertically and can be tightly and movably locked together, so that the top cover and the pot body can be tightly fitted together. The locking grooves and supporting locking protrusions are installed by being directly opposite each other vertically.
2. The quartz kettle of claim 1, wherein: Both the lid and the pot body are made of quartz.
3. The quartz kettle of claim 1, wherein: The upper cover body, handle, cover plate and support locking protrusion are formed as a single unit.
4. The quartz kettle of claim 1, wherein: The number of engaging grooves and supporting engaging protrusions is at least four, and the engaging grooves are evenly distributed and spaced along the circumferential direction at the edge of the upper surface of the pot body.
5. The quartz kettle according to any one of claims 1 to 4, characterized in that: Both the pot body and the top cover are cylindrical.