An inlet and outlet component assembling mechanism for an oxygen humidification bottle
Patent Information
- Application Number
- CN202521957397.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-11
AI Technical Summary
[0002]在医疗行业中,氧气湿化瓶是通过将氧气通过湿化介质进行湿化,使患者吸入的氧气更加湿润,能够将干燥的氧气转化为湿润的氧气,提高空气中的湿度,有助于减少患者呼吸道的干燥和刺激,改善呼吸舒适度;现有的氧气湿化瓶的组装,普遍采用人工手动进行组装,将进出气件旋紧在氧气湿化瓶上即可,这样的组装方式不仅组装效率慢,人力成本大,且进出气件的密封性差,人工组装时间长容易产生疲劳,导致批量组装产量受到影响,因此,需要一种氧气湿化瓶用进出气件组装机构
本实用新型通过第一固定件和第二固定件将氧气湿化瓶固定住,随后利用安装件当中的卡套将进出气件卡住,并在电机和转轴的配合下使得卡套带动进出气件进行快速旋转,让得进出气件与氧气湿化瓶互相摩擦生热,从而将进出气件与氧气湿化瓶相接触的地方快速熔化成一体,实现固定的同时确保连接处的密封性,操作简单快速,无需人工旋转,节省人力,可进行大批量的氧气湿化瓶和进出气件的组装。
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Figure CN224764739U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of assembly technology for inlet and outlet components of oxygen humidification bottles, specifically an assembly mechanism for inlet and outlet components of oxygen humidification bottles. Background Technology
[0002] In the medical industry, oxygen humidification cylinders humidify oxygen through a humidifying medium, making the oxygen inhaled by patients more moist. This process converts dry oxygen into moist oxygen, increases air humidity, helps reduce dryness and irritation in the patient's respiratory tract, and improves breathing comfort. Currently, the assembly of oxygen humidification cylinders is generally done manually, simply by screwing the inlet and outlet components onto the cylinder. This assembly method is not only slow and labor-intensive, but also results in poor sealing of the inlet and outlet components. The long assembly time can also lead to fatigue, affecting the production volume of batch assembly. Therefore, there is a need for an assembly mechanism for the inlet and outlet components of oxygen humidification cylinders. Utility Model Content
[0003] To address the problems existing in the prior art, the purpose of this utility model is to provide an assembly mechanism for the inlet and outlet components of an oxygen humidification bottle, which can quickly fix the inlet and outlet components to the oxygen humidification bottle and ensure the sealing effect at the connection. This mechanism improves efficiency in batch assembly while saving manpower.
[0004] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an assembly mechanism for inlet and outlet components of an oxygen humidification bottle, comprising a base, a mounting frame, and a conveyor, wherein an oxygen humidification bottle is conveyed on the conveyor, a slide rail is mounted on the base, a first fixing component and a second fixing component are provided on the base, the conveyor is located between the first fixing component and the second fixing component, an mounting component is provided on the mounting frame, the mounting component is located above the conveyor, the mounting component includes a third cylinder, a T-shaped block is mounted on the third cylinder, a rotating shaft is provided on the T-shaped block, a retaining sleeve is installed at the end of the rotating shaft, a motor is mounted on the mounting frame, and the motor is driven by the rotating shaft through a transmission wheel set.
[0005] In some embodiments, the first fixing member includes a first cylinder, the first cylinder is connected to a moving block, the moving block is mounted with a first fixing block, and the moving block is slidably connected to the slide rail.
[0006] In some embodiments, the second fixing member includes a second cylinder, the telescopic part of the second cylinder is provided with a movable frame, the movable frame is provided with a second fixing block, and the movable frame is slidably connected to the slide rail.
[0007] In some embodiments, a baffle is provided at one end of the sleeve near the transmission wheel assembly, a sensor is provided on the side of the mounting bracket near the baffle, and a slot is provided on the end of the sleeve away from the baffle. In some embodiments, the T-block is provided with a T-slot, and the T-slot is connected to the rotating shaft.
[0008] In some embodiments, three of each of the first fastener, the mounting member, and the second fastener are provided.
[0009] In summary, this utility model has the following beneficial effects: This invention uses a first and a second fixing component to secure the oxygen humidification bottle. Then, a retaining sleeve in the mounting component is used to hold the inlet and outlet components in place. With the cooperation of a motor and a rotating shaft, the retaining sleeve drives the inlet and outlet components to rotate rapidly. This causes the inlet and outlet components to rub against the oxygen humidification bottle, generating heat and quickly melting the contact area between the inlet and outlet components and the oxygen humidification bottle into one piece. This achieves fixation while ensuring the sealing of the connection. The operation is simple and quick, requiring no manual rotation, saving manpower, and can be used for the assembly of large quantities of oxygen humidification bottles and inlet / outlet components. Attached Figure Description
[0010] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the structure of the first and second fixing components of this utility model; Figure 3 This is a schematic diagram of the installation component of this utility model.
[0011] In the diagram: 1. Base; 2. Mounting frame; 3. Transmission machine; 4. Oxygen humidification bottle; 41. Inlet / outlet components; 5. First fixing component; 51. First cylinder; 52. Moving block; 53. First fixing block; 6. Mounting component; 61. Third cylinder; 62. T-block; 621. T-slot; 63. Rotating shaft; 64. Sleeve; 641. Baffle; 642. Slot; 65. Transmission wheel set; 66. Motor; 67. Sensor; 7. Second fixing component; 71. Second cylinder; 72. Moving frame; 73. Second fixing block; 8. Slide rail. Detailed Implementation
[0012] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0013] See Figure 1-3 An assembly mechanism for inlet and outlet components of an oxygen humidification bottle includes a base 1, a mounting frame 2, and a conveyor 3. An oxygen humidification bottle 4 is conveyed on the conveyor 3. A slide rail 8 is mounted on the base 1. A first fixing member 5 and a second fixing member 7 are provided on the base 1. The conveyor 3 is located between the first fixing member 5 and the second fixing member 7. An mounting member 6 is provided on the mounting frame 2 and is located above the conveyor 3. The mounting member 6 includes a third cylinder 61. A T-block 62 is mounted on the third cylinder 61. A rotating shaft 63 is rotatably connected to the T-block 62. A retaining sleeve 64 is installed at the end of the rotating shaft 63. A motor 66 is mounted on the mounting frame 2. The motor 66 is driven by the rotating shaft 63 through a transmission wheel set 65. During operation, the operator or an external intelligent control terminal controls the conveyor 3 to transport the oxygen humidification bottle 4. The external intelligent control terminal uses an existing intelligent computer program, which will not be described in detail here. When the oxygen humidification bottle 4 is transported between the first fixing member 5 and the second fixing member 7, the operator or the external intelligent control terminal controls the first fixing member 5 and the second fixing member 7 to work, fixing the oxygen humidification bottle 4. At the same time, the conveyor 3 stops working. Then, the third cylinder 61 is controlled to extend, and the third cylinder 61 drives the T-block 62 to move downward. Subsequently, the T-block 62 drives the rotating shaft 63 to move downward. Yes, the clamping sleeve 64 downwards clamps the inlet / outlet component 41 on the oxygen humidification bottle 4. Then, the control motor 66 works, and the motor 66 drives the bearing on the rotating shaft 63 through the transmission wheel set 65, causing the rotating shaft 63 to rotate. Then, the rotating shaft 63 drives the clamping sleeve 64 to rotate rapidly, so that the inlet / outlet component 41 rubs against the oxygen humidification bottle 4 rapidly as the clamping sleeve 64 rotates. Finally, the heat generated by the friction melts and fixes the oxygen humidification bottle 4 and the inlet / outlet component 41 together, while also sealing the connection. That is, the inlet / outlet component 41 and the oxygen humidification bottle 4 are fused together, and the fixation is completed.
[0014] In some embodiments, the first fixing member 5 includes a first cylinder 51, the first cylinder 51 is connected to a moving block 52, and a first fixing block 53 is mounted on the moving block 52. The moving block 52 is slidably connected to the slide rail 8. When fixing the oxygen humidification bottle 4, the external intelligent control terminal controls the first cylinder 51 to extend, causing the moving block 52 to move toward the oxygen humidification bottle 4 on the slide rail 8. Then, the moving frame 72 drives the first fixing block 53 to move until the first fixing block 53 contacts the oxygen humidification bottle 4.
[0015] In some embodiments, the second fixing member 7 includes a second cylinder 71, the telescopic portion of the second cylinder 71 is provided with a movable frame 72, the movable frame 72 is provided with a second fixing block 73, and the movable frame 72 is slidably connected to the slide rail 8. When fixing the oxygen humidification bottle 4, the external intelligent control terminal controls the second cylinder 71 to extend, driving the movable frame 72 to move toward the oxygen humidification bottle 4 on the slide rail 8. Then, the movable frame 72 drives the second fixing block 73 to move, and together with the first fixing block 53, fixes the oxygen humidification bottle 4.
[0016] In some embodiments, a baffle 641 is provided at one end of the sleeve 64 near the transmission wheel assembly 65, and a sensor 67 is provided on the side of the mounting bracket 2 near the baffle 641. A slot 642 is provided on the end of the sleeve 64 away from the baffle 641. When the slot 642 of the sleeve 64 does not contact the branch pipe on the side of the inlet / outlet air component 41, that is, the branch pipe on the side of the inlet / outlet air component 41 blocks the descent of the sleeve 64, the third cylinder 61 cannot drive the sleeve 64 to descend to the specified distance. The specified distance is the distance the sleeve 64 descends when the inlet / outlet air component 41 enters the sleeve 64 and the branch pipe on the side of the inlet / outlet air component 41 contacts the slot 642. At this time, the baffle 641 blocks the sensor 67, and the sensor 67 sends a signal to the external intelligent control terminal that the sleeve 64 has not completely blocked the inlet / outlet air component 41. The external intelligent control terminal then sends a signal to the motor 66, causing the motor 66 to work and drive the air inlet / outlet air component 41 to descend. The rotating shaft 63 rotates, thereby controlling the ferrule 64 to rotate slowly, so that the slot 642 contacts the branch pipe on the side of the inlet / outlet component 41. This allows the ferrule 64 to continue to move downward. As it moves, the ferrule 64 drives the baffle 641 to descend, so that the baffle 641 no longer blocks the sensor 67. At this time, the sensor 67 sends a signal to the external intelligent control terminal that the ferrule 64 has completely locked the inlet / outlet component 41. The external intelligent control terminal then controls the motor 66 to rotate rapidly, so that the rotating shaft 63 drives the ferrule 64 to rotate rapidly, quickly spin-fusing and fixing the inlet / outlet component 41 and the oxygen humidification bottle 4 together, completing the assembly of the inlet / outlet component 41.
[0017] In some embodiments, the T-block 62 is provided with a T-slot 621, and the T-slot 621 is rotatably connected to the rotating shaft 63. The T-slot 621 ensures that when the operator controls the third cylinder 61 to work, the third cylinder 61 can drive the rotating shaft 63 and the sleeve 64 to move up and down through the T-block 62 without affecting the rotation of the rotating shaft 63 driven by the transmission wheel set 65 through the bearing, thus ensuring the smooth operation of the device and ensuring the installation of the inlet and outlet parts 41 of the oxygen humidification bottle 4.
[0018] In some embodiments, three of each of the first fixing member 5, mounting member 6, and second fixing member 7 are provided. The three first fixing members 5, mounting members 6, and second fixing members 7 can simultaneously assemble the inlet and outlet gas components 41 of the three oxygen humidification cylinders 4, thereby increasing work output and accelerating production efficiency.
[0019] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.
Claims
1. An assembly mechanism for an oxygen humidification bottle inlet / outlet, comprising a base (1), a mounting bracket (2), and a conveyor (3), wherein an oxygen humidification bottle (4) is conveyed on the conveyor (3), and a slide rail (8) is mounted on the base (1), characterized in that: The base (1) is provided with a first fixing member (5) and a second fixing member (7). The transmission machine (3) is located between the first fixing member (5) and the second fixing member (7). The mounting frame (2) is provided with a mounting member (6). The mounting member (6) is located above the transmission machine (3). The mounting member (6) includes a third cylinder (61). A T-block (62) is mounted on the third cylinder (61). A rotating shaft (63) is provided on the T-block (62). A sleeve (64) is installed at the end of the rotating shaft (63). A motor (66) is mounted on the mounting frame (2). The motor (66) is driven by the rotating shaft (63) through a transmission wheel set (65).
2. The inlet and outlet member assembly mechanism for an oxygen humidification bottle according to claim 1, characterized by: The first fixing member (5) includes a first cylinder (51), the first cylinder (51) is connected to a moving block (52), the moving block (52) is mounted with a first fixing block (53), and the moving block (52) is slidably connected to the slide rail (8).
3. The inlet and outlet member assembly mechanism for an oxygen humidification bottle according to claim 1, characterized by: The second fixing member (7) includes a second cylinder (71), and the telescopic part of the second cylinder (71) is provided with a movable frame (72). The movable frame (72) is provided with a second fixing block (73), and the movable frame (72) is slidably connected to the slide rail (8).
4. The assembly mechanism for the inlet and outlet components of an oxygen humidification bottle according to claim 1, characterized in that: A baffle (641) is provided at one end of the sleeve (64) near the transmission wheel assembly (65). A sensor (67) is provided on the side of the mounting bracket (2) near the baffle (641). A slot (642) is provided on the side of the sleeve (64) away from the baffle (641).
5. The inlet and outlet member assembly mechanism for an oxygen humidification bottle according to claim 1, characterized by: The T-shaped block (62) is provided with a T-shaped groove (621), and the T-shaped groove (621) is connected to the rotating shaft (63).
6. The inlet and outlet member assembly mechanism for an oxygen humidification bottle according to claim 1, characterized by: The first fixing member (5), the mounting member (6) and the second fixing member (7) are each provided in three parts.