A cold boiled water direct drinking machine
Patent Information
- Application Number
- CN202522297369.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-30
AI Technical Summary
[0002]现有专利(公告号:CN222237445U)提出了一种可直出凉白开的商用饮水机,包括饮水机本体,饮水机本体包括储物柜和设备柜,储物柜固定设置在设备柜底部,设备柜的一侧分别固定设置有热水出水口、温水出水口和冷水出水口,设备柜一侧固定设置有显示屏,设备柜内固定设置有净水组件,净水组件一侧与加热器固定连接,净水组件底部与冷水出水口固定连接,加热器底部固定连接有热水管,热水管上固定设置有三通阀门,热水管通过三通阀门与热水出水口固定连接,热水管上套设有降温组件,然而该引水及的使用高度固定,不可调节,无法满足不同人群的使用需求
[0008]本实用新型支撑平台侧面的侧盛放斗可用于防止水杯,转动架通过转轴连接侧连接耳,使转动架下部安装在支撑平台底部,且转动架可转动,支撑杆两端固定在矩形固定块上,矩形固定块固定在支撑平台下部,对称的转动架分布在支撑平台两侧,使对称的转动架下部的转动架下板也是对称的结构,支撑杆置于对称的转动架下板中间,双扭簧套在支撑杆上,支撑杆对双扭簧定位,双扭簧两端与对称的转动架下板相抵,使双扭簧对对称的转动架下板施加相反的推力,进而使对称的转动架上部的转动架侧块相向移动,使对称的转动架侧块对直饮机两侧会进行夹持,保证直饮机在使用时的稳定。平台防护边与转动架配合双重防护可避免直饮机因碰撞、晃动倾倒,适合人员流动较大的公共场景。
Smart Images

Figure CN224792116U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of direct drinking water machines, and more particularly to a direct drinking water machine for cooled boiled water. Background Technology
[0002] An existing patent (publication number: CN222237445U) proposes a commercial water dispenser that can directly dispense cooled boiled water. The dispenser includes a main body, which comprises a storage cabinet and an equipment cabinet. The storage cabinet is fixedly installed at the bottom of the equipment cabinet. A hot water outlet, a warm water outlet, and a cold water outlet are fixedly installed on one side of the equipment cabinet. A display screen is fixedly installed on one side of the equipment cabinet. A water purification component is fixedly installed inside the equipment cabinet. One side of the water purification component is fixedly connected to a heater, and the bottom of the water purification component is fixedly connected to the cold water outlet. A hot water pipe is fixedly connected to the bottom of the heater, and a three-way valve is fixedly installed on the hot water pipe. The hot water pipe is fixedly connected to the hot water outlet through the three-way valve. A cooling component is fitted onto the hot water pipe. However, the water inlet and outlet height of this dispenser are fixed and not adjustable, failing to meet the needs of different users. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a direct drinking water machine with an adjustable height. This machine can meet the water-taking needs of people of different heights, such as adults, children, and the elderly, and can also be adapted to the spatial layout of different places such as offices, canteens, and workshops, thus avoiding the inconvenience of water taking caused by a fixed height.
[0004] The objective of this utility model is achieved through the following technical solution: A direct drinking water dispenser includes a base, casters, a fixed sleeve, a sliding tube, a support ring plate, a support platform, a rotating frame, a support rod, a rectangular fixing block, a double torsion spring, and the dispenser itself. The lower part of the base is connected to the casters, and the upper part is connected to the fixed sleeve. The fixed sleeve has a strip-shaped slider inside, and the side of the sliding tube has a strip-shaped groove. The sliding tube is adapted to the fixed sleeve and slides within it. The strip-shaped slider is adapted to the strip-shaped groove and slides within it. The upper part of the sliding tube has a strip-shaped support block, and the upper part of the support block has an upper tube plate. The upper tube is adapted to the support ring plate and inserts into it.
[0005] The inner side of the support ring plate has a ring plate side groove, and the outer side of the upper tube of the insertion tube is connected to a strip support block. The strip support block is adapted to the ring plate side groove and passes through the ring plate side groove. The upper surface of the strip support block is in contact with the lower surface of the support ring plate. The side of the support platform has a platform side sleeve. The upper tube of the insertion tube is adapted to the platform side sleeve and is inserted into the platform side sleeve. The lower surface of the platform side sleeve is in contact with the support ring plate, and the upper surface of the platform side sleeve is in contact with the upper plate of the insertion tube.
[0006] The support platform has a protective edge on its outer side and a side container on its side. The water dispenser is placed on the support platform and connected to the support platform by a side connecting ear. The lower side of the rotating frame fits into the side connecting ear, and the lower part of the rotating frame is connected to the side connecting ear through a rotating shaft. Beneficial effects
[0007] This utility model features a fixed sleeve connected to a base at its lower part, with a movable wheel connected to the lower part of the base. A sliding tube is inserted into the fixed sleeve, and the base, movable wheel, fixed sleeve, and sliding tube together form a movable support frame. A strip slider is inserted into a strip groove, which axially positions the sliding tube to prevent it from rotating. The sliding tube and the fixed sleeve form a telescopic rod. A cylinder is placed inside the telescopic rod and fixed to the base. When the cylinder is working, or when the lead screw presses against the upper plate of the tube, it lifts the entire sliding tube upward, thereby extending the telescopic rod. This allows the height of the water dispenser to be adjusted, meeting the water needs of adults, children, the elderly, and other people of different heights. It can also be adapted to the spatial layout of different places such as offices, canteens, and workshops, avoiding the inconvenience of water access caused by a fixed height. The strip support block is connected and fixed to the side of the upper tube of the insertion tube. The support ring plate is sleeved on the upper tube of the insertion tube. The strip support block supports the support ring plate, and the support ring plate supports the side of the platform, so that the support platform is placed on the side of the telescopic rod. The outer side of the support platform has a platform protective edge to prevent the water purifier from falling off the support platform.
[0008] The side-mounted container on the side of the support platform of this utility model can be used to prevent water cups from spilling. The rotating frame is connected to the side connecting lugs via a rotating shaft, allowing the lower part of the rotating frame to be installed at the bottom of the support platform and to rotate. The two ends of the support rod are fixed to rectangular fixing blocks, which are fixed to the lower part of the support platform. Symmetrical rotating frames are distributed on both sides of the support platform, making the lower plates of the symmetrical rotating frames symmetrical as well. The support rod is placed in the middle of the lower plates of the symmetrical rotating frames, and a double torsion spring is sleeved on the support rod, positioning the double torsion spring. The two ends of the double torsion spring abut against the lower plates of the symmetrical rotating frames, causing the double torsion spring to apply opposite thrusts to the lower plates of the symmetrical rotating frames. This causes the side blocks of the symmetrical rotating frames to move towards each other, clamping the sides of the water dispenser and ensuring its stability during use. The platform's protective edge, together with the rotating frame, provides double protection to prevent the water dispenser from tipping over due to collisions or shaking, making it suitable for public places with high foot traffic. Attached Figure Description
[0009] Figure 1 This is a top view of a direct drinking water machine for cooled boiled water according to the present invention.
[0010] Figure 2 This is a bottom view of a direct drinking water machine for cooled boiled water according to the present invention.
[0011] Figure 3 This is a schematic diagram of the base structure described in this utility model.
[0012] Figure 4 This is a schematic diagram of the sliding cannula structure described in this utility model.
[0013] Figure 5 This is a schematic diagram of the support ring plate structure described in this utility model.
[0014] Figure 6 This is a top view of the support platform and rotating frame described in this utility model.
[0015] Figure 7 This is a bottom view of the support platform and rotating frame described in this utility model. Detailed Implementation
[0016] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: A direct drinking water dispenser includes a base 01, casters 02, a fixed sleeve 03, a sliding tube 04, a support ring plate 10, a support platform 12, a rotating frame 17, a support rod 22, a rectangular fixing block 23, a double torsion spring 24, and a direct drinking water dispenser 25. The lower part of the base 01 is connected to the casters 02, and the upper part of the base 01 is connected to the fixed sleeve 03. The fixed sleeve 03 has a strip-shaped slider 09 inside, and the side of the sliding tube 04 has a strip-shaped groove 08. The sliding tube 04 is connected to the fixed sleeve 04. The fixed sleeve 03 is adapted to the sliding tube 04, which is inserted into the fixed sleeve 03 and slides within the fixed sleeve 03. The strip slider 09 is adapted to the strip groove 08, which is inserted into the strip groove 08 and slides within the strip groove 08. The upper part of the sliding tube 04 has a strip support block 06, and the upper part of the strip support block 06 has a tube upper plate 07. The tube upper tube 05 is adapted to the support ring plate 10 and is inserted into the support ring plate 10.
[0017] Example 2: The supporting ring plate 10 of this utility model has a ring plate side groove 11 on its inner side. The outer side of the insertion tube 05 is connected to a strip support block 06. The strip support block 06 is adapted to the ring plate side groove 11 and passes through the ring plate side groove 11. The upper surface of the strip support block 06 is in contact with the lower surface of the supporting ring plate 10. The side of the supporting platform 12 has a platform side sleeve 15. The insertion tube 05 is adapted to the platform side sleeve 15 and is inserted into the platform side sleeve 15. The lower surface of the platform side sleeve 15 is in contact with the supporting ring plate 10, and the upper surface of the platform side sleeve 15 is in contact with the insertion tube upper plate 07.
[0018] Example 3: The support platform 12 of this utility model has a platform protective edge 13 on its outer side, a side holding container 14 on the side of the support platform 12, a direct drinking machine 25 placed on the support platform 12, a side connecting ear 20 connected to the support platform 12, the lower side of the rotating frame 17 is in contact with the side connecting ear 20, and the lower part of the rotating frame 17 is connected to the side connecting ear 20 through a rotating shaft 21.
[0019] Example 4: The rotating frame 17 of this utility model has a rotating frame side block 18 on the upper part, and the side of the rotating frame side block 18 is in contact with the water purifier 25. The rotating frame 17 has a rotating frame lower plate 19 on the lower part. The rotating frame 17 is symmetrically arranged on both sides of the water purifier 25. A rectangular fixing block 23 is connected to the support platform 12. The two ends of the support rod 22 are connected to the symmetrical rectangular fixing blocks 23. A double torsion spring 24 is sleeved on the support rod 22. The two ends of the double torsion spring 24 abut against the symmetrical rotating frame lower plate 19 respectively. The cylinder is placed in the fixing sleeve 03. The lower part of the cylinder is connected to the base 01, and the upper part of the cylinder is connected to the insertion tube upper plate 07.
[0020] Example 5: Installation steps of this utility model: First, connect the lower part of the fixing sleeve 03 to the base 01, connect the lower part of the base 01 to the moving wheel 02, put the platform side sleeve 15 on the upper tube 05 of the insertion tube, put the support ring plate 10 on the upper tube 05 of the insertion tube, so that the strip support block 06 passes through the side groove 11 of the ring plate, rotate the support ring plate 10 so that the upper and lower sides of the support ring plate 10 are in contact with the platform side sleeve 15 and the strip support block 06, install the cylinder inside the fixing sleeve 03, and insert the sliding insertion tube 04. Fix the sleeve 03, insert the strip slider 09 into the strip groove 08, put the double torsion spring 24 on the support rod 22, connect the two ends of the support rod 22 to the rectangular fixing block 23, connect the upper part of the rectangular fixing block 23 to the support platform 12, connect the lower part of the rotating frame 17 to the side connecting ear 20 through the rotating shaft 21, abut the two ends of the double torsion spring 24 against the symmetrical rotating frame lower plate 19, place the water purifier 25 on the support platform 12, and fit the rotating frame side block 18 against the water purifier 25.
[0021] The lower part of the fixed sleeve 03 is connected to the base 01, and the lower part of the base 01 is connected to the movable wheel 02. The sliding tube 04 is inserted into the fixed sleeve 03. The base 01, movable wheel 02, fixed sleeve 03, and sliding tube 04 form a movable support frame. The strip slider 09 is inserted into the strip groove 08. The strip slider 09 axially positions the sliding tube 04 to prevent the sliding tube 04 from rotating. The sliding tube 04 and the fixed sleeve 03 form a telescopic rod. The cylinder is placed inside the telescopic rod and installed and fixed on the base 01. When the cylinder is working, or the screw is pressed against the upper plate 07 of the tube, the entire sliding tube 04 is lifted upward, thereby extending the telescopic rod. This allows the height of the water dispenser 25 to be adjusted, which can meet the water needs of people of different heights such as adults, children, and the elderly. It can also be adapted to the spatial layout of different places such as offices, canteens, and workshops, avoiding the inconvenience of water access caused by a fixed height. A strip-shaped support block 06 is fixed to the side of the upper tube 05 of the insertion tube. A support ring plate 10 is fitted onto the upper tube 05 of the insertion tube. The strip-shaped support block 06 supports the support ring plate 10, and the support ring plate 10 supports the platform side sleeve 15, so that the support platform 12 is placed on the side of the telescopic rod. The outer side of the support platform 12 has a platform protective edge 13, which prevents the water dispenser 25 from falling off the support platform 12. The side container 14 on the side of the support platform 12 can be used to prevent water cups from falling off. The rotating frame 17 is connected to the side connecting ear 20 through the rotating shaft 21, so that the lower part of the rotating frame 17 is installed at the bottom of the support platform 12 and the rotating frame 17 can rotate. The two ends of the support rod 22 are fixed to the rectangular fixing block 23. The fixing block 23 is fixed to the lower part of the support platform 12. The symmetrical rotating frames 17 are distributed on both sides of the support platform 12, so that the lower plate 19 of the rotating frame 17 is also symmetrical. The support rod 22 is placed in the middle of the lower plate 19 of the symmetrical rotating frame. The double torsion spring 24 is sleeved on the support rod 22, and the support rod 22 positions the double torsion spring 24. The two ends of the double torsion spring 24 abut against the lower plate 19 of the symmetrical rotating frame, so that the double torsion spring 24 applies opposite thrust to the lower plate 19 of the symmetrical rotating frame. This causes the rotating frame side blocks 18 on the upper part of the symmetrical rotating frame 17 to move towards each other, so that the symmetrical rotating frame side blocks 18 clamp the sides of the water dispenser 25, ensuring the stability of the water dispenser 25 during use. The platform protective edge 13 and the rotating frame 17 work together to provide double protection to prevent the water dispenser 25 from tipping over due to collision or shaking, which is suitable for public scenes with high personnel flow.
[0022] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A direct-drinking machine for cooled boiled water, characterized in that: The system includes a base (01), casters (02), a fixed sleeve (03), a sliding tube (04), a support ring plate (10), a support platform (12), a rotating frame (17), a support rod (22), a rectangular fixing block (23), a double torsion spring (24), and a water dispenser (25). The lower part of the base (01) is connected to the casters (02), and the upper part of the base (01) is connected to the fixed sleeve (03). The fixed sleeve (03) has a strip-shaped slider (09) inside, and the side of the sliding tube (04) has a strip-shaped groove (08). The sliding tube (04) and the fixed sleeve (04) are connected to each other. 3) The sliding tube (04) is inserted into the fixed sleeve (03), and the sliding tube (04) slides in the fixed sleeve (03). The strip slider (09) is adapted to the strip groove (08), and the strip slider (09) is inserted into the strip groove (08). The strip slider (09) slides in the strip groove (08). The upper part of the sliding tube (04) has a strip support block (06), and the upper part of the strip support block (06) has a tube upper plate (07). The tube upper tube (05) is adapted to the support ring plate (10), and the tube upper tube (05) is inserted into the support ring plate (10).
2. The direct drinking water machine for cooled boiled water according to claim 1, characterized in that: The inner side of the support ring plate (10) has a ring plate side groove (11), and the outer side of the insertion tube upper tube (05) is connected to a strip support block (06). The strip support block (06) is adapted to the ring plate side groove (11), and the strip support block (06) passes through the ring plate side groove (11). The upper surface of the strip support block (06) is in contact with the lower surface of the support ring plate (10). The side of the support platform (12) has a platform side sleeve (15), and the insertion tube upper tube (05) is adapted to the platform side sleeve (15). The insertion tube upper tube (05) is inserted into the platform side sleeve (15), and the lower surface of the platform side sleeve (15) is in contact with the support ring plate (10). The upper surface of the platform side sleeve (15) is in contact with the insertion tube upper plate (07).
3. A direct drinking water dispenser for cooled boiled water according to claim 2, characterized in that: The support platform (12) has a platform protective edge (13) on the outside and a side container (14) on the side of the support platform (12). The water dispenser (25) is placed on the support platform (12). The side connecting ear (20) is connected to the support platform (12). The lower side of the rotating frame (17) is in contact with the side connecting ear (20). The lower part of the rotating frame (17) is connected to the side connecting ear (20) through the rotating shaft (21).
4. A direct drinking water dispenser for cooled boiled water according to claim 3, characterized in that: The upper part of the rotating frame (17) has a rotating frame side block (18), the side of the rotating frame side block (18) is in contact with the water purifier (25), the lower part of the rotating frame (17) has a rotating frame lower plate (19), the rotating frame (17) is symmetrically arranged on both sides of the water purifier (25), the rectangular fixing block (23) is connected to the support platform (12), and the two ends of the support rod (22) are connected to the symmetrical rectangular fixing blocks (23).
5. A direct drinking water dispenser for cooled boiled water according to claim 1, characterized in that: The double torsion spring (24) is sleeved on the support rod (22). The two ends of the double torsion spring (24) abut against the symmetrical rotating frame lower plate (19). The cylinder is placed in the fixed sleeve (03). The lower part of the cylinder is connected to the base (01), and the upper part of the cylinder is connected to the insertion tube upper plate (07).
Citation Information
Patent Citations
Commercial water dispenser capable of directly discharging cold boiled water
CN222237445U