High-strength glass counter basin
The design of the eccentric rotating ring and positioning ring enables the glass basin to rotate flexibly and be positioned stably, solving the problem of bumping your head on the faucet and providing convenience and stability for various usage postures.
Patent Information
- Application Number
- CN202423171245.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-21
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-21
AI Technical Summary
Traditional glass bathroom sinks have faucet designs that make it easy to bump your head during use, and they are also inconvenient to adjust the angle and use in different scenarios.
The design employs an eccentrically positioned rotating ring and positioning ring, combined with the adjustment of the faucet outlet position, to achieve flexible rotation and stable positioning of the glass basin body. Through the cooperation of the positioning groove and the placement groove, the basin can be stably switched between different states.
It solves the problem of bumping your head on the faucet, provides convenience and stability for multiple usage postures, and enhances the flexibility and ease of use.
Smart Images

Figure CN223535819U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of bathroom sinks, and in particular to a high-strength glass sink. Background Technology
[0002] Glass bathroom basins, as a modern household item, are gradually gaining popularity among consumers due to their unique aesthetics and stylish appeal. Because traditional glass has relatively low strength, tempered glass is now widely used in the market to improve the strength of glass bathroom basins, giving them higher hardness and impact resistance.
[0003] A washbasin typically consists of a cabinet, a glass basin body, and a faucet. Both the basin body and faucet are mounted on the cabinet, with the faucet spout extending inside the basin. For daily use, simply turn on the faucet to wash hands and perform other activities through the basin body. To prevent water from splashing out during handwashing, the faucet usually extends into the middle of the basin body. However, this design makes it inconvenient when bending over to wash hair or face, as the head may easily bump into the faucet. Utility Model Content
[0004] To facilitate the use of glass bathroom basins in various scenarios, this application provides a high-strength glass basin.
[0005] This application provides a high-strength glass washbasin, employing the following technical solution:
[0006] A high-strength glass washbasin includes a mounting cabinet, a glass washbasin body rotatably mounted on the mounting cabinet, and a faucet mounted on the mounting cabinet. A rotating ring is eccentrically positioned at the bottom of the glass washbasin body and rotatably connected to the mounting cabinet. When the glass washbasin body rotates, the faucet outlet is always opposite to the glass washbasin body. When the glass washbasin body is in a first state close to the faucet, the faucet outlet is located near the center of the glass washbasin body. When the glass washbasin body is in a second state away from the faucet, the faucet outlet is located near the side of the glass washbasin body.
[0007] By adopting the above technical solution, the basin can be rotated. The eccentric setting of the rotating ring, together with the faucet, allows the basin to rotate freely and receive water from the faucet. This design effectively solves the problem that the user's head is likely to hit the faucet when bending over to wash their hair or face, while maintaining the function of preventing water from splashing out. Moreover, when the glass basin body is rotated to the second position, its position is closer to the edge of the cabinet, making it more convenient to use when bending over to get water.
[0008] Optionally, the mounting cabinet is detachably equipped with a positioning ring, and a positioning block is provided on the outer wall of the rotating ring. The positioning ring is provided with a rotating groove in the circumferential direction for the positioning block to rotate.
[0009] By adopting the above technical solution, the detachable positioning ring on the mounting cabinet cooperates with the positioning block on the outer wall of the rotating ring, and the glass basin body is stably rotated and positioned through the rotating groove.
[0010] Optionally, the positioning ring has a first positioning groove and a second positioning groove on the lower surface of the rotating groove, and two positioning blocks are symmetrically arranged on the rotating ring, namely the first positioning block and the second positioning block; when the first positioning block is engaged in the first positioning groove and the second positioning block is engaged in the second positioning groove, the glass basin body is in a first state; when the first positioning block is engaged in the second positioning groove and the second positioning block is engaged in the first positioning groove, the glass basin body is in a second state.
[0011] By adopting the above technical solution, the first and second positioning grooves opened on the positioning ring cooperate with the first and second positioning blocks on the rotating ring to realize the switching between two fixed states of the glass basin body; this design not only ensures the stability of the basin body during use, but also makes it convenient for users to adjust the angle of the basin as needed.
[0012] Optionally, the positioning ring has a connecting groove on the upper surface of the rotating groove, and a third positioning groove is formed on the upper side wall of the connecting groove. The connecting groove and the third positioning groove are formed in two sets corresponding to the first positioning block and the second positioning block, and the first positioning block can enter the third positioning groove along the connecting groove.
[0013] By adopting the above technical solution, the first and second positioning blocks can be slid upwards into the third positioning groove through the connecting groove to raise the glass basin body, further facilitating user operation.
[0014] Optionally, a placement groove is provided at the end of the third positioning groove away from the connecting groove, and the first positioning block can slide along the third positioning groove and fall into the placement groove.
[0015] By adopting the above technical solution, the design of the positioning groove provides a stable landing point for the positioning block. When the positioning block slides down into the positioning groove along the third positioning groove, the glass basin body will be firmly fixed at that angle; this design not only ensures the stability of the basin body during use, but also avoids angle changes caused by accidental contact.
[0016] Optionally, the glass basin has a water outlet hole coaxially opened on the inner side of the rotating ring, a first drain pipe is provided at the water outlet hole, and a second drain pipe is provided on the mounting cabinet, with the first drain pipe rotatably inserted into the second drain pipe.
[0017] By adopting the above technical solution, the setting of the water outlet and the first drain pipe, and the cooperation of the second drain pipe, the wastewater of the glass basin body can be smoothly discharged during the rotation process.
[0018] Optionally, a connecting ring is provided on the outer wall of the upper end of the rotating ring, and a connecting groove is provided on the lower surface of the glass basin body for the connecting ring to be embedded.
[0019] By adopting the above technical solution, the design of the connecting ring and the connecting groove enhances the connection stability between the glass basin body and the rotating ring.
[0020] Optionally, the upper end of the positioning ring is connected to a first ring, the mounting cabinet has a ring groove for the first ring to engage, the first ring is provided with a limit block, and the mounting cabinet has a limit groove for the limit block to engage from top to bottom.
[0021] By adopting the above technical solution, the cooperation between the first ring and the ring groove, as well as the design of the limiting block and the limiting groove, provides a stable installation point for the positioning ring. This design not only facilitates the installation and disassembly of the positioning ring, but also helps to improve the stability of the entire basin structure.
[0022] Optionally, a second ring is threaded to the lower end of the positioning ring, and the upper surface of the second ring can rotate to abut against the mounting cabinet.
[0023] By adopting the above technical solution, the design of the second ring, which is connected to the lower end of the positioning ring by a threaded connection, can restrict the upward movement of the positioning ring, while also facilitating the detachable installation of the positioning ring.
[0024] In summary, this application includes at least one of the following beneficial effects:
[0025] 1. Through the design of components such as rotating ring, positioning ring, and positioning block, the glass basin body can be flexibly rotated and stably positioned. Users can adjust the angle of the basin as needed, which improves the flexibility and convenience of use.
[0026] 2. By adding a third positioning groove and a placement groove, the glass basin body can be raised for use, further increasing the usage scenarios. Attached Figure Description
[0027] Figure 1 This is a structural schematic diagram of an embodiment of this application;
[0028] Figure 2This is a cross-sectional structural diagram of an embodiment of this application;
[0029] Figure 3 yes Figure 2 Enlarged structural diagram at point A;
[0030] Figure 4 This is a cross-sectional view of the positioning ring.
[0031] Explanation of reference numerals in the attached drawings: 1. Installation cabinet; 11. Second drain pipe; 2. Glass basin body; 21. First drain pipe; 3. Faucet; 4. Rotating ring; 41. First positioning block; 42. Second positioning block; 43. Connecting ring; 5. Positioning ring; 51. Rotating groove; 52. First positioning groove; 53. Second positioning groove; 54. Connecting groove; 55. Third positioning groove; 56. Drop groove; 57. First ring; 58. Limiting block; 6. Second ring. Detailed Implementation
[0032] The following is in conjunction with the appendix Figure 1-4 This application provides further details.
[0033] This application discloses a high-strength glass washbasin. (See also...) Figure 1 The high-strength glass washbasin includes a mounting cabinet 1, a glass washbasin body 2 rotatably mounted on the mounting cabinet 1, and a faucet 3 mounted on the mounting cabinet 1. The mounting cabinet 1 includes a cabinet body and a support column. The cabinet body of the mounting cabinet 1 can be made of solid wood, marble, artificial stone, or other materials. The support column is fixed to the bottom of the cabinet body to support it. The glass washbasin body 2 is made of high-strength tempered glass to ensure the stability of the glass washbasin body 2 during use. The faucet 3 is installed on the upper surface of the mounting cabinet 1 and is located on the side of the glass washbasin body 2 away from the user, with its water outlet extending towards the glass washbasin body 2.
[0034] Reference Figure 1 and Figure 2In this embodiment, the glass basin body 2 is preferably elliptical in shape, but in other embodiments it can be circular or rectangular, etc. The long side of the glass basin body 2 is along the long side of the mounting cabinet 1. The glass basin body 2 is positioned above the mounting cabinet 1, with its lower surface abutting against the mounting cabinet 1. A rotating ring 4 is eccentrically positioned on the lower surface of the glass basin body 2, located on the short side and on the side of the glass basin body 2 away from the faucet 3. The rotating ring 4 extends downward and is rotatably connected to the mounting cabinet 1. The glass basin body 2 is rotatably positioned on the mounting cabinet 1 around the rotating ring 4. Simultaneously, a water outlet is provided on the bottom plate of the glass basin body 2, coaxially located inside the rotating ring 4, so that the position of the water outlet remains unchanged when the glass basin body 2 rotates. The glass basin body 2 is fixed to the base plate with a first drain pipe 21, and the mounting cabinet 1 is fixed with a second drain pipe 11. The lower end of the first drain pipe 21 is rotatably inserted into the second drain pipe 11. When the glass basin body 2 rotates, the first drain pipe 21 can rotate in the second drain pipe 11.
[0035] Reference Figure 1 and Figure 2 In this embodiment, when the glass basin body 2 rotates, the water outlet of the faucet 3 is always opposite to the glass basin body 2. When the glass basin body 2 is in the first state close to the faucet 3, the water outlet of the faucet 3 is located at the center of the glass basin body 2. When the glass basin body 2 is in the second state away from the faucet 3, the water outlet of the faucet 3 is located on the side of the glass basin body 2 away from the user. This design effectively solves the problem that the user's head is easily bumped into the faucet 3 when bending over to wash their hair or face, while maintaining the function of preventing water from splashing out. Moreover, when the glass basin body 2 rotates to the second position, its position is closer to the edge of the mounting cabinet 1, making it more convenient to use water when bending over.
[0036] Reference Figure 2 and Figure 3 In this embodiment, the rotating ring 4 is preferably made of stainless steel or similar material. A connecting ring 43 is welded to the upper end of the rotating ring 4. The connecting ring 43 is a stainless steel annular plate structure. A connecting groove for the connecting ring 43 to be inserted is provided on the lower surface of the glass basin. The connecting ring 43 and the glass basin body 2 can be bonded and fixed together using high-adhesion adhesive or screws. Thus, the rotating ring 4 provides stable support to the glass basin body 2 through the connecting ring 43.
[0037] Reference Figure 3 and Figure 4In this embodiment, a positioning ring 5 is detachably mounted on the mounting cabinet 1, and a rotating ring 4 rotates within the positioning ring 5. Specifically, a positioning block is welded and fixed to the outer wall of the rotating ring 4, and a rotating groove 51 is provided on the inner wall of the positioning ring 5 for the positioning block to rotate, thereby realizing the rotational connection between the rotating ring 4 and the mounting cabinet 1. The rotating groove 51 can limit the rotating ring 4, restricting its upward movement. To improve stability, two positioning blocks are preferably symmetrically arranged on the side wall of the rotating ring 4, namely a first positioning block 41 and a second positioning block 42, both of which rotate within the rotating groove 51.
[0038] Furthermore, the positioning ring 5 has symmetrically formed a first positioning groove 52 and a second positioning groove 53 on the lower side wall of the rotating groove 51. When the first positioning block 41 is engaged in the first positioning groove 52 and the second positioning block 42 is engaged in the second positioning groove 53, the glass basin body 2 is in the first state, and the water outlet of the faucet 3 is located at the center of the glass basin body 2, suitable for regular handwashing. When the first positioning block 41 is engaged in the second positioning groove 53 and the second positioning block 42 is engaged in the first positioning groove 52, the glass basin body 2 is in the second state, and the water outlet of the faucet 3 is located on the side of the glass basin body 2, suitable for washing hair or face by bending over. By setting the first positioning groove 52 and the second positioning groove 53, the glass basin body 2 is restricted from rotation during use, making it more stable.
[0039] Reference Figure 3 and Figure 4 In an optional embodiment, the positioning ring 5 has a connecting groove 54 on the upper surface of the rotating groove 51, and a third positioning groove 55 is formed on the upper side wall of the connecting groove 54. The third positioning groove 55 extends horizontally, and the connecting groove 54 and the third positioning groove 55 are provided in two sets corresponding to the first positioning block 41 and the second positioning block 42. The first positioning block 41 can enter the third positioning groove 55 along the connecting groove 54. When the first positioning block 41 enters the third positioning groove 55, the glass basin body 2 is lifted upward and positioned against the third positioning groove 55, thereby further facilitating its use. It should be noted that the portion of the lower end of the first drain pipe 21 that is inserted into the second drain pipe 11 must be long enough so that when the glass basin body 2 moves upward, the lower end of the first drain pipe 21 can always be inserted into the second drain pipe 11.
[0040] Alternatively, a placement groove 56 is provided at the end of the third positioning groove 55 away from the connecting groove 54. The placement groove 56 is connected to the lower surface of the third positioning groove 55. The first positioning block 41 can slide down into the placement groove 56 along the third positioning groove 55. At this time, the glass basin body 2 enters the third state, that is, the glass basin body 2 rotates to the side away from the faucet 3, and the glass basin is lifted up a certain distance and positioned in the third state. This state allows the user to avoid bending down too low, and also makes it convenient to clean the space under the glass basin body 2.
[0041] The positions of the first positioning groove 52, the second positioning groove 53, the connecting groove 54, and the placement groove 56 can be set according to actual conditions. For example, in this embodiment, for the convenience of the user, the connecting groove 54 is located between the first positioning groove 52 and the second positioning groove 53. When the glass basin body 2 rotates 90 degrees, that is, when the long side of the glass basin body 2 rotates to be parallel to the short side of the mounting cabinet 1, and then the glass basin is lifted upward, the first positioning block 41 and the second positioning block 42 can slide into the corresponding connecting groove 54. The lower end of the connecting groove can be flared to facilitate the sliding of the first positioning block 41 and the second positioning block 42. At the same time, the placement groove 56 is preferably located directly above the first positioning groove 52 and the second positioning groove 53.
[0042] Reference Figure 3 and Figure 4 In this embodiment, the positioning ring 5 is preferably a stainless steel ring. A first ring 57 is welded and fixed to the upper end of the positioning ring 5. The mounting cabinet 1 has an annular groove for the first ring 57 to engage. The mounting cabinet 1 supports the positioning ring 5 through the first ring 57. A limiting block 58 is fixed to the lower surface of the first ring 57. The mounting cabinet 1 has a limiting groove on the bottom wall of the annular groove for the limiting block 58 to engage. In other embodiments, the limiting block 58 can also be fixed to the side wall of the first ring 57. The rotation of the first ring 57 can be restricted by the cooperation between the limiting block 58 and the limiting groove.
[0043] Furthermore, a second ring 6 is detachably provided at the lower end of the positioning ring 5. An external thread is provided on the outer wall of the lower end of the positioning ring 5. The second ring 6 can be threaded to the positioning ring 5 and can rotate upward to press against the mounting cabinet 1 on the upper surface. Thus, the second ring 6 can restrict the upward movement of the positioning ring 5, improve the stability of the positioning ring 5, and thereby improve the stability of the glass basin body 2 during use.
[0044] The implementation principle of a high-strength glass basin in this application embodiment is as follows: the rotating ring 4 and the positioning ring 5 are pre-connected to each other during production. When installing the glass basin body 2, the connecting ring 43 at the upper end of the rotating ring 4 is first fixed to the lower end of the glass basin body 2. Then, the limiting block 58 is aligned with the limiting groove, the first ring 57 is placed in the ring groove, and then the second ring 6 is threaded onto the positioning ring 5 to fix the glass basin.
[0045] In normal use, the glass basin body 2 is in the first state. When you need to wash your hair, you can first lift the glass basin body 2 upward so that the positioning block enters the rotating groove 51; then rotate the glass basin 180 degrees and lower the glass basin. At this time, the glass basin body 2 can enter the second state for use. If you need to switch to the third state, after rotating the glass basin 90 degrees from the first state, lift the glass basin upward so that the positioning block slides into the third positioning groove 55 and falls into the placement groove 56. At this time, the glass basin body 2 can be used in the third state.
[0046] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A high-strength glass basin, characterized in that: The device includes a cabinet (1), a glass basin body (2) rotatably mounted on the cabinet (1), and a faucet (3) mounted on the cabinet (1). A rotating ring (4) is eccentrically mounted on the bottom of the glass basin body (2), and the rotating ring (4) is rotatably connected to the cabinet (1). When the glass basin body (2) rotates, the outlet of the faucet (3) is always opposite to the glass basin body (2). When the glass basin body (2) is in a first state close to the faucet (3), the outlet of the faucet (3) is close to the center of the glass basin body (2). When the glass basin body (2) is in a second state far away from the faucet (3), the outlet of the faucet (3) is close to the side of the glass basin body (2).
2. The high-strength glass basin according to claim 1, characterized in that: The mounting cabinet (1) is detachably provided with a positioning ring (5), and a positioning block is provided on the outer wall of the rotating ring (4). The positioning ring (5) is provided with a rotating groove (51) for the positioning block to rotate in the circumferential direction.
3. A high-strength glass basin according to claim 2, characterized in that: The positioning ring (5) has a first positioning groove (52) and a second positioning groove (53) on the lower surface of the rotating groove (51). Two positioning blocks are symmetrically arranged on the rotating ring (4), namely the first positioning block (41) and the second positioning block (42). When the first positioning block (41) is engaged in the first positioning groove (52) and the second positioning block (42) is engaged in the second positioning groove (53), the glass basin body (2) is in the first state. When the first positioning block (41) is engaged in the second positioning groove (53) and the second positioning block (42) is engaged in the first positioning groove (52), the glass basin body (2) is in the second state.
4. A high-strength glass basin according to claim 3, characterized in that: The positioning ring (5) has a connecting groove (54) on the upper surface of the rotating groove (51), and a third positioning groove (55) is provided on the upper side wall of the connecting groove (54). The connecting groove (54) and the third positioning groove (55) are provided in two sets corresponding to the first positioning block (41) and the second positioning block (42). The first positioning block (41) can enter the third positioning groove (55) along the connecting groove (54).
5. A high-strength glass basin according to claim 4, characterized in that: The third positioning groove (55) has a placement groove (56) at one end away from the connecting groove (54), and the first positioning block (41) can slide along the third positioning groove (55) and fall into the placement groove (56).
6. A high-strength glass basin according to claim 1, characterized in that: The glass basin body (2) has a water outlet hole coaxially opened on the inner side of the rotating ring (4). A first drain pipe (21) is provided at the water outlet hole. A second drain pipe (11) is provided on the mounting cabinet (1). The first drain pipe (21) is rotatably inserted into the second drain pipe (11).
7. A high-strength glass basin according to claim 1, characterized in that: A connecting ring (43) is provided on the outer wall of the upper end of the rotating ring (4), and a connecting groove is provided on the lower surface of the glass basin body (2) for the connecting ring (43) to be embedded.
8. A high-strength glass basin according to claim 2, characterized in that: The upper end of the positioning ring (5) is connected to a first ring (57). The mounting cabinet (1) has a ring groove for the first ring (57) to engage. The first ring (57) is provided with a limit block (58). The mounting cabinet (1) has a limit groove for the limit block (58) to engage from top to bottom.
9. A high-strength glass basin according to claim 8, characterized in that: The lower end of the positioning ring (5) is threaded with a second ring (6), and the upper surface of the second ring (6) can rotate to abut against the mounting cabinet (1).