Novel double-drinking cup structure with rotary uncovering function

Through the rotary open-cover design, the hygiene problems caused by the exposure of the suction nozzle are solved, and the sanitary drinking water method and dust protection are achieved without touching the hand, which enhances the hygiene of the cup.

CN223126231UActive Publication Date: 2025-07-22ZHEJIANG LATIM ELECTRIC APPLIANCE CO LTD
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Patent Information

Application Number
CN202422596177.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-07-22
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The exposed nozzle of the existing suction nozzle is prone to accumulation of dust, and it is necessary to touch the hand during use to affect hygiene.

Method used

A double drinking cup structure with a rotating open cover is designed. Through the rotating design of the dustproof cover and the direct drinking nozzle, the hands are avoided from touching the suction nozzle, and the suction nozzle is covered in the storage chamber when not in use, achieving sanitary closure.

Benefits of technology

It improves the hygiene of the suction nozzle and enriches the way to drink water, ensuring that dust does not enter the cup body, and conveniently balances the air pressure inside and outside the cup body.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel double-drinking cup structure with a rotary uncovering function, which comprises a cup body, a main cover, an upper cover, a suction nozzle and a suction tube. A direct drinking nozzle and a connector connected with the straw are arranged on the main cover; a water outlet and a storage cavity are formed in the upper cover, an extension pipe is arranged on the upper cover, and the suction nozzle is rotationally arranged in the storage cavity; the dust cover is rotationally connected with the suction nozzle; an opening state and a closing state are formed between the main cover and the upper cover, in the closing state, the upper cover covers the main cover, the upper cover blocks the direct drinking nozzle, and the lower end of the extension pipe abuts against the upper end of the connector; a containing state and a drinking state are formed among the suction nozzle, the containing cavity and the dustproof cover, in the containing state, the dustproof cover is horizontally arranged and covers the suction nozzle, and the flow channel and the water outlet are staggered. The suction nozzle is driven to rotate through the dustproof cover, so that the sanitation degree of the suction nozzle is improved; and the suction nozzle can be covered and sealed in the storage cavity through the dustproof cover, so that the sanitation degree is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water cups, in particular to a novel double-drinking cup structure with a rotary open lid. Background Art

[0002] A sippy cup is a tool for facilitating drinking. In the prior art, a sippy cup generally includes a drinking port, the head of the sippy cup passes through the drinking port, and the lower end of the sippy cup extends into the water cup. The user drinks water through the sippy cup. However, the sippy cup is exposed, or the user needs to touch the sippy cup with the hand to adjust the position of the sippy cup when drinking water, so that the sippy cup will be touched, and dust is likely to enter the sippy cup or the cup body, affecting the hygiene of the water in the cup body, and improvement is needed. Summary of the Invention

[0003] Aiming at the defects in the prior art that the sippy cup is exposed so that dust is easily introduced into the sippy cup, and the hygiene of the sippy cup is affected because the hand needs to directly touch the sippy cup during use, etc., the utility model provides a novel double-drinking cup structure with a rotary open lid.

[0004] To solve the above technical problems, the utility model is realized through the following technical solutions:

[0005] A novel double-drinking cup structure with a rotary open lid, comprising a cup body, a main lid, an upper lid, a sippy cup and a straw. A flow channel is formed through the sippy cup. The upper lid is rotatably arranged on the main lid. A direct drinking nozzle extending upward is arranged on the main lid. A hollow connecting head is arranged on the main lid. Both ends of the connecting head penetrate through the main lid. The straw is connected to the lower end of the connecting head. An outlet and a storage cavity are formed on the upper lid. An extension pipe communicated with the outlet is arranged on the upper lid. The sippy cup is rotatably arranged in the storage cavity. A dust-proof lid rotatably connected to the sippy cup is further included. An open state and a closed state are formed between the main lid and the upper lid. In the open state, the upper lid rotates away from the main lid, and the direct drinking nozzle and the upper end of the connecting head are exposed. In the closed state, the upper lid covers the main lid, the upper lid blocks the direct drinking nozzle, the lower end of the extension pipe abuts against the upper end of the connecting head, and the extension pipe is communicated with the connecting head. A storage state and a drinking state are formed among the sippy cup, the storage cavity and the dust-proof lid. In the storage state, the dust-proof lid is horizontally arranged and covers the sippy cup, and the flow channel is staggered from the outlet. In the drinking state, the dust-proof lid drives the sippy cup to rotate outwards, and the flow channel is aligned with and abuts against the outlet.

[0006] When drinking water, the user can rotate the upper cover outwards to drink water through the direct drinking nozzle, or rotate the dust-proof cover outwards to drive the suction nozzle to rotate outwards in place, so as to drink water through the suction nozzle, enabling the user's hand not to touch the suction nozzle when drinking water, improving the hygiene level at the suction nozzle, and enriching the ways for the user to open the water cup to drink water; on the other hand, the dust-proof cover can cover and seal the suction nozzle in the storage cavity, preventing dust and the like from falling onto the suction nozzle, further improving the hygiene level when using the water cup; when drinking water through the direct drinking nozzle, the connecting head can quickly balance the internal and external air pressures of the cup body, facilitating the user to quickly suck out the water.

[0007] Preferably, for the above-mentioned novel double-drinking cup structure with a rotating open lid, an annular groove is provided on the outer side wall of the connecting head, a through hole is provided on the main lid, a plugging ring is coaxially arranged on the inner side wall of the through hole, the end of the connecting head passes through the through hole, and the plugging ring is inserted into the annular groove for plugging and matching; a sealing gasket is penetrated on the upper lid, and a ventilation hole is penetrated through the sealing gasket. In the closed state, the end of the sealing gasket is inserted into the direct drinking nozzle to block the direct drinking nozzle.

[0008] The balance of the internal and external air pressures of the cup body is achieved through the ventilation hole, facilitating the user to drink water through the suction nozzle. The connecting head is fixed on the main lid through the plugging and matching of the plugging ring and the annular groove, improving the convenience of installing the connecting head and also facilitating the cleaning of the connecting head; the blocking of the direct drinking nozzle is achieved through the sealing gasket, improving the cleanliness of the direct drinking nozzle.

[0009] Preferably, for the above-mentioned novel double-drinking cup structure with a rotating open lid, the upper lid includes a convex lid and an outer ring rotatably arranged on the main lid. A sealing ring is provided on the inner side wall of the outer ring, an extension strip is provided on the sealing ring, a first clamping strip and a second clamping strip are respectively provided on the outer side wall and the inner side wall of the convex lid, and a third clamping strip is provided on the outer side wall of the main lid; the outer ring is sleeved outside the convex lid, the lower surface of the first clamping strip abuts against the upper surface of the extension strip, the second clamping strip is inserted below the third clamping strip, and the upper surface of the second clamping strip abuts against the lower surface of the third clamping strip.

[0010] The convex lid and the outer ring are connected through the sealing ring, the first clamping strip and the extension strip, facilitating the cleaning of the convex lid and the sealing ring. The convex lid can be locked on the main lid through the mutual cooperation of the second clamping strip and the third clamping strip, improving the stability when closing the upper lid.

[0011] Preferably, for the above-mentioned novel double-drinking cup structure with a rotating open lid, a first connection hole is provided on the dust-proof cover, a first rotating shaft is provided on the suction nozzle, the first rotating shaft is inserted into the first connection hole for rotational connection, and in the storage state, one end of the dust-proof cover passes through the storage cavity.

[0012] When in the storage state, one end of the dust cover extends out of the storage cavity. The user can directly lift the dust cover upward to drive the nozzle to rotate outward and open, which facilitates the user to rotate the dust cover and further improves the cleanliness of the nozzle.

[0013] Preferably, for the above-mentioned novel double-drinking cup structure with a rotatable opening lid, locking blocks are provided on both sides of the dust cover, and locking grooves corresponding to the locking blocks are formed on the inner side wall of the storage cavity. When in the storage state, the locking blocks are inserted into the corresponding locking grooves for snap-fit.

[0014] The dust cover can be stably fixed and maintained in the storage state through the snap-fit of the locking blocks and the locking grooves, which improves the stability of the dust cover covering the nozzle and the storage cavity, and further avoids the situation of dust and the like entering the water cup.

[0015] Preferably, for the above-mentioned novel double-drinking cup structure with a rotatable opening lid, it further includes a handle. Second rotating shafts are provided at both ends of the handle, and second connection holes corresponding to the second rotating shafts are formed on the upper cover. The second rotating shafts are inserted into the corresponding second connection holes for rotational connection; a gripping state and a natural state are formed between the handle and the upper cover. When in the gripping state, the handle rotates to be vertically placed, and when in the natural state, the handle is horizontally placed.

[0016] The handle facilitates the user to move the water cup. In the natural state, the handle can rotate to be horizontally placed, which facilitates the storage of the water cup.

[0017] Preferably, for the above-mentioned novel double-drinking cup structure with a rotatable opening lid, a limiting groove is formed on the inner side wall of the handle, and a limiting protrusion is provided on the outer side wall of the cup body. When in the natural state, the limiting protrusion is inserted into the limiting groove for plug-in fit. When in the gripping state, the limiting protrusion withdraws from the limiting groove.

[0018] The plug-in fit of the limiting protrusion and the limiting groove can keep the handle in the natural state, reduce the situation of the handle shaking when moving the water cup, and facilitate the use.

[0019] Preferably, for the above-mentioned novel double-drinking cup structure with a rotatable opening lid, the nozzle includes a straight pipe section and a sphere. A third rotating shaft is provided on the sphere, and a positioning area is formed on the lower surface of the sphere; the storage cavity includes a horizontal section and a hemispherical groove. A third connection groove is formed on the inner side wall of the hemispherical groove. The sphere is inserted into the hemispherical groove, and the third rotating shaft is inserted into the third connection groove for rotational connection; a positioning block is provided in the hemispherical groove, and the positioning block is inserted into the positioning area, and the nozzle drives the positioning area to rotate around the positioning block.

[0020] The limitation of the installation position and rotation position of the nozzle is achieved through the mutual cooperation of the sphere and the hemispherical groove, as well as the mutual cooperation of the positioning block and the positioning area, improving the accuracy of the nozzle installation and outward rotation.

[0021] Preferably, in the novel double-drinking cup structure with a rotatable open lid described above, the number of the positioning blocks and the positioning areas is both set to two. The positioning blocks are distributed along the width direction of the storage cavity, and the positioning blocks and the positioning areas correspond to each other one by one.

[0022] The number of the positioning blocks and the positioning areas is set to two, thereby further enhancing the limitation of the rotation angle of the nozzle and improving the accuracy of the nozzle rotation. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0024] Figure 2 is a sectional view of the present utility model after hiding the cup body;

[0025] Figure 3 is an exploded schematic diagram of the present utility model after hiding the cup body and the straw;

[0026] Figure 4 is an exploded schematic diagram of the present utility model after hiding the cup body, the straw and the main lid;

[0027] Figure 5 is an exploded schematic diagram of the main lid, the outer ring, the sealing ring and the connecting head of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] The following further describes the present utility model in detail in conjunction with the attached Figures 1-5 drawings and specific embodiments, but they do not limit the present utility model:

[0029] Embodiment 1

[0030] As Figures 1-5As shown, a novel double drinking cup structure with a rotating open cover comprises a cup body 1, a main cover 2, an upper cover 3, a suction nozzle 4 and a straw 5, wherein a flow channel 40 runs through the suction nozzle 4, and the upper cover 3 is rotatably arranged on the main cover 2; the main cover 2 is provided with a direct drinking nozzle 20 extending upward, and the main cover 2 is provided with an internal hollow connector 6, both ends of the connector 6 pass through the main cover 2, and the straw 5 is connected to the lower end of the connector 6; a water outlet 30 and a storage cavity 7 are provided on the upper cover 3, an extension tube 31 connected to the water outlet 30 is provided on the upper cover 3, and the suction nozzle 4 is rotatably arranged in the storage cavity 7; a dust cover 8 rotatably connected to the suction nozzle 4 is also included; an open state is formed between the main cover 2 and the upper cover 3. The upper cover 3 is in the open state and rotates away from the main cover 2, and the upper ends of the direct drinking spout 20 and the connecting head 6 are exposed. The upper cover 3 is covered on the main cover 2, and the upper cover 3 blocks the direct drinking spout 20. The lower end of the extension tube 31 abuts against the upper end of the connecting head 6, and the extension tube 31 is connected with the connecting head 6. A storage state and a drinking state are formed between the suction nozzle 4, the storage cavity 7, and the dust cover 8. When the suction nozzle 4 is in the storage state, the dust cover 8 is horizontally arranged and covers the suction nozzle 4, and the flow channel 40 is staggered with the water outlet 30. When the suction nozzle 4 is in the drinking state, the dust cover 8 drives the suction nozzle 4 to rotate outward, and the flow channel 40 is directly opposite to and abuts against the water outlet 30.

[0031] Preferably, an annular groove 60 is provided on the outer wall of the connecting head 6, a through hole 21 is provided on the main cover 2, and a plug-in ring 211 is coaxially arranged on the inner wall of the through hole 21. The end of the connecting head 6 passes through the through hole 21, and the plug-in ring 211 is inserted into the annular groove 60 and plug-fitted; a sealing gasket 32 is passed through the upper cover 3, and a vent hole 321 is passed through the sealing gasket 32. When in a closed state, the end of the sealing gasket 32 is inserted into the direct drinking spout 20 to seal the direct drinking spout 20.

[0032] Preferably, the upper cover 3 includes a raised cover 300 and an outer ring 301 rotatably set on the main cover 2, the inner wall of the outer ring 301 is provided with a sealing ring 302, and the sealing ring 302 is provided with an extension strip 303, the outer wall and the inner wall of the raised cover 300 are respectively provided with a first clip strip 304 and a second clip strip 305, and the outer wall of the main cover 2 is provided with a third clip strip 22; the outer ring 301 is sleeved on the outside of the raised cover 300, the lower surface of the first clip strip 304 is abutted against the upper surface of the extension strip 303, the second clip strip 305 is inserted below the third clip strip 22, and the upper surface of the second clip strip 305 is abutted against the lower surface of the third clip strip 22.

[0033] Preferably, a first connection hole 80 is formed in the dust cover 8, and a first rotating shaft 41 is provided on the suction nozzle 4. The first rotating shaft 41 is inserted into the first connection hole 80 and rotatably connected. In the storage state, one end of the dust cover 8 passes through the storage cavity 7.

[0034] Preferably, locking blocks 81 are provided on both sides of the dust cover 8, and locking grooves 70 corresponding to the locking blocks 81 one by one are formed on the inner side wall of the storage cavity 7. In the storage state, the locking blocks 81 are inserted into the corresponding locking grooves 70 and are engaged in a snap-fit manner.

[0035] Preferably, a handle 9 is further included. Second rotating shafts 90 are provided at both ends of the handle 9, and second connection holes 33 corresponding to the second rotating shafts 90 are formed in the upper cover 3. The second rotating shafts 90 are inserted into the corresponding second connection holes 33 and rotatably connected; a grasping state and a natural state are formed between the handle 9 and the upper cover 3. In the grasping state, the handle 9 rotates to be vertically placed, and in the natural state, the handle 9 is horizontally placed.

[0036] Preferably, a limiting groove 91 is formed on the inner side wall of the handle 9, and a limiting protrusion 34 is provided on the outer side wall of the main cover 2. In the natural state, the limiting protrusion 34 is inserted into the limiting groove 91 and is engaged in a plug-in fit manner. In the grasping state, the limiting protrusion 34 withdraws from the limiting groove 91.

[0037] Preferably, the suction nozzle 4 includes a straight pipe section 42 and a sphere 43. A third rotating shaft 431 is provided on the sphere 43, and a positioning area 432 is formed on the lower surface of the sphere 43; the storage cavity 7 includes a horizontal section 71 and a hemispherical groove 72. A third connection groove 721 is formed on the inner side wall of the hemispherical groove 72. The sphere 43 is inserted into the hemispherical groove 72, and the third rotating shaft 431 is inserted into the third connection groove 721 and rotatably connected; a positioning block 722 is provided in the hemispherical groove 72, and the positioning block 722 is inserted into the positioning area 432, and the suction nozzle 4 drives the positioning area 432 to rotate around the positioning block 722.

[0038] Preferably, the number of the positioning blocks 722 and the positioning areas 432 is both two. The positioning blocks 722 are distributed along the width direction of the storage cavity 7, and the positioning blocks 722 and the positioning areas 432 correspond to each other one by one.

[0039] Specifically, as Figures 1-5 shown, the third connection groove 721 is U-shaped, and the opening of the third connection groove 721 is arranged upward along the height direction of the storage cavity 7.

[0040] When installing the nozzle 4 on the upper cover 3, first align the third rotating shaft 431 with the third connecting groove 721, and then move the sphere 43 towards the hemispherical groove 72 until the sphere 43 is inserted into the hemispherical groove 72 and the positioning block 722 is inserted into the positioning area 432. At this time, the third rotating shaft 431 can be inserted into the third connecting groove 721, completing the installation between the upper cover 3 and the nozzle 4.

[0041] When installing the nozzle 4 and the dust-proof cover 8, first rotate the nozzle 4 outwards, then align the first rotating shaft 41 with the first connecting hole 80 and insert the first rotating shaft 41 into the first connecting hole 80. At this time, the assembly of the nozzle 4 and the dust-proof cover 8 is completed.

[0042] When the upper cover 3 is in the closed state and the user needs to drink water through the nozzle 4, only need to drive the dust-proof cover 8 to rotate outwards, then the nozzle 4 can be driven to rotate outwards in place. At this time, the flow channel 40 is aligned with the extension pipe 31, and the user can drink water through the nozzle 4. When not drinking water, just rotate the dust-proof cover 8 inwards to drive the nozzle 4 to reset inwards, so as to realize the closed covering of the nozzle 4 without touching the nozzle 4, improving the cleanliness and convenience of drinking water.

[0043] When the user needs to drink water through the direct drinking nozzle 20, only need to rotate the upper cover 3 outwards by 180 degrees to open the main cover 2, and the user can drink water through the direct drinking nozzle 20, enriching the user's way of drinking water and facilitating the use.

[0044] In summary, the above are only the preferred embodiments of the present invention. All equivalent changes and modifications made within the scope of the patent application of the present invention shall fall within the scope of the present invention.

Claims

1. A novel double-drinking cup structure with a rotating open lid, comprising a cup body (1), a main lid (2), an upper lid (3), a nozzle (4) and a straw (5), wherein a flow channel (40) is penetrated through the nozzle (4), and the upper lid (3) is rotatably arranged on the main lid (2); characterized in that: A direct drinking nozzle (20) extending upward is provided on the main cover (2). A hollow connector (6) is provided on the main cover (2). Both ends of the connector (6) penetrate through the main cover (2). The straw (5) is connected to the lower end of the connector (6). An outlet (30) and a storage cavity (7) are formed on the upper cover (3). An extension pipe (31) communicated with the outlet (30) is provided on the upper cover (3). The nozzle (4) is rotatably arranged in the storage cavity (7). A dust-proof cover (8) rotatably connected to the nozzle (4) is further included. A state of being opened and a state of being closed are formed between the main cover (2) and the upper cover (3). In the opened state, the upper cover (3) rotates away from the main cover (2), and the upper end of the direct drinking nozzle (20) and the connector (6) are exposed. In the closed state, the upper cover (3) covers the main cover (2), the upper cover (3) blocks the direct drinking nozzle (20), the lower end of the extension pipe (31) abuts against the upper end of the connector (6), and the extension pipe (31) is communicated with the connector (6). A storage state and a drinking state are formed among the nozzle (4), the storage cavity (7), and the dust-proof cover (8). In the storage state, the dust-proof cover (8) is horizontally arranged and covers the nozzle (4), and the flow channel (40) is staggered from the outlet (30). In the drinking state, the dust-proof cover (8) drives the nozzle (4) to rotate outwards, and the flow channel (40) is aligned with and abuts against the outlet (30).

2. The structure of a new double-drinking cup with a rotating open lid according to claim 1, characterized in that: An annular groove (60) is formed on the outer sidewall of the connector (6). A through hole (21) is formed on the main cover (2). A plugging ring (211) is coaxially arranged on the inner sidewall of the through hole (21). The end of the connector (6) penetrates through the through hole (21). The plugging ring (211) is inserted into the annular groove (60) for plugging cooperation. A sealing gasket (32) is penetrated through the upper cover (3). A ventilation hole (321) is formed on the sealing gasket (32). In the closed state, the end of the sealing gasket (32) is inserted into the direct drinking nozzle (20) to block the direct drinking nozzle (20).

3. A novel double-drinking cup structure with a rotatable open lid according to claim 1, characterized in that: The upper cover (3) includes a convex cover (300) and an outer ring (301) rotatably arranged on the main cover (2). A sealing ring (302) is arranged on the inner sidewall of the outer ring (301). An extension strip (303) is arranged on the sealing ring (302). A first clamping strip (304) and a second clamping strip (305) are respectively arranged on the outer sidewall and the inner sidewall of the convex cover (300). A third clamping strip (22) is arranged on the outer sidewall of the main cover (2). The outer ring (301) is sleeved outside the convex cover (300). The lower surface of the first clamping strip (304) abuts against the upper surface of the extension strip (303). The second clamping strip (305) is inserted below the third clamping strip (22), and the upper surface of the second clamping strip (305) abuts against the lower surface of the third clamping strip (22).

4. A novel double-drinking cup structure with a rotary open lid according to claim 1, characterized in that: A first connection hole (80) is formed in the dust cover (8). A first rotating shaft (41) is provided on the suction nozzle (4). The first rotating shaft (41) is inserted into the first connection hole (80) for rotational connection. In the storage state, one end of the dust cover (8) extends out of the storage cavity (7).

5. A novel double-drinking cup structure with a rotating open lid according to claim 1, characterized in that: Locking blocks (81) are provided on both sides of the dust cover (8). Locking grooves (70) corresponding to the locking blocks (81) one by one are formed in the inner side wall of the storage cavity (7). In the storage state, the locking blocks (81) are inserted into the corresponding locking grooves (70) for snap-fit connection.

6. A novel double-drinking cup structure with a rotating open lid according to claim 1, characterized in that: It further includes a handle (9). Second rotating shafts (90) are provided at both ends of the handle (9). Second connection holes (33) corresponding to the second rotating shafts (90) are formed in the upper cover (3). The second rotating shafts (90) are inserted into the corresponding second connection holes (33) for rotational connection; A gripping state and a natural state are formed between the handle (9) and the upper cover (3). In the gripping state, the handle (9) rotates to be vertically placed. In the natural state, the handle (9) is horizontally placed.

7. A novel double-drinking cup structure with a rotatable open lid according to claim 6, characterized in that: A limiting groove (91) is formed in the inner side wall of the handle (9). A limiting protrusion (34) is provided on the outer side wall of the upper cover (3). In the natural state, the limiting protrusion (34) is inserted into the limiting groove (91) for plug-in connection. In the gripping state, the limiting protrusion (34) withdraws from the limiting groove (91).

8. A novel double-drinking cup structure with a rotating open lid according to claim 1, characterized in that: The suction nozzle (4) includes a straight pipe section (42) and a sphere (43). A third rotating shaft (431) is provided on the sphere (43). A positioning area (432) is formed on the lower surface of the sphere (43); The storage cavity (7) includes a horizontal section (71) and a hemispherical groove (72). A third connection groove (721) is formed in the inner side wall of the hemispherical groove (72). The sphere (43) is inserted into the hemispherical groove (72). The third rotating shaft (431) is inserted into the third connection groove (721) for rotational connection; A positioning block (722) is provided in the hemispherical groove (72). The positioning block (722) is inserted into the positioning area (432). The suction nozzle (4) drives the positioning area (432) to rotate around the positioning block (722).

9. The structure of a new double-drinking cup with a rotating open lid according to claim 8, characterized in that: The number of the positioning blocks (722) and the positioning areas (432) is both two. The positioning blocks (722) are distributed along the width direction of the storage cavity (7). The positioning blocks (722) and the positioning areas (432) correspond to each other one by one.