An intensive island platform
By designing an intensive island with rotatable dining table and linkage components, the problem of limited kitchen space is solved, and multi-functional use in a smaller space is achieved, increasing the use area and simplifying operation.
Patent Information
- Application Number
- CN202310493584.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-28
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2043-04-28
AI Technical Summary
In a limited kitchen space, the functions of traditional islands are difficult to maintain intact in smaller spaces, especially as dining tables and operating tables.
An intensive island platform is designed, through a rotatable dining table and linkage components, the sink is automatically opened and closed, and combined with the hidden design of the telescopic faucet and tableware cylinder, increasing the use area and maintaining versatility.
The island is multifunctional in a smaller space, taking into account the dining table, operation table and cleaning functions, and the operation is simple to operate. The hidden design of the sink and faucet saves space.
Smart Images

Figure CN116509145B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of dining tables, and in particular, to an intensive island countertop. Background Art
[0002] An island countertop is a central operation table of appropriate size arranged in the center of the kitchen according to the size of the kitchen area. With the popularity of open kitchens, the use of kitchen island countertops has become more and more common.
[0003] An island countertop generally has several functions. First, it can be used as a dining table. After the food is prepared, it can be directly served and eaten on the island countertop without having to be carried to the dining room. Second, it can be used as an operation table, where the bought vegetables and fruits can be washed and cut on the island countertop. Third, it can increase the storage space, and many small appliances can be placed on the countertop of the island countertop.
[0004] However, the kitchen area space of ordinary families is limited. If a large island countertop is purchased, the kitchen will appear crowded; while a small island countertop can only function as storage or a dining table, and its functions will be correspondingly reduced. Summary of the Invention
[0005] In order to keep the functions of the island countertop unchanged in a smaller space, this application provides an intensive island countertop.
[0006] The intensive island countertop provided by this application adopts the following technical solution:
[0007] An intensive island countertop includes a bar counter and a dining table. The dining table is rotatably arranged on the bar counter. There is a recess above the bar counter, and a sink is provided in the recess. A baffle is movably arranged on the side wall of the recess, and a linkage block is fixedly arranged on the baffle. The linkage assembly pushes the linkage block, forcing the baffle to open or close the sink. A faucet and a pushing assembly are telescopically arranged on the bar counter. The baffle pushes the pushing assembly, forcing the faucet to extend out of the recess.
[0008] By adopting the above technical solution, the dining table can rotate relative to the bar counter, which can increase the placement space of the island counter. When eating, the dining table can be used to place dishes and tableware, and the sink above the bar counter can be used. The recessed position can provide a shielding space for the shielding plate. When the sink is not needed, the user can push the shielding plate to close the sink. Since the rotating dining table is generally in the state of dining, and hands need to be washed or tableware needs to be rinsed before dining, the sink is gradually opened during the process of rotating the dining table by the linkage component. When the sink is fully opened, the pushing component will push the faucet to extend the faucet out of the recess, which is convenient for washing the tableware. On the one hand, the island counter can save area, and the sink can be hidden when it is not in use all the time. On the other hand, after the shielding plate hides the sink, if the dining table is not reset, objects can also be temporarily placed above the shielding plate. The dining table can rotate, increasing the use area of the bar counter, so as to realize that the function of the island counter remains unchanged in a smaller space, and it also has the functions of being used as a dining table, an operating table and for cleaning.
[0009] Optionally, the linkage component includes a linkage baffle and a linkage elastic member fixedly connected to the linkage baffle. The dining table is provided with a first linkage groove for the linkage block to enter and a second linkage groove communicated with the first linkage groove. The linkage elastic member and the linkage baffle are both located in the second linkage groove, and the linkage elastic member has a tendency to force the linkage baffle to move towards the first linkage groove. When the dining table rotates, the linkage block enters the first linkage groove and abuts against the linkage baffle, and the linkage baffle pushes the shielding plate to open or close the sink.
[0010] By adopting the above technical solution, the first linkage groove can allow the linkage block fixed on the shielding plate to pass through, so that there will be no large gap between the lower surface of the dining table and the upper surface of the bar counter due to the existence of the linkage block. The linkage baffle can abut against the linkage block. When the dining table rotates, the linkage block will relatively enter the first linkage groove, and the linkage baffle will abut against the linkage block to push the shielding plate to move. When the linkage baffle cannot push the linkage block, the reaction force of the linkage block will force the linkage baffle to enter the second linkage groove. On the one hand, the dining table can continue to rotate without being interfered by the linkage block. On the other hand, the fact that the linkage block cannot be pushed means that the sink is in the fully opened or fully closed state at this time. By manually rotating the dining table, the automatic opening or closing of the sink can be realized, which is convenient and fast, and does not require the user to control the opening or closing of the sink again.
[0011] Optionally, a first hidden groove is formed in the bar counter, the water faucet is slidably disposed in the first hidden groove, the pushing assembly includes a pushing elastic member, a locking elastic member and a locking member, the pushing elastic member is fixedly disposed at the bottom of the water faucet and has a tendency to force the water faucet to extend out of the recess; a first locking groove is formed in the bar counter, both the locking elastic member and the locking member are located in the first locking groove, a second locking groove is formed in the water faucet, and the locking elastic member pushes the locking member to force the end of the locking member to enter the second locking groove; when the locking member enters the second locking groove, the water faucet is hidden in the first hidden groove.
[0012] By adopting the above technical solution, the first hidden groove is used to hide the water faucet, which can prevent the water faucet from interfering with the baffle during the movement of the baffle. The first locking groove is used to accommodate the locking member, and the locking elastic member always has a tendency to move the locking member towards the second locking groove. When it is necessary to hide the water faucet, just press the water faucet to make it move towards the first hidden groove. After the first locking groove communicates with the second locking groove, the locking elastic member will push one end of the locking groove into the second locking groove to lock the water faucet and restrict the water faucet from extending out of the first hidden groove. When it is necessary to use the sink, let one end of the locking member come out of the second locking groove. At this time, the water faucet is in a movable state, and then under the push of the pushing elastic member, the water faucet is pushed out of the first hidden groove, so that the water faucet can be in a used state.
[0013] Optionally, the pushing assembly further includes a guiding member and a pushing member. A pushing groove is formed in the baffle. One end of the guiding member and one end of the pushing member are in mutual contact, and both the guiding member and the pushing member are slidably disposed on the baffle. The locking member has an unlocking portion; when the baffle moves towards the side wall of the recess to open the sink, the side wall of the recess can push the guiding member, so that the pushing member pushes the locking member through the unlocking portion, and one end of the locking member is separated from the second locking groove, so that the water faucet extends out of the recess under the push of the pushing elastic member.
[0014] By adopting the above technical solution, after the water tank is opened, the shielding plate will abut against the concave side wall, and the guiding member will be abutted by the concave side wall and enter the pushing groove. At this time, the guiding member can push the pushing member to make the lower end of the pushing member enter the first locking groove. The pushing member pushes the unlocking portion of the locking member, so that one end of the locking member leaves the second locking groove. At this time, without the limitation of the locking member, the pushing elastic member can push the faucet, and the faucet comes out of the first hidden groove. The faucet is unlocked by pushing. When the water tank is opened, the faucet can automatically extend out of the first hidden groove, which is convenient and fast. When it is necessary to close the water tank, just press the faucet to make the faucet retract into the first hidden part, and then rotate the dining table. The linkage block can push the linkage block to move the shielding plate, so as to close the water tank.
[0015] Optionally, the pushing member is fixedly connected with a reset elastic member, the reset elastic member can force the pushing member to retract into the pushing groove, a buffer groove is formed in the concave side wall, a buffer plate and a buffer elastic member are slidably connected in the buffer groove, and the buffer elastic member forces the buffer plate to push the shielding plate, so that a reset space is formed between the concave side wall and the side wall of the shielding plate, and one end of the guiding member located in the pushing groove extends into the reset space.
[0016] By adopting the above technical solution, after the water tank is opened and the faucet also extends out of the first hidden groove. It shows that one end of the pushing member will enter the first unlocking groove. When the pushing member is always in the first unlocking groove, the shielding plate will have a problem that it cannot move because the pushing member is tightly abutted by the side wall of the first unlocking groove. By arranging the buffer elastic member and the buffer plate, the buffer plate can push the shielding plate to move slightly, first form a reset space between the concave side wall and the side wall of the shielding plate, and then the reset elastic member can reset the pushing member into the pushing groove. One end of the guiding member is pushed by the pushing member and extends from the pushing groove into the reset space. The reset space is used to provide a movable space for the guiding member, so that when the water tank is opened, the concave side wall will not always abut against the guiding member and cannot come out of the pushing groove, which is convenient for the reset of the pushing member. This setting can prevent one end of the pushing member from always being in the first unlocking groove, and thus it can prevent the unlocking portion of the locking member from being pushed all the time, so that the locking member is always in the first unlocking groove. When the pushing member is reset into the pushing groove, the locking elastic member can push the locking member, so that the locking member has a tendency to move towards the second locking groove. In this way. If the user wants to hide the faucet, he can directly press the faucet to make the faucet move towards the first hidden groove. When the first locking groove is communicated with the second locking groove, the locking member can enter the second locking groove under the push of the locking elastic member, so as to lock the faucet. The locking speed is fast and can be achieved by simply pressing. If it is necessary to use the faucet again, just push the shielding plate. Through the push of the pushing assembly, the faucet will be unlocked and automatically extend out of the first hidden groove.
[0017] Optionally, a damping plate is fixedly connected to one end of the first hidden groove where the faucet is located. The damping plate divides the first hidden groove into a damping cavity and a reset cavity. The damping plate is provided with small holes, and the small holes communicate with the damping cavity and the reset cavity respectively.
[0018] By adopting the above technical solution, the air pressure is used to make the faucet have a damping effect when moving. When the faucet comes out of the first hidden groove, the gas in the damping cavity will enter the reset cavity through the small holes. Since the aperture of the small holes is small, the gas in the damping cavity will not flow into the reset cavity all at once, so the faucet will not come out of the first hidden groove all at once. On the one hand, it improves the stability of the faucet movement, and on the other hand, it reduces the impact load and can extend the service life of the faucet.
[0019] Optionally, the bar is provided with a second hidden groove communicating with the recess. A tableware cylinder is installed in the second hidden groove. A transmission assembly is arranged in the bar. The output end of the transmission assembly is engaged with the baffle, and the input end of the transmission assembly is hinged to the tableware cylinder; the baffle can drive the transmission assembly to make the tableware cylinder extend out of or enter the second hidden groove.
[0020] By adopting the above technical solution, the second hidden groove is used to hide the tableware cylinder so that the tableware cylinder will not interfere with the baffle when the baffle moves. By setting the transmission assembly, the tableware cylinder and the baffle can be linked. When the sink needs to be closed, when the baffle moves to close the sink, the transmission assembly will make the tableware cylinder enter the second hidden groove. When the sink is opened, when the baffle moves to open the sink, the transmission assembly will make the tableware cylinder come out of the second hidden groove, so that the user can conveniently take the tableware in the tableware cylinder.
[0021] Optionally, the transmission assembly includes a transmission rack, a guiding gear and a transmission rod. A convex tooth is fixedly arranged on the side wall of the baffle. The two sides of the guiding gear are respectively engaged with the convex tooth and the transmission rack. The bar is provided with a transmission groove, and the transmission rod is slidably arranged in the transmission groove. A convex rod hinged to the tableware cylinder is fixedly arranged on one side of the transmission rod. A plurality of transmission protrusions are arranged on the other side of the transmission rod along the length direction of the transmission rod; an inclined groove for the transmission protrusions to enter is arranged on the transmission rack; when the sink is opened, the lower wall of the inclined groove pushes the transmission protrusions, forcing the transmission rod to push the tableware cylinder to extend out of the second hidden groove.
[0022] By adopting the above technical solution, the guiding gear and the transmission rack play a role in transmission. The movement of the shielding plate is transmitted to the guiding gear and the transmission rack through the convex teeth, and then the transmission rack pushes the transmission protrusion through the inclined slot to move the transmission rod. Since the transmission rod is hinged to the tableware cylinder, when the transmission rod moves, the tableware cylinder can rotate while moving; when the transmission rack moves, the upper wall of the inclined slot pushes the transmission protrusion downward, and the transmission rod will move downward. The bottom wall of the second hidden slot will abut against the lower part of the tableware cylinder. As the tableware cylinder moves downward, the tableware cylinder will gradually tilt and enter the second hidden slot. When the upper wall of the inclined slot pushes the transmission protrusion upward, the transmission rod will move upward. During the process of the tableware cylinder coming out of the second hidden slot, it gradually changes from an inclined state to a vertical state, so that the opening direction of the tableware cylinder faces upward, facilitating the user to take the tableware in the tableware cylinder.
[0023] Optionally, the transmission rack includes a transmission strip, an inclined slot strip and a compensation elastic member. The transmission strip meshes with the guiding gear. The inclined slot is formed in the inclined slot strip. Both ends of the compensation elastic member are fixedly connected to the transmission strip and the inclined slot strip.
[0024] By adopting the above technical solution, the compensation elastic member has a delaying effect. When the shielding plate is being opened for the sink, it will not directly move the tableware cylinder upward. Instead, it first causes the compensation elastic member to be stretched, and only when the tensile force reaches a certain level will it pull the inclined slot strip to move and make the tableware cylinder move upward; this delaying effect can prevent the tableware cylinder from directly moving upward and hitting the lower surface of the shielding plate when the shielding plate is not fully opened, avoiding the tableware cylinder and the shielding plate from getting stuck with each other.
[0025] Optionally, the bottom of the tableware cylinder is provided with filtering holes. The bottom of the second hidden slot is inclined and provided with drain holes. The bottom wall of the sink is connected with a drain pipe, and the drain holes are communicated with the drain pipe.
[0026] By adopting the above technical solution, after the tableware is washed, it can be directly put into the tableware cylinder without being dried specifically. The water attached to the tableware will flow from the filtering holes to the bottom of the second hidden slot. Since the second hidden slot is inclined, the tableware water will be diverted and flow into the drain pipe through the drain holes, thus reducing the accumulation of tableware water.
[0027] In summary, the present application includes at least one of the following beneficial technical effects:
[0028] 1. The dining table can rotate, increasing the usable area of the bar counter, so that the function of the island counter remains unchanged in a smaller space, and it can also be used as a dining table, an operating table and for cleaning.
[0029] 2. By manually rotating the dining table, the sink can be automatically opened or closed, which is convenient and fast, and there is no need for the user to control the opening or closing of the sink again. Description of the Drawings
[0030] Figure 1 is the overall schematic diagram of this embodiment Figure 1 .
[0031] Figure 2 is the overall schematic diagram of this embodiment Figure 2 .
[0032] Figure 3 is the structural schematic diagram of the linkage component.
[0033] Figure 4 is the cross-sectional structural schematic diagram of the pushing component.
[0034] Figure 5 is Figure 4 the partial enlarged schematic diagram of the cross-sectional structure in.
[0035] Figure 6 is the cross-sectional structural schematic diagram of the transmission component.
[0036] Figure 7 is the cross-sectional structural schematic diagram at the drain pipe of the bar
[0037] Figure 8 is Figure 6 the partial enlarged schematic diagram of the cross-sectional structure in.
[0038] Figure 9 is the three-dimensional structural schematic diagram of the transmission component.
[0039] Description of the Reference Numerals: 1, bar; 11, dining table; 12, depression; 13, sink; 14, baffle; 141, pushing groove; 15, faucet; 16, installation groove; 2, linkage component; 21, linkage block; 22, linkage baffle; 23, linkage elastic member; 24, first linkage groove; 25, second linkage groove; 3, pushing component; 31, first hidden groove; 311, damping plate; 312, damping cavity; 313, reset cavity; 314, small hole; 32, pushing elastic member; 33, locking member; 331, locking elastic member; 332, first locking groove; 333, second locking groove; 334, unlocking portion; 34, guiding member; 35, pushing member; 351, reset elastic member; 36, buffer plate; 361, buffer elastic member; 362, buffer groove; 37, reset space; 4, transmission component; 41, second hidden groove; 42, tableware cylinder; 421, filtering hole; 43, transmission rack; 431, transmission bar; 432, inclined groove bar; 433, compensating elastic member; 434, inclined groove; 44, guiding gear; 441, convex tooth; 45, transmission rod; 451, transmission groove; 452, convex rod; 453, transmission protrusion; 46, drain hole; 47, drain pipe; 48, guiding groove. Detailed Description of the Invention
[0040] In this specification, orientation terms such as up, down, left, right, front, back, front side, back side, top, bottom, etc., which are mentioned or may be mentioned, are defined relative to the structures shown in the respective drawings. They are relative concepts and may accordingly change depending on their different positions and usage states. Therefore, these or other orientation terms should not be construed as restrictive terms. In addition, terms such as "first", "second", "third", etc., or similar expressions are only used for descriptive and differentiating purposes and should not be understood as indicating or implying the relative importance of the corresponding components.
[0041] The following further elaborates on this application Figures 1 - 9 in conjunction with the attached drawings.
[0042] An embodiment of this application discloses an intensive island counter.
[0043] Referring to Figure 1 and Figure 2 , an intensive island counter includes a bar counter 1 and a dining table 11 that can rotate relative to the bar counter 1. A wine cabinet and drawers are provided on the side wall of the bar counter 1. The wine cabinet can store beverages, and sundries can be placed in the drawers. An installation groove 16 is also formed on the side wall of the bar counter 1, which can be used to install household appliances such as an oven or a microwave oven. The dining table 11 is arranged on the upper surface of the bar counter 1, and a recess 12 is also formed on the upper surface of the bar counter 1. When the dining table 11 rotates, it can cover or uncover the position of the recess 12.
[0044] A water sink 13 is formed on the bottom surface of the recess 12, and a baffle 14 is movably arranged on the side of the recess 12. Pushing the baffle 14 can open or close the water sink 13. The baffle 14 can be directly opened by the user, or a linkage assembly 2 can be arranged inside the dining table 11. When the dining table 11 rotates, the linkage assembly 2 can drive the baffle 14 to open or close the water sink 13.
[0045] Referring to Figure 2 and Figure 3, the linkage component 2 includes a first linkage groove 24, a second linkage groove 25, a linkage baffle 22, a linkage elastic member 23 and a linkage block 21. The cross-section of the shielding baffle 14 is L-shaped, having a long side and a short side. The long side of the shielding baffle 14 is used to open or close the water tank 13, and the linkage block 21 is slidably arranged on the upper part of the short side of the shielding baffle 14. The first linkage groove 24 is opened on the lower surface of the dining table 11. When the dining table 11 rotates, the linkage block 21 will relatively enter the first linkage groove 24 of the dining table 11. The second linkage groove 25 is opened on the side wall of the first linkage groove 24. The linkage elastic member 23 and the linkage baffle 22 are both located in the second linkage groove 25. The two ends of the first linkage elastic member 23 are fixedly connected to the side wall of the second linkage groove 25 and the linkage baffle 22. One end of the linkage baffle 22 extends into the first linkage groove 24. In this embodiment, there are two second linkage grooves 25, which are arranged on both sides of the first linkage groove 24. A linkage baffle 22 and a linkage elastic member 23 are arranged in each second linkage groove 25. The linkage elastic member 23 is a spring.
[0046] When the dining table rotates, the linkage block 21 will enter the first linkage groove 24, and the linkage baffle 22 will abut against the linkage block 21 and then push the linkage block 21 so that the linkage block 21 can drive the shielding baffle 14 to move. When the linkage baffle 22 pushes one side of the linkage block 21, it will drive the shielding baffle 14 to open the water tank 13; on the contrary, when the linkage baffle 22 pushes the other side of the linkage block 21, it will drive the shielding baffle 14 to close the water tank 13. In this embodiment, the second linkage groove 25 is arc-shaped, and the center of the arc is concentric with the rotation center of the dining table. The linkage block 21 moves relative to the shielding baffle 14 so that the linkage block 21 can adapt to the arc-shaped track of the second linkage groove 25 when the shielding baffle 14 moves in a straight line.
[0047] Refer to Figure 4 and Figure 5, a first hidden slot 31 is formed in the bar 1, a water faucet 15 is slidably arranged in the first hidden slot 31, and a pushing assembly 3 for pushing the water faucet 15 to extend out of the recess 12 is further arranged in the hidden slot; the pushing assembly 3 includes a pushing elastic member 32, a locking elastic member 331 and a locking member 33. The bar 1 is provided with a first locking slot 332, and the water faucet 15 is provided with a second locking slot 333. The locking elastic member 331 and the locking member 33 are located in the first locking slot 332. The locking elastic member 331 is a spring, and two ends of the locking elastic member 331 are respectively fixedly connected with the side wall of the first locking slot 332 and the locking member 33. When the water faucet 15 retracts into the hidden slot, the locking elastic member 331 pushes one end of the locking member 33 into the second locking slot 333 of the water faucet 15, thereby restricting the water faucet 15 from coming out of the first hidden slot 31. The first hidden slot 31 communicates with the recess 12. When it is necessary for the water faucet 15 to come out of the first hidden slot 31, first make the elastic member disengage from the second locking slot 333, and the water faucet 15 can extend out of the recess 12 from the first hidden slot 31 under the push of the pushing elastic member 32.
[0048] A pushing slot 141 is formed in the long side of the baffle 14. A guiding member 34 and a pushing member 35 are slidably arranged in the pushing slot 141. The pushing member 35 is fixedly connected with a reset elastic member 351. The reset elastic member 351 is a spring. The pushing slot 141 communicates with the first locking slot 332. In the initial state, the reset elastic member 351 can force the pushing member 35 to be hidden in the pushing slot 141, so as not to affect the movement of the baffle 14. One end of the guiding member 34 protrudes out of the pushing slot 141, and the protruding end of the guiding member 34 faces the side wall position of the recess 12. When the baffle 14 opens the water tank 13, the baffle 14 moves, so that the guiding member 34 moves towards the side wall of the recess 12. The side wall of the recess 12 will push the guiding member 34 into the pushing slot 141. When the guiding member 34 completely enters the pushing slot 141, it will push the pushing member 35 to move, so that one end of the pushing member 35 enters the first locking slot 332. The locking member 33 further has an unlocking portion 334. When the pushing member 35 enters the first locking slot 332, it will push the unlocking portion 334 of the locking member 33, so that the locking member 33 moves away from the second locking slot 333. After the locking member 33 leaves the second locking slot 333, the water faucet 15 will extend out of the first hidden slot 31 to the recess 12 under the push of the pushing elastic member 32.
[0049] At the bottom of the faucet 15, a damping plate 311 is integrally provided. The damping plate 311 divides the first hidden groove 31 into a damping cavity 312 and a reset cavity 313. The pushing elastic member 32 is located in the reset cavity 313 and is fixedly connected to the bottom wall of the reset cavity 313 and the bottom wall of the damping plate 311 at both ends. The pushing elastic member 32 is a spring. The first hidden groove 31 communicates with the recess 12. The pushing elastic member 32 pushes the damping plate 311 to move upward, and the faucet 15 also moves upward and extends from the recess 12. The damping plate 311 is provided with a small hole 314. When the damping plate 311 moves, the air in the damping cavity 312 will enter the reset cavity 313 through the small hole 314. Since the radius of the small hole 314 is relatively small, the air in the damping cavity 312 cannot enter the reset cavity 313 all at once. Therefore, when the damping plate 311 moves upward, air pressure will be generated in the damping cavity 312, and the faucet 15 will not come out of the recess 12 all at once.
[0050] On the side wall of the recess 12, a buffer groove 362 is provided. A buffer plate 36 and a buffer elastic member 361 are installed in the buffer groove 362. The buffer elastic member 361 is a spring. The two ends of the buffer elastic member 361 are fixedly connected to the buffer plate 36 and the side wall of the buffer groove 362. When the short side of the shielding plate 14 abuts against the side wall of the recess 12 and the guiding member 34 enters the pushing groove 141, the faucet 15 will extend from the recess 12. Then the buffer plate 36 will push the short side of the shielding plate 14, making the side wall of the short side of the shielding plate 14 move away from the side wall of the recess 12, forming a reset space 37. The reset elastic member 351 can reset the pushing member 35 into the pushing groove 141, and the pushing member 35 pushing the guiding member 34 can make one end of the guiding member 34 expose in the reset space 37.
[0051] Refer to Figure 6 and Figure 7 Refer to
[0052] Refer toFigure 8 and Figure 9 , the transmission assembly 4 includes a transmission rack 43, a guide gear 44 and a transmission rod 45. A convex tooth 441 is provided on the side wall of the shielding plate 14. The bar counter 1 is provided with a guide groove 48 and a transmission groove 451 communicating with the guide groove 48. Both the transmission rack 43 and the guide gear 44 are located in the guide groove 48. The transmission rack 43 can rotate in the guide groove 48 and can slide in the guide groove 48. The convex tooth 441 on the side wall of the shielding plate 14 meshes with the guide gear 44, and the guide gear 44 meshes with the transmission rack 43. The transmission rod 45 is located in the transmission groove 451 and can move along the length direction of the transmission groove 451. One side of the transmission rod 45 is hinged to the upper half of the tableware cylinder 42, and a transmission protrusion 453 is fixedly provided on the other side of the transmission rod 45. The transmission rack 43 is provided with an inclined groove 434, and the transmission protrusion 453 is located in the inclined groove 434. The upper wall of the inclined groove 434 can push the transmission protrusion 453 to move the transmission rod 45 downward, and the lower wall of the inclined groove 434 can push the transmission protrusion 453 to move the transmission rod 45 upward; when the transmission rod 45 moves upward, the tableware cylinder 42 will come out of the second hidden groove 41, and the tableware cylinder 42 will gradually rotate from an inclined state to a vertical state. On the contrary, when the transmission rod 45 moves downward, the tableware cylinder 42 will be hidden in the second hidden groove 41, and the shielding plate 14 can be moved to the position of the recess 12, thereby shielding the water sink 13.
[0053] The transmission rack 43 includes a transmission strip 431, an inclined groove strip 432 and a compensation elastic member 433. The compensation elastic member 433 is a spring, and its two ends are fixedly connected to the transmission strip 431 and the inclined groove strip 432. The transmission strip 431 meshes with the guide gear 44, and the inclined groove 434 is opened on the inclined groove strip 432. When the shielding plate 14 moves, the guide gear 44 is rotated through the convex tooth 441. The guide gear 44 drives the transmission strip 431 to move. The transmission sleeve transmits the force to the inclined groove strip 432 through the compensation elastic member 433. The upper wall or the lower wall of the inclined groove 434 of the inclined groove strip 432 pushes the transmission protrusion 453 of the transmission rod 45. There are multiple transmission protrusions 453 and inclined grooves 434, which improves the transmission effect, and the movement of the transmission rod 45 drives the tableware to move.
[0054] The implementation principle of the embodiment is as follows:
[0055] When using the island counter, rotate the dining table 11 to increase the usable area of the island counter. When the dining table 11 rotates, it will push the linkage block 21 through the linkage block, causing the shielding plate 14 to move towards the side wall of the recess 12. When the recess 12 is exposed on the upper surface of the bar counter 1, it indicates that the water sink 13 is opened. When the water sink 13 is completely opened, the short side of the shielding plate 14 will abut against the side wall position of the recess 12, and the pushing assembly 3 will start to work, causing the faucet 15 to extend from the first hidden groove 31 to the recess 12. At the same time, the convex tooth 441 on the side wall of the shielding plate 14 will drive the transmission assembly 4, causing the tableware cylinder 42 to be exposed from the second hidden groove 41 at the same time.
[0056] When it is necessary to hide the sink 13, first push the faucet 15 so that the faucet 15 is hidden in the first hidden groove 31, and the locking member 33 locks the faucet 15 to prevent the faucet 15 from coming out of the first hidden groove 31. Then, rotate the dining table 11 in the reverse direction so that the baffle 14 moves to the position of the recess 12. While moving, the transmission assembly 4 will drive the tableware cylinder 42 to make the tableware cylinder 42 enter the second hidden groove 41, so that the baffle 14 can move to the position of the recess 12 without being interfered by the faucet 15 and the tableware cylinder 42, and finally the closing of the sink 13 is realized, so that the sink 13 can be blocked.
[0057] The above are all the preferred embodiments of the present application, and are not used to limit the protection scope of the present application; therefore, according to the technical solution of the present invention, without changing the essence of the present invention, those of ordinary skill in the art can propose various structural forms and implementation methods that can be mutually replaced. Therefore, the above specific embodiments and the drawings are only exemplary descriptions of the technical solution of the present invention, and should not be regarded as the whole of the present invention or regarded as a limitation or restriction on the technical solution of the present invention. Therefore: all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. An intensive island platform, comprising a bar counter (1) and a dining table (11), wherein the dining table (11) is rotatably arranged on the bar counter (1), and is characterized in that: Above the said bar counter (1) there is a depression (12), a water sink (13) is provided at the depression (12), a baffle (14) is movably arranged on the side wall of the depression (12), a linkage assembly (2) is arranged on the dining table (11), and a linkage block (21) is fixedly arranged on the baffle (14); the linkage assembly (2) pushes the linkage block (21) to force the baffle (14) to open or close the water sink (13); the bar counter (1) is telescopically provided with a water tap (15) and a pushing assembly (3), the baffle (14) pushes the pushing assembly (3) to force the water tap (15) to extend out of the depression (12); The said linkage assembly (2) includes a linkage baffle (22) and a linkage elastic member (23) fixedly connected to the linkage baffle (22). The dining table (11) is provided with a first linkage groove (24) for the linkage block (21) to enter and a second linkage groove (25) communicated with the first linkage groove (24). The linkage elastic member (23) and the linkage baffle (22) are both located in the second linkage groove (25), and the linkage elastic member (23) has a tendency to force the linkage baffle (22) to move towards the first linkage groove (24); when the dining table (11) rotates, the linkage block (21) enters the first linkage groove (24) and abuts against the linkage baffle (22), and the linkage baffle (22) pushes the baffle (14) to make the baffle (14) open or close the water sink (13); The said bar counter (1) is provided with a first hidden groove (31), the water tap (15) is slidably arranged in the first hidden groove (31), the pushing assembly (3) includes a pushing elastic member (32), a locking elastic member (331) and a locking member (33). The pushing elastic member (32) is fixedly arranged at the bottom of the water tap (15) and has a tendency to force the water tap (15) to extend out of the depression (12); the bar counter (1) is provided with a first locking groove (332), the locking elastic member (331) and the locking member (33) are both located in the first locking groove (332), the water tap (15) is provided with a second locking groove (333), and the locking elastic member (331) pushes the locking member (33) to force the end of the locking member (33) to enter the second locking groove (333); when the locking member (33) enters the second locking groove (333), the water tap (15) is hidden in the first hidden groove (31); The pushing component (3) further includes a guiding member (34) and a pushing member (35). The shielding plate (14) is provided with a pushing groove (141). One end of the guiding member (34) and one end of the pushing member (35) are in mutual abutment, and both the guiding member (34) and the pushing member (35) are slidably arranged on the shielding plate (14). The locking member (33) has an unlocking portion (334). When the shielding plate (14) moves towards the side wall of the recess (12) to open the water sink (13), the side wall of the recess (12) can push the guiding member (34), so that the pushing member (35) pushes the locking member (33) through the unlocking portion (334), causing one end of the locking member (33) to disengage from the second locking groove (333), and enabling the faucet (15) to extend out of the recess (12) under the pushing of the pushing elastic member (32). The pushing member (35) is fixedly connected with a reset elastic member (351). The reset elastic member (351) can force the pushing member (35) to retract into the pushing groove (141). The side wall of the recess (12) is provided with a buffer groove (362). A buffer plate (36) and a buffer elastic member (361) are slidably connected in the buffer groove (362). The buffer elastic member (361) forces the buffer plate (36) to push the shielding plate (14), so that a reset space (37) is formed between the side wall of the recess (12) and the side wall of the shielding plate (14). One end of the guiding member (34) located in the pushing groove (141) extends into the reset space (37).
2. The intensive island platform according to claim 1, wherein: One end of the faucet (15) located in the first hidden groove (31) is fixedly connected with a damping plate (311). The damping plate (311) divides the first hidden groove (31) into a damping cavity (312) and a reset cavity (313). The damping plate (311) is provided with small holes (314), and the small holes (314) are respectively communicated with the damping cavity (312) and the reset cavity (313).
3. The intensive island platform according to claim 1, characterized in that: The bar counter (1) is provided with a second hidden groove (41) communicated with the recess (12). A tableware cylinder (42) is installed in the second hidden groove (41). A transmission component (4) is arranged in the bar counter (1). The output end of the transmission component (4) is engaged with the shielding plate (14), and the input end of the transmission component (4) is hinged with the tableware cylinder (42). The shielding plate (14) can drive the transmission component (4) to make the tableware cylinder (42) extend out of or enter the second hidden groove (41).
4. The intensive island platform according to claim 3, characterized in that: The transmission assembly (4) includes a transmission rack (43), a guide gear (44), and a transmission rod (45). A convex tooth (441) is fixedly arranged on the side wall of the baffle plate (14). The two sides of the guide gear (44) are respectively engaged with the convex tooth (441) and the transmission rack (43). A transmission groove (451) is formed in the bar counter (1). The transmission rod (45) is slidably arranged in the transmission groove (451). A convex rod (452) hinged to the tableware cylinder (42) is fixedly arranged on one side of the transmission rod (45). A plurality of transmission protrusions (453) are arranged on the other side of the transmission rod (45) along the length direction of the transmission rod (45). An inclined groove (434) for the transmission protrusions (453) to enter is formed in the transmission rack (43). When the water tank (13) is opened, the lower wall of the inclined groove (434) pushes the transmission protrusions (453), forcing the transmission rod (45) to push the tableware cylinder (42) to extend out of the second hidden groove (41).
5. The intensive island platform according to claim 4, characterized in that: The transmission rack (43) includes a transmission strip (431), an inclined groove strip (432), and a compensation elastic member (433). The transmission strip (431) is engaged with the guide gear (44). The inclined groove (434) is formed in the inclined groove strip (432). The two ends of the compensation elastic member (433) are fixedly connected to the transmission strip (431) and the inclined groove strip (432).
6. The intensive island platform according to claim 3, characterized in that: Filter holes (421) are formed at the bottom of the tableware cylinder (42). The bottom of the second hidden groove (41) is inclined and provided with a drain hole (46). A drain pipe (47) is connected to the bottom wall of the water tank (13). The drain hole (46) is communicated with the drain pipe (47).
Citation Information
Patent Citations
Novel electronicly serve flexible bar counter
CN206314791U