Water-saving garden fountain
By introducing folding cloth and guide rod system into the garden fountain, the fountain is automatically blocked by temperature changes, solving the problem of rapid evaporation of water at high temperatures and achieving water-saving effects.
Patent Information
- Application Number
- CN202422206868.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The existing fountains evaporate rapidly in high temperature weather, resulting in frequent water replenishment and increased workload.
A water-saving garden fountain is designed. By setting a folding cloth and a guide rod system in the base, the temperature change driving device is used to automatically expand the folding cloth to cover the fountain body at high temperatures to block the sunlight to slow down water evaporation.
Effectively slow down the evaporation rate of fountain water at high temperatures, save water resources, and reduce the frequency of water replenishment.
Smart Images

Figure CN223145086U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of garden fountains, and particularly relates to a water-saving garden fountain. Background Art
[0002] Garden fountains are an important part of garden landscapes. They can not only beautify the environment, but also increase air humidity, lower the temperature, and generate a large amount of negative oxygen ions, which is beneficial to improving the urban appearance and enhancing the physical and mental health of residents. However, in actual life, we found that when the existing fountains are in use and encounter relatively hot weather, the water in the fountains will evaporate faster, resulting in the need for staff to replenish water in the fountains frequently, thus bringing a relatively large workload to the staff. Therefore, we propose a water-saving garden fountain. Content of the Utility Model
[0003] A technical problem to be solved by this application is: how to ensure that the water in the fountain will not lose at an accelerated rate in relatively hot weather, so as to achieve the purpose of saving water resources.
[0004] To solve the above technical problem, an embodiment of this application provides a water-saving garden fountain, which includes a base and a fountain body arranged in the base, and further includes
[0005] Folding cloth, there are two folding cloths, and both of the two folding cloths are arranged in the base and are used for shielding the fountain body and the inside of the base;
[0006] Guide rods, there are two guide rods, both of the two guide rods are arranged above the base, and both of the two guide rods are arc-shaped. Both of the two folding cloths are arranged at the bottom of the corresponding guide rods, and the guide rods are used to guide the movement direction of the folding cloth;
[0007] Covering assembly, arranged in the base, and the covering assembly is used to control the two guide rods to rotate on the base in high-temperature weather, and drive the two guide rods to drive the folding cloth to cover and shield the fountain body.
[0008] In some embodiments, the covering assembly includes a driving member arranged in the base, and the driving member is used to provide power for the rotation of the corresponding guide rod respectively. There are two triggering members arranged in the base, and the two triggering members are used to control the movement of the corresponding guide rod respectively. There are limiting members arranged on both sides of the base, and the two limiting members are used to control the fixation of the angles of the two guide rods. There is a locking member arranged on the two guide rods, and the locking member is used to fix the two guide rods together.
[0009] In some embodiments, the driving member includes four driving frames disposed on the base, and the four driving frames are respectively at both ends of two guiding rods. A driving shaft is rotatably disposed in each of the four driving frames. Both ends of the two guiding rods are rotatably disposed on adjacent driving frames through corresponding driving shafts. Driving torsion springs are disposed outside the four driving shafts, and one ends of the four driving torsion springs away from the four driving shafts are disposed on corresponding driving frames.
[0010] In some embodiments, the triggering member includes an extrusion groove formed in the base for storing a heat-expandable liquid. An extrusion plate is slidably disposed in the extrusion groove. An extrusion rod is disposed on a side of the extrusion plate away from the fountain body. A triggering rod is disposed at one end of the extrusion rod away from the extrusion plate. A triggering ring is disposed at the top of the triggering rod.
[0011] In some embodiments, the limiting member includes a limiting rope disposed on a side of the guiding rod away from the fountain body. A limiting ring is disposed at one end of the limiting rope away from the guiding rod. A fixing rod is disposed outside the base, and the limiting ring is slidably disposed outside the fixing rod. The triggering ring is slidably disposed outside the fixing rod, and the triggering ring is located between the limiting ring and the base.
[0012] In some embodiments, the locking member includes a locking block disposed on one of the two guiding rods. A locking groove is formed in the other guiding rod. A locking rod that cooperates with the locking groove is slidably disposed in the locking block. A locking spring is disposed outside the locking rod. A locking handle is disposed at one end of the locking rod away from the guiding rod. One end of the locking rod away from the locking handle is a bevel surface.
[0013] In some embodiments, the locking member includes magnets disposed on the tops of the two guiding rods, and the tops of the two magnets attract each other.
[0014] The utility model has at least the following beneficial effects:
[0015] When in use, when the weather temperature is relatively high, the liquid in the extrusion groove starts to expand, thereby pushing the extrusion plate, so that the extrusion plate drives the triggering rod through the extrusion rod. When the triggering rod moves, it drives the triggering ring to slide on the fixing rod until the triggering ring cooperates with the triggering rod to squeeze the limiting ring out of the fixing rod, causing the limiting ring to disengage from the fixing rod. At this time, the guiding rod rotates under the action of the driving torsion spring, thereby driving the adjacent folding cloth to unfold. When the two guiding rods are in contact, the folding cloth will completely cover the fountain body, thereby slowing down the evaporation rate of the water flow in the fountain body, and the shading cloth blocks the sunlight outside, avoiding the water temperature from rising due to direct sunlight, achieving the purpose of water conservation. Description of the Drawings
[0016] Figure 1 This is a schematic diagram of the overall structure of the present utility model;
[0017] Figure 2 This is a schematic diagram of the covering component structure of the present utility model;
[0018] Figure 3 This is a schematic side sectional view of the base structure of the present utility model;
[0019] Figure 4 This is a schematic diagram of the trigger structure of the present utility model;
[0020] Figure 5 This is a schematic diagram of a partial structure of the locking member of the present utility model;
[0021] Figure 6 This is an exploded schematic diagram of the driving member structure of the present utility model;
[0022] Figure 7 This is a schematic diagram of the locking spring structure of the present utility model;
[0023] Figure 8 This is a schematic diagram of the structure of Embodiment 2 of the present utility model.
[0024] In the figure: 1. Base; 2. Fountain body; 3. Folding cloth; 4. Guide rod; 5. Covering component; 6. Driving member; 61. Driving frame; 62. Driving shaft; 63. Driving torsion spring; 7. Trigger; 71. Extrusion groove; 72. Extrusion plate; 73. Extrusion rod; 74. Trigger rod; 75. Trigger ring; 8. Limiting member; 81. Limiting rope; 82. Limiting ring; 83. Fixed rod; 9. Locking member; 91. Lock block; 92. Lock groove; 93. Lock rod; 94. Locking spring; 95. Locking handle; 10. Magnet. Specific embodiments
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0026] Embodiment 1
[0027] Please refer to Figure 1-7 , the present utility model provides a technical solution: a water-saving garden fountain, including a base 1 and a fountain body 2 arranged in the base 1, and further including
[0028] There are two folding cloths 3, and both of the two folding cloths 3 are arranged inside the base 1 for shielding the fountain body 2 and the inside of the base 1;
[0029] There are two guiding rods 4. Both of the two guiding rods 4 are arranged above the base 1, and both of the two guiding rods 4 are arc-shaped. Both of the two folding cloths 3 are arranged at the bottom of the corresponding guiding rods 4, and the guiding rods 4 are used to guide the movement direction of the folding cloths 3;
[0030] The covering component 5 is arranged inside the base 1. The covering component 5 is used to control the two guiding rods 4 to rotate on the base 1 in high-temperature weather, and drive the two guiding rods 4 to drive the folding cloths 3 to cover and shield the fountain body 2.
[0031] The covering component 5 includes a driving part 6 arranged inside the base 1. The driving part 6 provides power for the rotation of the corresponding guiding rods 4 respectively. There are two triggering parts 7 arranged inside the base 1. The two triggering parts 7 are used to control the movement of the corresponding guiding rods 4 respectively. There are limiting parts 8 arranged on both sides of the base 1. The two limiting parts 8 are used to control the fixing of the angles of the two guiding rods 4. There is a locking part 9 arranged on the two guiding rods 4. The locking part 9 is used to fix the two guiding rods 4 together.
[0032] The driving part 6 includes four driving frames 61 arranged on the base 1, and the four driving frames 61 are respectively at the two ends of the two guiding rods 4. Driving shafts 62 are rotatably arranged inside the four driving frames 61. The two ends of the two guiding rods 4 are rotatably arranged on the adjacent driving frames 61 through the corresponding driving shafts 62. Driving torsion springs 63 are arranged outside the four driving shafts 62. One ends of the four driving torsion springs 63 far away from the four driving shafts 62 are arranged on the corresponding driving frames 61. When the guiding rods 4 are released from the restriction of the limiting ropes 81, the driving torsion springs 63 will control the driving shafts 62 to rotate. When the driving shafts 62 rotate under the action of the driving torsion springs 63, the driving shafts 62 will drive the guiding rods 4 arranged outside them to rotate together, so that the two guiding rods 4 gradually approach and fit together. Its function is to enable the two guiding rods 4 to fit together when the guiding rods 4 are not affected by external forces, so as to provide power for the rotation of the guiding rods 4.
[0033] The trigger member 7 includes an extrusion groove 71 formed in the base 1 for storing heat-expandable liquid. An extrusion plate 72 is slidably disposed in the extrusion groove 71. An extrusion rod 73 is disposed on one side of the extrusion plate 72 away from the fountain body 2. A trigger rod 74 is disposed at one end of the extrusion rod 73 away from the extrusion plate 72. A trigger ring 75 is disposed at the top of the trigger rod 74. The heat-expandable liquid placed in the extrusion groove 71 is mercury. High temperature will cause it to start expanding, so that the heat-expanded mercury squeezes the extrusion plate 72, causing the push plate to slide in the extrusion groove 71. When the extrusion plate 72 moves, the extrusion plate 72 will drive the extrusion rod 73 on one side of it to move. When the extrusion rod 73 moves, the extrusion rod 73 will drive the trigger rod 74 at its top to move together. While the trigger rod 74 is moving along with the extrusion rod 73, it will drive the trigger ring 75 at its top to move together, causing the trigger ring 75 to slide on the fixed rod 83. Its function is to control whether the fountain body 2 needs to be shielded according to the change of weather temperature.
[0034] The limiting member 8 includes a limiting rope 81 disposed on the side of the guiding rod 4 away from the fountain body 2. A limiting ring 82 is disposed at one end of the limiting rope 81 away from the guiding rod 4. A fixed rod 83 is disposed outside the base 1, and the limiting ring 82 is slidably disposed outside the fixed rod 83. The trigger ring 75 is slidably disposed outside the fixed rod 83, and the trigger ring 75 is located between the limiting ring 82 and the base 1. When the trigger ring 75 slides on the fixed rod 83, the trigger ring 75 will cooperate with the trigger rod 74 to squeeze the limiting ring 82, causing the trigger ring 75 to gradually disengage from the fixed rod 83. When the limiting ring 82 completely disengages from the fixed rod 83, the limiting rope 81 loses its restriction, causing the guiding rod 4 at the end away from the limiting ring 82 to be released from the restriction. Its function is to fix the position of the guiding rod 4 after the guiding rod 4 is retracted.
[0035] The locking member 9 includes a locking block 91 disposed on one of the two guiding rods 4. A locking groove 92 is formed on the other guiding rod 4. A locking rod 93 that cooperates with the locking groove 92 is slidably disposed in the locking block 91. A locking spring 94 is disposed outside the locking rod 93. A locking handle 95 is disposed at one end of the locking rod 93 away from the guiding rod 4. One end of the locking rod 93 away from the locking handle 95 is a slope. During the process of the two guiding rods 4 fitting together, the guiding rod 4 with the locking groove 92 will push up the locking rod 93 through the slope at one end of the locking rod 93, and then the two guiding rods 4 are completely fitted together. At this time, the locking spring 94 will control the locking rod 93 to insert into the locking groove 92. Its function is to fix the two guiding rods 4 together through the cooperation of the locking block 91 and the locking rod 93.
[0036] In use, when the weather temperature is relatively high, since the heat-expandable liquid placed in the extrusion groove 71 is mercury, the high temperature will cause it to start expanding, so that the heat-expanded mercury squeezes the extrusion plate 72, causing the push plate to slide in the extrusion groove 71. When the extrusion plate 72 moves, the extrusion plate 72 will drive the extrusion rod 73 on one side of it to move. When the extrusion rod 73 moves, the extrusion rod 73 will drive the trigger rod 74 on its top to move together. While following the movement of the extrusion rod 73, the trigger rod 74 will drive the trigger ring 75 on its top to move together, causing the trigger ring 75 to slide on the fixed rod 83. When the trigger ring 75 slides on the fixed rod 83, the trigger ring 75 will cooperate with the trigger rod 74 to squeeze the limit ring 82, causing the trigger ring 75 to gradually disengage from the fixed rod 83. When the limit ring 82 completely disengages from the fixed rod 83, the limit rope 81 will lose its restraint, causing the guide rod 4 at the end far from the limit ring 82 to be released from the restraint. After the guide rod 4 is released from the restraint of the limit rope 81, the driving torsion spring 63 will control the driving shaft 62 to rotate. When the driving shaft 62 rotates under the action of the driving torsion spring 63, the driving shaft 62 will drive the guide rod 4 arranged on its outer side to rotate together, so that the two guide rods 4 gradually approach and fit together. During the fitting process of the two guide rods 4, the guide rod 4 with the lock groove 92 will push up the lock rod 93 through the inclined surface at one end of the lock rod 93. Then the two guide rods 4 are completely fitted. At this time, the locking spring 94 will control the lock rod 93 to insert into the lock groove 92, so that through the cooperation of the lock block 91 and the lock rod 93, the two guide rods 4 are fixed together. When the two guide rods 4 rotate, the two guide rods 4 will drive the corresponding folding cloth 3 to move together. When the two guide rods 4 are completely fitted, the folding cloth 3 is completely unfolded, thus cooperating with the two guide rods 4 to completely block the fountain body 2, so that the water in the fountain body 2 can avoid direct sunlight and at the same time slow down the evaporation rate of the water flow at high temperature, thereby achieving the effect of water conservation.
[0037] Embodiment 2
[0038] Please refer to Figure 8 , the present invention provides a technical solution:
[0039] Different from Embodiment 1, the locking member 9 includes magnets 10 arranged on the tops of the two guide rods 4, and the tops of the two magnets 10 attract each other. When the two guide rods 4 are completely fitted, the two magnets 10 will adsorb together, thereby fixing the two guide rods 4 together. Its function is that the two guide rods 4 can be fixed together through the mutual attraction of the two magnets 10, and then the two guide rods 4 drive the corresponding folding cloth 3 to block the fountain body 2.
[0040] In use, when the weather temperature is relatively high, since the heat-expandable liquid placed in the extrusion groove 71 is mercury, the high temperature will cause it to start expanding, so that the heat-expanded mercury squeezes the extrusion plate 72, causing the push plate to slide in the extrusion groove 71. When the extrusion plate 72 moves, the extrusion plate 72 will drive the extrusion rod 73 on one side of it to move. When the extrusion rod 73 moves, the extrusion rod 73 will drive the trigger rod 74 at its top to move together. While the trigger rod 74 follows the movement of the extrusion rod 73, it will drive the trigger ring 75 at its top to move together, causing the trigger ring 75 to slide on the fixed rod 83. When the trigger ring 75 slides on the fixed rod 83, the trigger ring 75 will cooperate with the trigger rod 74 to squeeze the limit ring 82, causing the trigger ring 75 to gradually disengage from the fixed rod 83. When the limit ring 82 completely disengages from the fixed rod 83, the limit rope 81 will lose its restriction, causing the guide rod 4 at its end far from the limit ring 82 to be released from the restriction. After the guide rod 4 is released from the restriction of the limit rope 81, the driving torsion spring 63 will control the rotation of the driving shaft 62. When the driving shaft 62 rotates under the action of the driving torsion spring 63, the driving shaft 62 will drive the guide rod 4 arranged on its outer side to rotate together, so that the two guide rods 4 gradually approach and fit together. When the two guide rods 4 are completely fitted together, the two magnets 10 will adsorb together, thus fixing the two guide rods 4 together. When the two guide rods 4 rotate, the two guide rods 4 will drive the corresponding folding cloth 3 to move together. When the two guide rods 4 are completely fitted together, the folding cloth 3 will be completely unfolded, thus cooperating with the two guide rods 4 to completely block the fountain body 2, so that the water in the fountain body 2 can avoid direct sunlight and at the same time slow down the evaporation rate of the water flow at high temperatures, thereby achieving the effect of water conservation.
[0041] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0042] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A water-saving garden fountain, comprising a base (1) and a fountain body (2) arranged inside the base (1), characterized in that: It also includes two folding cloths (3) which are arranged in the base (1) and used to shield the fountain body (2) and the inside of the base (1); two guiding rods (4) which are arranged above the base (1), both of the two guiding rods (4) are arc-shaped, and both of the two folding cloths (3) are arranged at the bottom of the corresponding guiding rods (4) to guide the moving direction of the folding cloths (3) by the guiding rods (4); a covering assembly (5) which is arranged in the base (1) to control the two guiding rods (4) to rotate on the base (1) in hot weather by the covering assembly (5), and drive the two guiding rods (4) to drive the folding cloths (3) to cover and shield the fountain body (2).
2. The water-saving garden fountain according to claim 1, characterized in that: The covering assembly (5) includes a driving member (6) arranged in the base (1) to provide power for the rotation of the corresponding guiding rods (4) respectively by the driving member (6), two triggering members (7) are arranged in the base (1) to control the movement of the corresponding guiding rods (4) respectively by the two triggering members (7), two limiting members (8) are arranged on both sides of the base (1) to control the fixing of the angles of the two guiding rods (4) by the two limiting members (8), and a locking member (9) is arranged on the two guiding rods (4) to fix the two guiding rods (4) together by the locking member (9).
3. The water-saving garden fountain according to claim 2, characterized in that: The driving member (6) includes four driving frames (61) arranged on the base (1), and the four driving frames (61) are respectively at the two ends of the two guiding rods (4). A driving shaft (62) is rotatably arranged in each of the four driving frames (61). Both ends of the two guiding rods (4) are rotatably arranged on the adjacent driving frames (61) through the corresponding driving shafts (62). Driving torsion springs (63) are arranged on the outer sides of the four driving shafts (62), and one ends of the four driving torsion springs (63) far away from the four driving shafts (62) are arranged on the corresponding driving frames (61).
4. The water-saving garden fountain according to claim 3, characterized in that: The triggering member (7) includes an extrusion groove (71) opened in the base (1) for storing heat-expandable liquid. An extrusion plate (72) is slidably arranged in the extrusion groove (71). An extrusion rod (73) is arranged on the side of the extrusion plate (72) far away from the fountain body (2). A triggering rod (74) is arranged at one end of the extrusion rod (73) far away from the extrusion plate (72), and a triggering ring (75) is arranged at the top of the triggering rod (74).
5. The water-saving garden fountain according to claim 4, characterized in that: The limiting member (8) includes a limiting rope (81) disposed on the side of the guiding rod (4) away from the fountain body (2). One end of the limiting rope (81) away from the guiding rod (4) is provided with a limiting ring (82). A fixing rod (83) is disposed outside the base (1), and the limiting ring (82) is slidably disposed outside the fixing rod (83). The trigger ring (75) is slidably disposed outside the fixing rod (83), and the trigger ring (75) is located between the limiting ring (82) and the base (1).
6. The water-saving garden fountain according to claim 5, wherein: The locking member (9) includes a locking block (91) disposed on one of the two guiding rods (4). A locking groove (92) is formed on the other guiding rod (4). A locking rod (93) that cooperates with the locking groove (92) is slidably disposed in the locking block (91). A locking spring (94) is disposed outside the locking rod (93). One end of the locking rod (93) away from the guiding rod (4) is provided with a locking handle (95). One end of the locking rod (93) away from the locking handle (95) is a bevel surface.
7. The water-saving garden fountain according to claim 5, characterized in that: The locking member (9) includes magnets (10) disposed on the tops of the two guiding rods (4), and the tops of the two magnets (10) attract each other.