A rice noodle uniform cooling device
By designing a uniform cooling device for rice flour including elastic telescopic legs and multi-rotating air spray head, the problem of poor cooling effect caused by a single blowing angle and a single air supply area in the prior art is solved, and a more efficient cooling effect of rice flour is achieved.
Patent Information
- Application Number
- CN202510066409.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2045-01-16
AI Technical Summary
The existing rice noodles cooling device has a single blowing angle and a single air supply area, which leads to a short contact time between the air and rice noodles, affecting the cooling effect.
A uniform cooling device for rice flour is designed, using elastic telescopic legs and wind-power cooling assembly. The wind-power cooling assembly includes multiple air nozzles with different orientations and rotatable directions. Irregular air supply is achieved through multi-purpose air supply ducts and rotary joints, and an auxiliary air supply device is provided above the rice flour to increase the contact area between the air and the rice flour.
Through multi-directional air-cooled heat dissipation and irregular air supply, the contact area and contact time between the air and rice flour are significantly increased, the cooling efficiency of rice flour is improved, and the rice flour blowing problem caused by the single-direction air-cooled cooling is effectively prevented.
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Figure CN119468611B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of rice noodle processing, and in particular to a device for uniformly cooling rice noodles. Background Art
[0002] The rice noodles need to be cooled down immediately after being extruded into threads to prevent them from sticking or breaking.
[0003] In the prior art, a cooling fan is generally arranged in the middle of a horizontal conveyor frame to cool the rice noodles, and air is blown upward to the rice noodles on the horizontal conveyor frame to cool the rice noodles. However, the blowing angle is single and the air supply area is single, resulting in a short contact time between the air and the rice noodles, which greatly affects the cooling effect on the rice noodles. Summary of the invention
[0004] The present invention solves the problem that the prior art generally sets a cooling fan at the middle of a horizontal conveyor frame to cool the rice noodles, and blows air upward to the rice noodles on the horizontal conveyor frame to cool the rice noodles, but the blowing angle is single and the air supply area is single, resulting in a short contact time between the air and the rice noodles, which greatly affects the cooling effect of the rice noodles. To this end, the present invention proposes a uniform cooling device for rice noodles, which can solve the problems raised in the background technology.
[0005] To achieve the above-mentioned purpose, the present application provides a rice noodle uniform cooling device, comprising elastic telescopic legs, wherein four elastic telescopic legs are provided, an aluminum plate is fixed on every two of the elastic telescopic legs, a horizontal conveyor belt is provided between the two aluminum plates, and a wind cooling component is installed at the bottom of the two aluminum plates;
[0006] The wind cooling component comprises:
[0007] A rack rod fixed inside the aluminum plate;
[0008] Two brackets 1 are slidably connected to the bottom of the aluminum plate, and brackets 2 are symmetrically fixed at the bottom of the two brackets 1, and a cross-shaped bracket is fixed between the two brackets 1, and the rotation of the cross-shaped bracket is connected to multiple air nozzles for air outlet. The bracket 2 on the right side has an inherent air supply fan, and a multi-way air supply duct is fixed at the air outlet of the air supply fan, and the multi-way air supply duct is connected to the multiple air nozzles through multiple rotating joints. Gear 4 is fixed on each of the rotating joints, and a rotating motor is embedded in the side of the bracket 2 on the left side, and gear 1 is fixed on the rotating shaft of the rotating motor. A transmission rotating rod passes through the interior of the bracket 2 on the left side and is rotatably connected, and a gear 2 is fixed to the middle part of the outer side of the transmission rotating rod, and a gear 3 meshing with the gear 1 is fixed on the side of the transmission rotating rod, and a threaded rod is fixed on the side of the gear 3, and the outer side of the threaded rod is threadedly connected to a T-shaped plate, and a rack rod 2 meshing with the gear 4 is fixed on the T-shaped plate.
[0009] Preferably, the rack rod 1 is in meshing state with the gear 2.
[0010] Preferably, there are five air nozzles in total, and the initial orientation of each air nozzle is different, and the gear four on each rotary joint is meshed with the rack rod two.
[0011] Preferably, the side of the bracket two is equipped with an auxiliary air supply device, and the auxiliary air supply device includes an L-shaped bracket rod, a transmission wheel one, and a transmission wheel two. The L-shaped bracket rod is fixed to the side of the bracket two, and a rectangular air supply duct is fixed on the L-shaped bracket rod. The interior of the rectangular air supply duct is rotatably connected to an air guide plate through a center rotating rod. The transmission wheel one is fixed to the side of the center rotating rod, and the transmission wheel two is fixed to the side of the transmission rotating rod. The transmission wheel two is connected to the transmission wheel one through a rubber belt, and the rectangular air supply duct is connected to the multi-pass air supply duct through a special-shaped duct.
[0012] Preferably, the rectangular air supply duct and the plurality of air nozzles are in the same vertical plane.
[0013] Preferably, a vibration assembly is installed on the side of the elastic telescopic leg, and the vibration assembly includes a V-shaped bracket 1 and a V-shaped bracket 2, and the V-shaped bracket 1 and the V-shaped bracket 2 are both fixed on the side of the elastic telescopic leg, and a long rotating rod is rotatably connected between the V-shaped bracket 1 and the V-shaped bracket 2, and a cam 1, a long gear, and a cam 2 are fixed to the outside of the long rotating rod from left to right in sequence, and two hydraulic bins are fixed on the side of the V-shaped bracket 2, and one end of the inside of the two hydraulic bins is slidably connected to a hydraulic rod, and the other end of the inside of the two hydraulic bins is slidably connected to a hydraulic gear rod, and the two hydraulic gear rods are meshed with the long gear.
[0014] Preferably, the cam 1 and the cam 2 are both close to the side of the elastic telescopic leg.
[0015] The benefits of this application are:
[0016] (1) The present application provides a wind cooling component to perform multi-directional air cooling and heat dissipation on the rice noodles on the horizontal conveyor belt, and adopts multiple rotatable air nozzles with different directions to achieve irregular air supply, which can not only increase the contact area between the wind and the rice noodles, but also avoid the occurrence of air supply blind areas, thereby maximizing the cooling efficiency of the rice noodles.
[0017] (2) The present application further increases the contact area between the wind and the rice noodles by disposing an auxiliary air supply device above the rice noodles that moves synchronously with the wind cooling component. At the same time, the wind forces of the wind cooling component and the auxiliary air supply device correspond to each other, which can effectively prevent the problem of the rice noodles being blown away by the single-direction wind cooling.
[0018] (3) The present application sets a vibration component to cooperate with the elastic telescopic legs, so that the present application produces a vibration effect during the cooling process, thereby preventing the rice noodles from sticking to the horizontal conveyor belt. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The drawings constituting a part of this application are used to provide a further understanding of this application, so that other features, purposes and advantages of this application become more obvious. The schematic embodiment drawings and their descriptions of this application are used to explain this application and do not constitute an improper limitation on this application. In the drawings:
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention as a whole;
[0021] Figure 2 It is a schematic diagram of the three-dimensional structure of the present invention as a whole when viewed from an upward perspective;
[0022] Figure 3 This is a partial structural diagram of the present invention. Figure 1 ;
[0023] Figure 4 This is a partial structural diagram of the present invention. Figure 1 ;
[0024] Figure 5 It is a structural schematic diagram of the wind cooling component of the present invention;
[0025] Figure 6 The present invention Figure 5 Enlarged view of point A in the middle;
[0026] Figure 7 It is a partial structural schematic diagram of the wind cooling assembly of the present invention;
[0027] Figure 8 It is a structural schematic diagram of the auxiliary air supply device of the present invention;
[0028] Fig. 9 It is a partial structural schematic diagram of the auxiliary air supply device of the present invention;
[0029] Fig.10 is a schematic diagram of the positional relationship of the vibration components of the present invention;
[0030] Fig.11 It is a schematic diagram of the structure of the vibration assembly of the present invention;
[0031] Fig.12 The present invention Fig.11 Enlarged view of point B in the middle.
[0032] In the above figure,
[0033] 100, elastic telescopic legs; 200, aluminum plate; 210, rack rod 1; 300, horizontal conveyor belt;
[0034] 400, wind cooling assembly; 410, bracket 2; 420, bracket 1; 421, cross bracket; 430, air blower; 440, multi-pass air supply duct; 450, air nozzle; 460, rotary joint; 470, gear 4; 480, T-plate; 490, rack rod 2; 4100, rotating motor; 4110, gear 1; 4120, transmission rotating rod; 4130, gear 2; 4140, gear 3; 4150, threaded rod;
[0035] 500, auxiliary air supply device; 510, L-shaped bracket rod; 520, rectangular air supply duct; 530, special-shaped duct; 540, central rotating rod; 550, air guide plate; 560, driving wheel 1; 570, rubber belt; 580, driving wheel 2;
[0036] 600, vibration assembly; 610, V-shaped bracket 1; 620, V-shaped bracket 2; 630, long rotating rod; 640, cam 1; 650, cam 2; 660, long gear; 670, hydraulic compartment; 680, hydraulic rod; 690, hydraulic gear rod. DETAILED DESCRIPTION
[0037] In order to enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only embodiments of a part of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in the field without creative work should fall within the scope of protection of the present application.
[0038] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present application are described here. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, the process, method, system, product or equipment comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or equipment.
[0039] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not used to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.
[0040] In addition, some of the above terms may be used to express other meanings in addition to indicating orientation or positional relationship. For example, the term "on" may also be used to express a certain dependency or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in this application can be understood according to specific circumstances.
[0041] In addition, the terms "installed", "set", "provided with", "connected", "connected", and "socketed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection, or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, elements, or components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0042] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments. Example 1
[0043] See also Figure 1-Figure 12 The present embodiment provides a rice noodle uniform cooling device, comprising an elastic telescopic leg 100, wherein the elastic telescopic leg 100 is provided with four in total, an aluminum plate 200 is fixed on every two of the elastic telescopic legs 100, a horizontal conveyor belt 300 is provided between the two aluminum plates 200, and a wind cooling assembly 400 is installed at the bottom of the two aluminum plates 200;
[0044] The wind cooling component 400 includes:
[0045] A rack rod 210 fixed inside the aluminum plate 200;
[0046] Two brackets 420 are slidably connected to the bottom of the aluminum plate 200, and brackets 410 are symmetrically fixed to the bottom of the two brackets 420. A cross bracket 421 is fixed between the two brackets 420. The rotation of the cross bracket 421 is connected to multiple air nozzles 450 for air outlet. The right bracket 410 has an embedded blower 430, and a multi-way air supply duct 440 is fixed at the air outlet of the blower 430. The multi-way air supply duct 440 is connected to the multiple air nozzles 450 through multiple rotating joints 460, and each rotating joint 460 is fixed with a gear 470. The side of the left bracket 410 has a rotating motor 4100 embedded therein. The rotating motor 4100 can be remotely controlled, and its movement state can be clockwise or counterclockwise. A gear 1 4110 is fixed on the rotating shaft 4100, and a transmission rotating rod 4120 passes through and is rotatably connected to the interior of the left bracket 2 410, and a gear 2 4130 is fixed to the middle part of the outer side of the transmission rotating rod 4120, and a gear 3 4140 meshing with the gear 1 4110 is fixed to the side of the transmission rotating rod 4120, and a threaded rod 4150 is fixed to the side of the gear 3 4140, and a T-shaped plate 480 is threadedly connected to the outer side of the threaded rod 4150, and a rack rod 2 490 meshing with the gear 4 470 is fixed on the T-shaped plate 480, and the rack rod 1 210 is in a meshing state with the gear 2 4130, and a total of five air nozzles 450 are provided, and the initial orientation of each of the air nozzles 450 is different, and the gear 4 470 on each of the rotating joints 460 is meshed with the rack rod 2 490. By setting up a wind cooling component 400, the rice noodles on the horizontal conveyor belt 300 are cooled by wind in all directions, and a plurality of rotatable air nozzles 450 with different directions are used to achieve irregular air supply, which can not only increase the contact area between the wind and the rice noodles, but also avoid the occurrence of air supply blind areas, and can maximize the cooling efficiency of the rice noodles.
[0047] When the above-mentioned equipment is used in practice, when the produced seal enters the horizontal conveyor belt 300, the air blower 430 and the rotating motor 4100 are turned on at the same time. First, the air blower 430 will send the outside air into the multi-pass air supply duct 440, and then enter the air nozzle 450 through the rotating joint 460, and randomly send air toward the rice noodles on the horizontal conveyor belt 300. Secondly, as the rotating motor 4100 works, its working state is a small distance cyclic reciprocating rotation. When the rotating motor 4100 works, it will drive the gear 1 4110 fixed on its output shaft to rotate. At this time, the gear 1 4110 will drive the gear 3 4140 to rotate. As the gear 3 4140 rotates, it drives the transmission rotating rod 4120 fixed thereto to rotate. The transmission rotating rod 4120 drives the gear 2 4130 to rotate, and the gear 2 4130 is meshed with the rack rod 1 210. Therefore, the wind force is reduced. The temperature component 400 will move left and right in a small circle at the bottom of the aluminum plate 200 to increase the contact time and contact area between the gas sprayed from the air nozzle 450 and the rice noodles. At the same time, as the transmission rotating rod 4120 rotates, the threaded rod 4150 will be driven to rotate, and the rotation of the threaded rod 4150 will drive the T-shaped plate 480 threadedly connected thereto to move back and forth. At this time, the rack rod 2 490 fixed on the T-shaped plate 480 will follow the reciprocating movement, and the movement of the rack rod 2 490 will synchronously drive the gear 470 on the multiple rotary joints 460 to rotate, and then drive the rotary joint 460 to rotate through the rotary joint 460. Since each rotary joint 460 has a different initial orientation, after the multiple rotary joints 460 rotate, their orientations are irregular, which can further increase the contact time and contact area between the cooling wind and the rice noodles, thereby further improving the cooling efficiency.
[0048] See also Figure 1-Figure 9In the present application, an auxiliary air supply device 500 is installed on the side of the bracket 2 410, and the auxiliary air supply device 500 includes an L-shaped bracket rod 510, a transmission wheel 1 560, and a transmission wheel 2 580. The L-shaped bracket rod 510 is fixed to the side of the bracket 2 410, and a rectangular air supply duct 520 is fixed on the L-shaped bracket rod 510. The interior of the rectangular air supply duct 520 is rotatably connected to an air guide plate 550 through a central rotating rod 540. The transmission wheel 1 560 is fixed to the side of the central rotating rod 540, and the transmission wheel 2 580 is fixed to the side of the transmission rotating rod 4120. The transmission wheel 2 580 is connected to the transmission wheel 1 560 through a rubber belt 570. The rectangular air supply duct 520 is connected to the multi-pass air supply duct 440 through a special-shaped pipe 530, and the rectangular air supply duct 520 and the multiple air nozzles 450 are in the same vertical plane. By setting an auxiliary air supply device 500 above the rice noodles and moving synchronously with the wind cooling component 400, the contact area between the wind and the rice noodles is further increased. At the same time, the wind forces of the wind cooling component 400 and the auxiliary air supply device 500 correspond to each other, which can effectively prevent the problem of the rice noodles being blown away by unidirectional wind cooling.
[0049] When the above device is used, as the bracket 1 420 in the wind cooling component 400 moves, the rectangular air supply duct 520 will be driven by the L-shaped bracket rod 510 to move synchronously with the wind cooling component 400. Since the rectangular air supply duct 520 is connected to the multi-pass air supply duct 440 through the special-shaped duct 530, part of the wind will enter the rectangular air supply duct 520 through the special-shaped duct 530 and then be ejected. At the same time, as the transmission rotating rod 4120 rotates, the transmission wheel 2 580 rotates accordingly. The transmission wheel 2 580 is driven by the rubber belt 57 0 drives the transmission wheel 560 to rotate. Since the transmission rotating rod 4120 rotates reciprocatingly, the transmission wheel 560 also rotates reciprocatingly. At this time, the central rotating rod 540 fixed on the side of the transmission wheel 560 follows the reciprocating rotation, so that the air guide plate 550 fixed on the central rotating rod 540 rotates reciprocatingly, and the air sent out from the rectangular air supply duct 520 circulates and swings, thereby increasing the air outlet area. At the same time, since the wind power of the wind cooling component 400 and the auxiliary air supply device 500 correspond to each other, the problem of rice noodles being blown away by single-direction air cooling can be effectively prevented.
[0050] See also Figure 4 , Figure 5 , Figure 8-Figure 12The present application assembles a vibration assembly 600 on the side of the elastic telescopic leg 100, and the vibration assembly 600 includes a V-shaped bracket 1 610 and a V-shaped bracket 2 620. The V-shaped bracket 1 610 and the V-shaped bracket 2 620 are both fixed on the side of the elastic telescopic leg 100. A long rotating rod 630 is rotatably connected between the V-shaped bracket 1 610 and the V-shaped bracket 2 620. The outer side of the long rotating rod 630 is fixed with a cam 1 640, a long gear 660, and a cam 2 650 in sequence from left to right. , two hydraulic bins 670 are fixed on the side of the V-shaped bracket 2 620, one end of the two hydraulic bins 670 is slidably connected to a hydraulic rod 680, and the other end of the two hydraulic bins 670 is slidably connected to a hydraulic gear rod 690, and the two hydraulic gear rods 690 are meshed with the long gear 660, and the cam 1 640 and the cam 2 650 are both close to the side of the elastic telescopic leg 100, and the two hydraulic rods 680 are respectively located on the movement tracks of the two brackets 2 410. By setting a vibration component 600 to cooperate with the elastic telescopic leg 100, the present application produces a vibration effect during the cooling process, preventing the rice noodles from sticking to the horizontal conveyor belt 300.
[0051] When the above-mentioned equipment is used, as the bracket 2 410 in the wind cooling component 400 moves left and right in a circular motion, the hydraulic rod 680 will be squeezed during the movement. At this time, the liquid pressure in the hydraulic bin 670 increases, causing the hydraulic gear rod 690 to extend. The movement of the hydraulic gear rod 690 will drive the long rotating rod 630 to rotate through the long gear 660. Then, as the long rotating rod 630 rotates, the cam 1 640 and the cam 2 650 fixed thereon follow the rotation, and the cam 1 640 and the cam 2 650 synchronously hit the side of the elastic telescopic leg 100 to produce a vibration effect, thereby preventing the rice noodles from sticking to the horizontal conveyor belt 300.
[0052] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A rice noodle uniform cooling device, comprising elastic telescopic legs, characterized in that: There are four elastic telescopic legs in total, and an aluminum plate is fixed on every two of the elastic telescopic legs. A horizontal conveyor belt is arranged between the two aluminum plates, and a wind cooling component is installed at the bottom of the two aluminum plates; The wind cooling component comprises: A rack rod fixed inside the aluminum plate; Two brackets 1 are slidably connected to the bottom of the aluminum plate, brackets 2 are symmetrically fixed at the bottom of the two brackets 1, a cross-shaped bracket is fixed between the two brackets 1, and the cross-shaped bracket is rotatably connected to a plurality of air nozzles for air outlet, the bracket 2 on the right side has an embedded blower, and a multi-way air supply duct is fixed at the air outlet of the blower, and the multi-way air supply duct is connected to the plurality of air nozzles through a plurality of rotating joints, and a gear 4 is fixed on each of the rotating joints, a rotating motor is embedded in the side of the bracket 2 on the left side, and a gear 1 is fixed on the rotating shaft of the rotating motor, a transmission rotating rod is penetrated and rotatably connected to the inside of the bracket 2 on the left side, a gear 2 is fixed to the middle part of the outer side of the transmission rotating rod, and a gear 2 is fixed to the side of the transmission rotating rod. Gear three is meshed with gear one, a threaded rod is fixed on the side of gear three, the outer side of the threaded rod is threadedly connected with a T-shaped plate, a rack rod two is fixed on the T-shaped plate which is meshed with gear four, an auxiliary air supply device is installed on the side of bracket two, the auxiliary air supply device includes an L-shaped bracket rod, a transmission wheel one, and a transmission wheel two, the L-shaped bracket rod is fixed to the side of bracket two, a rectangular air supply duct is fixed on the L-shaped bracket rod, the interior of the rectangular air supply duct is rotatably connected with an air guide plate through a center rotating rod, the transmission wheel one is fixed to the side of the center rotating rod, the transmission wheel two is fixed to the side of the transmission rotating rod, the transmission wheel two is connected to the transmission wheel one through a rubber belt, and the rectangular air supply duct is connected to the multi-pass air supply duct through a special-shaped duct.
2. A rice noodle uniform cooling device according to claim 1, characterized in that: The rack rod 1 is in meshing state with the gear 2.
3. A rice noodle uniform cooling device according to claim 1, characterized in that: There are five air nozzles in total, and the initial orientation of each of the air nozzles is different. The gear four on each of the rotary joints is meshed with the rack rod two.
4. A rice noodle uniform cooling device according to claim 1, characterized in that: The rectangular air supply duct and the plurality of air nozzles are located in the same vertical plane.
5. A rice noodle uniform cooling device according to claim 1, characterized in that: A vibration component is installed on the side of the elastic telescopic leg, and the vibration component includes a V-shaped bracket 1 and a V-shaped bracket 2. The V-shaped bracket 1 and the V-shaped bracket 2 are both fixed on the side of the elastic telescopic leg. A long rotating rod is rotatably connected between the V-shaped bracket 1 and the V-shaped bracket 2. Cam 1, a long gear and cam 2 are fixed to the outside of the long rotating rod from left to right in sequence. Two hydraulic bins are fixed on the side of the V-shaped bracket 2. One end of the inside of the two hydraulic bins is slidably connected to a hydraulic rod, and the other end of the inside of the two hydraulic bins is slidably connected to a hydraulic gear rod, and the two hydraulic gear rods are meshed with the long gear.
6. A rice noodle uniform cooling device according to claim 5, characterized in that: The cam 1 and the cam 2 are both close to the side surfaces of the elastic telescopic supporting legs.
Citation Information
Patent Citations
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