Multi-temperature-area deep-frying type fish block deep-frying equipment
By designing multi-temperature differentiated fried fish block frying equipment, using technical means such as support frame, eccentric wheel and inert gas, the problems of fish blocks being easily coking, internally undercooked and oil mist explosion in traditional equipment are solved, and efficient and safe fried fish blocks are achieved.
Patent Information
- Application Number
- CN202510346883.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-05-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional fish block frying equipment is fryed at a single oil temperature, which causes the surface of the fish block to be easily coke and the interior is not ripe, or excessive oil absorption affects the taste and easily causes explosions.
A multi-temperature differentiated fried fish block frying equipment is designed. By setting up low-temperature and high-temperature zones, and using supporting frames, eccentric wheels, transmission belts and other structures, the frying of fish blocks at different oil temperatures and the shaking of oil. At the same time, through the structures such as storage tank cylinders, gas storage tanks and gas pumps, an inert gas "air curtain barrier" is formed to inhibit oil mist explosion.
The smooth transfer of fish blocks between multi-temperature zones and the effective shaking of oil is achieved, avoiding the problems of surface coking and internal under-ripening of fish blocks. At the same time, it effectively suppresses oil mist explosion and improves the quality and safety of the finished products of fish blocks.
Smart Images

Figure CN120036350A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of fish block frying, and specifically relates to a multi-temperature zone separate frying type fish block frying device. Background Art
[0002] When producing fish blocks, the fish blocks need to be pre-marinated, then undergo low-temperature frying for shaping, and then high-temperature re-frying to make the inside of the fish blocks mature.
[0003] Traditional equipment usually uses a single oil temperature for continuous frying, resulting in the surface of the fish blocks being prone to coking while the inside is not fully cooked, or excessive oil absorption affecting the taste. Moreover, during the process from fish block marinating to frying, the fish blocks will stick together, resulting in uneven heating and inability to form, making the fish blocks unusable. And when the oil temperature is too high, the moisture on the surface of the fish blocks will quickly evaporate, forming a large amount of water vapor. At the same time, the high-temperature hot oil itself also has high energy and is prone to explosion.
[0004] Therefore, it is necessary to use a separate frying type device to fry the fish blocks, so as to ensure the effect of the fried fish block products, and prevent the phenomenon of explosion during the frying of the fish blocks by setting an inert gas on the surface of the oil, thereby improving the quality of the finished products after frying the fish blocks by the user using the device. Summary of the Invention
[0005] To solve the problems raised in the above background art, the present invention provides a multi-temperature zone separate frying type fish block frying device.
[0006] To achieve the above object, the present invention provides the following technical solution: A multi-temperature zone separate frying type fish block frying device, including a processing box, a first servo motor is fixed outside the processing box, a turning plate is fixed to the output end of the first servo motor, a feeding box is fixed to one end of the turning plate, a feeding mechanism is arranged outside the feeding box, a stirring mechanism is fixed to the bottom end inside the processing box, an oil shaking mechanism is arranged at the top of the processing box, and a gas transmission mechanism is arranged outside the processing box;
[0007] The feeding mechanism includes a first baffle, a first connecting rod and a second connecting rod. The first baffle is movably connected to the bottom end of the feeding box, a first connecting rod is hinged to the outside of the first baffle, and one end of the first connecting rod is hinged to the second connecting rod;
[0008] The oil shaking mechanism includes a support frame and an eccentric wheel. The support frame is fixed to the top of the processing box, an eccentric wheel is movably connected inside the support frame, and a transmission belt is sleeved outside the eccentric wheel;
[0009] The gas transmission mechanism includes a storage tank cylinder and a gas storage tank. The storage tank cylinder is fixed to the outside of the processing box, and the gas storage tank is movably connected inside the storage tank cylinder.
[0010] Preferably, a second servo motor is fixed to the outside of the dosing box. A second baffle is movably connected to the bottom end of the dosing box. A third connecting rod is hinged to the top end of the second baffle. A second connecting rod is hinged to the top end of the third connecting rod. The first baffle and the second baffle are symmetrically distributed about the central axis of the dosing box.
[0011] Preferably, the stirring mechanism includes a third servo motor, a first gear rod, and a second gear rod. The third servo motor is fixed to the bottom end inside the processing box. A first gear rod is fixed to the output end of the third servo motor. A second gear rod is meshed and connected to the outside of the first gear rod. A third gear rod is meshed and connected to the outside of the second gear rod. A stirring fan is fixed to the top end of the third gear rod.
[0012] Preferably, the first gear rod is rotatably connected to the processing box. There are two groups of the second gear rods, and the second gear rods are rotatably connected to the processing box. There are four groups of the third gear rods, and the third gear rods are rotatably connected to the processing box. There are four groups of the stirring fans, which are symmetrically distributed about the central axis of the processing box.
[0013] Preferably, there are two groups of the support frames, which are symmetrically distributed about the central axis of the processing box. The outer wall of the eccentric wheel is close to the inner wall of the support frame. An eccentric wheel is rotatably connected inside the support frame.
[0014] Preferably, an air delivery pump is provided at the top end of the air storage tank. An air delivery pipe is connected to the top end of the air delivery pump. The output end of the air delivery pipe is connected to a covering discharge pipe. A jet orifice is fixed to the bottom end of the covering discharge pipe. A first magnetic position sensor is fixed to the outside of the storage tank cylinder. A second magnetic position sensor is fixed to the outside of the transmission belt. A discharge cylinder hole is provided at the bottom end of the storage tank cylinder. There are two groups of the storage tank cylinders, which are symmetrically distributed about the central axis of the processing box. The storage tank cylinder is slidably connected to the air storage tank. The covering discharge pipe is fixed to the inner wall of the processing box. There are several groups of the jet orifices, and the jet orifices are equally spaced.
[0015] Preferably, a filter plate is fixed to one end of the flip plate. An oil shaking bead is movably connected inside the filter plate. A tank discharging mechanism is fixed to the top end of the processing box. A display screen is fixed to the outside of the processing box. A thermometer is installed at one end of the processing box.
[0016] Preferably, the can unloading mechanism includes a sleeve, a first return spring and an extrusion cylinder, the sleeve is fixed at the top of the processing box, the first return spring is fixed at the bottom end inside the sleeve, the extrusion cylinder is fixed at the top end of the first return spring, a connecting plate is fixed to the outside of the extrusion cylinder, the top of the processing box is fixed with a mounting seat, the top of the mounting seat is fixed with a first limit rod, the top of the first limit rod is fixed with a limit disk, the outside of the first limit rod is movably connected with the extrusion disk, a limiting groove is provided at the bottom end of the connecting plate, the inside of the connecting plate is movably connected with a second limit rod, the outside of the second limit rod is sleeved with a second return spring, and the outside of the second limit rod is fixed with a limiting block.
[0017] Preferably, the sleeve is provided with two groups that are symmetrically distributed about the central axis of the processing box, the first return spring is used to squeeze the extrusion cylinder and keep it moving upward, the outer wall of the extrusion cylinder is close to the inner wall of the sleeve, the extrusion cylinder and the sleeve are slidably connected, and the mounting seat is provided with two groups, and the mounting seat is symmetrically distributed about the central axis of the processing box.
[0018] Preferably, the diameter of the extrusion disk is larger than the diameter of the limiting disk, the second limiting rod is provided with two groups symmetrically distributed about the central axis of the limiting groove, and the second return spring is used to squeeze the second limiting rod and the limiting block and keep them moving inward.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] The present invention cooperates with structures such as a support frame, an eccentric wheel, and a transmission belt so that when the third servo motor is started to drive the stirring fan to rotate to stir the oil inside the device, the second gear rod and the transmission belt are meshed and connected, and the eccentric wheel is driven to rotate synchronously through the movement of the transmission belt. When the device picks up the fish pieces fried in the low-temperature area and prepares to transfer them to the high-temperature area, the filter plate contacts the rotating eccentric wheel, causing the filter plate to vibrate as a whole, thereby shaking off the oil dipped on the surface of the filter plate. Furthermore, by arranging oil shaking beads, the oil shaking beads can increase the frequency of vibration through their own movement when the filter plate vibrates, thereby improving the efficiency of shaking off the oil, thereby achieving the purpose of facilitating the device to transfer the fish pieces and shaking off excess oil.
[0021] Through the cooperation of structures such as a storage tank cylinder, a gas storage tank, and a gas transmission pump, the device of the present invention can start the gas transmission pump to convey the inert gas inside the gas storage tank, and make it fall onto the surface of the oil through a gas transmission pipe and a covering exhaust pipe, so that nitrogen flows along the tangential direction of the oil surface to form an "air curtain barrier", blocking the contact between oil mist and air, thereby inhibiting the explosion of oil mist. Further, the first magnetic position sensor can judge the rotation speed of the stirring fan according to the induction time with the second magnetic position sensor when the second magnetic position sensor moves along with the transmission belt, and then cooperate with the stirring rate to convey nitrogen, ensuring the effect of explosion inhibition, so as to achieve the purpose of facilitating the device to inhibit the explosion of oil mist.
[0022] Through the cooperation of structures such as a sleeve, a first return spring, and an extrusion cylinder, when it is necessary to remove the gas storage tank to replenish the gas inside it, the device of the present invention can press the connecting plate, so that the limiting block contacts the extrusion disc, and after the second return spring resets, the extrusion disc is lifted. At this time, the first return spring resets and upwardly extrudes the extrusion cylinder, so that the connecting plate is separated from the mounting seat as a whole, and the gas storage tank is pushed out by the upward movement of the extrusion cylinder, thus facilitating the user to replace and replenish the gas storage tank. After installing the gas storage tank, the user also presses down the connecting plate so that the limiting disc passes through the limiting block and then the limiting block resets at the bottom of the limiting disc, thereby limiting the position of the extrusion cylinder, so as to achieve the purpose of facilitating the device to quickly remove, replace, and replenish the gas storage tank.
[0023] Through the cooperation of structures such as a first baffle, a first connecting rod, and a second connecting rod, after the fish blocks are fished up from the low-temperature area and fall into the feeding box, the device of the present invention can start the second servo motor to drive the second connecting rod to rotate, and then drive the first connecting rod and the third connecting rod to move, opening the first baffle and the second baffle, and feeding the fish blocks inside the feeding box into the high-temperature area, so as to achieve the purpose of facilitating the device to quickly transfer the fish blocks after low-temperature frying to the high-temperature area.
[0024] Through the cooperation of structures such as a third servo motor, a first gear rod, and a second gear rod, the device of the present invention can start the third servo motor to drive the first gear rod to rotate, so that the first gear rod is meshed and connected with the bevel gear outside the second gear rod through the bevel gear arranged outside to drive the second gear rod to rotate, and drive the third gear rod to rotate through the second gear rod, so that the stirring fan rotates. The shape of the stirring fan stirs the oil in the low-temperature area and the high-temperature area during rotation, preventing the fish blocks from sticking to the bottom during frying, so as to achieve the purpose of facilitating the device to prevent the fish blocks from sticking to the bottom during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0026] Figure 2Schematic diagram of the overall rear view structure of the present invention;
[0027] Figure 3 Schematic diagram of the overall flipped state structure of the present invention;
[0028] Figure 4 Schematic diagram of the overall sectional structure of the present invention;
[0029] Figure 5 Schematic diagram of the overall sectional structure in the flipped state of the present invention;
[0030] Figure 6 Schematic diagram of the flipping component structure of the present invention;
[0031] Figure 7 Schematic diagram of the upward view structure of the feeding mechanism of the present invention;
[0032] Figure 8 Schematic diagram of the overall internal explosion structure of the present invention;
[0033] Figure 9 Schematic diagram of the gas transmission mechanism of the present invention;
[0034] Figure 10 Schematic diagram of the upward view structure of the gas transmission mechanism of the present invention;
[0035] Figure 11 Schematic diagram of the tank unloading mechanism of the present invention;
[0036] Figure 12 Of the present invention Figure 11 Enlarged schematic diagram of the partial sectional view at position A in the middle.
[0037] In the figure: 1, processing box; 2, first servo motor; 3, turning plate; 4, filter plate; 5, oil shaking beads; 6, feeding box; 7, feeding mechanism; 701, first baffle; 702, first connecting rod; 703, second connecting rod; 704, second servo motor; 705, second baffle; 706, third connecting rod; 8, stirring mechanism; 801, third servo motor; 802, first gear rod; 803, second gear rod; 804, third gear rod; 805, stirring fan; 9, oil shaking mechanism; 901, support frame; 902, eccentric wheel; 903, drive belt; 10, gas transmission mechanism; 1001, storage tank cylinder; 1002, gas storage tank; 1003, gas transmission pump; 1004, gas transmission pipe; 1005, covering exhaust pipe; 1006, jet orifice; 1007, first magnetic position sensor; 1008, second magnetic position sensor; 1009, cylinder unloading hole; 11, tank unloading mechanism; 1101, sleeve; 1102, first return spring; 1103, extrusion cylinder; 1104, connecting plate; 1105, mounting seat; 1106, first limiting rod; 1107, limiting disc; 1108, extrusion disc; 1109, limiting groove; 1110, second limiting rod; 1111, second return spring; 1112, limiting block; 12, display screen; 13, thermometer. Detailed implementation manners
[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0039] As Figures 1 to 12 shown, the present invention provides a multi-temperature-zone frying fish block frying device, including a processing box 1. A first servo motor 2 is fixed to the outside of the processing box 1. The output end of the first servo motor 2 is fixed with a turning plate 3. One end of the turning plate 3 is fixed with a feeding box 6. A feeding mechanism 7 is arranged outside the feeding box 6. A stirring mechanism 8 is fixed to the bottom end inside the processing box 1. An oil shaking mechanism 9 is arranged at the top end of the processing box 1. A gas transmission mechanism 10 is arranged outside the processing box 1. One end of the turning plate 3 is fixed with a filter plate 4. Oil shaking beads 5 are movably connected inside the filter plate 4. A tank unloading mechanism 11 is fixed to the top end of the processing box 1. A display screen 12 is fixed to the outside of the processing box 1. A thermometer 13 is installed at one end of the processing box 1.
[0040] Adopt the above - mentioned scheme: By arranging a low - temperature frying area and a high - temperature frying area inside the processing box 1, the position of the filter plate 4 is located in the low - temperature frying area, and the feeding box 6 is located at the top of the high - temperature frying area. After the fish blocks are fried at low temperature, the first servo motor 2 is started to drive the turning plate 3 to rotate, so that the filter plate 4 picks up the fish blocks and drops them into the inside of the feeding box 6, completing the movement of the fish blocks from the low - temperature frying area to the high - temperature frying area.
[0041] The feeding mechanism 7 includes a first baffle 701, a first connecting rod 702 and a second connecting rod 703. The first baffle 701 is movably connected to the bottom end of the feeding box 6. The first connecting rod 702 is hinged to the outside of the first baffle 701. One end of the first connecting rod 702 is hinged to the second connecting rod 703. A second servo motor 704 is fixed to the outside of the feeding box 6. The bottom end of the feeding box 6 is movably connected to a second baffle 705. The top end of the second baffle 705 is hinged to a third connecting rod 706. The top end of the third connecting rod 706 is hinged to the second connecting rod 703. The first baffle 701 and the second baffle 705 are symmetrically distributed about the central axis of the feeding box 6.
[0042] Adopt the above - mentioned scheme: By starting the second servo motor 704 to drive the second connecting rod 703 to rotate, and then driving the first connecting rod 702 and the third connecting rod 706 to move, the first baffle 701 and the second baffle 705 are opened, and the fish blocks inside the feeding box 6 are put into the high - temperature area.
[0043] The stirring mechanism 8 includes a third servo motor 801, a first gear rod 802 and a second gear rod 803. The third servo motor 801 is fixed to the bottom end inside the processing box 1. The output end of the third servo motor 801 is fixed with the first gear rod 802. The outside of the first gear rod 802 is meshed and connected with the second gear rod 803. The outside of the second gear rod 803 is meshed and connected with a third gear rod 804. The top end of the third gear rod 804 is fixed with a stirring fan 805. The first gear rod 802 is rotatably connected to the processing box 1. There are two groups of the second gear rod 803, and the second gear rod 803 is rotatably connected to the processing box 1. There are four groups of the third gear rod 804, and the third gear rod 804 is rotatably connected to the processing box 1. There are four groups of the stirring fans 805, which are symmetrically distributed about the central axis of the processing box 1.
[0044] Adopt the above - mentioned scheme: By starting the third servo motor 801 to drive the first gear rod 802 to rotate, the first gear rod 802 drives the second gear rod 803 to rotate through the bevel gears arranged on the outside, and drives the third gear rod 804 to rotate through the second gear rod 803, so that the stirring fan 805 rotates. When the stirring fan 805 rotates, the oil in the low - temperature area and the high - temperature area is stirred due to the shape of the stirring fan 805.
[0045] The oil shaking mechanism 9 includes a support frame 901 and an eccentric wheel 902. The support frame 901 is fixed on the top of the processing box 1. The eccentric wheel 902 is movably connected inside the support frame 901. The outer sleeve of the eccentric wheel 902 is provided with a transmission belt 903. The support frame 901 is provided with two groups of symmetrical distributions about the central axis of the processing box 1. The outer wall of the eccentric wheel 902 is close to the inner wall of the support frame 901. The eccentric wheel 902 is rotatably connected inside the support frame 901.
[0046] The above scheme is adopted: when the third servo motor 801 is started to drive the stirring fan 805 to rotate to stir the oil inside the device, the second gear rod 803 and the transmission belt 903 are meshed and connected, and the eccentric wheel 902 is driven to rotate by the movement of the transmission belt 903 synchronously, so that when the device picks up the fish pieces fried in the low-temperature area and prepares to transfer them to the high-temperature area, the filter plate 4 contacts the rotating eccentric wheel 902, causing the filter plate 4 to vibrate as a whole, and then the oil dipped on the surface of the filter plate 4 is shaken off.
[0047] The gas delivery mechanism 10 includes a tank barrel 1001 and a gas tank 1002. The tank barrel 1001 is fixed to the outside of the processing box 1. The inside of the tank barrel 1001 is movably connected to the gas tank 1002. The top of the gas tank 1002 is provided with a gas delivery pump 1003. The top of the gas delivery pump 1003 is connected to a gas delivery pipe 1004. The output end of the gas delivery pipe 1004 is connected to a covering pipe 1005. The bottom end of the covering pipe 1005 is fixed with a jet nozzle 1006. The outside of the tank barrel 1001 is connected to the gas delivery pipe 1005. A first magnetic position sensor 1007 is fixed on the outside of the transmission belt 903, a second magnetic position sensor 1008 is fixed on the outside of the transmission belt 903, a discharge hole 1009 is opened at the bottom of the storage tank barrel 1001, the storage tank barrel 1001 is provided with two groups of symmetrical distribution about the central axis of the processing box 1, the storage tank barrel 1001 and the gas tank 1002 are slidably connected, the covering pipe 1005 is fixed on the inner wall of the processing box 1, and a plurality of air jets 1006 are provided, and the air jets 1006 are evenly spaced.
[0048] The above scheme is adopted: the inert gas inside the gas storage tank 1002 is transported by starting the air pump 1003, and the inert gas is made to fall onto the surface of the oil through the air pipe 1004 and the covering drain pipe 1005, so that the nitrogen flows along the tangent direction of the oil surface to form an "air curtain barrier" to block the contact between the oil mist and the air, thereby suppressing the explosion of the oil mist. Furthermore, the first magnetic position sensor 1007 and the second magnetic position sensor 1008 can judge the rotation speed of the stirring fan 805 through the time of mutual induction when the second magnetic position sensor 1008 moves following the transmission belt 903, and then transport the nitrogen in coordination with the stirring rate to ensure the effect of suppressing the explosion.
[0049] The can unloading mechanism 11 includes a sleeve 1101, a first return spring 1102 and an extrusion cylinder 1103. The sleeve 1101 is fixed to the top of the processing box 1. The first return spring 1102 is fixed to the bottom end inside the sleeve 1101. The top end of the first return spring 1102 is fixed with the extrusion cylinder 1103. A connecting plate 1104 is fixed to the outside of the extrusion cylinder 1103. A mounting seat 1105 is fixed to the top of the processing box 1. There are two sets of sleeves 1101 symmetrically distributed about the central axis of the processing box 1. The first return spring 1102 is used to extrude the extrusion cylinder 1103 and keep it in an upward moving trend. The outer wall of the extrusion cylinder 1103 is close to the inner wall of the sleeve 1101, and the extrusion cylinder 1103 is slidably connected to the sleeve 1101. There are two sets of mounting seats 1105 symmetrically distributed about the central axis of the processing box 1.
[0050] A first limiting rod 1106 is fixed to the top end of the mounting seat 1105. A limiting disk 1107 is fixed to the top end of the first limiting rod 1106. An extrusion disk 1108 is movably connected to the outside of the first limiting rod 1106. A limiting groove 1109 is opened at the bottom end of the connecting plate 1104. A second limiting rod 1110 is movably connected to the inside of the connecting plate 1104. A second return spring 1111 is sleeved on the outside of the second limiting rod 1110. A limiting block 1112 is fixed to the outside of the second limiting rod 1110. The diameter of the extrusion disk 1108 is larger than that of the limiting disk 1107. There are two sets of second limiting rods 1110 symmetrically distributed about the central axis of the limiting groove 1109. The second return spring 1111 is used to extrude the second limiting rod 1110 and the limiting block 1112 and keep them in an inward moving trend.
[0051] Adopting the above scheme: By pressing the connecting plate 1104, the limiting block 1112 contacts the extrusion disk 1108, and after the second return spring 1111 is reset, the extrusion disk 1108 is lifted. At this time, the first return spring 1102 is reset to extrude the extrusion cylinder 1103 upward, so that the connecting plate 1104 and the mounting seat 1105 are disengaged as a whole, and the gas storage tank 1002 is pushed out by the upward movement of the extrusion cylinder 1103, thereby facilitating the user to replace and replenish the gas in the gas storage tank 1002.
[0052] The working principle and use process of the present invention are as follows: by providing a low-temperature frying zone and a high-temperature frying zone inside the processing box 1, the filter plate 4 is located in the low-temperature frying zone, and the delivery box 6 is located at the top of the high-temperature frying zone. After the fish pieces are low-temperature fried, the first servo motor 2 is started to drive the flip plate 3 to rotate, so that the filter plate 4 picks up the fish pieces and drops them into the delivery box 6, completing the movement of the fish pieces from the low-temperature frying zone to the high-temperature frying zone. By starting the second servo motor 704 to drive the second connecting rod 703 to rotate, the first connecting rod 702 and the third connecting rod 706 are driven to move, the first baffle plate 701 and the second baffle plate 705 are opened, and the fish pieces in the delivery box 6 are delivered to the high-temperature zone. When the third servo motor 801 is started to drive the stirring fan 805 to rotate to stir the oil inside the device, the second gear rod 803 and The transmission belt 903 is meshed and connected, and the movement of the transmission belt 903 synchronously drives the eccentric wheel 902 to rotate, so that when the device picks up the fried fish pieces in the low-temperature area and prepares to transfer them to the high-temperature area, the filter plate 4 contacts the rotating eccentric wheel 902, causing the filter plate 4 to vibrate as a whole, thereby shaking off the oil dipped on the surface of the filter plate 4, and further, by arranging oil shaking beads 5, the oil shaking beads 5 can increase the frequency of vibration through their own movement when the filter plate 4 vibrates, thereby improving the efficiency of shaking off the oil, and by starting the air pump 1003 to transport the inert gas inside the air storage tank 1002, and make it fall onto the surface of the oil through the air pipe 1004 and the covering drain pipe 1005, so that the nitrogen flows along the tangent direction of the oil surface, forming an "air curtain barrier" to prevent the oil mist from contacting with the air, thereby suppressing the explosion of the oil mist.
[0053] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0054] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-temperature zone frying fish nugget frying device, comprising a processing box (1), characterized in that: A first servo motor (2) is fixed to the outside of the processing box (1), a flip plate (3) is fixed to the output end of the first servo motor (2), a delivery box (6) is fixed to one end of the flip plate (3), a delivery mechanism (7) is arranged outside the delivery box (6), a stirring mechanism (8) is fixed to the bottom end of the processing box (1), an oil shaking mechanism (9) is arranged at the top end of the processing box (1), and a gas transmission mechanism (10) is arranged outside the processing box (1); The delivery mechanism (7) comprises a first baffle (701), a first connecting rod (702) and a second connecting rod (703); the first baffle (701) is movably connected to the bottom end of the delivery box (6); the first connecting rod (702) is hingedly connected to the outside of the first baffle (701); and one end of the first connecting rod (702) is hingedly connected to the second connecting rod (703); The oil shaking mechanism (9) comprises a support frame (901) and an eccentric wheel (902), wherein the support frame (901) is fixed to the top of the processing box (1), the interior of the support frame (901) is movably connected to the eccentric wheel (902), and the exterior of the eccentric wheel (902) is sleeved with a transmission belt (903); The gas delivery mechanism (10) comprises a storage tank barrel (1001) and a gas storage tank (1002); the storage tank barrel (1001) is fixed to the outside of the processing box (1); and the interior of the storage tank barrel (1001) is movably connected to the gas storage tank (1002).
2. The multi-temperature zone frying type fish nugget frying equipment according to claim 1, characterized in that: A second servo motor (704) is fixed to the outside of the delivery box (6); a second baffle (705) is movably connected to the bottom end of the delivery box (6); a third connecting rod (706) is hinged to the top end of the second baffle (705); a second connecting rod (703) is hinged to the top end of the third connecting rod (706); and the first baffle (701) and the second baffle (705) are symmetrically distributed about the central axis of the delivery box (6).
3. The multi-temperature zone frying type fish nugget frying equipment according to claim 1, characterized in that: The stirring mechanism (8) comprises a third servo motor (801), a first gear rod (802) and a second gear rod (803); the third servo motor (801) is fixed at the bottom end inside the processing box (1); the output end of the third servo motor (801) is fixed with the first gear rod (802); the outside of the first gear rod (802) is meshedly connected with the second gear rod (803); the outside of the second gear rod (803) is meshedly connected with the third gear rod (804); and the top end of the third gear rod (804) is fixed with a stirring fan (805).
4. The multi-temperature zone frying type fish nugget frying equipment according to claim 3, characterized in that: The first gear rod (802) is rotatably connected to the processing box (1), the second gear rod (803) is provided with two groups, the second gear rod (803) is rotatably connected to the processing box (1), the third gear rod (804) is provided with four groups, the third gear rod (804) is rotatably connected to the processing box (1), and the stirring fan (805) is provided with four groups symmetrically distributed about the central axis of the processing box (1).
5. The multi-temperature zone frying type fish nugget frying equipment according to claim 1, characterized in that: The support frame (901) is provided with two groups of symmetrically distributed about the central axis of the processing box (1), the outer wall of the eccentric wheel (902) is close to the inner wall of the support frame (901), and the eccentric wheel (902) is rotatably connected inside the support frame (901).
6. The multi-temperature zone frying type fish nugget frying equipment according to claim 1, characterized in that: The top of the gas storage tank (1002) is provided with an air delivery pump (1003), the top of the air delivery pump (1003) is connected to an air delivery pipe (1004), the output end of the air delivery pipe (1004) is connected to a covering pipe (1005), the bottom end of the covering pipe (1005) is fixed with an air jet (1006), the outside of the storage tank tube (1001) is fixed with a first magnetic position sensor (1007), the outside of the transmission belt (903) is fixed with a first magnetic position sensor (1008), and the outside of the transmission belt (908) is fixed with a first magnetic position sensor (1009). The invention relates to a second magnetic position sensor (1008), wherein the bottom end of the storage tank tube (1001) is provided with a tube unloading hole (1009), and the storage tank tube (1001) is provided with two groups of symmetrically distributed about the central axis of the processing box (1), the storage tank tube (1001) and the gas storage tank (1002) are slidably connected, the covering pipe (1005) is fixed on the inner wall of the processing box (1), and the air jets (1006) are provided with a plurality of groups, and the air jets (1006) are distributed at equal intervals.
7. The multi-temperature zone frying type fish nugget frying equipment according to claim 1, characterized in that: A filter plate (4) is fixed to one end of the flip plate (3), and an oil shaking bead (5) is movably connected inside the filter plate (4). A tank unloading mechanism (11) is fixed to the top of the processing box (1), a display screen (12) is fixed to the outside of the processing box (1), and a thermometer (13) is installed at one end of the processing box (1).
8. The multi-temperature zone frying type fish nugget frying equipment according to claim 7, characterized in that: The can unloading mechanism (11) comprises a sleeve (1101), a first return spring (1102) and an extrusion cylinder (1103); the sleeve (1101) is fixed to the top end of the processing box (1); the first return spring (1102) is fixed to the bottom end of the sleeve (1101); the extrusion cylinder (1103) is fixed to the top end of the first return spring (1102); the connecting plate (1104) is fixed to the outside of the extrusion cylinder (1103); the top end of the processing box (1) is fixed to a mounting seat (1105); the top end of the mounting seat (1105) A first limiting rod (1106) is fixed, a limiting plate (1107) is fixed on the top of the first limiting rod (1106), an external movably connected extrusion plate (1108) is provided on the first limiting rod (1106), a limiting groove (1109) is provided on the bottom of the connecting plate (1104), a second limiting rod (1110) is internally movably connected on the connecting plate (1104), a second return spring (1111) is sleeved on the outside of the second limiting rod (1110), and a limiting block (1112) is fixed on the outside of the second limiting rod (1110).
9. The multi-temperature zone frying type fish nugget frying equipment according to claim 8, characterized in that: The sleeve (1101) is provided with two groups symmetrically distributed about the central axis of the processing box (1); the first return spring (1102) is used to squeeze the extrusion cylinder (1103) and keep it moving upward; the outer wall of the extrusion cylinder (1103) is close to the inner wall of the sleeve (1101); the extrusion cylinder (1103) and the sleeve (1101) are slidably connected; the mounting seat (1105) is provided with two groups; the mounting seat (1105) is symmetrically distributed about the central axis of the processing box (1).
10. The multi-temperature zone deep-frying fish nugget frying equipment according to claim 8, characterized in that: The diameter of the extrusion disk (1108) is greater than the diameter of the limiting disk (1107), and the second limiting rod (1110) is provided with two groups of symmetrical distributions about the central axis of the limiting groove (1109), and the second return spring (1111) is used to squeeze the second limiting rod (1110) and the limiting block (1112) and keep them moving inward.