A frog killing apparatus
By designing automated frog slaughtering equipment, efficient and automated frog slaughtering has been achieved, solving the problems of high labor intensity and low efficiency in existing technologies and reducing processing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2026-04-07
AI Technical Summary
Existing technologies for slaughtering frogs are labor-intensive and inefficient, especially for small frogs, making it difficult to guarantee slaughter quality and efficiency, thus increasing processing costs.
Design a frog slaughtering device, including a support component, a clamping component, a gutting component, an air blowing component, and a head removal component. The device performs clamping, gutting, viscera removal, and head removal operations on an automated production line to achieve automated frog slaughtering.
It improves the quality and efficiency of frog slaughtering, reduces processing costs, and is suitable for widespread application.
Smart Images

Figure CN118923707B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of frog slaughtering, and particularly relates to a frog slaughtering device. BACKGROUND
[0002] At present, a series of frogs such as bullfrogs and green frogs have gradually entered the field of vision of people and become food products of people. The meat of the frogs is tender, delicious, and nutritious, and has certain medicinal value. With the development of the market, the edible value of green frogs is gradually highlighted, and the proportion of green frogs in the frog market is gradually increasing.
[0003] For slaughtering and skinning of a series of frogs such as bullfrogs and green frogs, a manual operation mode is usually adopted. In the slaughtering process, an operator holds a knife to cut the frog skin, and then removes the internal organs manually and then washes. Since the surface of the bullfrog and the green frog is relatively slippery, the frog skin is relatively tough, and the manual slaughtering process not only has high labor intensity, but also has low slaughtering quality and efficiency, thereby increasing the processing cost. In particular, for small frogs such as green frogs, the manual slaughtering process is more difficult, the operation complexity is increased, and the slaughtering quality and processing efficiency cannot be guaranteed. SUMMARY
[0004] Therefore, the present application aims to provide a frog slaughtering device to solve the technical problems in the prior art.
[0005] The present application provides a frog slaughtering device, which comprises a supporting assembly, a plurality of parallel slaughtering lines, and a head removal assembly. Each slaughtering line comprises a clamping assembly, a chest opening assembly, and a gas blowing assembly. The supporting assembly comprises a supporting frame, an operation plate located on the surface of the supporting frame and fixedly connected thereto, a first fixing assembly, a second fixing assembly, and a third fixing assembly fixedly connected to the operation plate. An operation area is formed on the operation plate, which comprises a clamping sub-area and a slaughtering sub-area. The clamping assembly is arranged in the clamping sub-area. The chest opening assembly, the gas blowing assembly, and the head removal assembly are arranged in the slaughtering sub-area. The clamping assembly slides relative to the first fixing assembly, and is used for clamping frogs to be slaughtered and transporting the clamped frogs to the chest opening assembly, the gas blowing assembly, and the head removal assembly in sequence for slaughtering. The chest opening assembly is fixedly connected to the operation plate through the second fixing assembly, and is used for opening the chest of the frog transported to the chest opening assembly. The gas blowing assembly is in communication with an external air pump, and is used for blowing and washing the frog transported to the gas blowing assembly after being opened, so as to facilitate the falling of the internal organs. The head removal assembly slides relative to the third fixing assembly, and is used for removing the head of the frog transported to the head removal assembly after being blown and washed, so as to complete the slaughtering of the frog.
[0006] The frog killing device provided by the application comprises a supporting assembly, a plurality of parallel killing lines, and a head cutting assembly, each killing line comprises a clamping assembly, a evisceration assembly, and a gas blowing assembly, the supporting assembly comprises a supporting frame, an operation plate located on the surface of the supporting frame and fixedly connected with the supporting frame, a first fixing assembly, a second fixing assembly, and a third fixing assembly fixedly connected with the operation plate; the clamping assembly is used for clamping frogs to be killed and sequentially transporting the clamped frogs to the evisceration assembly, the gas blowing assembly, and the head cutting assembly for killing; the evisceration assembly is used for eviscerating the frogs transported to the evisceration assembly; the gas blowing assembly is used for blowing and washing the eviscerated frogs transported to the gas blowing assembly; and the head cutting assembly is used for cutting the heads of the frogs transported to the head cutting assembly, so as to complete the killing of the frogs; the frog killing device provided by the application can automatically clamp, eviscerate, and cut the heads of the frogs to be killed, the killing quality is uniform, the killing efficiency is high, and the processing cost is greatly reduced.
[0007] Preferably, the first fixing assembly comprises first fixing blocks arranged at the bottom of the periphery of the clamping sub-region and fixedly connected with the operation plate, support plates arranged between the two first fixing blocks perpendicular to the sliding direction of the clamping assembly, and connecting seats arranged on the support plates, a plurality of first sliding rods being arranged between the two connecting seats parallel to the sliding direction of the clamping assembly.
[0008] Preferably, the clamping assembly comprises sliding blocks and clamping plates fixedly connected with the sliding blocks, the clamping plates being used for clamping frogs to be killed, a plurality of sliding holes corresponding to the first sliding rods being arranged on the sliding blocks, and the clamping assembly being slidably connected with the first fixing assembly through the first sliding rods passing through the sliding holes.
[0009] Preferably, the clamping plate is provided with a first clamping groove matched with the shape of the frog to be clamped, an avoiding groove matched with the evisceration assembly, a plurality of clamping pieces rotatably arranged on one side of the first clamping groove, a plurality of pressing protrusions matched with the first clamping groove arranged at the bottom of the clamping pieces, a plurality of pressing bolts, and a plurality of pressing screws, the frog to be clamped being pressed in the first clamping groove through the pressing protrusions, the pressing bolts, and the pressing screws, so as to prevent the frog from moving.
[0010] Preferably, the clamping piece is provided with an elastic locking pin with a thin root and a thick outer edge at the bottom of the end away from the rotating shaft, the clamping plate is provided with a locking groove matched with the locking pin, and the locking groove is provided with spherical protrusions on both sides, the distance between the spherical protrusions being matched with the thickness of the root of the locking pin.
[0011] Preferably, the clamping plate is provided with a receiving groove, a pressing device is arranged on the clamping plate and rotationally connected with the clamping plate, and a clamping block is detachably arranged in the receiving groove and positioned by a positioning pin.
[0012] Preferably, the operation plate is provided with a fixing frame, the fixing frame is provided with a second sliding rod, the second sliding rod is provided with a telescopic piece, one end of the telescopic piece away from the second sliding rod is provided with a clamping hand, the telescopic piece is in telescopic movement, used for driving the clamping hand to move up and down, the clamping hand is used for clamping the killed frog, and the telescopic piece is relative to the second sliding rod in sliding movement, used for transporting the clamping hand with the frog to a preset placement position.
[0013] Preferably, the second fixing assembly comprises second fixing blocks arranged at the bottom of both sides of the killing sub-region and fixedly connected with the operation plate, the second fixing blocks are provided with first isolation cavities at the bottom, the open chest assembly comprises a first driving motor arranged in the first isolation cavities, and the output shaft of the first driving motor is connected with a first rotary cutter.
[0014] Preferably, the third fixing assembly further comprises fourth fixing blocks arranged on the surfaces of both sides of the killing sub-region and fixedly connected with the operation plate, the fourth fixing blocks are connected through sliding shafts, the head cutting assembly is slidably connected with the third fixing assembly through the sliding shafts, and a cross beam is further arranged between the fourth fixing blocks.
[0015] Preferably, the head cutting assembly comprises a second isolation cavity, the second isolation cavity is provided with a second driving motor, the output shaft of the second driving motor is connected with a second rotary cutter, the second rotary cutter is located outside the second isolation cavity, the bottom of the second isolation cavity is provided with a sliding groove matched with the sliding rail, the top of the second isolation cavity is provided with a sliding block, the top of the sliding block is slidably connected with the bottom of the cross beam through a clamping groove, and the sliding block is provided with a sliding hole matched with the sliding shaft.
[0016] Additional aspects and advantages of the application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0018] Figure 2 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0019] Figure 3 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 2 Structure diagram of frog killing device in embodiment 1 of the present application;
[0020] Figure 4 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 3 Structure diagram of frog killing device in embodiment 1 of the present application;
[0021] Figure 5 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 3 Structure diagram of frog killing device in embodiment 1 of the present application;
[0022] Figure 6 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0023] Figure 7 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0024] Figure 8 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 7 Structure diagram of frog killing device in embodiment 1 of the present application;
[0025] Figure 9 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 7 Structure diagram of frog killing device in embodiment 1 of the present application;
[0026] Figure 10 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0027] Figure 11 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 10 Structure diagram of frog killing device in embodiment 1 of the present application;
[0028] Figure 12 Structure diagram of frog killing device in embodiment 1 of the present application; Figure 1 Structure diagram of frog killing device in embodiment 1 of the present application;
[0029] Figure 13 Structure diagram of frog killing device in embodiment 2 of the present application;
[0030] Figure 14 Structure diagram of frog killing device in embodiment 2 of the present application; Figure 13 Structure diagram of frog killing device in embodiment 2 of the present application;
[0031] Figure 15 Structure diagram of frog killing device in embodiment 2 of the present application; Figure 13 Structure diagram of frog killing device in embodiment 2 of the present application;
[0032] Figure 16 For Figure 15 Structure diagram of the clamping plate.
[0033] Main component symbol explanation:
[0034] 10, support assembly; 11, support frame; 12, operation plate; 13, operation area; 131, clamping sub-area; 132, slaughtering sub-area; 14, start-stop button; 15, scroll wheel; 16, waste sheet metal cover; 17, storage basket; 18, partition plate; 20, head cutting assembly; 21, second isolation cavity; 22, second drive motor; 23, second rotary cutter; 24, sliding groove; 25, sliding block; 30, clamping assembly; 31, sliding block; 311, sliding hole; 32, clamping plate; 321, first clamping groove; 322, avoidance groove; 323, accommodating groove; 33, clamping piece; 331, pressing protrusion; 332, pressing bolt; 333, pressing screw; 334, locking pin; 34, locking groove; 341, spherical protrusion; 35, pressing device; 36, clamping block; 361, positioning hole; 362, second clamping groove; 40, drum opening assembly; 41, first drive motor; 42, first rotary cutter; 50, air blowing assembly; 60, first fixing assembly; 61, first fixing block; 62, support plate; 63, connecting seat; 64, first sliding rod; 70, second fixing assembly; 71, second fixing block; 72, first isolation cavity; 80, third fixing assembly; 81, third fixing block; 82, sliding rail; 83, fourth fixing block; 84, sliding shaft; 85, cross beam; 86, reinforcing plate; 90, fixing frame; 91, second sliding rod; 92, telescopic piece; 921, telescopic rod; 93, clamping hand.
[0035] The following detailed description will further describe the present application in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION
[0036] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. The drawings show several embodiments of the present application. However, the present application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.
[0037] It should be noted that when an element is referred to as being "fixedly attached" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0039] Example 1
[0040] like Figures 1 to 12 As shown, the present invention provides a frog slaughtering device, including a support assembly 10, several parallel slaughtering lines, and a head removal assembly 20. Each slaughtering line includes a clamping assembly 30, a evisceration assembly 40, and an air blowing assembly 50. The support assembly 10 includes a support frame 11, an operating plate 12 located on the surface of the support frame 11 and fixedly connected thereto, and a first fixing assembly 60, a second fixing assembly 70, and a third fixing assembly 80 fixedly connected to the operating plate 12. The operating plate 12 has an operating area 13, which includes a clamping sub-area 131 and a slaughtering sub-area 132. The clamping assembly 30 is located in the clamping sub-area 131, and the evisceration assembly 40, the air blowing assembly 50, and the head removal assembly 20 are located in the slaughtering sub-area 132. In the killing area 132, the clamping component 30 is slidably connected to the first fixing component 60, and is used to clamp the frog to be slaughtered and transport the clamped frog to the evisceration component 40, the air blowing component 50, and the head removal component 20 for slaughter. The evisceration component 40 is fixedly connected to the operating plate 12 through the second fixing component 70, and is used to eviscerate the frog transported to the evisceration component 40. The air blowing component 50 is connected to an external air pump, and is used to blow and wash the frog after it has been eviscerated and transported to the air blowing component 50 to facilitate the removal of internal organs. The head removal component 20 is slidably connected to the third fixing component 80, and is used to remove the head of the frog after it has been air blown and transported to the head removal component 20 to complete the slaughter of the frog.
[0041] Optionally, in this embodiment, the frog killing is described, other series of frog killing process is similar; the frog killing device includes two parallel killing lines; two start-stop buttons 14 are arranged on the operation plate 12 corresponding to the two killing lines, and the start-stop of the clamping assembly 30 sliding is controlled; the bottom of the support frame is provided with rollers 15 around, which facilitates the movement of the device; further, a plurality of sensors and a controller (not shown in the figure) are pre-installed in the device, and the whole device can be controlled by, for example, PLC; the frogs are transported to a specific position, and the corresponding killing device is automatically started according to the sensor and the controller to complete the automatic killing; a waste metal cover 16 and a storage basket 17 are arranged below the device for temporarily storing the internal organs during the killing process; the support assembly 10 includes a support frame 11 and an operation plate 12, and the support frame 11 and the operation plate 12 can be fixedly connected by an inner hexagonal bolt; the weight of the whole device is supported by the support frame; the operation plate 12 is a horizontal plate, and a through operation area is arranged in the middle of the operation plate 12 to facilitate the killing of the workers; as shown in Figure 1 and Figure 2 the middle of the operation area 13 can be separated by a partition plate 18 into a clamping sub-area 131 and a killing sub-area 132; the clamping sub-area 131 is a frog clamping and fixing position, and the killing sub-area 132 is an automatic frog killing position.
[0042] Specifically, after the clamping assembly 30 clamps the frog, it is slidably connected with the first fixing assembly 60, and the frog is transported to the position of the opening assembly 40; after detecting that the frog is transported to the position of the opening assembly 40, the controller controls the opening assembly 40 to start the opening operation; after the opening operation is completed, the clamping assembly 30 continues to slide forward while clamping the frog, and when it reaches the position of the air blowing assembly 50, the air blowing assembly 50 starts to blow and clean the opened frog, facilitating the falling of the internal organs; after the air blowing operation is completed, the clamping assembly 30 continues to slide forward while clamping the frog, and when it reaches the position of the head cutting assembly 20, the head cutting assembly 20 starts to cut the head of the opened frog; optionally, the sliding direction of the head cutting assembly 20 is perpendicular to the sliding direction of the clamping assembly 30; in this embodiment, the clamping assembly 30 slides horizontally, and the head cutting assembly 20 slides vertically; after the head of the frog is cut, the clamping assembly 30 moves back to the original position, and the worker takes the killed frog from the clamping assembly 30. The frog killing device provided in this embodiment can automatically clamp, open, remove the internal organs, and cut the head of the frog to be killed, the killing quality is uniform, the killing efficiency is high, and the processing cost is greatly reduced.
[0043] Optionally, in the embodiment, the first fixing assembly 60 includes a first fixing block 61 arranged at the bottom of the clamping sub-region 131 and fixedly connected with the operation plate 12, a support plate 62 arranged between the two first fixing blocks 61 perpendicular to the sliding direction of the clamping assembly 30, a plurality of first sliding rods 64 arranged between the two connecting seats 63 parallel to the sliding direction of the clamping assembly 30, and a connecting seat 63 arranged on the support plate 62. Figure 6 As shown in the figure, in the embodiment, three first sliding rods 64 are arranged between the two connecting seats 63 in the transverse direction; further, the clamping assembly 30 includes a sliding block 31, a clamping plate 32 fixedly connected with the sliding block 31, and the clamping plate 32 is located above the sliding block 31, the clamping plate 32 is used for clamping the frog to be slaughtered, a plurality of sliding holes 311 corresponding to the first sliding rods 64 are arranged on the sliding block 31, and the clamping assembly 30 is slidably connected with the first fixing assembly 60 through the first sliding rods 64 passing through the sliding holes 311. By arranging three first sliding rods 64, the stability of the sliding of the clamping assembly 30 can be effectively improved.
[0044] Optionally, as shown in the figure, Figures 7 to 9 the clamping plate 32 is provided with a first clamping groove 321 matched with the shape of the frog to be clamped, an avoiding groove 322 matched with the opening assembly 40, and a plurality of clamping pieces 33 rotatably arranged on one side of the first clamping groove 321. In the embodiment, the clamping pieces 33 are two, which are used to fix the forelimb part and the hindlimb part of the frog respectively, so as to improve the fixing effect of the frog. The bottom of the clamping piece 33 is provided with a pressing protrusion 331 matched with the first clamping groove, a plurality of pressing bolts 332 and a plurality of pressing screws 333. The frog to be clamped is pressed in the first clamping groove 321 by the pressing protrusion 331, the pressing bolt 332 and the pressing screw 333, so as to prevent the frog from moving. Specifically, the pressing protrusion 331 presses the surface of the frog in a large area, the pressing bolt 332 presses the active parts such as the limbs of the frog, and the pressing screw 333 penetrates the root of the limb of the frog, so as to further limit the movement of the frog during slaughtering, and improve the slaughtering quality and efficiency.
[0045] Optionally, as shown in the figure, Figure 7 the first clamping groove 321 includes a straight line type forelimb first clamping groove, an inclined type hindlimb first clamping groove and a first clamping groove for the body part. Correspondingly, in the embodiment, the clamping piece 33 for the forelimb part of the frog includes two symmetrically arranged pressing screws 333 and eight symmetrically arranged pressing bolts 332, the two pressing screws 333 are arranged close to each other, and the two pressing screws 333 and the eight pressing bolts 332 are divided into two groups and arranged in parallel on a straight line. The clamping piece 33 for the hindlimb part of the frog includes two symmetrically arranged pressing screws 333 and four symmetrically arranged pressing bolts 332, and the two pressing screws 333 and the four pressing bolts 332 are divided into two groups and arranged in an inclined manner.
[0046] Optionally, as shown in Figure 8 The clamping piece 33 is provided with a thin-rooted and thick-edged elastic locking pin 334 at the bottom of one end away from the rotation axis of the clamping piece 33, and the clamping plate 32 is provided with a locking groove 34 matched with the locking pin 334, and the locking groove 34 is provided with a spherical protrusion 341 on each side, and the distance between the spherical protrusions 341 is matched with the thickness of the root of the locking pin 334. By setting the elastic locking pin 334 with different thicknesses and the locking groove 34 with the spherical protrusions 341, the clamping of the clamping piece 33 on the frog is facilitated, the loading and unloading time of the frog is shortened, and the slaughtering efficiency is improved.
[0047] Optionally, as shown in Figure 12 The second fixing assembly 70 includes a second fixing block 71 located at the bottom of both sides of the slaughtering sub-area 132 and fixedly connected with the operation plate 12, the second fixing block 71 is provided with a first isolation cavity 72 at the bottom, the first driving motor 41 is arranged in the first isolation cavity 72, the output shaft of the first driving motor 41 is connected with the first rotary cutter 42, and the first rotary cutter 42 is located outside the first isolation cavity 72. The first driving motor 41 is arranged in the first isolation cavity 72, which can effectively protect the motor and prevent blood and the like from splashing on the motor during slaughtering, thereby affecting the working of the motor. The rotary cutter is arranged, and the effect of opening the shell is better than that of the conventional cutter.
[0048] Optionally, as shown in Figure 10 The third fixing assembly 80 includes a third fixing block 81 located at the bottom of both sides of the slaughtering sub-area 132 and fixedly connected with the operation plate 12, the two third fixing blocks 81 are connected through a slide rail 82, and the head cutting assembly 20 is slidably connected with the third fixing assembly 80 through the slide rail 82. Further, the third fixing assembly 80 further includes a fourth fixing block 83 located on the surface of both sides of the slaughtering sub-area 132 and fixedly connected with the operation plate 12, the two fourth fixing blocks 83 are connected through a slide shaft 84, and the head cutting assembly 20 is slidably connected with the third fixing assembly 80 through the slide shaft 84. In this embodiment, the head cutting assembly 20 is slidably connected with the third fixing assembly 80 through the slide rail 82 and the slide shaft 84, thereby improving the stability of sliding. The two fourth fixing blocks 83 are further provided with a cross beam 85, and the cross beam 85 is fixedly connected with the operation plate 12 through a reinforcing plate 86. Through the reinforcing plate 86, the stability of the cross beam 85 is improved.
[0049] Optionally, as shown in Figure 11As shown, the head cutting assembly 20 comprises a second isolation cavity 21, a second driving motor 22 is arranged in the second isolation cavity 21, and the output shaft of the second driving motor 22 is connected with a second rotary cutter 23, and the second rotary cutter 23 is located outside the second isolation cavity 21; similarly, the second driving motor 22 is arranged in the second isolation cavity 21, which can effectively protect the motor from being splashed by blood during the slaughtering process, thereby affecting the working of the motor; the rotary cutter is arranged, and compared with the conventional cutter, the cutting effect is better. The bottom of the second isolation cavity 21 is provided with a sliding groove 24 matched with the sliding rail 82, and the top of the second isolation cavity 21 is provided with a sliding block 25, and the top of the sliding block 25 is connected with the bottom of the cross beam 85 through a clamping groove sliding connection, and the sliding block 25 is provided with a sliding hole matched with the sliding shaft 84, and the sliding groove 24 is arranged at the bottom of the second isolation cavity 21, and the sliding block 25 is arranged at the top, and they are matched with each other, so that the stability of the sliding of the head cutting assembly 20 is greatly improved.
[0050] In summary, the frog slaughtering device provided by the present application can be used as follows: first, open the clamping piece 33, press the frog in the first clamping groove 321 by hand, and then close the clamping piece 33, so that the frog is pressed in the first clamping groove 321 under the combined action of the pressing protrusion 331, the pressing bolt 332 and the pressing screw 333, thereby preventing the frog from moving; then press the start-stop button 14, and the clamping assembly 30 slides to the left on the first fixed assembly 60, stops when reaching the opening assembly 40, and opens the frog; the clamping assembly 30 continues to slide to the left on the first fixed assembly 60, and when reaching the air blowing assembly 50, the air blowing assembly 50 is started to blow and clean the opened frog, so that the internal organs fall off; after the blowing operation is completed, the clamping assembly 30 continues to slide to the left while clamping the frog, and when reaching the head cutting assembly 20, the head cutting assembly 20 is started to cut the head of the opened frog, and then the clamping assembly 30 is reset, and the operator takes the slaughtered frog from the clamping assembly 30; the internal organs and the head of the frog and other parts unsuitable for eating fall into the storage basket 17. The frog slaughtering device provided by the present application can automatically clamp, open, remove the internal organs and cut the head of the frog to be slaughtered, has uniform slaughtering quality, high slaughtering efficiency, greatly reduces the processing cost, and is suitable for wide promotion.
[0051] Example 2
[0052] The present embodiment also provides a frog slaughtering device, and the difference between the slaughtering device provided by the present embodiment and the slaughtering device in the embodiment 1 is that:
[0053] As Figures 13-16As shown, in the embodiment, the clamping plate 32 is provided with a receiving groove 323, a pressing device 35 arranged on the clamping plate 32 and rotationally connected with the clamping plate 32, and the receiving groove 323 is detachably provided with a clamping block 36, and the clamping block 36 is positioned with the receiving groove 323 through a positioning pin. Optionally, in the embodiment, the opposite corners of the clamping block 36 are respectively provided with positioning holes 361, and the receiving groove 323 is provided with a positioning pin at the corresponding position. In use, the clamping block 36 is positioned in the receiving groove 323 through the positioning pin and the positioning hole. In the embodiment, the clamping block 36 is provided with a second clamping groove 362 matched with the shape of the frog to be clamped, and the pressing device 35 is located above one side of the receiving groove 323, such as Figure 15 As shown, the pressing device 35 is provided with a plurality of pressing rods and pressing springs, etc., for pressing the frog placed in the second clamping groove 362. The killing device provided in the embodiment is suitable for processing the killed frogs, and the frogs will not jump during the processing. Specifically, the clamping block 36 can be provided with a plurality of clamping blocks, which can be freely taken. In use, the clamping block 36 is first removed, the killed frog is placed in the second clamping groove 362 of the clamping block 36, and then the clamping block 36 is placed in the receiving groove through the positioning hole.
[0054] Optionally, as shown in Figure 14 The fixed frame 90 is arranged above the clamping sub-region 131, the second sliding rod 91 is arranged on the fixed frame 90, the second sliding rod 91 can be three parallel rods, the second sliding rod 91 is provided with an extension piece 92, the second sliding rod 91 is horizontally arranged, the extension piece 92 is provided with a clamping hand 93 at the end away from the second sliding rod 91, the extension piece 92 includes a telescopic rod 921, the telescopic rod 921 is telescopically movable relative to the extension piece 92, for driving the clamping hand 93 to move up and down, the clamping hand 93 can be two, symmetrically arranged on both sides of the extension piece 92, the clamping hand 93 is clamped and released by a gas cylinder, for clamping the killed frog, the extension piece 92 is slid relative to the second sliding rod 91, for transporting the clamping hand 93 clamping the frog to a predetermined placement position.
[0055] The frog killing device provided by the embodiment is used, the clamping block 36 is taken off first, the killed frog is placed in the second clamping groove 362 of the clamping block 36, the telescopic rod 921 is retracted, the clamping hand 93 is lifted to a specified height, then the clamping block 36 with the frog is placed in the accommodating groove 323 through the positioning hole, the pressing device 35 is rotated to be flush with the frog, the frog is pressed through the pressing device 35, subsequent operations such as evisceration and head removal are facilitated, and the evisceration and head removal operations are similar to those in the embodiment 1, and details are not described herein again; when the frog head is removed to the original clamping position, the pressing device is prevented from loosening, and is rotated to be perpendicular to the frog, forming an avoiding space, finally the telescopic rod 921 is extended until the clamping hand 93 reaches the frog position, the clamping hand 93 is clamped to hold the frog through the cylinder, and finally the telescopic part 92 is slid relative to the second sliding rod 91, so that the processed frog is transported to a specified position.
[0056] It should be noted that the above implementation process is only for the purpose of illustrating the implementability of the present application, but it does not mean that the frog killing device of the present application has only the above several implementation processes, on the contrary, as long as the frog killing device of the present application can be implemented, it can be included in the feasible implementation scheme of the present application.
[0057] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0058] The above-described embodiments only express several implementation manners of the present application, the description is more specific and detailed, but it cannot be understood as a limitation on the patent scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.
Claims
1. A frog slaughtering device, characterized in that, The device includes a support assembly, several parallel slaughter lines, and a head removal assembly. Each slaughter line includes a clamping assembly, a evisceration assembly, and an air-blowing assembly. The support assembly includes a support frame, an operating plate located on and fixedly connected to the surface of the support frame, and a first fixing assembly, a second fixing assembly, and a third fixing assembly fixedly connected to the operating plate. The operating plate has an operating area, which includes a clamping sub-area and a slaughtering sub-area. The clamping assembly is located in the clamping sub-area, and the evisceration assembly, the air-blowing assembly, and the head removal assembly are located in the slaughtering sub-area. The clamping assembly slides relative to the first fixing assembly to clamp the frog to be slaughtered and transports the clamped frog sequentially to the evisceration assembly, the air-blowing assembly, and the head removal assembly for slaughter. The evisceration assembly is fixedly connected to the operating plate through the second fixing assembly and is used to eviscerate the frog transported to the evisceration assembly. The air blowing assembly is connected to an external air pump and is used to blow-wash the frog after it has been gutted and transported to the air blowing assembly, so as to facilitate the removal of internal organs. The head removal assembly slides relative to the third fixing assembly and is used to remove the head of the frog after it has been air-blown and transported to the head removal assembly, so as to complete the slaughter of the frog. The first fixing assembly includes a first fixing block disposed at the bottom of the clamping sub-area and fixedly connected to the operating plate. A support plate is provided between the two first fixing blocks perpendicular to the sliding direction of the clamping assembly. A connecting seat is provided on the support plate. A plurality of first sliding rods are provided between the two connecting seats parallel to the sliding direction of the clamping assembly. The clamping assembly includes a sliding block and a clamping plate fixedly connected to the sliding block. The clamping plate is used to clamp the frog to be slaughtered. The sliding block is provided with a plurality of sliding holes corresponding to the first sliding rods. The clamping assembly is slidably connected to the first fixing assembly through the first sliding rods passing through the sliding holes.
2. The frog slaughtering equipment according to claim 1, characterized in that, The clamping plate is provided with a first clamping groove that matches the shape of the frog to be clamped, and an avoidance groove that is adapted to the evisceration assembly. Several clamping members are rotatably provided on one side of the first clamping groove. The bottom of the clamping members is provided with a pressing protrusion, several pressing bolts and several pressing screws that are adapted to the first clamping groove. The frog to be clamped is pressed into the first clamping groove by the pressing protrusion, the pressing bolts and the pressing screws to prevent it from moving.
3. The frog slaughtering equipment according to claim 2, characterized in that, The clamping member has an elastic locking pin with a thin root and a thick outer edge at the bottom of one end away from the first clamping groove and the connection point with the clamping member. The clamping plate has a locking groove that matches the locking pin. Spherical protrusions are provided on both sides of the locking groove. The distance between the spherical protrusions matches the thickness of the root of the locking pin.
4. The frog slaughtering equipment according to claim 1, characterized in that, The clamping plate is provided with a receiving groove and a pressing device provided on the clamping plate and rotatably connected to the clamping plate. A clamping block is detachably provided in the receiving groove. The clamping block and the receiving groove are positioned by a positioning pin. A second clamping groove matching the shape of the frog to be clamped is provided in the clamping block. The pressing device is used to press the frog placed in the second clamping groove.
5. The frog slaughtering equipment according to claim 4, characterized in that, The operating panel is provided with a fixed frame, and the fixed frame is provided with a second slide rod. The second slide rod is provided with a telescopic component, and the end of the telescopic component away from the second slide rod is provided with a gripper. The telescopic component extends and retracts to drive the gripper to move up and down. The gripper is used to grip the slaughtered frog. The telescopic component slides relative to the second slide rod to transport the gripper holding the frog to a preset position.
6. The frog slaughtering equipment according to claim 1, characterized in that, The second fixing component includes a second fixing block located at the bottom of both sides of the slaughtering area and fixedly connected to the operating plate. The bottom of the second fixing block is provided with a first isolation cavity. The evisceration component includes a first drive motor disposed in the first isolation cavity. The output shaft of the first drive motor is connected to a first rotary cutter. The first rotary cutter is located outside the first isolation cavity. The third fixing component includes a third fixing block located at the bottom of both sides of the slaughtering area and fixedly connected to the operating plate. The two third fixing blocks are connected by a slide rail. The head removal component is slidably connected to the third fixing component through the slide rail.
7. The frog slaughtering equipment according to claim 6, characterized in that, The third fixing component also includes a fourth fixing block located on both sides of the slaughtering area and fixedly connected to the operating plate. The two fourth fixing blocks are connected by a sliding shaft. The head removal component is slidably connected to the third fixing component through the sliding shaft. A crossbeam is also provided between the two fourth fixing blocks. The crossbeam is fixedly connected to the operating plate by a reinforcing plate.
8. The frog slaughtering equipment according to claim 7, characterized in that, The head resection assembly includes a second isolation chamber, a second drive motor is provided inside the second isolation chamber, the output shaft of the second drive motor is connected to a second rotary cutter, the second rotary cutter is located outside the second isolation chamber, the bottom of the second isolation chamber is provided with a slide groove adapted to the slide rail, the top of the second isolation chamber is provided with a slider, the top of the slider is slidably connected to the bottom of the crossbeam through a slot, and the slider is provided with a sliding hole adapted to the slide shaft.
Citation Information
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