Egg incubation detection equipment

By adopting a drawer-type detachable body and slide rail power connection design, the problem of requiring the entire machine to be shut down for maintenance in existing equipment is solved, and the convenient maintenance effect of quick replacement and simplified wiring is achieved.

CN223349367UActive Publication Date: 2025-09-19FU JIAN CHIA TAI FOOD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422855741.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-09-19
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing egg incubation and testing equipment requires the entire machine to be shut down and disassembled for repair when the LED beads or parts are damaged, which is quite inconvenient.

Method used

It adopts a drawer-type detachable separator body structure, which is locked by limit bars and pins. In case of damage, the control screw can be rotated to release the pin lock, and the separator body can be pulled out for quick replacement. The wiring is simplified by using a slide rail power connection.

Benefits of technology

This allows for quick replacement of the separator without disassembling the entire machine when damaged parts are found, simplifying the maintenance process and improving the ease of maintenance and continuity of use of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223349367U_ABST
    Figure CN223349367U_ABST
Patent Text Reader

Abstract

The utility model discloses egg incubation detection equipment, which comprises a support frame and a detection machine body, the detection machine body comprises a control panel, an egg support placing frame, a detection hole, a connecting top rod, a side machine body, a separation machine body, a connecting bottom plate, a lifting frame, a first lifting groove, a first limiting strip, an egg support, an egg placing groove, a second limiting strip, a control screw rod and a pin rod, and belongs to the field of incubation equipment. The separating machine body capable of being separated in a drawer mode is arranged, the machine body is fixed in a limiting strip limiting and pin rod and plug pin locking mode, when part of lamp beads or parts for irradiation are damaged, plug pin locking of the separating machine body can be relieved by rotating a control screw, then the lamp beads or the parts are dragged out like a drawer, and rapid and convenient replacement can be carried out; and in the maintenance process, only the single separated machine body needs to be disassembled, the whole machine does not need to be disassembled, and the functions that detection and use are not affected by maintenance, and maintenance is convenient are achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the field of egg hatching equipment, in particular to an egg hatching detection device. Background Art

[0002] Egg hatching equipment refers to the general term for items required in the egg hatching process, generally including: incubators, hatchers, incubator accessories, special items for the hatching room, heating equipment, humidification equipment, and various measurement systems, etc. Among them, in order to detect the quality and progress of egg hatching, it is often necessary to irradiate the eggs for testing. These devices are egg hatching testing equipment. However, when the existing technology is used, the structure of the testing equipment is relatively fixed. When some of the irradiation lamps or parts are damaged, the entire machine needs to be shut down and the machine needs to be disassembled for maintenance and replacement, which is relatively inconvenient. Utility Model Content

[0003] (1) Technical issues to be resolved

[0004] In order to overcome the shortcomings of the existing technology, an egg hatching detection equipment is proposed to solve the problem that the existing technology has a relatively fixed structure when in use. When some of the irradiation lamp beads or parts are damaged, the entire machine needs to be shut down and the machine needs to be disassembled for repair and replacement, which is relatively inconvenient.

[0005] (2) Technical solution

[0006] The utility model is realized by the following technical solution: The utility model proposes an egg hatching detection device, the structure of which includes a support frame and a detection body, and the support frame is fixed to the bottom of the detection body;

[0007] The detection body includes a control panel, an egg tray placement rack, a detection hole, a connecting rod, a side body, a separation body, a connecting bottom plate, a lifting frame, a first lifting slot, a first limit bar, an egg tray, an egg placement slot, a second limit bar, a control screw and a pin rod. The side bodies are provided with two, and the lower sides of the two side bodies are fixedly connected by a connecting bottom plate, and the upper sides of the two side bodies are fixedly connected by a connecting rod, and an empty slot is left between the connecting rod and the connecting bottom plate. The facing ends of the two side bodies are provided with a first lifting slot, and the upper and lower ends of the first lifting slot are located within the empty slot left between the connecting rod and the connecting bottom plate. The egg tray placement rack and the lifting frame are both concave in shape, and the side end opening of the lifting frame is assembled toward the empty slot left between the connecting rod and the connecting bottom plate, and the lifting frame is assembled between the two side bodies. The two ends of the egg tray placement rack are located in the first lifting slot, and a second limit bar is fixed to the side end surface of the inner side of the lifting rack, and the separation body is provided with more than one, and the separation body is assembled on the lifting rack through the second limit bar bolt, and the side end of the side body is threadedly connected to a control screw, and one end of the control screw is inserted into the separation body through a pin bolt, and a first limit bar is provided on the top of the side body, and the side end opening of the egg tray placement rack is assembled toward the side body, and the egg tray placement rack is placed and assembled on the top between the two side bodies through the first limit bar, and a detection hole is provided on the egg tray placement rack, and an egg tray is placed and assembled on the egg tray, and an egg placement slot is provided on the egg tray, and the lifting rack can be raised and lowered in the first lifting slot, and the separation body detects the placed eggs through the detection hole and the egg placement slot, and a control panel is also provided on the top of one side of the side body.

[0008] Furthermore, when the lifting frame is located at the bottom of the first lifting slot, the top of the separation body is lower than the top of the empty slot left between the connecting top rod and the connecting bottom plate.

[0009] Furthermore, the diameter of the detection hole is larger than the minimum diameter of the egg trough, and the maximum diameter of the pin rod is smaller than the maximum diameter of the control screw rod.

[0010] Furthermore, the detection body also includes a power bar, a protective plate and a power cord. The power bar is fixed to the bottom of the groove of the lifting frame, and the two ends of the power bar are flush with the side openings of the lifting frame. The top of the separation body is covered on the power bar, and the protective plate is fixed to the connecting bottom plate. The top of the protective plate is connected to the bottom of the lifting frame, and the power cord passes through the protective plate and the lifting frame and is electrically connected to the power bar.

[0011] Furthermore, the detection body also includes a top pressure plate, a fixing ring and a compression spring. The compression spring is sleeved on the power cord. The upper and lower ends of the compression spring are fixedly connected to the protective plate and the top pressure plate respectively. The power cord passes through the top pressure plate away from the side of the power bar. The fixing ring is used to lock the power cord on the top pressure plate, so that when the power bar is raised and lowered with the lifting frame, the power cord can be raised and lowered more smoothly and synchronously, preventing the power cord from being damaged by being pulled during the lifting.

[0012] Furthermore, the power strip includes a power plate, a power connecting rod and a protective strip body. The power plate is embedded in the protective strip body and the top and side ends both pass through the protective strip body. The power connecting rod is arranged in the protective strip body. The power plates are provided in the same number as the separation body, and the power connecting rod is used for connecting multiple power plates in series.

[0013] Furthermore, the protective strip body is made of insulating material, and the power line is connected to the power board or the power connecting rod.

[0014] Furthermore, the separation body includes a focusing ring, lamp beads, a body main body, a power connection board and a handle. The lamp beads are arranged at the position corresponding to the detection hole, and the lamp beads are assembled on the top of the body main body. The focusing ring is provided with the same number as the lamp beads. The focusing ring wraps each lamp bead and leaves an empty groove between the lamp beads. The focusing ring is also assembled on the top of the body main body. The power connection board is embedded and assembled at the bottom of the body main body corresponding to the position of the power board. The handle is fixed on the side end face of the body main body.

[0015] Furthermore, the focusing ring is made of rubber, the top of the focusing ring is an inverted cone-shaped ring, and the maximum diameter of the focusing ring is smaller than the minimum diameter of the egg trough.

[0016] Furthermore, the lifting frame includes a pump rod, a lifting connecting plate, a second lifting slot and a main frame body. The side end of the main frame body is fixed with a lifting connecting plate, the side body is provided with a second lifting slot, the lifting connecting plate is assembled in the second lifting slot, the pump rod is assembled in the side body and the top is fixedly connected to the lifting connecting plate. The pipelines of multiple pump rods are assembled in parallel, the lifting structure is simple and clear, and is easier to maintain.

[0017] Furthermore, the lifting frame includes a lifting connecting plate, a second lifting slot, a main frame, a connecting head, a first gear, a chain, a lifting screw, a second gear, a third gear and a motor. The side end of the main frame is fixed with a lifting connecting plate, and the side body is provided with a second lifting slot. The lifting connecting plate is assembled in the second lifting slot. The upper and lower ends of the lifting screw are semicircular connecting heads. The lifting screw is assembled in the side body and fits with the lifting screw clearance. The lifting screw passes through the lifting connecting plate and is threadedly connected to the lifting connecting plate. The lifting screw is fixedly covered with a first gear, and the first gears of multiple lifting screws are synchronously connected by a chain, and one of the lifting screws is also covered and fixed with a second gear. The motor is locked on the side body, and the motor drives the second gear to rotate through the third gear, so that the lifting is smoother and better prevents the lifting frame from lifting too high and causing the eggs to be separated from the body for collision detection.

[0018] (3) Beneficial effects

[0019] One of the above technical solutions has the following advantages or beneficial effects:

[0020] In order to solve the problem that the structure of the detection equipment in the prior art is relatively fixed during use, when some of the irradiation lamp beads or parts are damaged, the whole machine needs to be shut down, and the machine needs to be disassembled for repair and replacement, which is relatively inconvenient, a drawer-type detachable separation body is provided, and the body is fixed by a limit bar limit and a pin latch lock. When some of the irradiation lamp beads or parts are damaged, the latch lock of the separation body can be released by rotating the control screw, and then it can be dragged out like a drawer for quick and convenient replacement, and the spare separation body can be immediately assembled for use. When repairing, only a single separation body needs to be disassembled, and there is no need to disassemble the whole machine, so that repair does not affect the detection use and the maintenance is convenient;

[0021] At the same time, when the equipment is in use, the power connection of the separation body adopts a sliding rail method, and the power connection plate wrapped at the bottom of the separation body contacts and cooperates with the power connection plate fixed at the power strip to supply power, so that when the equipment is used in a drawer-type separation body, the trouble of power connection and wiring is eliminated, which is more convenient and quick. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:

[0023] Figure 1 This is a structural diagram of an egg hatching and detection device according to the present invention;

[0024] Figure 2 It is a schematic diagram of the cross-sectional structure of the front view of the utility model;

[0025] Figure 3 This is a cross-sectional structural diagram of the side view of the connection between the separation body and the energizing strip of the utility model;

[0026] Figure 4 This is a schematic cross-sectional view of the front view of the assembled lifting frame of the fourth embodiment of the present utility model;

[0027] Figure 5 This is a schematic cross-sectional view of the front view of the assembled lifting frame of the fifth embodiment of the present invention;

[0028] In the figure: support frame - 1, detection body - 2, control panel - a, egg tray placement frame - b, detection hole - c, connecting rod - d, side body - e, separation body - f, connecting bottom plate - g, lifting frame - h, first lifting slot - i, first limit bar - j, egg tray - k, egg placement slot - l, power bar - m, second limit bar - n, control screw - o, pin - p, protective plate - q, power cord - r, top pressure plate - s, fixing ring - t, Compression spring - u, power supply plate - m1, power supply connecting rod - m2, protective strip - m3, focusing ring - f1, lamp bead - f2, main body - f3, power supply plate - f4, handle - f5, pump rod - h1, lifting connecting plate - h2, second lifting slot - h3, main frame - h4, connector - h5, first gear - h6, chain - h7, lifting screw - h8, second gear - h9, third gear - h10, motor - h11. DETAILED DESCRIPTION

[0029] The present invention will be further described in detail below with reference to the embodiments, but the embodiments of the present invention are not limited thereto.

[0030] Example 1:

[0031] like Figure 1 and Figure 2 As shown, the utility model provides an egg hatching detection device: its structure includes a support frame 1 and a detection body 2, and the support frame 1 is fixed to the bottom of the detection body 2;

[0032] The detection body 2 includes a control panel a, an egg tray placement rack b, a detection hole c, a connecting rod d, a side body e, a separation body f, a connecting bottom plate g, a lifting frame h, a first lifting slot i, a first limit bar j, an egg tray k, an egg placement slot l, a second limit bar n, a control screw o and a pin rod p. The side bodies e are provided with two, and the lower sides of the two side bodies e are fixedly connected by the connecting bottom plate g, and the upper sides of the two side bodies e are fixedly connected by the connecting rod d, and an empty slot is left between the connecting rod d and the connecting bottom plate g. The facing ends of the two side bodies e are provided with a first lifting slot i, and the upper and lower ends of the first lifting slot i are located within the empty slot left between the connecting rod d and the connecting bottom plate g. The egg tray placement rack b and the lifting frame h are both concave in shape, and the side end opening of the lifting frame h is assembled toward the empty slot left between the connecting rod d and the connecting bottom plate g. The lifting frame h is assembled between the two side bodies e and at both ends Located in the first lifting slot i, a second limit strip n is fixed to the side end surface of the inner side of the lifting frame h, and the separating body f is provided with more than one, and the separating body f is assembled on the lifting frame h through the second limit strip n bolt to ensure its stability during assembly, the side end of the side body e is threadedly connected to a control screw o, and one end of the control screw o is bolted into the separating body f through a pin rod p, and a first limit strip j is provided on the top of the side body e, and the side end opening of the egg tray placement rack b is assembled toward the side body e, and the egg tray placement rack b is placed and assembled on the top between the two side bodies e through the first limit strip j, and a detection hole c is penetrated on the egg tray placement rack b, and an egg tray k is placed and assembled on the egg tray placement rack b, and an egg placement slot l is penetrated on the egg tray k, and the lifting frame h can be raised and lowered in the first lifting slot i, and the separating body f detects the placed eggs through the detection hole c and the egg placement slot l, and a control panel a is also provided on the top of one side of the side body e.

[0033] When the lifting frame h is located at the bottom of the first lifting slot i, the top of the separation body f is lower than the top of the empty slot left between the connecting top rod d and the connecting bottom plate g.

[0034] The diameter of the detection hole c is larger than the minimum diameter of the egg trough l, and the maximum diameter of the pin rod p is smaller than the maximum diameter of the control screw rod o.

[0035] During use, eggs are placed in the egg trough l, and then the control panel a is used to control the lifting frame h to drive the separation body f to rise, so that the separation body f is raised to the eggs in the egg trough l for irradiation detection. In the event of a fault, the lifting frame h can be lowered to the lowest point, and then the control screw o can be rotated to disengage the pin lock on the separation body f. Then, the separation body f can be pulled out from the empty groove left between the connecting top rod d and the connecting bottom plate g like a drawer, so that a single separation body f can be quickly replaced and maintained, which is convenient and fast. When some of the irradiation lamp beads or parts are damaged, it is only necessary to disassemble the single separation body f for maintenance without disassembling the entire machine, so that maintenance does not affect the detection use and is easy to maintain.

[0036] Example 2:

[0037] like Figure 2 and Figure 3 As shown, compared with the first embodiment, the detection body 2 further includes a power strip m, a protective plate q and a power cord r. The power strip m is fixed to the bottom of the groove of the lifting frame h, and both ends of the power strip m are flush with the side openings of the lifting frame h. The top of the separation body f is covered on the power strip m, and the protective plate q is fixed on the connecting bottom plate g. The top of the protective plate q is connected to the bottom of the lifting frame h. The power cord r passes through the protective plate q and the lifting frame h and is electrically connected to the power strip m.

[0038] Among them, the power strip m includes a power plate m1, a power connecting rod m2 and a protective strip body m3. The power plate m1 is embedded in the protective strip body m3 and the top and side ends both pass through the protective strip body m3. The power connecting rod m2 is arranged in the protective strip body m3. The power plates m1 are provided in the same number as the separation body f. The power connecting rod m2 is used for connecting multiple power plates m1 in series.

[0039] Among them, the separation body f includes a focusing ring f1, lamp beads f2, a body f3, a power board f4 and a handle f5. The lamp beads f2 are arranged at the position corresponding to the detection hole c, and the lamp beads f2 are assembled on the top of the body f3. The focusing ring f1 is provided with the same number as the lamp beads f2. The focusing ring f1 wraps each lamp bead f2 and leaves an empty groove between the lamp beads f2. The focusing ring f1 is also assembled on the top of the body f3. The power board f4 is embedded and assembled at the bottom of the body f3 corresponding to the position of the power board m1. The handle f5 is fixed on the side end face of the body f3.

[0040] The focusing ring f1 is made of rubber, the top of the focusing ring f1 is an inverted cone-shaped ring, and the maximum diameter of the focusing ring f1 is smaller than the minimum diameter of the egg trough l.

[0041] During use, compared with the first embodiment, the present embodiment adds a protective plate q to strengthen the support of the lifting frame h to prevent collapse. The power connection of the separation body f adopts a sliding rail method. A wrapped power board f4 is provided at the bottom of the separation body f, and a power board m1 is provided at a fixed position on the protective strip m3 in conjunction with the power bar m. When the separation body f is assembled, the bottom is wrapped on the power bar m and slides in a sliding rail manner. When assembled to the fixed position, the power board f4 and the power board m1 are in contact and cooperated to energize, so that when the equipment is used as a drawer-type separation body f, the trouble of power connection and wiring is eliminated, which is more convenient and quick.

[0042] Example 3:

[0043] like Figure 2 As shown, compared with the aforementioned embodiment, the detection body 2 further includes a top pressure plate s, a fixing ring t and a compression spring u, the compression spring u is sleeved on the power cord r, the upper and lower ends of the compression spring u are respectively fixedly connected to the protective plate q and the top pressure plate s, the power cord r passes through the top pressure plate s away from the power bar m, and the fixing ring t is used to lock the power cord r on the top pressure plate s.

[0044] During use, compared with the previous embodiment, the detection body 2 of this embodiment is additionally provided with a top pressure plate s for positioning and fixing the power cord r, and a compression spring u is sleeved on the power cord r between the top pressure plate s and the protective plate q, so that when the power bar m is raised and lowered with the lifting frame h, the power cord r can be raised and lowered more smoothly synchronously, thereby preventing the power cord r from being damaged by being pulled during the lifting.

[0045] Example 4:

[0046] like Figure 4 As shown, compared with the previous embodiment, the lifting frame h includes a pump rod h1, a lifting connecting plate h2, a second lifting groove h3 and a main frame body h4, the side end of the main frame body h4 is fixed with a lifting connecting plate h2, the side body e is provided with a second lifting groove h3, the lifting connecting plate h2 is assembled in the second lifting groove h3, the pump rod h1 is assembled in the side body e and the top is fixedly connected to the lifting connecting plate h2, and the pipelines of the multiple pump rods h1 are assembled in parallel.

[0047] When in use, compared with the previous embodiment, the lifting frame h of this embodiment adopts the pump rod h1 lifting method, and can achieve synchronous lifting through parallel connection of multiple pump rod h1 pipelines. The lifting structure is simple and clear, and is easier to maintain.

[0048] Embodiment 5:

[0049] like Figure 5As shown, compared with the fourth embodiment, the lifting frame h includes a lifting connecting plate h2, a second lifting slot h3, a main frame body h4, a connecting head h5, a first gear h6, a chain h7, a lifting screw h8, a second gear h9, a third gear h10 and a motor h11. The side end of the main frame body h4 is fixed with a lifting connecting plate h2, the side body e is provided with a second lifting slot h3, the lifting connecting plate h2 is assembled in the second lifting slot h3, the upper and lower ends of the lifting screw h8 are semicircular connecting heads h5, the lifting screw The rod h8 is assembled in the side body e and is loosely fitted with the lifting screw h8. The lifting screw h8 passes through the lifting connecting plate h2 and is threadedly connected to the lifting connecting plate h2. The lifting screw h8 is fixedly covered with a first gear h6. The first gears h6 of multiple lifting screws h8 are synchronously connected by a chain h7. One of the lifting screws h8 is also covered and fixed with a second gear h9. The motor h11 is locked on the side body e, and the motor h11 drives the second gear h9 to rotate through the third gear h10.

[0050] When in use, compared with the fourth embodiment, this embodiment adopts a method of synchronously rotating the lifting screw h8 to drive the lifting. When in use, the motor h11 drives a lifting screw h8 to rotate, and the lifting screw h8 drives multiple groups of lifting screws h8 to rotate synchronously through the first gear h6 and the chain h7. Since the lifting screw h8 is limited, the lifting connecting plate h2 threadedly connected to the lifting screw h8 cannot rotate, so that the main frame h4 assembled with the lifting connecting plate h2 is lifted and lowered. Although some structures are added relative to the pump rod h1, the lifting is smoother and can better prevent the lifting frame from lifting too high and causing the eggs to collide with the separation body for detection.

[0051] In the description of the present invention, it should be noted that the terms "up", "down", "left", "right", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as a limitation on the present invention.

[0052] The control method of the present invention is to manually start and stop the switch. The wiring diagram of the power element and the provision of power supply are common knowledge in the field. Moreover, the present invention is mainly used to protect mechanical devices. Therefore, the control method and wiring arrangement are not explained in detail in the present invention.

[0053] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended that all changes that fall within the meaning and range of equivalents of the claims are included in the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.

[0054] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An egg hatching detection device, comprising a support frame (1) and a detection body (2), wherein the support frame (1) is fixed to the bottom of the detection body (2); Its characteristics are: The detection body (2) comprises a control panel (a), an egg tray placement rack (b), a detection hole (c), a connecting top rod (d), a side body (e), a separation body (f), a connecting bottom plate (g), a lifting frame (h), a first lifting slot (i), a first limit strip (j), an egg tray (k), an egg placement slot (l), a second limit strip (n), a control screw (o) and a pin (p). The side bodies (e) are provided with two, and the lower sides of the two side bodies (e) are fixedly connected by the connecting bottom plate (g), and the upper sides of the two side bodies (e) are fixedly connected by the connecting bottom plate (g). The two sides are fixedly connected by a connecting rod (d), and an empty slot is left between the connecting rod (d) and the connecting bottom plate (g). The two side bodies (e) are each provided with a first lifting slot (i) at the opposite ends. The upper and lower ends of the first lifting slot (i) are located within the empty slot left between the connecting rod (d) and the connecting bottom plate (g). The egg tray placement rack (b) and the lifting rack (h) are both concave in shape. The side end opening of the lifting rack (h) is assembled toward the empty slot left between the connecting rod (d) and the connecting bottom plate (g). The lifting rack (h) is assembled on the two side bodies. (e) and both ends are located in the first lifting groove (i), the side end surface of the inner side of the lifting frame (h) is fixed with a second limiting strip (n), the separation body (f) is provided with more than one, the separation body (f) is assembled on the lifting frame (h) through the second limiting strip (n) latch, the side end of the side body (e) is threadedly connected with a control screw (o), one end of the control screw (o) is latched into the separation body (f) through a pin (p), the top of the side body (e) is provided with a first limiting strip (j), and the side end opening of the egg tray placement rack (b) faces the side body (e) assembly, the egg tray placement rack (b) is placed and assembled on the top between the two side bodies (e) through the first limit strip (j), the egg tray placement rack (b) is provided with a detection hole (c), the egg tray placement rack (b) is provided with an egg tray (k), the egg tray (k) is provided with an egg placement slot (l), the lifting rack (h) can be raised and lowered in the first lifting slot (i), the separation body (f) detects the placed eggs through the detection hole (c) and the egg placement slot (l), and a control panel (a) is further provided on the top of one side of the side body (e).

2. The egg hatching detection device according to claim 1, characterized in that: When the lifting frame (h) is located at the bottom of the first lifting slot (i), the top of the separation body (f) is lower than the top of the empty slot left between the connecting top rod (d) and the connecting bottom plate (g).

3. The egg hatching detection device according to claim 1, characterized in that: The diameter of the detection hole (c) is larger than the minimum diameter of the egg placing trough (l), and the maximum diameter of the pin rod (p) is smaller than the maximum diameter of the control screw rod (o).

4. The egg hatching detection device according to claim 1, characterized in that: The detection body (2) also includes a power strip (m), a protective plate (q) and a power cord (r); the power strip (m) is fixed to the bottom of the groove of the lifting frame (h); the two ends of the power strip (m) are flush with the side openings of the lifting frame (h); the top of the separation body (f) is covered on the power strip (m); the protective plate (q) is fixed to the connecting bottom plate (g); the top of the protective plate (q) is connected to the bottom of the lifting frame (h); the power cord (r) passes through the protective plate (q) and the lifting frame (h) and is electrically connected to the power strip (m).

5. The egg hatching detection device according to claim 4, characterized in that: The detection body (2) further comprises a top pressure plate (s), a fixing ring (t) and a compression spring (u); the compression spring (u) is sleeved on the power cord (r); the upper and lower ends of the compression spring (u) are fixedly connected to the protective plate (q) and the top pressure plate (s), respectively; the power cord (r) passes through the top pressure plate (s) on the side away from the power bar (m); and the fixing ring (t) is used to lock the power cord (r) on the top pressure plate (s).

6. The egg hatching detection device according to claim 5, characterized in that: The power strip (m) includes a power plate (m1), a power connecting rod (m2) and a protective strip body (m3). The power plate (m1) is embedded in the protective strip body (m3) and the top and side ends both pass through the protective strip body (m3). The power connecting rod (m2) is arranged in the protective strip body (m3). The power plates (m1) are provided with the same number as the separation body (f). The power connecting rod (m2) is used for connecting multiple power plates (m1) in series.

7. The egg hatching detection device according to claim 6, characterized in that: The separation body (f) includes a focusing ring (f1), a lamp bead (f2), a body (f3), a power connection plate (f4) and a handle (f5). The lamp bead (f2) is arranged at a position corresponding to the detection hole (c). The lamp bead (f2) is assembled on the top of the body (f3). The focusing ring (f1) is provided with the same number as the lamp bead (f2). The focusing ring (f1) wraps each lamp bead (f2) and leaves an empty groove between the focusing ring (f1) and the lamp bead (f2). The focusing ring (f1) is also assembled on the top of the body (f3). The power connection plate (f4) is inlaid and assembled on the bottom of the body (f3) corresponding to the position of the power plate (m1). The handle (f5) is fixed on the side end face of the body (f3).

8. The egg hatching detection device according to claim 7, characterized in that: The focusing ring (f1) is made of rubber, the top of the focusing ring (f1) is an inverted cone-shaped ring, and the maximum diameter of the focusing ring (f1) is smaller than the minimum diameter of the egg trough (l).

9. The egg hatching detection device according to claim 1, characterized in that: The lifting frame (h) includes a pump rod (h1), a lifting connecting plate (h2), a second lifting groove (h3) and a main frame body (h4); a lifting connecting plate (h2) is fixed to the side end of the main frame body (h4); a second lifting groove (h3) is provided in the side body (e); the lifting connecting plate (h2) is assembled in the second lifting groove (h3); the pump rod (h1) is assembled in the side body (e) and the top is fixedly connected to the lifting connecting plate (h2).

10. The egg hatching detection equipment according to claim 1, characterized in that: The lifting frame (h) includes a lifting connecting plate (h2), a second lifting slot (h3), a main frame (h4), a connecting head (h5), a first gear (h6), a chain (h7), a lifting screw (h8), a second gear (h9), a third gear (h10) and a motor (h11). The lifting connecting plate (h2) is fixed to the side end of the main frame (h4). The second lifting slot (h3) is provided in the side body (e). The lifting connecting plate (h2) is assembled in the second lifting slot (h3). The upper and lower ends of the lifting screw (h8) are semicircular connecting heads (h5). The lifting screw (h8) ) is assembled in the side body (e) and is loosely matched with the lifting screw (h8). The lifting screw (h8) passes through the lifting connecting plate (h2) and is threadedly connected to the lifting connecting plate (h2). The lifting screw (h8) is fixedly covered with a first gear (h6). The first gears (h6) of multiple lifting screws (h8) are synchronously connected through a chain (h7). One of the lifting screws (h8) is also covered and fixed with a second gear (h9). The motor (h11) is locked on the side body (e). The motor (h11) drives the second gear (h9) to rotate through the third gear (h10).