Light-weight blank pressing machine control cabinet

By designing a lightweight embryo press control cabinet, the operation problems in both places during the maintenance and maintenance of embryo presses are solved, the stability and flexibility of the equipment are improved, transportation and construction costs are reduced, and rapid troubleshooting and efficient maintenance are achieved.

CN223194980UActive Publication Date: 2025-08-05COFCO DONGHAI GRAIN & OIL IND ZHANGJIAGANG CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422354610.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-08-05
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

During the maintenance and maintenance of the embryo rolling mill, due to the need to operate in the equipment site and the control room, the faults are difficult to be quickly eliminated, increasing the maintenance cost and extending the maintenance cycle.

Method used

A lightweight embryo press control cabinet is designed, including a small MCC cabinet, a base, a forklift groove and a protective structure. The base is equipped with a seat groove and a give way groove. The base and the equipment are arranged near the base. The cabinet is placed in the seat groove after transportation. The stability is improved through the seat groove of the base, and a forklift groove is installed on the cabinet for easy transportation. The protective structure protects the control part to prevent pollution.

Benefits of technology

It improves the stability and flexibility of the control cabinet, reduces the complexity of on-site operations, shortens construction time, reduces transportation and construction costs, and ensures rapid maintenance and maintenance of equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223194980U_ABST
    Figure CN223194980U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of control cabinets, and discloses a light-weight blank pressing machine control cabinet which comprises a cabinet body, a cabinet door is arranged on the cabinet body, a control part used for operating electrical elements in the cabinet body is arranged on the cabinet door, and a forklift groove is formed in the cabinet body; the width and the length of the base are larger than those of the cabinet body respectively, a seat groove is formed in the upper side of the base, the seat groove is matched with the outline of the bottom side of the cabinet body, and a receding groove is formed in the base and is opposite to the forklift groove; according to the flaking mill, the problems that in the process of maintaining and overhauling the flaking mill, due to the fact that two-place operation is needed, faults are difficult to remove rapidly, overhauling cost is increased, and the maintenance period is prolonged are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of control cabinets, in particular to a lightweight embryo pressing machine control cabinet. Background Art

[0002] Flaking machine is one of the main production equipment of oil pressing plant. In the daily production of the flaking machine, the opening and closing of the flaking machine is relatively frequent and the continuous working intensity is high. In order to ensure production efficiency and product quality, the flaking machine needs to be maintained and repaired regularly.

[0003] In the related art, the circuit breaker and other related control components of the embryo press are all installed in the control room where the MCC cabinet is located. During maintenance and overhaul, it is necessary to cut off the power supply of the equipment through the MCC, and during the overhaul process, the causes of the faults are eliminated one by one by controlling the on and off of the relevant circuits in the MCC cabinet.

[0004] However, in the above-mentioned related technologies, in order to protect the working environment of the control cabinet and prevent collisions, vibrations, etc. on site from affecting the stable operation of the control cabinet, the control room is generally set far away from the equipment. Therefore, in the process of troubleshooting, the staff needs to operate at both the equipment site and the control room where the MCC cabinet is located, which makes it difficult to quickly troubleshoot the fault, increases the maintenance cost, and increases the maintenance cycle. Utility Model Content

[0005] In view of this, the utility model provides a lightweight embryo rolling machine control cabinet to solve the problem that during the maintenance and overhaul of the embryo rolling machine, faults are difficult to be quickly eliminated due to the need for two-location operation, which increases the overhaul cost and prolongs the repair cycle.

[0006] The utility model provides a lightweight embryo pressing machine control cabinet, comprising: a cabinet body, wherein the cabinet body is provided with a cabinet door, the cabinet door is provided with a control part for operating electrical components inside the cabinet body, and the cabinet body is provided with a forklift slot; a base, the width and length of which are respectively greater than the width and length of the cabinet body, the upper side of the base is provided with a seat groove, the seat groove is adapted to the bottom side profile of the cabinet body, the base is provided with a clearance groove, and the clearance groove is arranged opposite to the forklift slot; a protective structure is provided on the cabinet door and covers the control part, and is used to protect the control part.

[0007] Beneficial effects: The MCC cabinet that independently controls the flaking mill has a small overall size and light weight. By providing a base and a seat groove on the base, the base is set near the equipment, and the cabinet is placed in the seat groove after transportation. The seat groove of the base improves the stability of the cabinet, preventing the cabinet from tipping over due to vibration or collision on site, thereby improving the stability of the cabinet, making it easier to place the MCC cabinet near the equipment, avoiding the situation where workers have to operate in two places, affecting efficiency, during the maintenance and inspection of the flaking mill and during the on-site layout and construction. In addition, a forklift groove is provided on the cabinet, so that the cabinet can be conveniently transported by forklift within the work plant, and a clearance groove is provided on the base to facilitate the cabinet to be directly placed in the seat groove. The setting of the forklift groove and the clearance groove improves the flexibility of the cabinet. Combined with the setting of the base, the cabinet can be flexibly arranged during on-site construction, further improving the convenience of on-site construction and shortening construction time.

[0008] In an optional embodiment, the protective structure includes a transparent protective cover, which is hinged to the cabinet door. When the protective cover is buckled on the surface of the cabinet door, the control unit is located on the inner side of the protective cover.

[0009] Beneficial effect: Since the protective cover is hingedly arranged on the cabinet door and protects the control part, it prevents dust, water vapor, oil stains and other debris on site from contaminating the control part, thereby avoiding affecting the normal operation of the cabinet by the staff.

[0010] In an optional embodiment, the circumferential sides of the base are provided with a yield slope, the yield slope is inclined from top to bottom away from the seat groove, and the yield slope is chamfered at the angle position at the corner of the base.

[0011] Beneficial effect: By setting the surrounding sides of the base into inclined give-way slopes and setting chamfers at the intersection of the adjacent slopes, on the one hand, it avoids the formation of sharp corners at the corners of the base that pose a safety hazard to on-site workers. On the other hand, the setting of the give-way slope ensures that the base and the ground have sufficient foundation area to provide stable support for the cabinet body, while also reducing the occupation of the space around the cabinet body, so that moving workers and related work vehicles and tools can pass over the give-way slope, avoiding the base from blocking the workers, vehicles and tools.

[0012] In an optional embodiment, the base includes a first base and a second base, the first base and the second base are symmetrically arranged about the middle of the cabinet in the width direction, and the first base and the second base are abutted.

[0013] Beneficial effect: Since the base is formed by splicing the first base body and the second base body, the base can be disassembled into two parts, the first base body and the second base body, during the process of setting the base, which is convenient for saving space during transportation and reducing transportation costs.

[0014] In an optional embodiment, the first base body and the second base body are respectively provided with an anchoring hole that passes through the first base body or the second base body in the longitudinal direction.

[0015] Beneficial effect: By setting the anchor holes, it is convenient to fix the base to the ground through connectors such as anchor rods and anchor nails, further improving the stability of the cabinet and the base, and enhancing the safety of the site where the flaking mill is located.

[0016] In an optional embodiment, the first seat body and the second seat body respectively include a support cover and a trough box, the trough box and the support cover are integrally arranged, the upper side of the trough box is opened to form a seat groove, the support cover is arranged on the peripheral side of the trough box, and the peripheral side of the support cover is inclined and extended away from the cabinet body to form the yield slope.

[0017] Beneficial effect: Since the first base body and the second base body are formed by the support cover and the trough box, the support cover and the trough box are both hollow thin-walled structures, which greatly reduces the overall weight of the base, makes the structure lighter, further reduces the difficulty of transportation, and improves construction efficiency.

[0018] In an optional embodiment, a hollow column is provided on the lower side of the support cover at each of the anchor holes, and a through hole of the hollow column passes through the hollow column along the axis, and the through hole is opposite to the anchor hole.

[0019] Beneficial effect: When the base is fixed to the ground through anchor nails, anchor rods and other connecting parts, the setting of hollow columns increases the contact area between the anchor nails, anchor rods and other structures and the base, thereby improving the stability of the base, so that the base is more firmly fixed to the ground. At the same time, the setting of connecting columns can increase the supporting strength of the base, making the base structure more solid.

[0020] In an optional embodiment, a plurality of triangular support frames are welded to the two ends of the base in the length direction of the cabinet, and the triangular support frames are in the shape of a right-angled triangle. One of the right-angled sides of the triangular support frame abuts against the base, and the other right-angled side abuts against the side wall of the cabinet.

[0021] Beneficial effect: After the cabinet is placed in the seat groove, the triangular support frame is welded to the base by the staff. The position of the cabinet is restricted by the triangular support frame, which improves the ability of the base to limit the cabinet in the height direction of the cabinet, further preventing the cabinet from tilting.

[0022] In an optional embodiment, the base is provided with a support frame on a side of the cabinet body facing away from the cabinet door, and the support frame is welded to the upper side of the base and abuts against the side wall of the cabinet body.

[0023] Beneficial effect: After the cabinet is placed in the seat groove, the support frame is welded to the base by the staff. The position of the cabinet is restricted by the support frame, which improves the ability of the base to limit the cabinet in the height direction of the cabinet, further preventing the cabinet from tilting.

[0024] In an optional embodiment, at least three reinforcement members are provided on the side wall of the cabinet body away from the cabinet door, one of the reinforcement members is fixedly connected to the top wall of the cabinet body, and the other two reinforcement members are respectively fixedly connected to different side walls at both ends of the length direction of the cabinet body.

[0025] Beneficial effect: By setting up reinforcements, the connection strength between the cabinet side walls, top wall and the rear wall opposite to the cabinet door is improved. On the one hand, it can improve the connection strength between the corresponding side walls of the cabinet to avoid accidental disintegration during transportation. On the other hand, the side walls of the cabinet can be made thinner to reduce weight, improve transportation convenience and reduce construction costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0027] Figure 1 This is a schematic diagram of the overall structure of a control cabinet for a lightweight embryo pressing machine according to an embodiment of the present utility model;

[0028] Figure 2 This is a schematic diagram of a control cabinet for a lightweight embryo pressing machine according to an embodiment of the present invention, used to illustrate a control unit;

[0029] Figure 3 This is a schematic diagram of a lightweight embryo pressing machine control cabinet according to an embodiment of the present invention, which is used to illustrate the position and structure of the forklift slot;

[0030] Figure 4 This is a schematic diagram of a lightweight embryo pressing machine control cabinet used to illustrate the position and structure of the support frame in an embodiment of the present utility model;

[0031] Figure 5 This is a schematic diagram of a lightweight embryo pressing machine control cabinet used to illustrate the position structure of internal support rails and connecting ribs in an embodiment of the present utility model;

[0032] Figure 6 This is a schematic diagram of a lightweight embryo pressing machine control cabinet used to illustrate the lower side structure of the base in an embodiment of the present utility model;

[0033] Figure 7 This is a schematic diagram of a lightweight embryo pressing machine control cabinet used to illustrate the upper structure of the base in an embodiment of the present utility model.

[0034] Description of reference numerals:

[0035] 100. Cabinet body; 101. Cabinet door; 102. Control unit; 103. Forklift slot; 104. Support rail; 105. Connecting rib; 200. Base; 201. Seat slot; 202. Clearance slot; 203. Clearance slope; 2031. Chamfer; 204. First seat body; 205. Second seat body; 206. Anchor hole; 207. Support cover; 208. Slot box; 209. Hollow column; 300. Protective cover; 400. Triangular support frame; 500. Support frame; 600. Reinforcement member. DETAILED DESCRIPTION

[0036] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of the present invention.

[0037] The following combination Figures 1 to 7 , describing the embodiments of the present utility model.

[0038] According to the embodiment of the present invention, a lightweight embryo pressing machine control cabinet is provided. Figures 1 to 3 , including: a cabinet body 100, a cabinet door 101 is provided on the cabinet body 100, a control part 102 for operating the electrical components inside the cabinet body 100 is provided on the cabinet door 101, and a forklift slot 103 is provided on the cabinet body 100; a base 200, the width and length of which are respectively larger than the width and length of the cabinet body 100, a seat groove 201 is provided on the upper side of the base 200, the seat groove 201 is adapted to the bottom side contour of the cabinet body 100, and a makeshift groove 202 is provided on the base 200, and the makeshift groove 202 is arranged opposite to the forklift slot 103; a protective structure is provided on the cabinet door 101 and covers the control part 102, and is used to protect the control part 102.

[0039] In this embodiment, the MCC cabinet for independently controlling the flaking mill has a small overall size and light weight. A base 200 is provided, and a seat groove 201 is provided on the base 200. The base 200 is provided near the equipment, and the cabinet body 100 is placed in the seat groove 201 after transportation. The seat groove 201 of the base 200 improves the stability of the cabinet body 100, preventing the cabinet body 100 from tipping over due to vibration or collision on site. The improved stability of the cabinet body 100 facilitates the placement of the MCC cabinet near the equipment, avoiding the situation in which workers operate in two locations during maintenance and overhaul of the flaking mill and during on-site layout and construction, which affects efficiency. In addition, a forklift slot 103 is provided on the cabinet body 100, so that the cabinet body 100 can be conveniently transported by a forklift within the work plant. A yield slot 202 is provided on the base 200, which facilitates the cabinet body 100 to be directly placed into the seat slot 201. The setting of the forklift slot 103 and the yield slot 202 improves the flexibility of the cabinet body 100. Combined with the setting of the base 200, the cabinet body 100 can be flexibly arranged during on-site construction, further improving the convenience of on-site construction and shortening construction time.

[0040] In the above embodiment, it should be noted that the control unit 102 is a component used to operate internal electrical components, including buttons and knob switches.

[0041] Specifically, in the above embodiment, the cabinet door 101 of the cabinet 100 is hingedly connected to the cabinet 100. Several brackets (not shown) are provided within the cabinet 100 for mounting corresponding electrical control components, such as circuit breakers. The side walls and top wall of the cabinet 100 are both made of lightweight metal materials, such as aluminum plates, and adjacent plates are connected by fasteners or welding.

[0042] In addition, see Figure 5 A forklift slot 103 extends through the cabinet 100 along its width. Support rails 104 are provided within the cabinet 100, extending along its width and positioned above the forklift slot 103. These rails increase the contact area between the forklift's front fork and the cabinet 100, improving transport stability and preventing local deformation of the cabinet 100. Connecting ribs 105 are also provided within the cabinet 100, connecting the forklift slot 103 to the inner wall of the cabinet 100 to enhance structural strength.

[0043] In one embodiment, see Figure 1 and Figure 2 The protective structure includes a transparent protective cover 300 , which is hinged to the cabinet door 101 . When the protective cover 300 is buckled on the surface of the cabinet door 101 , the control unit 102 is located inside the protective cover 300 .

[0044] Specifically, this embodiment does not limit the specific form of the protective cover 300. The shape, material, and hinge method of the protective cover 300 can be selected according to actual needs on site. For example, the protective cover 300 is square and made of transparent plastic. It is hinged to the surface of the cabinet door 101 through a hinge shaft.

[0045] In this embodiment, the protective cover 300 is hingedly mounted on the cabinet door 101 and protects the control unit 102, thereby preventing dust, water vapor, oil stains and other debris on site from contaminating the control unit 102, thereby avoiding affecting the normal operation of the cabinet 100 by the staff.

[0046] In one embodiment, see Figure 1 and Figures 5 to 7 The sides of the base 200 are provided with a giving slope 203, which is inclined from top to bottom away from the seat groove 201. The giving slope 203 is located at the corner of the base 200 and is provided with a chamfer 2031.

[0047] In this embodiment, by setting the peripheral side of the base 200 into an inclined yield slope 203 and setting a chamfer 2031 at the junction of the adjacent slopes, on the one hand, the formation of sharp corners at the corners of the base 200 is avoided to pose a safety hazard to on-site workers. On the other hand, the setting of the yield slope 203 ensures that the base 200 and the ground have sufficient base area to provide stable support for the cabinet body 100, while also reducing the occupation of the space around the cabinet body 100, so that moving workers and related work vehicles and tools can pass over the yield slope 203, avoiding the base 200 from blocking the workers, vehicles and tools.

[0048] In one embodiment, see Figure 6 and Figure 7 The base 200 includes a first base body 204 and a second base body 205 . The first base body 204 and the second base body 205 are symmetrically arranged about the middle of the width direction of the cabinet 100 , and the first base body 204 and the second base body 205 are abutted.

[0049] In this embodiment, since the base 200 is formed by splicing the first base body 204 and the second base body 205, during the process of setting up the base 200, the base 200 can be disassembled into two parts, the first base body 204 and the second base body 205, which is convenient for saving space during transportation and reducing transportation costs.

[0050] In one embodiment, see Figures 6 and 7 The first base body 204 and the second base body 205 are respectively provided with an anchoring hole 206 that passes through the first base body 204 or the second base body 205 in the longitudinal direction.

[0051] In this embodiment, by providing the anchor holes 206 , the base 200 can be easily fixed to the ground by means of connectors such as anchor rods and anchor nails, thereby further improving the stability of the cabinet 100 and the base 200 and enhancing the safety of the site where the flaking mill is located.

[0052] In one embodiment, see Figures 6 and 7 The first seat body 204 and the second seat body 205 respectively include a support cover 207 and a slot box 208. The slot box 208 and the support cover 207 are integrally arranged. The upper side opening of the slot box 208 forms a seat groove 201. The support cover 207 is arranged on the peripheral side of the slot box 208. The peripheral side of the support cover 207 is inclined and extended in the direction away from the cabinet 100 to form a yield slope 203.

[0053] In this embodiment, since the first base body 204 and the second base body 205 of the base 200 are formed by the support cover 207 and the trough box 208, the support cover 207 and the trough box 208 are both hollow thin-walled structures, which greatly reduces the overall weight of the base 200, makes the structure lighter, further reduces the difficulty of transportation, and improves construction efficiency.

[0054] In one embodiment, hollow columns 209 are respectively provided on the lower side of the support cover 207 at each anchoring hole 206 , and a through hole of the hollow column 209 passes through the hollow column 209 along the axis, and the through hole is opposite to the anchoring hole 206 .

[0055] In this embodiment, when the base 200 is fixed to the ground through connecting parts such as anchor nails and anchor rods, the provision of the hollow column 209 increases the contact area between the anchor nails, anchor rods and other structures and the base 200, thereby improving the stability of the base 200, thereby making the base 200 more firmly fixed to the ground. At the same time, the provision of the connecting column can increase the supporting strength of the base 200, making the structure of the base 200 more solid.

[0056] In one embodiment, see Figure 1 and Figure 2 The base 200 is located at both ends of the cabinet 100 in the length direction and is welded with multiple triangular support frames 400. The triangular support frames 400 are in the shape of a right triangle. One of the right-angled sides of the triangular support frame 400 abuts against the base 200, and the other right-angled side abuts against the side wall of the cabinet 100.

[0057] In this embodiment, the triangular support frame 400 is welded to the base 200 by the staff after the cabinet body 100 is placed in the seat groove 201. The triangular support frame 400 limits the position of the cabinet body 100, and improves the ability of the base 200 to limit the cabinet body 100 in the height direction of the cabinet body 100, further preventing the cabinet body 100 from tilting.

[0058] In one embodiment, see Figure 4 The base 200 is located on the side of the cabinet 100 away from the cabinet door 101 and is provided with a support frame 500 . The support frame 500 is welded to the upper side of the base 200 and abuts against the side wall of the cabinet 100 .

[0059] In this embodiment, the support frame 500 is welded to the base 200 by the staff after the cabinet body 100 is placed in the seat groove 201. The support frame 500 limits the position of the cabinet body 100, and improves the ability of the base 200 to limit the cabinet body 100 in the height direction of the cabinet body 100, further preventing the cabinet body 100 from tilting.

[0060] In one embodiment, see Figure 3 and Figure 4 At least three reinforcement members 600 are provided on the side wall of the cabinet body 100 away from the cabinet door 101, one of the reinforcement members 600 is fixedly connected to the top wall of the cabinet body 100, and the other two reinforcement members 600 are respectively fixedly connected to different side walls at both ends of the length direction of the cabinet body 100.

[0061] Specifically, the reinforcement 600 is a steel plate bent at a right angle, which is connected to the adjacent side walls of the cabinet 100 through screws, bolts and other connectors, thereby improving the connection strength of the adjacent side walls of the cabinet 100 and improving the deformation and vibration resistance of the cabinet 100.

[0062] In this embodiment, by providing a reinforcement 600, the connection strength between the side walls, top wall and rear wall opposite to the cabinet door 101 of the cabinet body 100 is improved. On the one hand, the connection strength between the corresponding side walls of the cabinet body 100 can be improved to avoid accidental disintegration during transportation. On the other hand, the side walls of the cabinet body 100 can be made thinner to reduce weight, improve transportation convenience, and reduce construction costs.

[0063] Although the embodiments of the present invention have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations shall fall within the scope defined by the appended claims.

Claims

1. A lightweight embryo pressing machine control cabinet, characterized in that: include: A cabinet (100), wherein the cabinet (100) is provided with a cabinet door (101), the cabinet door (101) is provided with a control unit (102) for operating electrical components inside the cabinet (100), and the cabinet (100) is provided with a forklift slot (103); The base (200) has a width and a length respectively greater than the width and the length of the cabinet (100); a seat groove (201) is provided on the upper side of the base (200); the seat groove (201) is adapted to the bottom side profile of the cabinet (100); a clearance groove (202) is provided on the base (200); the clearance groove (202) is arranged opposite to the forklift groove (103); A protective structure is provided on the cabinet door (101) and covers the control unit (102) for protecting the control unit (102).

2. The lightweight embryo pressing machine control cabinet according to claim 1, characterized in that: The protective structure comprises a transparent protective cover (300), wherein the protective cover (300) is hinged to the cabinet door (101), and when the protective cover (300) is buckled on the surface of the cabinet door (101), the control unit (102) is located inside the protective cover (300).

3. The lightweight embryo pressing machine control cabinet according to claim 1, characterized in that: The base (200) is provided with a circumferential side thereof with a relief slope (203), the relief slope (203) being inclined from top to bottom in a direction away from the seat groove (201), and the relief slope (203) is provided with a chamfer (2031) at an angle position at a corner of the base (200).

4. The lightweight embryo pressing machine control cabinet according to claim 3, characterized in that: The base (200) comprises a first base body (204) and a second base body (205), wherein the first base body (204) and the second base body (205) are symmetrically arranged about the middle part of the width direction of the cabinet body (100), and the first base body (204) and the second base body (205) are in abutment with each other.

5. The lightweight embryo pressing machine control cabinet according to claim 4, characterized in that: The first seat body (204) and the second seat body (205) are respectively provided with an anchoring hole (206) which passes through the first seat body (204) or the second seat body (205) in the longitudinal direction.

6. The lightweight embryo pressing machine control cabinet according to claim 5, characterized in that: The first seat body (204) and the second seat body (205) respectively include a support cover (207) and a trough box (208); the trough box (208) and the support cover (207) are integrally arranged; the upper side of the trough box (208) is opened to form a seat groove (201); the support cover (207) is arranged on the peripheral side of the trough box (208); the peripheral side of the support cover (207) extends obliquely in a direction away from the cabinet (100) to form the yielding slope (203).

7. The lightweight embryo pressing machine control cabinet according to claim 6, characterized in that: A hollow column (209) is provided on the lower side of the support cover (207) at each of the anchor holes (206), and a through hole of the hollow column (209) passes through the hollow column (209) along the axis, and the through hole is opposite to the anchor hole (206).

8. The control cabinet of the lightweight embryo pressing machine according to claim 1, characterized in that: The base (200) is located at both ends of the cabinet (100) in the length direction, and a plurality of triangular support frames (400) are respectively welded thereto. The triangular support frames (400) are in the shape of a right-angled triangle, and one right-angled side of the triangular support frame (400) abuts against the base (200), and the other right-angled side abuts against the side wall of the cabinet (100).

9. The control cabinet of the lightweight embryo pressing machine according to any one of claims 1 to 8, characterized in that: The base (200) is provided with a support frame (500) on a side of the cabinet (100) facing away from the cabinet door (101); the support frame (500) is welded to the upper side of the base (200) and abuts against the side wall of the cabinet (100).

10. The control cabinet of the lightweight embryo pressing machine according to claim 1, characterized in that: At least three reinforcement members (600) are provided on the side wall of the cabinet body (100) away from the cabinet door (101), one of the reinforcement members (600) is fixedly connected to the top wall of the cabinet body (100), and the other two reinforcement members (600) are respectively fixedly connected to different side walls at both ends of the length direction of the cabinet body (100).