Integrated Cutting and Feeding Profile Cutting Machine for Pet Equipment Production

By designing a collection mechanism composed of water storage box and L-shaped tube in a copper tube cutting machine, combined with the design of support rod and flip plate, the problems of spark splash and end deformation during copper tube cutting are solved, and a safe and efficient cutting process is achieved.

CN119566959BActive Publication Date: 2025-06-03HUIZHOU YAOSHENG PET PROD CO LTD
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Patent Information

Application Number
CN202411936023.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-06-03
Estimated Expiration
2044-12-26

AI Technical Summary

Technical Problem

During the cutting process of copper pipe, sparks are difficult to clean and easily cause damage to the operator; at the same time, the ends of the copper pipe are prone to deformation, affecting subsequent processing efficiency.

Method used

A cutting and feed integrated profile cutting machine is designed, using a collection mechanism composed of a water storage box and an L-shaped tube. It is cooled and flushed by clean water to prevent sparks from splashing, and through the support rod and flip plate, the end of the copper tube is prevented from deforming.

Benefits of technology

Effectively prevent sparks from splashing, protect operator safety, and cool them through clean water to prevent sparks from adhering to the equipment, making it easier to clean; at the same time, the design of support rods and flip plates avoids deformation of the end of the copper tube and improves the efficiency of subsequent processing.

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Abstract

The present invention relates to an integrated profile cutting and feeding machine for pet equipment production, including a base and a working box fixedly installed on the top thereof. A cutting tool for cutting copper pipes is movably installed on the base on one side of the working box. A conveying mechanism for feeding the cut copper pipes is arranged on one side of the cutting tool. A support seat for supporting steel pipes is fixedly installed on the base in front of the cutting tool. A collecting mechanism for preventing spark pollution is arranged on one side of the support seat; by controlling the extension of the extending end of the pressing cylinder, the sealing plug is separated from the output end of the water outlet pipe, so that the surface of the copper pipe is cooled by clear water. During this process, the piston slides down to increase the air pressure in the water storage box, so that the clear water in the water storage box is injected into the receiving box along the L-shaped pipe. The sparks generated during the cutting of the copper pipe will be received by the clear water in the receiving box, avoiding splashing and causing harm to the surrounding operators, and also avoiding adhering to the inner wall of the receiving box, which is convenient for cleaning.
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Description

Technical Field

[0001] The present invention relates to the technical field of pet equipment production, and specifically to an integrated profile cutting and feeding machine for pet equipment production. Background Art

[0002] Pet equipment covers a variety of tools and supplies required in pet life. After a pet takes a bath, a pet drying box is needed to provide a comfortable drying environment for the pet, so that the moisture on the pet's hair can dry quickly and keep the pet's hair dry. During the production and processing of pet drying boxes, special copper tubes need to be customized for the production of electric heating tubes.

[0003] During the customized processing of copper tubes, the copper tubes need to be cut into specified lengths by a cutting device. When cutting the copper tubes, the flying sparks will adhere to the cutting device, making it difficult to clean, and the flying sparks are also likely to cause harm to the surrounding operators. At the same time, due to the soft material of the copper tubes, the ends of the cut copper tubes are prone to deformation during the cutting process, affecting the efficiency of subsequent processing into electric heating tubes. Summary of the Invention

[0004] The technical problems solved by this solution are as follows:

[0005] (1) How to solve the problem that when cutting copper tubes, the flying sparks will adhere to the cutting device, making it difficult to clean, and the flying sparks are also likely to cause harm to the surrounding operators;

[0006] (2) How to solve the problem that due to the soft material of the copper tubes, the ends of the cut copper tubes are prone to deformation during the cutting process, affecting the efficiency of subsequent processing into electric heating tubes.

[0007] The object of the present invention can be achieved by the following technical solutions: An integrated profile cutting and feeding machine for pet equipment production, including a base and a working box fixedly installed on its top. A cutting tool for cutting copper tubes is movably installed on the base on one side of the working box. The cutting tool is a prior art, and a conveying mechanism for feeding the copper tubes is arranged on one side of the cutting tool. A support seat for supporting the steel pipe is fixedly installed on the base in front of the cutting tool, and a collecting mechanism for preventing spark pollution is arranged on one side of the support seat;

[0008] The collecting mechanism includes a water storage box fixedly embedded in the base. The bottom of the side of the water storage box is communicated with an L-shaped pipe. A receiving box is arranged below the support seat, and the top end of the L-shaped pipe is communicated with the bottom of the receiving box.

[0009] A further technical improvement of the present invention lies in that a cooling pipe is fixedly inserted at the top of the base, the bottom end of the cooling pipe is communicated with the top of the water storage box, a pressurizing unit for adjusting the air pressure in the water storage box is arranged inside the cooling pipe, and two through holes for penetrating the copper pipe are opened in the middle of the cooling pipe.

[0010] A further technical improvement of the present invention lies in that a water supply bucket is fixedly arranged at the top of the working box, a water outlet pipe is communicated with the bottom of the water supply bucket, the output end of the water outlet pipe is communicated with the top side wall of the cooling pipe, and the output end of the water outlet pipe faces the copper pipe.

[0011] A further technical improvement of the present invention lies in that a sewage discharge pipe is fixedly inserted at the bottom of the base, the input end of the sewage discharge pipe is communicated with the bottom of the water storage box, and a control valve is fixedly installed in the middle of the sewage discharge pipe.

[0012] A further technical improvement of the present invention lies in that the pressurizing unit includes a pressing cylinder fixedly connected to the side of the working box, the extending end of the pressing cylinder extends into the cooling pipe and is fixedly installed with a piston, a sealing plug is also fixedly installed at the extending end of the pressing cylinder, and the position of the sealing plug corresponds to the position of the output end of the water outlet pipe.

[0013] A further technical improvement of the present invention lies in that a longitudinally arranged connecting rod is fixedly installed on the bottom inner wall of the cooling pipe, a through hole corresponding to the position of the connecting rod is opened in the middle of the piston, and the size of the through hole corresponds to the diameter of the connecting rod; by controlling the extension of the extending end of the pressing cylinder, the sealing plug is separated from the output end of the water outlet pipe, so that the clear water is discharged through the water outlet pipe to cool the surface of the copper pipe. During this process, since the connecting rod passes through the through hole, the through hole is blocked, and the downward sliding of the piston will increase the air pressure in the water storage box, so that the clear water in the water storage box is injected into the receiving box along the L-shaped pipe. During the process of the clear water passing through the L-shaped pipe, the flowing water flow is convenient for flushing the metal residues blocked in the L-shaped pipe. When the sparks generated during the cutting of the copper pipe are received by the clear water in the receiving box, it is avoided that they splash and cause harm to the surrounding operators, and the sparks are quickly cooled by the clear water to avoid their attachment to the inner wall of the receiving box, which is convenient for cleaning.

[0014] A further technical improvement of the present invention lies in that the conveying mechanism includes a support cylinder fixedly embedded at the top of the base, a dial rod is fixedly installed at the extending end of the support cylinder, an impact rod is rotatably connected to the base through a support frame, one end of the impact rod is slidably connected to the dial rod, and an impact hammer is fixedly installed at the other end of the impact rod; a roller is also rotatably connected to the extending end of the support cylinder; a slanting guide groove is fixedly installed on the base on one side of the support cylinder, and the position of the impact hammer corresponds to the top end position of the guide groove.

[0015] A further technical improvement of the present invention lies in that: a turning plate is arranged on one side of the support seat, a clamping groove for positioning the copper pipe is formed on the top surface of the turning plate, the position of the clamping groove corresponds to the position of the material guiding groove, L-shaped rods are fixedly connected to the front and rear end faces of the turning plate, one ends of the two L-shaped rods are rotatably connected to the support seat, and the roller is in rolling connection with the turning plate.

[0016] A further technical improvement of the present invention lies in that: a horizontally arranged push-pull cylinder is fixedly installed on the top of the base, the extending end of the push-pull cylinder is fixedly connected with a baffle plate, and a support rod for preventing the end of the copper pipe from deforming is fixedly connected to the side surface of the baffle plate away from the push-pull cylinder; by controlling the extending end of the support cylinder to extend to the longest, the clamping groove on the top surface of the turning plate provides support for the end of the copper pipe, and by controlling the extending end of the push-pull cylinder to extend to the longest, the baffle plate drives the support rod to extend into the copper pipe. At this time, the baffle plate contacts the end of the copper pipe. When the cutting tooling cuts the copper pipe, the support rod provides support for the end of the copper pipe, avoiding deformation of the end of the copper pipe during the cutting process and ensuring the efficiency of subsequent processing into an electric heating tube.

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] When the present invention is in use, by controlling the extending end of the pressing cylinder to extend, the sealing plug is separated from the output end of the water outlet pipe, so that the clear water is discharged through the water outlet pipe to cool the surface of the copper pipe. During this process, since the connecting rod passes through the through hole, the through hole is blocked, and the piston slides down to increase the air pressure in the water storage box, so that the clear water in the water storage box is injected into the receiving box along the L-shaped pipe. During the process of the clear water passing through the L-shaped pipe, the flowing water flow is convenient for flushing the metal residues blocked in the L-shaped pipe. When the sparks generated during the cutting of the copper pipe are received by the clear water in the receiving box, it is avoided that they splash and cause harm to the surrounding operators, and the sparks are quickly cooled by the clear water to avoid their attachment to the inner wall of the receiving box, which is convenient for cleaning.

[0019] When the present invention is in use, by controlling the extending end of the support cylinder to extend to the longest, the clamping groove on the top surface of the turning plate provides support for the end of the copper pipe, and by controlling the extending end of the push-pull cylinder to extend to the longest, the baffle plate drives the support rod to extend into the copper pipe. At this time, the baffle plate contacts the end of the copper pipe. When the cutting tooling cuts the copper pipe, the support rod provides support for the end of the copper pipe, avoiding deformation of the end of the copper pipe during the cutting process and ensuring the efficiency of subsequent processing into an electric heating tube. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] For the convenience of those skilled in the art to understand, the present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 This is a schematic cross-sectional view of the collection mechanism structure of the present invention;

[0023] Figure 3 This is a three-dimensional schematic diagram of the partial structure of the collection mechanism of the present invention Figure 1 ;

[0024] Figure 4 This is a three-dimensional schematic diagram of the partial structure of the collection mechanism of the present invention Figure 2 ;

[0025] Figure 5 This is a schematic diagram of the structure of the conveying mechanism of the present invention;

[0026] Figure 6 This is a three-dimensional schematic diagram of the partial structure of the conveying mechanism of the present invention.

[0027] In the figure: 1, water supply bucket; 2, working box; 3, conveying roller; 4, base; 5, support seat; 6, conveying mechanism; 7, cutting tooling; 8, conveying tooling; 9, collection mechanism; 601, support rod; 602, turning plate; 603, dialing rod; 604, impact rod; 605, support cylinder; 606, impact hammer; 607, material guiding groove; 608, push-pull cylinder; 609, baffle; 610, card slot; 611, L-shaped rod; 901, connecting rod; 902, cooling pipe; 903, sewage pipe; 904, control valve; 905, water storage box; 906, L-shaped pipe; 907, receiving box; 908, pressing cylinder; 909, water outlet pipe; 910, sealing plug; 911, through hole; 912, piston. Specific embodiments

[0028] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0029] Please refer to Figures 1 - 6 As shown, a cutting and feeding integrated profile cutting machine for pet equipment production includes a base 4 and a working box 2 fixedly installed on its top. A cutting tooling 7 for cutting copper pipes is movably installed on the base 4 on one side of the working box 2. The cutting tooling 7 is a prior art, and a conveying mechanism 6 for feeding the cut copper pipes is arranged on one side of the cutting tooling 7. A support seat 5 for supporting steel pipes is fixedly installed on the base 4 in front of the cutting tooling 7, and a collection mechanism 9 for preventing spark pollution is arranged on one side of the support seat 5.

[0030] Please refer to Figure 1 and Figure 2As shown, the above-mentioned collection mechanism 9 includes a water storage box 905 fixedly embedded inside the base 4. A side bottom of the water storage box 905 communicates with an L-shaped pipe 906. A receiving box 907 is arranged below the support base 5, and a top end of the L-shaped pipe 906 communicates with a bottom of the receiving box 907.

[0031] Please refer to Figure 2 and Figure 3 As shown, a cooling pipe 902 is fixedly inserted at a top of the above-mentioned base 4. A bottom end of the cooling pipe 902 communicates with a top of the water storage box 905. A pressurizing unit for adjusting air pressure inside the water storage box 905 is arranged inside the cooling pipe 902. Two through holes for penetrating copper pipes are formed in a middle of the cooling pipe 902.

[0032] Please refer to Figure 1 and Figure 3 As shown, a water supply bucket 1 is fixedly arranged at a top of the above-mentioned working box 2. A bottom of the water supply bucket 1 communicates with a water outlet pipe 909. An output end of the water outlet pipe 909 communicates with a top side wall of the cooling pipe 902, and the output end of the water outlet pipe 909 faces the copper pipe.

[0033] Please refer to Figure 1 and Figure 2 As shown, a sewage discharge pipe 903 is fixedly inserted at a bottom of the above-mentioned base 4. An input end of the sewage discharge pipe 903 communicates with a bottom of the water storage box 905, and a control valve 904 is fixedly installed in a middle of the sewage discharge pipe 903.

[0034] Please refer to Figure 2 and Figure 4 As shown, the above-mentioned pressurizing unit includes a pressing air cylinder 908 fixedly connected to a side of the working box 2. An extending end of the pressing air cylinder 908 extends into the cooling pipe 902 and is fixedly installed with a piston 912. The extending end of the pressing air cylinder 908 is also fixedly installed with a sealing plug 910, and a position of the sealing plug 910 corresponds to a position of an output end of the water outlet pipe 909.

[0035] Please refer to Figure 2 and Figure 4As shown, a longitudinally arranged connecting rod 901 is fixedly installed on the bottom inner wall of the above-mentioned cooling pipe 902. A through hole 911 corresponding to the position of the connecting rod 901 is opened in the middle of the piston 912. The size of the through hole 911 corresponds to the diameter of the connecting rod 901. By controlling the extension of the extending end of the pressing cylinder 908, the sealing plug 910 is separated from the output end of the water outlet pipe 909, so that the clear water is discharged through the water outlet pipe 909 to cool the surface of the copper pipe. During this process, since the connecting rod 901 passes through the through hole 911, the through hole 911 is blocked, and the downward sliding of the piston 912 will increase the air pressure in the water storage box 905, so that the clear water in the water storage box 905 is injected into the receiving box 907 along the L-shaped pipe 906. During the process of the clear water passing through the L-shaped pipe 906, the flowing water flow is convenient for flushing the metal residues blocked in the L-shaped pipe 906. When the sparks generated during the cutting of the copper pipe are received by the clear water in the receiving box 907, it can be prevented from splashing and causing harm to the surrounding operators, and the sparks can be quickly cooled by the clear water to prevent them from adhering to the inner wall of the receiving box 907, which is convenient for cleaning.

[0036] Please refer to Figure 1 and Figure 5 As shown, the above-mentioned conveying mechanism 6 includes a support cylinder 605 fixedly embedded in the top of the base 4. The extending end of the support cylinder 605 is fixedly installed with a dial rod 603. An impact rod 604 is rotatably connected to the base 4 through a support frame. One end of the impact rod 604 is slidably connected to the dial rod 603, and an impact hammer 606 is fixedly installed at the other end of the impact rod 604. A roller is also rotatably connected to the extending end of the support cylinder 605.

[0037] Please refer to Figure 5 As shown, a slantingly arranged material guiding groove 607 is fixedly installed on the base 4 on one side of the above-mentioned support cylinder 605. The position of the impact hammer 606 corresponds to the top end position of the material guiding groove 607.

[0038] Please refer to Figure 5 and Figure 6 As shown, a turning plate 602 is arranged on one side of the above-mentioned support seat 5. A clamping groove 610 for positioning the copper pipe is opened on the top surface of the turning plate 602. The position of the clamping groove 610 corresponds to the position of the material guiding groove 607. L-shaped rods 611 are fixedly connected to the front and rear end faces of the turning plate 602. One end of each of the two L-shaped rods 611 is rotatably connected to the support seat 5. The roller is in rolling connection with the turning plate 602.

[0039] Please refer to Figure 1 and Figure 5As shown in the figure, a horizontally arranged push-pull cylinder 608 is fixedly installed on the top of the above-mentioned base 4. The extending end of the push-pull cylinder 608 is fixedly connected with a baffle 609. A support rod 601 for preventing the deformation of the end of the copper tube is fixedly connected to the side of the baffle 609 away from the push-pull cylinder 608. By controlling the extending end of the support cylinder 605 to extend to the longest, the clamping groove 610 on the top surface of the flipping plate 602 provides support for the end of the copper tube. By controlling the extending end of the push-pull cylinder 608 to extend to the longest, the baffle 609 drives the support rod 601 to extend into the copper tube. At this time, the baffle 609 contacts the end of the copper tube. When the cutting tooling 7 cuts the copper tube, the support rod 601 provides support for the end of the copper tube, avoiding deformation of the end of the copper tube during the cutting process and ensuring the efficiency of subsequent processing into electric heating tubes.

[0040] Please refer to Figure 1 and Figure 3 As shown in the figure, two conveying toolings 8 for conveying copper tubes are also fixedly installed on the top of the above-mentioned base 4. The conveying tooling 8 is a prior art, and the cooling tube 902 is located between the two conveying toolings 8.

[0041] Please refer to Figure 1 As shown in the figure, a plurality of conveying rollers 3 are rotatably arranged on the base 4 on the front of the above-mentioned working box 2.

[0042] Working principle: When the present invention is in use, first, place the copper tube on several conveying rollers 3, then pass it through the cooling tube 902, and convey the copper tube to the cutting station on the support base 5 through two conveying tools 8. Control the extension end of the support cylinder 605 to extend to the longest, so that the clamping groove 610 on the top surface of the turning plate 602 provides support for the end of the copper tube. By controlling the extension end of the push-pull cylinder 608 to extend to the longest, the baffle 609 drives the support rod 601 to extend into the copper tube. At this time, the baffle 609 contacts the end of the copper tube. When the cutting tool 7 cuts the copper tube, the support rod 601 provides support for the end of the copper tube to avoid deformation of the end of the copper tube during cutting and ensure the efficiency of subsequent processing into an electric heating tube. After cutting the copper tube, first control the extension end of the push-pull cylinder 608 to contract and reset, so that the support rod 601 is withdrawn from the cut copper tube, and then control the extension end of the support cylinder 605 to contract to the shortest. Due to the influence of gravity, the turning plate 602 drives the cut copper tube to turn and tilt, so that the position of the clamping groove 610 corresponds to the position of the material guiding groove 607. During the contraction of the extension end of the support cylinder 605, the push rod 603 drives the impact rod 604 and the impact hammer 606 to rotate, so that the impact hammer 606 impacts the top of the material guiding groove 607, facilitating the normal feeding of the copper tube that has slipped into the material guiding groove 607. Before cutting the copper tube, control the extension end of the pressing cylinder 908 to extend, and the sealing plug 910 is separated from the output end of the water outlet pipe 909, so that the clear water is discharged through the water outlet pipe 909 to cool the surface of the copper tube. During this process, since the connecting rod 901 passes through the through hole 911, the through hole 911 is blocked, and the downward movement of the piston 912 will increase the air pressure in the water storage box 905, so that the clear water in the water storage box 905 is injected into the receiving box 907 along the L-shaped pipe 906. During the process of the clear water passing through the L-shaped pipe 906, the flowing water flow is convenient for flushing away the metal residues blocked in the L-shaped pipe 906. When the sparks generated during the cutting of the copper tube are received by the clear water in the receiving box 907, it can be prevented from splashing and causing harm to the surrounding operators, and the sparks are quickly cooled by the clear water to prevent them from adhering to the inner wall of the receiving box 907, which is convenient for cleaning. After cutting the copper tube, control the extension end of the pressing cylinder 908 to contract and reset, and the clear water in the receiving box 907 carries the metal residues and is recycled into the water storage box 905. The piston 912 slides upward and resets, and the output end of the water outlet pipe 909 is blocked by the sealing plug 910. The water above the sealing plug 910 flows through the through hole 911 into the water storage box 905. During this process, the water above the sealing plug 910 submerges the copper tube and continuously cools it.

[0043] The above are only the preferred embodiments of the present invention and do not impose any formal limitations on the present invention. Although the present invention has been disclosed above with the preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments by using the disclosed technical content without departing from the technical solution of the present invention. However, as long as it does not depart from the technical solution content of the present invention, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.

Claims

1. A cutting and feeding integrated profile cutting machine for pet equipment production, comprising a base (4) and a working box (2) fixedly mounted on the top thereof, characterized in that: A cutting tool (7) for cutting the copper tube is movably mounted on a base (4) on one side of the working box (2); a conveying mechanism (6) for unloading the copper tube is disposed on one side of the cutting tool (7); a support seat (5) for supporting the steel tube is fixedly mounted on the base (4) on the front side of the cutting tool (7); a collecting mechanism (9) for preventing spark contamination is disposed on one side of the support seat (5); The collecting mechanism (9) comprises a water storage box (905) fixedly embedded in the base (4); the bottom of the side of the water storage box (905) is connected to an L-shaped tube (906); a receiving box (907) is provided below the support seat (5); the top end of the L-shaped tube (906) is connected to the bottom of the receiving box (907); The conveying mechanism (6) comprises a supporting cylinder (605) fixedly embedded in the top of the base (4); a lever (603) is fixedly mounted on the protruding end of the supporting cylinder (605); a striking rod (604) is rotatably connected to the base (4); one end of the striking rod (604) is slidably connected to the lever (603); and a striking hammer (606) is fixedly mounted on the other end of the striking rod (604); and a roller is also rotatably connected to the protruding end of the supporting cylinder (605); an inclined material guide trough (607) is fixedly mounted on the base (4) on one side of the supporting cylinder (605); the position of the striking hammer (606) corresponds to the top position of the material guide trough (607); and a roller is provided on one side of the supporting seat (5). A flip plate (602), wherein a slot (610) for positioning the copper tube is provided on the top surface of the flip plate (602), the position of the slot (610) corresponds to the position of the material guide groove (607), the front and rear end surfaces of the flip plate (602) are fixedly connected with L-shaped rods (611), one end of each of the two L-shaped rods (611) is rotatably connected to a support seat (5), the roller is rollingly connected to the flip plate (602), a push-pull cylinder (608) is fixedly installed on the top of the base (4), the protruding end of the push-pull cylinder (608) is fixedly connected with a baffle (609), and the side of the baffle (609) away from the push-pull cylinder (608) is fixedly connected with a support rod (601) for preventing the end of the copper tube from deforming.

2. The cutting and feeding integrated profile cutting machine for pet equipment production according to claim 1, characterized in that: A cooling tube (902) is fixedly inserted into the top of the base (4); the bottom end of the cooling tube (902) is connected to the top of the water storage box (905); a booster unit for adjusting the air pressure in the water storage box (905) is arranged inside the cooling tube (902); and two through holes for passing the copper tube are provided in the middle of the cooling tube (902).

3. The cutting and feeding integrated profile cutting machine for pet equipment production according to claim 1, characterized in that: A water supply barrel (1) is fixedly arranged on the top of the working box (2), and a water outlet pipe (909) is connected to the bottom of the water supply barrel (1), the output end of the water outlet pipe (909) is connected to the top side wall of the cooling pipe (902), and the output end of the water outlet pipe (909) is arranged toward the copper pipe.

4. The cutting and feeding integrated profile cutting machine for pet equipment production according to claim 1, characterized in that: A sewage pipe (903) is fixedly inserted into the bottom of the base (4); the input end of the sewage pipe (903) is in communication with the bottom of the water storage box (905); and a control valve (904) is fixedly installed in the middle of the sewage pipe (903).

5. The cutting and feeding integrated profile cutting machine for pet equipment production according to claim 2, characterized in that: The booster unit comprises a pressing cylinder (908) fixedly connected to the side of the working box (2); the protruding end of the pressing cylinder (908) extends into the cooling pipe (902) and is fixedly mounted with a piston (912); the protruding end of the pressing cylinder (908) is also fixedly mounted with a sealing plug (910); the position of the sealing plug (910) corresponds to the position of the output end of the water outlet pipe (909).

6. The cutting and feeding integrated profile cutting machine for pet equipment production according to claim 5, characterized in that: A connecting rod (901) is fixedly mounted on the inner wall of the cooling tube (902), a through hole (911) corresponding to the position of the connecting rod (901) is opened in the middle of the piston (912), and the size of the through hole (911) corresponds to the diameter of the connecting rod (901).

Citation Information

Patent Citations

  • Wall brick attaching method and device for building construction

    CN113719089A

  • Sheet metal machining platform and operation method thereof

    CN114453969A