A mold for making pipe feet
The mold is made by the pipe foot, and the mold distance is accurately controlled by using air pressure and motor drive. Combined with the universal wheel, it is convenient for rapid processing and movement in an electrically-free environment, solving the problem of time-consuming, labor-intensive and inability to move in traditional methods.
Patent Information
- Application Number
- CN202310235141.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-13
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2043-03-13
AI Technical Summary
Traditional pipe foot production methods are time-consuming and labor-intensive, cannot be processed quickly and cannot be moved, and it is difficult to repair and replace on the ship site.
The mold is made of pipe feet, including the equipment base, battery, driver, pneumatic pressure group, pneumatic column group, extrusion plate, drive motor and folding handle group. The mold distance is accurately controlled through pneumatic pressure and motor drive, and combined with the universal wheel for easy movement.
It realizes rapid and precise processing of pipe feet, reduces manual operation difficulty, can be used in powerless environments, and is easy to move to the site for repair and replacement.
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Figure CN116422780B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of mold equipment, in particular to a mold for making pipe feet. Background Art
[0002] Because ships are often subject to erosion by seawater and damp, cold winds from the sea, various parts of the hull require extensive care and maintenance. In particular, the hull pipes are constantly exposed to erosion by seawater and other water resources, so they need to be reinforced and protected to prevent damage and thus resist the butterfly effect. Almost every ship that comes to our company for repair has pipes that need to be replaced. Most of these replacement pipes are secured with U-shaped brackets. However, a few pipes, due to factors such as the hull structure and the on-site construction environment, cannot be secured with U-shaped brackets and are instead secured with semi-circular brackets made from pressed stainless steel.
[0003] The traditional operation method is to connect the molds with iron blocks of different sizes to solve the distance problem between the two tubes, and then fix them with bolts, put the molds into the extrusion equipment, and use levers and bolts to extrude the molds on both sides. Manual operation is time-consuming and labor-intensive, and can only be processed in the factory. It is impossible to quickly produce and replace the semicircular horse feet on the ship. Summary of the Invention
[0004] (1) Technical problems solved
[0005] In view of the shortcomings of the existing technology, the present invention provides a pipe horse foot manufacturing mold, which has the advantages of fast processing, easy use, and mobility, and solves the problems of difficult processing and immobility.
[0006] (2) Technical solution
[0007] In order to achieve the above-mentioned rapid processing and equipment position purposes, the present invention provides the following technical solutions: a pipe horse foot production mold, including a device base, a battery is clamped inside the device base, a driver is clamped on one side of the battery, an air pressure group is provided on one side of the device base, an air pressure column group is clamped inside the air pressure group, an extrusion plate is provided on the lower surface of the air pressure column group, a drive motor A is clamped inside the extrusion plate, a rotating shaft A is inserted inside the drive motor A, an upper mold group is sleeved on the surface of the rotating shaft A, a drive motor B is clamped inside the device base, a rotating shaft B is inserted inside the drive motor B, a lower mold group is sleeved on the surface of the rotating shaft B, and a folding handle group is provided on one side of the device base.
[0008] Preferably, the air pressure group includes an air pressure plate, an air pump, and an air pressure tube. An air pressure plate is provided on one side of the equipment base, an air pump is clamped inside the air pressure plate, and an air pressure tube is clamped on the upper surface of the air pressure plate.
[0009] Preferably, the pneumatic column group includes a pneumatic thick tube, a spring, and a pneumatic column. The pneumatic thick tube is clamped inside the pneumatic group, the spring is clamped inside the pneumatic thick tube, and the pneumatic column is inserted inside the pneumatic thick tube.
[0010] Preferably, the upper mold group includes a mold base A, a mold base B, a small upper mold, a large upper mold, and a fixing bolt. The surface of the rotating shaft A is sleeved with the mold base A, the surface of the rotating shaft A is sleeved with the mold base B, the interior of the mold base A is inserted with the small upper mold, the interior of the mold base B is inserted with the large upper mold, and the mold base A is threaded with a fixing bolt through the small upper mold.
[0011] Preferably, the lower mold group includes a mold groove A, a mold groove B, a small mold, and a large mold. The surface of the rotating shaft B is sleeved with the mold groove A, the surface of the rotating shaft B is sleeved with the mold groove B, the interior of the mold groove A is inserted with a small mold, and the interior of the mold groove B is inserted with a large mold.
[0012] Preferably, the folding handle group includes a fixing seat, a shaft, and a handle. A fixing seat is provided on one side of the device base, a shaft is inserted into the interior of the fixing seat, and a handle is sleeved on the surface of the shaft.
[0013] Preferably, one side of the device base is rotatably connected to a storage board via a hinge.
[0014] Preferably, the interior of the device base is divided into two layers, an upper layer and an lower layer, a lock plate is clamped on the interior of the storage plate, and a heat dissipation plate is clamped on one side of the device base.
[0015] Preferably, universal wheels are plugged into the lower surface of the equipment base.
[0016] (3) Beneficial effects
[0017] Compared with the prior art, the present invention provides a mold for making pipe horse feet, which has the following beneficial effects:
[0018] 1. The pipe horse foot manufacturing mold is used to process the iron sheet through the upper mold group, the lower mold group, the rotating shaft A and the rotating shaft B structure. By replacing the small upper mold and the large upper mold in the upper mold group, as well as the small mold and the large mold in the lower mold group, the iron pipe horse foot of the required specifications can be made for use. The rotating shaft A and the rotating shaft B are driven by the driving motor A and the driving motor B to achieve precise control of the distance between the upper mold group and the lower mold group. Compared with the traditional operation where all the manual production is done, the mold is more precise, greatly enhances the use effect and its convenience, and reduces the difficulty of equipment operation.
[0019] 2. The mold for making the pipe horse feet is composed of an air pressure group, an air pressure column group, a universal wheel, a battery and a folding handle group. The air pump delivers air pressure to the air pressure tube through the air pressure plate. When the air pressure reaches the air pressure thick tube, the internal spring will be released, and the air pressure column will be squeezed out due to the air pressure. The movement of the air pressure column will release the pressure on the extrusion plate, and the extrusion plate will pressurize the iron sheet to make it into the required specifications. Compared with the traditional operation of manually applying pressure on the shaft, it is more convenient and quick. The battery allows the device to be used for a period of time in an off-electricity environment. The folding handle group and universal wheels facilitate the movement of the device and can move the device to the required location, greatly reducing the speed of replacing and repairing the pipe horse feet. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the structure of a mold for making pipe horse feet proposed by the present invention;
[0021] Figure 2 This is a schematic diagram of the structure of the air pressure group of a pipe foot manufacturing mold proposed by the present invention;
[0022] Figure 3 This is a structural diagram of the air pressure column group and folding handle group of a pipe horse foot manufacturing mold proposed by the present invention;
[0023] Figure 4 This is a structural diagram of the upper die set of a pipe horse foot manufacturing die proposed by the present invention;
[0024] Figure 5 This is a structural diagram of the lower die set of a pipe horse foot manufacturing die proposed by the present invention;
[0025] Figure 6 This is a schematic diagram of the basic parts structure of a pipe horse foot manufacturing mold proposed by the present invention;
[0026] Figure 7 This is a schematic diagram of the overall connection structure of a pipe horse foot manufacturing mold proposed by the present invention;
[0027] Figure 8 This is a schematic diagram of the upper mold and motor structure of a pipe horse foot manufacturing mold proposed by the present invention;
[0028] Figure 9 This is a schematic structural diagram of the basic parts of a pipe horse foot manufacturing mold proposed by the present invention.
[0029] Figure: 1. Equipment base; 2. Battery; 3. Driver; 4. Air pressure group; 401. Air pressure plate; 402. Air pump; 403. Air pressure tube; 5. Air pressure column group; 501. Air pressure thick tube; 502. Spring; 503. Air pressure column; 6. Extrusion plate; 7. Drive motor A; 8. Rotating shaft A; 9. Upper mold group; 901. Mold base A; 902. Mold base B; 903. Small upper mold; 904. Large Upper mold; 905, fixing bolt; 10, drive motor B; 11, rotating shaft B; 12, lower mold assembly; 1201, mold slot A; 1202, mold slot B; 1203, small mold; 1204, large mold; 13, folding handle assembly; 1301, fixing seat; 1302, shaft; 1303, handle; 14, hinge; 15, storage plate; 16, lock plate; 17, heat sink; 18, universal wheel. DETAILED DESCRIPTION
[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only 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 ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0031] Example: Reference Figure 1-9 A mold for making a pipe horse foot is shown. It includes a device base 1, an internal card connected to a battery 2, and a driver 3 connected to one side of the battery 2. It is worth noting that the device driver is an L298N driver, a dual-channel full-bridge motor driver chip that can accept high voltage and high current. It has an operating voltage of up to 46V and an output current of up to 4A. It uses a dynamic adjustment circuit operation mode and has a logic power input terminal. Through the built-in voltage regulator chip 78MO5, the internal logic circuit part operates at low voltage and can also output a logic voltage of 5V. However, this driver and its servo motor are not limited to L298N drivers. They can be changed to the required driver and servo motor according to production needs. If a better driver and servo motor are available, they can be replaced as long as they can provide normal use.
[0032] One side of the device base 1 is provided with an air pressure group 4, the interior of the air pressure group 4 is connected to the air pressure column group 5, the lower surface of the air pressure column group 5 is provided with an extrusion plate 6, the interior of the extrusion plate 6 is connected to the drive motor A7, the interior of the drive motor A7 is plugged with a rotating shaft A8, the surface of the rotating shaft A8 is sleeved with an upper mold group 9, the interior of the device base 1 is connected to the drive motor B10, the interior of the drive motor B10 is plugged with a rotating shaft B11, the surface of the rotating shaft B11 is sleeved with a lower mold group 12, and one side of the device base 1 is provided with a folding handle group 13. The air pressure group 4 includes an air pressure column group 5, ... A pressure plate 401, an air pump 402, and an air pressure tube 403 are provided on one side of the equipment base 1. The air pressure plate 401 is internally connected to the air pump 402, and the upper surface of the air pressure plate 401 is connected to the air pressure tube 403. The air pressure column group 5 includes an air pressure thick tube 501, a spring 502, and an air pressure column 503. The air pressure group 4 is internally connected to the air pressure thick tube 501, and the spring 502 is internally connected to the air pressure thick tube 501. The air pressure column 503 is plugged into the air pressure thick tube 501. The upper mold group 9 includes a mold base A901, a mold bottom The mold base A901 is sleeved on the surface of the rotating shaft A8, the mold base B902 is sleeved on the surface of the rotating shaft A8, the small upper mold 903 is inserted into the interior of the mold base A901, the large upper mold 904 is inserted into the interior of the mold base B902, the mold base A901 is threaded with the small upper mold 903 through the fixing bolt 905, and the lower mold group 12 includes a mold slot A1201, a mold slot B1202, a small mold 1203, a large mold Tool 1204, the surface of the rotating shaft B11 is sleeved with the mold groove A1201, the surface of the rotating shaft B11 is sleeved with the mold groove B1202, the interior of the mold groove A1201 is inserted with a small mold 1203, the interior of the mold groove B1202 is inserted with a large mold 1204, the folding handle group 13 includes a fixed seat 1301, a shaft 1302, and a handle 1303. A fixed seat 1301 is provided on one side of the equipment base 1, the interior of the fixed seat 1301 is inserted with the shaft 1302, and the surface of the shaft 1302 is sleeved with the handle 1303.
[0033] See also Figure 2-9A mold for making pipe rivets. The air pressure plate 401 of the air pressure group 4 has multiple functions. First, it provides support and fixation. Second, it contains an internal gas pipeline that directly connects to the air pump 402 and air pressure tube 403. The air pump 402 uses compressed air to pressurize and depressurize the equipment. The air pressure tube 403 is used to connect to the air pressure column group 5. The air pump 402 pressurizes the entire equipment. The gas moves from the air pump 402, then passes through the air pressure plate 401 and into the air pressure tube 403. This greatly facilitates use and is more convenient than multiple pipe connections, making it less prone to problems. It is worth noting that the air pump 402 mentioned above is based on an "air pump" device that removes air from or adds air to an enclosed space. Air pumps are mainly divided into electric air pumps, manual air pumps, and foot-operated air pumps. Electric air pumps are electrically powered air pumps that continuously compress air to generate air pressure. Different types of air pumps can be installed in the device according to production requirements.
[0034] The thick air tube 501 of the air pressure column group 5 is stuck inside the air pressure plate 401. The strength of the thick air tube 501 has certain requirements, otherwise it will pose a great safety hazard. The internal spring 502 is used as an elastic device, and the air pressure column 503 is used to extrude and make the mold through strong air pressure. The gas inside the air pressure tube 403 will enter the inside of the thick air tube 501. The gas extrusion will cause the air pressure column 503 to be squeezed to the other side, and the extrusion plate 6 will obtain the mold pressing power. Among them, the thick air tube 501 is a pneumatic cylinder, which is a pneumatic actuator that converts air pressure energy into mechanical energy and performs linear reciprocating motion (or swinging motion). The pneumatic cylinder is a pneumatic actuator that converts air pressure energy into mechanical energy and performs linear reciprocating motion (or swinging motion). It has a simple structure and reliable operation. When used to achieve reciprocating motion, the deceleration device can be eliminated, and there is no transmission gap, and the movement is smooth. Therefore, it is widely used in the pneumatic systems of various machines. The output force of the pneumatic cylinder is proportional to the effective area of the piston and the pressure difference on both sides. According to the mechanical parts that use elasticity to work for the spring 502 in the pneumatic column group 5, the parts made of elastic materials are deformed under the action of external force and return to their original shape after the external force is removed. It is also called "spring". It is generally made of spring steel or high-toughness steel. In response to the needs of the pneumatic column group 5, coil springs, vortex springs, etc. are mainly used, which can increase the resetting efficiency of the pneumatic column 503 when the air pressure is interrupted, and at the same time avoid slow resetting or failure of the spring 502 after the air pressure is interrupted.
[0035] The mold base A901 and mold base B902 of the upper mold group 9 are bases that can replace the mold size and are used for precise movement of the position. The small upper mold 903 and the large upper mold 904 can be replaced with molds of the required size to facilitate manufacturing requirements of different specifications. The fixing bolts 905 are used to fix molds of different sizes on the mold base A901 and the mold base B902. The material of the small upper mold 903 and the large upper mold 904 is carbon tool steel.
[0036] The mold slots A 1201 and B 1202 of the lower mold assembly 12 serve as interchangeable grooves for precise mold repositioning. The circular holes within secure the molds. The small mold 1203 and large mold 1204 are interchangeable, facilitating the manufacture of various specifications. These molds are used in industrial production to create various molds and tools through methods such as die casting, forging, smelting, and stamping. Simply put, a mold is a tool used to create a shaped object. This tool is composed of various parts, and different molds are composed of different parts. This method primarily achieves the object's shape by changing the physical state of the molded material. The small mold 1203 and large mold 1204 are made of carbon tool steel. Commonly used hardened plastic mold steels include: carbon tool steel (such as T7A and T8A), low-alloy cold-work die steels such as 9SiCr and 9Mn2V steel, Cr12 steels such as Cr12MoV steel, high-speed steels such as W6Mo5Cr4V2 steel, matrix steels, and certain hot-work die steels. The final heat treatment of these steels is generally quenching and low-temperature tempering, and the hardness after heat treatment is usually above 45-50 HRC.
[0037] The fixing base 1301 of the folding handle assembly 13 is used to facilitate the folding of the handle 1303. The internal shaft 1302 is used for bending. To prevent injuries caused by dragging the device, the handle 1303 is covered with a rubber layer, which not only enhances its anti-slip surface but also reduces palm fatigue. The folding handle assembly 13 can be folded up when not in use, reducing space waste. The handle 1303 of the folding handle assembly 13 can be folded and stored together with the fixing base 1301 and the shaft 1302, making it easy to drag during use. When folded, it is also easy to place and transport without taking up too much space. The surface of the handle 1303 is equipped with a non-slip and wear-resistant polyethylene mat. This material has excellent anti-slip and wear-resistant properties. Polyethylene is a thermoplastic resin made by polymerizing ethylene. In industry, it also includes copolymers of ethylene and small amounts of α-olefins. Polyethylene is odorless, non-toxic, and waxy in feel. It has excellent low-temperature resistance (the lowest operating temperature can reach -100 to -70°C), good chemical stability, and is resistant to corrosion by most acids and alkalis (not resistant to oxidizing acids). It is insoluble in common solvents at room temperature, has low water absorption, and has excellent electrical insulation properties.
[0038] The extrusion plate 6 prevents the displacement of the iron sheet during the extrusion process. The rotating shaft A and the rotating shaft B are driven by the driving motor A and the driving motor B to achieve precise control of the distance between the upper mold group 9 and the lower mold group 12, which greatly enhances the accuracy and is convenient for the staff to use. The rotating shaft A and the rotating shaft B are controlled by the driving motor A and the driving motor B to control the distance between the molds.
[0039] There is a storage space inside the base 1 of the equipment, which can store molds of different specifications, making it convenient to replace molds for processing. The folding handle group 13 and the universal wheel 18 facilitate the movement and use of the entire equipment. The universal wheel 18 is made of nylon. The storage board 15 is opened and closed by the hinge 14. The lock plate 16 has two functions. One is to lock the main storage board 15 to prevent the storage board 15 from shaking and closing it, and also to prevent problems such as mold loss. The second is to open a small window to directly take the mold, and also to open the storage space to replace the mold. The universal wheel is the so-called movable caster, and its structure allows 360-degree horizontal rotation. Casters are a general term, including movable casters and fixed casters. Fixed casters do not have a rotating structure and cannot rotate horizontally but only vertically. These two types of casters are generally used in combination. For example, the structure of a trolley is two fixed wheels in the front and two movable universal wheels at the back near the push armrest. Universal wheels are made of polyamide, commonly known as nylon, and the English name is Polyamide (PA for short). It is a general term for thermoplastic resins containing repeating amide groups - [NHCO] - on the main chain of the molecule. According to the requirements of the equipment, universal wheels made of conventional rubber materials are not sufficient to support the movement of the equipment and are very prone to deformation. Therefore, nylon material is used, which has better support and reversible deformation effects.
[0040] The electrical components appearing in this article are all connected to an external L298N main controller and 220V AC power, and the main controller can be a conventional known device that controls a computer or the like.
[0041] When in use, the small upper mold and the large upper mold in the upper mold group, as well as the small mold and the large mold in the lower mold group are replaced to make them into the iron pipe feet of the required specifications for use. The rotating shaft A and the rotating shaft B are driven by the driving motor A and the driving motor B to achieve precise control of the distance between the upper mold group and the lower mold group. Compared with the traditional operation that is all made by hand, it is more accurate, greatly enhances the use effect and its convenience, and also saves the difficulty of operating the equipment. The air pump delivers air pressure to the air pressure pipe through the air pressure plate. When the air pressure reaches the air pressure thick pipe, the internal spring will be released, and the air pressure column will be squeezed out due to the air pressure. The movement of the air pressure column will release the pressure on the extrusion plate, and the extrusion plate The iron sheet is pressurized, which greatly reduces the difficulty of processing and the physical labor of the workers, so that it can be processed into the required specifications. It is more convenient and quicker than the traditional operation of manually rotating the shaft to apply pressure. The battery allows the equipment to be used for a period of time in an off-electricity environment, reducing the occurrence of various problems when emergencies occur, and greatly improving the problems such as the inability to process caused by emergencies. The folding handle group and universal wheels facilitate the movement of the equipment and can move the equipment to the required location. The handle of the folding handle group can be folded and stored through the fixed seat and the shaft, which can be easily dragged during use. It is also easy to place after folding, and it will not take up too much space for easy placement, which greatly reduces the speed of replacing and repairing pipe feet.
[0042] In summary, the pipe horse foot manufacturing mold, the pipe horse foot manufacturing mold, through the upper mold group, the lower mold group, the rotating shaft A and the rotating shaft B structure, processes the iron sheet, and by replacing different molds, it can be made into the iron pipe horse foot of the required specifications. The drive motor A and the drive motor B can accurately control the distance between the two molds. Compared with the traditional operation where all are manually produced, it is more precise, greatly enhances the use effect and its convenience, and also saves the difficulty of operating the equipment. The pipe horse foot manufacturing mold, through the air pressure group, the air pressure column group, the universal wheel, the battery and the folding handle group structure, the air pressure group and the air pressure column group pressurize the iron sheet to make it into the required specifications, which is more convenient and quick than the traditional operation where all are manually pressed by the rotating shaft. The battery allows the equipment to be used for a period of time in an off-electricity environment. The folding handle group and the universal wheel facilitate the mobility of the equipment, and the equipment can be moved to the required location, greatly reducing the speed of replacing and repairing the pipe horse foot, and is no longer limited to processing the required pipe horse foot within the factory.
[0043] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.
[0044] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A pipe horse foot production mold, comprising an equipment base (1), characterized in that: The device base (1) is internally clamped with a battery (2), and a driver (3) is clamped on one side of the battery (2). An air pressure group (4) is provided on one side of the device base (1), and an air pressure column group (5) is clamped on the inside of the air pressure group (4). The lower surface of the air pressure column group (5) is provided with an extrusion plate (6), and a drive motor A (7) is clamped on the inside of the extrusion plate (6). A rotating shaft A (8) is inserted into the inside of the drive motor A (7), and an upper mold group (9) is sleeved on the surface of the rotating shaft A (8). A drive motor B (10) is clamped on the inside of the device base (1), and the drive motor B (10) is inserted into the inside. There is a rotating shaft B (11), the surface of the rotating shaft B (11) is sleeved with a lower mold group (12), and one side of the device base (1) is provided with a folding handle group (13); the air pressure group (4) includes an air pressure plate (401), an air pump (402), and an air pressure tube (403), one side of the device base (1) is provided with an air pressure plate (401), the interior of the air pressure plate (401) is clamped with an air pump (402), and the upper surface of the air pressure plate (401) is clamped with an air pressure tube (403); the air pressure column group (5) includes an air pressure thick tube (501), a spring (502), and an air pressure column (503), and the interior of the air pressure group (4) is clamped with a spring (502). The upper mold assembly (9) comprises a mold base A (901), a mold base B (902), a small upper mold (903), a large upper mold (904), and a fixing bolt (905). The surface of the rotating shaft A (8) is sleeved with the mold base A (901). The surface of the rotating shaft A (8) is sleeved with the mold base B (902). The small upper mold (903) is inserted into the mold base A (901). The mold base B (902) is sleeved with the mold base B (902). The interior of the mold base A (901) is plugged with a large upper mold (904), and the mold base A (901) is threaded with a small upper mold (903) via a fixing bolt (905); the lower mold group (12) comprises a mold groove A (1201), a mold groove B (1202), a small mold (1203), and a large mold (1204); the surface of the rotating shaft B (11) is sleeved with the mold groove A (1201), the surface of the rotating shaft B (11) is sleeved with the mold groove B (1202), the interior of the mold groove A (1201) is plugged with the small mold (1203), and the interior of the mold groove B (1202) is plugged with the large mold (1204).
2. A pipe horse foot production mold according to claim 1, characterized in that: The folding handle assembly (13) comprises a fixing seat (1301), a shaft (1302), and a handle (1303). The fixing seat (1301) is provided on one side of the device base (1). The shaft (1302) is inserted into the interior of the fixing seat (1301), and the handle (1303) is sleeved on the surface of the shaft (1302).
3. The pipe horse foot production mold according to claim 1, characterized in that: One side of the device base (1) is rotatably connected to a storage plate (15) via a hinge (14), and a locking plate (16) is clamped inside the storage plate (15).
4. A pipe horse foot production mold according to claim 1, characterized in that: The interior of the device base (1) is divided into two layers, an upper layer and an lower layer, and a heat dissipation plate (17) is clamped on one side of the device base (1).
5. The pipe horse foot production mold according to claim 1, characterized in that: Universal wheels (18) are plugged into the lower surface of the equipment base (1).
Citation Information
Patent Citations
Pipe horse foot manufacturing die
CN220127380U