Hat forming press
By employing a combination design of positive and negative lead screws and rubber abutment rods and the use of flexible contact plates in the hat forming machine, the problems of cumbersome mold replacement and inflexible adjustment have been solved, achieving efficient, stable production and convenient operation of the hat forming machine.
Patent Information
- Application Number
- CN202520769681.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-04-22
AI Technical Summary
Existing hat forming machines face difficulties in mold replacement and personalized adjustments. Mold replacement is cumbersome and cannot be flexibly adjusted according to mold size, affecting production efficiency and product quality.
The design employs a combination of positive and negative lead screws and rubber abutment rods. The threaded connection of the positive and negative lead screws and reverse self-locking achieve stable clamping of the mold, and combined with the control of the cylinder, the mold replacement process is simplified. At the same time, the combination of flexible contact plate and spring protects the cap from damage and facilitates its removal.
This improves the versatility and production flexibility of the hat forming machine, enhances the stability and efficiency of the forming process, and ensures the quality and ease of operation of the hats.
Smart Images

Figure CN223860270U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present disclosure relate to the technical field of garment processing equipment, in particular, to a hat compression molding machine. BACKGROUND
[0002] In the current booming fashion industry, as a functional and decorative accessory, the market demand for hats continues to rise, and consumers' demand for hat style precision is increasingly demanding. Traditional handmade hats rely on manual experience and simple tools for shaping, which not only has low efficiency and is difficult to achieve large-scale standardized production, but also has poor style consistency, and cannot accurately meet the market demand for high-quality hats. With the acceleration of industrial automation, hat compression molding machines have emerged as the times require. With the help of mechanical power and precise control technology, it can quickly shape flat hat materials into the desired three-dimensional shape, greatly improving production efficiency, reducing labor costs, and ensuring perfect uniformity of each hat style, opening a new chapter of efficient production in the hat-making industry.
[0003] The existing hat compression molding machine has significant deficiencies in mold replacement and personalized adjustment. On the one hand, the operation of replacing the mold is extremely tedious, and the mold usually uses rigid connection methods such as bolts and nuts. Each time the mold is replaced, the worker needs to use a wrench or other tools to disassemble the nuts one by one, which is time-consuming and labor-intensive, and is prone to problems such as nut loss and thread slippage, which greatly affects production efficiency. On the other hand, it cannot be adjusted individually according to the size of the mold. The clamping device of the equipment is usually designed with fixed dimensions. When the size of the mold changes slightly, either the mold cannot be clamped tightly, causing displacement during the compression process and affecting product quality, or the mold is damaged due to excessive clamping. Therefore, it needs to be improved and optimized. CONTENT OF THE UTILITY MODEL
[0004] To overcome the above-mentioned defects, embodiments of the present disclosure provide a hat compression molding machine, which solves the technical problems of the prior art.
[0005] To achieve the above object, the utility model provides the following technical scheme: A hat compression molding machine, including hat compression molding platform, both sides of the top of hat compression molding platform are fixedly installed with support plate, two between support plate are fixedly installed with support cross bar, the bottom side of support cross bar is fixedly installed with upper die assembly, the top of hat compression molding platform is fixedly installed with clamping assembly, clamping assembly contains fixedly installed bottom plate of hat compression molding platform top, the top of bottom plate is fixedly installed with second telescopic link, the top of second telescopic link is fixedly installed with bearing lug, the inside of hat compression molding platform is fixedly installed with air cylinder, and the output of air cylinder is fixedly connected with bearing lug bottom through bottom plate, the outer surface of bearing lug is equipped with sliding groove, the inside of sliding groove is rotatably installed with positive and negative screw rod, and one side of positive and negative screw rod extends out of bearing lug, one end of positive and negative screw rod is fixedly installed with rotating block, the outer surface of positive and negative screw rod is screw connected with sliding block and the both ends of positive and negative screw rod are through the inside of two sliding blocks, the inside of sliding block is fixedly installed with rubber abutment rod, the bottom of lower mould base is placed between two rubber abuttent rods, and the top of lower mould base is fixedly installed with compression lower mould.
[0006] As an aspect of the utility model, the bottom of the upper die assembly is movably installed with the ejector assembly, the ejector assembly includes a contact plate movably installed on both sides of the bottom of the upper die assembly, a rectangular groove is formed on both sides of the bottom of the upper die assembly, a first telescopic link is fixedly installed on the inside of the rectangular groove, and the end of the first telescopic link is fixedly connected with the contact plate, a spring is fixedly connected between the contact plate and the rectangular groove, and the spring is movably sleeved on the outer surface of the first telescopic link.
[0007] As an aspect of the utility model, the upper die assembly includes a first connecting plate fixedly installed on the bottom side of the support cross bar, first threaded rods are screw connected on both sides of the inside of the first connecting plate, and the both ends of the first threaded rods are through the inside of the first connecting plate, nuts are screw sleeved on the outer surface of the first threaded rods and located on the upper and lower sides of the first connecting plate, a second connecting plate is fixedly installed on the bottom ends of the two first threaded rods, an upper die is fixedly installed on the bottom of the second connecting plate, and the ejector assembly is movably installed on both sides of the bottom of the upper die.
[0008] As an aspect of the utility model, second threaded rods are screw connected on both sides of the inside of the support cross bar, auxiliary support plates are fixedly installed on the bottoms of the two second threaded rods, and a transverse connecting plate is fixedly installed on the tops of the two auxiliary support plates and the both ends of the transverse connecting plate are through the inside of the upper die.
[0009] As an aspect of the utility model, a cabinet door is movably installed on the front of the hat compression molding platform, a handle is arranged on the outer surface of the cabinet door, and the hat compression molding platform and the cabinet door are hingedly connected with each other through a hinge.
[0010] As an aspect of the utility model, the support cross rod and the support rod are fixedly installed between the hat forming platform, and the support cross rod and the support rod are combined into T shape.
[0011] As an aspect of the utility model, the diameter of the bottom plate is greater than the diameter of the bearing bump, and the bottom plate is located directly below the bearing bump.
[0012] As an aspect of the utility model, the two support plates are triangular in shape and are located at the edge positions on the two sides of the hat forming platform.
[0013] As an aspect of the utility model, the groove opened in the inner side of the upper die is greater in diameter than the lower die, and the upper die is located directly above the lower die.
[0014] As an aspect of the utility model, the hat forming platform is fixedly installed with a base at the bottom, and the base is fixedly installed around the bottom of the hat forming platform.
[0015] The embodiment of the present disclosure has the following advantages: when the forward and reverse screw rod starts to rotate, it will drive the sliding blocks on both sides to slide into the sliding groove, then the sliding blocks will drive the rubber abutting rods to gradually approach the lower die base, then the two rubber abutting rods will exert clamping force on the lower die base, so that the lower die base and the forming lower die are fixed, and because the forward and reverse screw rod is threadedly connected with the bearing bump at the contact position, the forward and reverse screw rod is reversely self-locking, so that the lower die base is clamped more stably by the two rubber abutting rods. Compared with the traditional device, in the fixing link, the rotating block drives the forward and reverse screw rod and other components, so that the two rubber abutting rods exert clamping force on the lower die base, which can stably fix the lower die base and the forming lower die. The forward and reverse screw rod is threadedly connected with the bearing bump to realize reverse self-locking, further enhancing stability. In operation, the forming can be realized by starting the air cylinder through the external controller, the process is simple, and the practicability is high. Different molds can be replaced according to different mold sizes, flexible adaptation to various molds, improved versatility of the equipment and flexibility of production, which helps to improve the quality and efficiency of hat forming, meets the diversified production needs, improves the stability and reliability of the forming, and further improves the quality and efficiency of hat forming.
[0016] The embodiment of the present disclosure has the beneficial effects that: the extrusion force of the contact plate will be transmitted to the first telescopic rod and the spring, then the spring will be deformed, the lower die of the compression mold will be gradually returned to the original position by the cylinder after the compression is completed, at this time, the contact plate will give the hat that has been compressed an opposite force due to the elastic recovery of the spring, so that the contact plate will give the hat that has been compressed the force, compared with the traditional device, when the lower die of the compression mold and the upper mold assembly are pressed together, the flexible contact plate can not only buffer the extrusion to protect the hat to be compressed from being damaged, but also transmit the extrusion force to the spring, after the compression is completed, the lower die of the compression mold is returned to the original position by the cylinder, at this time, the contact plate is given an opposite force by the spring relying on the elastic recovery, the force is cleverly applied to the hat that has been compressed, effectively avoiding that the hat is adsorbed on the inner side of the upper mold assembly, greatly facilitating the taking of the hat, and improving the convenience of production operation and the quality of finished products. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed to be used in the description of the embodiments of the present disclosure will be briefly introduced. Obviously, the drawings in the following description are only some example embodiments of the present disclosure. Other drawings can be obtained according to the contents of the example embodiments of the present disclosure and the drawings by those skilled in the art without creating any creative labor.
[0018] Figure 1 It is a front perspective view of the structure of the utility model;
[0019] Figure 2 It is a support horizontal rod structure diagram of the utility model;
[0020] Figure 3 It is a pop-up assembly structure diagram of the utility model;
[0021] Figure 4 It is an upper mold structure diagram of the utility model;
[0022] Figure 5 It is a support horizontal rod structure diagram of the utility model; Figure 4
[0023] Figure 6 It is a bearing protrusion structure diagram of the utility model;
[0024] Figure 7 It is a support horizontal rod structure diagram of the utility model; Figure 6
[0025] In the figure: 1, hat compression platform; 2, support plate; 3, support cross rod; 4, support rod; 5, upper die assembly; 501, first connecting plate; 502, first threaded rod; 503, nut; 504, second connecting plate; 505, upper die; 506, second threaded rod; 507, auxiliary support plate; 508, transverse connecting plate; 6, ejection assembly; 601, rectangular groove; 602, first telescopic rod; 603, spring; 604, contact plate; 7, clamping assembly; 701, bottom plate; 702, second telescopic rod; 703, air cylinder; 704, lower die base; 705, compression lower die; 706, bearing lug; 707, sliding groove; 708, reverse screw rod; 709, rotating block; 710, sliding block; 711, rubber abutment rod; 8, hinge; 9, cabinet door; 10, base. DETAILED DESCRIPTION
[0026] The present disclosure will be further described in conjunction with the drawings and examples. It can be understood that the specific examples described herein are merely intended to explain the present disclosure, but not to limit the present disclosure.
[0027] In order to make the drawing simple, only the parts related to the disclosure are shown in each figure, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some figures, only one of the parts with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".
[0028] In this paper, it should be noted that unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0029] In the present disclosure, unless otherwise specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only means that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only means that the horizontal height of the first feature is less than that of the second feature.
[0030] In the description of the present embodiment, the terms "upper", "lower", "left", "right" and the like orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present disclosure.
[0031] As Figures 1 to 7 shown, the utility model provides a cap compression molding machine, including cap compression molding platform 1, the top both sides of cap compression molding platform 1 are fixedly installed with support plate 2, two support plates 2 are fixedly installed with support cross bar 3, the bottom side of support cross bar 3 is fixedly installed with upper die assembly 5, the top of cap compression molding platform 1 is fixedly installed with clamping assembly 7, clamping assembly 7 includes the bottom plate 701 fixedly installed at the top of cap compression molding platform 1, the top of bottom plate 701 is fixedly installed with second telescopic rod 702, the top of second telescopic rod 702 is fixedly installed with bearing lug 706, the inside of cap compression molding platform 1 is fixedly installed with cylinder 703, and the output end of cylinder 703 is fixedly connected with bearing lug 706 bottom through bottom plate 701, bearing lug 706 outer surface is equipped with sliding groove 707, the inside of sliding groove 707 is rotatably installed with positive and negative screw rod 708, and one side of positive and negative screw rod 708 extends out bearing lug 706, one end of positive and negative screw rod 708 is fixedly installed with rotating block 709, the outer surface of positive and negative screw rod 708 is screw-connected with sliding block 710 and the both ends of positive and negative screw rod 708 are through the inside of two sliding blocks 710, the inside of sliding block 710 is fixedly installed with rubber abutment rod 711, two rubber abutment rods 711 are placed with lower mould base 704, and lower mould base 704 top is fixedly installed with compression lower mould 705.
[0032] When the worker places the lower mold base 704 on the bearing protrusion 706, and then rotates the rotating block 709, when the rotating block 709 rotates, it will drive the positive and negative screw rod 708 to start rotating, when the positive and negative screw rod 708 starts rotating, it will drive the sliding block 710 on both sides to slide into the sliding groove 707, then the sliding block 710 will drive the rubber abutment rod 711 to gradually approach the lower mold base 704, then the two rubber abutment rods 711 exert clamping force on the lower mold base 704, so that the lower mold base 704 and the profiled lower mold 705 are fixed, and because the positive and negative screw rod 708 is threadedly connected with the bearing protrusion 706 at the contact position, the positive and negative screw rod 708 is reverse self-locking, so that the lower mold base 704 is clamped more stably by the two rubber abutting rods 711, at this time the hat to be profiled is placed on the outer surface of the profiled lower mold 705, the external controller is started to drive the cylinder 703, then the cylinder 703 gradually drives the profiled lower mold 705 to be pressed with the upper mold assembly 5, so as to realize the profiling of the hat to be profiled, and different sizes of molds can be replaced according to the mold.
[0033] When the worker places the lower mold base 704 on the bearing protrusion 706, and then rotates the rotating block 709, when the rotating block 709 rotates, it will drive the positive and negative screw rod 708 to start rotating, when the positive and negative screw rod 708 starts rotating, it will drive the sliding block 710 on both sides to slide into the sliding groove 707, then the sliding block 710 will drive the rubber abutment rod 711 to gradually approach the lower mold base 704, then the two rubber abutment rods 711 exert clamping force on the lower mold base 704, so that the lower mold base 704 and the profiled lower mold 705 are fixed, and because the positive and negative screw rod 708 is threadedly connected with the bearing protrusion 706 at the contact position, the positive and negative screw rod 708 is reverse self-locking, so that the lower mold base 704 is clamped more stably by the two rubber abutting rods 711, at this time the hat to be profiled is placed on the outer surface of the profiled lower mold 705, the external controller is started to drive the cylinder 703, then the cylinder 703 gradually drives the profiled lower mold 705 to be pressed with the upper mold assembly 5, so as to realize the profiling of the hat to be profiled, and different sizes of molds can be replaced according to the mold.
[0034] In some examples, the upper die assembly 5 is movably mounted with the ejecting assembly 6 on both sides of the bottom of the upper die assembly 5, the ejecting assembly 6 comprises a contact plate 604 movably mounted on both sides of the bottom of the upper die assembly 5, and the upper die assembly 5 is provided with a rectangular groove 601 on both sides of the bottom, a first telescopic rod 602 is fixedly installed inside the rectangular groove 601, and the end of the first telescopic rod 602 is fixedly connected with the contact plate 604, and a spring 603 is fixedly connected between the contact plate 604 and the rectangular groove 601 and movably sleeved on the outer surface of the first telescopic rod 602.
[0035] When the compression lower die 705 is pressed with the upper die assembly 5, the contact plate 604 on both sides will be squeezed, and the contact plate 604 has a certain flexibility, so that the hat to be compressed will not be damaged, and then the squeezing force of the contact plate 604 will be transmitted to the first telescopic rod 602 and the spring 603, and then the spring 603 will be deformed, and when the compression is completed, the air cylinder 703 will gradually drive the compression lower die 705 to return to the original position, at this time, due to the elastic recovery of the spring 603, the contact plate 604 will be given a reverse force, so that the contact plate 604 will give the action force to the hat that has been compressed, avoiding the hat from being adsorbed inside the upper die assembly 5, and facilitating the taking out.
[0036] When the compression lower die 705 is pressed with the upper die assembly 5, the contact plate 604 on both sides will be squeezed, and the contact plate 604 has a certain flexibility, so that the hat to be compressed will not be damaged, and then the squeezing force of the contact plate 604 will be transmitted to the first telescopic rod 602 and the spring 603, and then the spring 603 will be deformed, and when the compression is completed, the air cylinder 703 will gradually drive the compression lower die 705 to return to the original position, at this time, due to the elastic recovery of the spring 603, the contact plate 604 will be given a reverse force, so that the contact plate 604 will give the action force to the hat that has been compressed, avoiding the hat from being adsorbed inside the upper die assembly 5, and facilitating the taking out.
[0037] In some examples, the upper die assembly 5 comprises a first connecting plate 501 fixedly mounted on the bottom side of the support cross rod 3, and a first threaded rod 502 is threadedly connected inside both sides of the first connecting plate 501, and the ends of the first threaded rod 502 penetrate through the inside of the first connecting plate 501, a nut 503 is threadedly sleeved on the outer surface of the first threaded rod 502 and located on the upper and lower sides of the first connecting plate 501, a second connecting plate 504 is fixedly mounted at the bottom of the first threaded rod 502, an upper die 505 is fixedly mounted on the second connecting plate 504, and an ejecting assembly 6 is movably mounted on both sides of the bottom of the upper die 505.
[0038] The nut 503 is sleeved on the outer surface of the first threaded rod 502 and is located on the upper and lower sides of the first connecting plate 501. The two nuts 503 are reversely rotated to abut against the first connecting plate 501, so that the upper mold 505 is more fixedly installed.
[0039] In some examples, the second threaded rods 506 are threadedly connected to the inside of the support cross rod 3, the auxiliary support plates 507 are fixedly installed at the bottom of the two second threaded rods 506, and the transverse connecting plates 508 are fixedly installed at the top of the two auxiliary support plates 507 and penetrate into the inside of the upper mold 505 at both ends of the transverse connecting plate 508.
[0040] The auxiliary support plates 507 are fixedly installed at the bottom of the two second threaded rods 506, the transverse connecting plates 508 are fixedly installed at the top of the two auxiliary support plates 507, and the transverse connecting plate 508 penetrates into the inside of the upper mold 505 at both ends, so that the upper mold 505 is fixed in all directions, and the loosening after long-time pressing is avoided.
[0041] In some examples, the front of the hat pressing platform 1 is movably installed with the cabinet door 9, the outer surface of the cabinet door 9 is provided with a handle, and the hat pressing platform 1 and the cabinet door 9 are hingedly connected through the hinge 8.
[0042] The hat pressing platform 1 and the cabinet door 9 are hingedly connected through the hinge 8, so that the staff can open the cabinet door 9 and quickly overhaul the internal elements.
[0043] In some examples, the support rod 4 is fixedly installed between the support cross rod 3 and the hat pressing platform 1, and the support cross rod 3 and the support rod 4 are combined in a T shape.
[0044] The support cross rod 3 and the support rod 4 are combined in a T shape, so that the support effect of the support cross rod 3 is effectively increased.
[0045] In some examples, the diameter of the bottom plate 701 is greater than the diameter of the bearing block 706, and the bottom plate 701 is located directly below the bearing block 706.
[0046] The diameter of the bottom plate 701 is greater than the diameter of the bearing block 706, so that the force conducted during pressing of the pressing lower mold 705 can be effectively borne.
[0047] In some examples, the two support plates 2 are in a triangular shape and are located at the edge positions on both sides of the hat pressing platform 1.
[0048] The two support plates 2 are in a triangular shape and are located at the edge positions on both sides of the hat pressing platform 1, so that the safety of the entire device is increased.
[0049] In some examples, the diameter of the groove in the upper mold 505 is greater than the diameter of the lower mold 705, and the upper mold 505 is located directly above the lower mold 705.
[0050] By making the diameter of the groove in the upper mold 505 greater than the diameter of the lower mold 705, a certain amount of deformation space can be provided for the hat being molded.
[0051] In some examples, the bottom of the hat molding platform 1 is fixedly installed with a base 10, and the base 10 is fixedly installed around the bottom of the hat molding platform 1.
[0052] By fixing the base 10 around the bottom of the hat molding platform 1, the stability of the entire device can be effectively improved, and the device is less likely to be affected by external physical factors.
[0053] The working principle and use process of the utility model are as follows:
[0054] When the staff places the lower mold base 704 on the bearing protrusion 706, and then rotates the rotating block 709, the rotating block 709 will drive the forward and reverse lead screw 708 to start rotating, and when the forward and reverse lead screw 708 starts rotating, it will drive the sliding blocks 710 on both sides to slide into the sliding groove 707, and then the sliding blocks 710 will drive the rubber abutting rods 711 to gradually approach the lower mold base 704, and then the two rubber abutting rods 711 will exert a clamping force on the lower mold base 704, so that the lower mold base 704 and the lower mold 705 are fixed, and because the forward and reverse lead screw 708 is in threaded connection with the contact part of the bearing protrusion 706, the forward and reverse lead screw 708 is reversely self-locking, so that the lower mold base 704 is clamped more stably by the two rubber abutting rods 711, at this time, the hat to be molded is placed on the outer surface of the lower mold 705, the external controller is started to drive the cylinder 703, and then the cylinder 703 gradually drives the lower mold 705 to press-fit with the upper mold assembly 5, so as to realize the molding of the hat to be molded, and different sizes of molds can be replaced according to different sizes.
[0055] When the lower mold 705 is pressed with the upper mold assembly 5, it will extrude the contact plates 604 on both sides, and the contact plates 604 have a certain flexibility, so as not to damage the hat to be molded, and then the extrusion force of the contact plates 604 will be transmitted to the first telescopic rod 602 and the spring 603, and then the spring 603 will be deformed, and when the molding is completed, the cylinder 703 will gradually drive the lower mold 705 to return to the original position, at this time, the spring 603 will give the contact plates 604 an opposite force due to the elastic recovery effect, so as to make the contact plates 604 apply the force to the molded hat, so as to avoid the hat from being adsorbed in the upper mold assembly 5, and facilitate the removal.
[0056] It should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure and are not intended to limit it. Although this disclosure has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this disclosure without departing from the spirit and scope of the technical solutions of this disclosure, and all such modifications and substitutions should be covered within the scope of the claims of this disclosure.
Claims
1. A hat forming machine, comprising a hat forming platform (1), characterized in that: Support plates (2) are fixedly installed on both sides of the top of the hat forming platform (1). A support crossbar (3) is fixedly installed between the two support plates (2). An upper mold assembly (5) is fixedly installed on the bottom side of the support crossbar (3). A clamping assembly (7) is fixedly installed on the top of the hat forming platform (1). The clamping assembly (7) includes a base plate (701) fixedly installed on the top of the hat forming platform (1). A second telescopic rod (702) is fixedly installed on the top of the base plate (701). A bearing protrusion (706) is fixedly installed on the top of the second telescopic rod (702). A cylinder (703) is fixedly installed inside the hat forming platform (1). The output end of the cylinder (703) passes through the base plate (701) and the bearing protrusion (706). The bottom is fixedly connected, and a sliding groove (707) is opened on the outer surface of the bearing protrusion (706). A positive and negative screw rod (708) is rotatably installed inside the sliding groove (707), and the bearing protrusion (706) extends out from one side of the positive and negative screw rod (708). A rotating block (709) is fixedly installed at one end of the positive and negative screw rod (708). A sliding block (710) is threadedly connected to the outer surface of the positive and negative screw rod (708), and both ends of the positive and negative screw rod (708) pass through the inner side of the two sliding blocks (710). A rubber abutment rod (711) is fixedly installed inside the sliding block (710). A lower mold base (704) is placed between the two rubber abutment rods (711). A lower mold (705) is fixedly installed on the top of the lower mold base (704).
2. The hat forming machine according to claim 1, characterized in that: The upper mold assembly (5) has pop-out components (6) movably installed on both sides of its bottom. The pop-out components (6) include contact plates (604) movably installed on both sides of the bottom of the upper mold assembly (5). The upper mold assembly (5) has rectangular grooves (601) on both sides of its bottom. A first telescopic rod (602) is fixedly installed inside the rectangular groove (601), and the end of the first telescopic rod (602) is fixedly connected to the contact plate (604). A spring (603) is fixedly connected between the contact plate (604) and the rectangular groove (601), and the spring (603) is movably sleeved on the outer surface of the first telescopic rod (602).
3. The hat forming machine according to claim 1, characterized in that: The upper mold assembly (5) includes a first connecting plate (501) fixedly installed on the bottom side of the support crossbar (3). The two sides of the first connecting plate (501) are internally threaded with first threaded rods (502), and the two ends of the first threaded rods (502) pass through the interior of the first connecting plate (501). Nuts (503) are threaded on the outer surface of the first threaded rods (502) and located on the upper and lower sides of the first connecting plate (501). The bottom ends of the two first threaded rods (502) are fixedly installed with second connecting plates (504). The bottom of the second connecting plate (504) is fixedly installed with an upper mold (505). The bottom sides of the upper mold (505) are movably installed with pop-out components (6).
4. A hat forming machine according to claim 1, characterized in that: The support crossbar (3) has a second threaded rod (506) threaded on both sides inside. The bottom of the two second threaded rods (506) is fixedly installed with an auxiliary support plate (507). The top of the two auxiliary support plates (507) is fixedly installed with a transverse connecting plate (508), and the two ends of the transverse connecting plate (508) pass through the interior of the upper mold (505).
5. A hat forming machine according to claim 1, characterized in that: The hat forming platform (1) has a cabinet door (9) movably installed on its front side, and a handle is provided on the outer surface of the cabinet door (9). The hat forming platform (1) and the cabinet door (9) are hinged to each other by a hinge (8).
6. A hat forming machine according to claim 1, characterized in that: A support rod (4) is fixedly installed between the support crossbar (3) and the hat forming platform (1), and the support crossbar (3) and the support rod (4) are combined in a T-shape.
7. A hat forming machine according to claim 1, characterized in that: The diameter of the base plate (701) is larger than the diameter of the bearing protrusion (706), and the base plate (701) is located directly below the bearing protrusion (706).
8. A hat forming machine according to claim 1, characterized in that: The two support plates (2) are triangular in shape and are located on the sides of the hat forming platform (1).
9. A hat forming machine according to claim 3, characterized in that: The diameter of the groove opened on the inner side of the upper mold (505) is larger than the diameter of the lower mold (705), and the upper mold (505) is located directly above the lower mold (705).
10. A hat forming machine according to claim 1, characterized in that: The bottom of the hat forming platform (1) is fixedly installed with a base (10), and the base (10) is fixedly installed around the bottom of the hat forming platform (1).