Heat press machine base and heat press system
By designing a portable hot press base with an arc-shaped object positioning part and an outwardly convex curved surface support part, the problem of requiring special equipment for heat transfer of columnar objects is solved, realizing low-cost and convenient heat transfer of multi-curved objects, and improving the adaptability and operating efficiency of the equipment.
Patent Information
- Application Number
- PCT/CN2025/099732
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-06-07
- Filing Date
- 2025-06-06
- Publication Date
- 2025-12-11
AI Technical Summary
In existing technologies, heat transfer printing on columnar objects requires a dedicated hot press, resulting in high user costs and wasted resources.
A portable hot press base was designed, which includes a storage space and an object positioning part. The object positioning part is arc-shaped and covered with a flexible lining. The whole is integrally molded from flexible material. It is suitable for positioning columnar and curved objects. Combined with the arc-shaped and outwardly convex curved support part, it can realize heat transfer on flat and curved surfaces.
The portable heat transfer equipment is economical, has low user costs, is easy to operate, and has wide adaptability. It is suitable for various curved objects, reduces the space occupied by the equipment, and is easy to carry and store.
Smart Images

Figure CN2025099732_11122025_PF_FP_ABST
Abstract
Description
Hot press base and hot press system TECHNICAL FIELD
[0001] The utility model relates to hot transfer equipment technical field, concretely relates to hot press base and hot press system. BACKGROUND
[0002] Portable hot press has gradually been popular, and arc-shaped hot press surface has appeared on the market, which can process arc-shaped hot transfer of articles such as hats. However, the positioning mold of such articles is usually a cavity, such as a hat mold for positioning the inner cavity of a hat. For columnar objects such as cups or other columnar curved surfaces, positioning is not possible, resulting in the need for a dedicated hot press to complete related work for hot transfer of such objects. However, traditional dedicated hot presses are often large in size, complex to operate, and expensive. Since general DIY users do not use them frequently, such equipment increases the user's cost to some extent, causing waste of resources. SUMMARY
[0003] The purpose of the present application is to solve the problem of high user cost and easy waste of resources in the prior art for hot transfer of columnar objects using a dedicated hot press.
[0004] The technical solution adopted by the present patent is as follows:
[0005] The hot press base comprises a storage space and an article positioning part. The storage space is formed by the inner side of the side wall and is used to receive at least part of the lower end of the hot press. The article positioning part is defined by the concave part of the side wall from the upper side to the lower side.
[0006] The hot press base provided by the present application can position columnar objects that need to be hot transferred on a curved surface, making it convenient for users to operate the portable hot press with a curved surface hot pressing part for hot transfer operation. This increases the functionality of the hot press base and the use of the portable hot press with a curved surface hot pressing part, is economical, and has low user cost. The overall design of the hot press base is compact, occupying less space and being easy to carry and store.
[0007] The article positioning part of the present application is not limited to positioning only columnar objects. Other objects that can be positioned by the article positioning part of the present application are also applicable.
[0008] Further, the article positioning part is arc-shaped. The arc-shaped design of the article positioning part can better adapt to columnar or other curved objects, ensuring the positioning effect of the objects during hot transfer and improving the quality of hot transfer. At the same time, the arc-shaped design makes it more convenient to place and remove the objects, improving the operation efficiency.
[0009] Further, the side wall is covered with a flexible adhesion surface layer at least at the part of the object positioning part, and the recessed part of the layer defines the object positioning part. The flexible adhesion surface layer of the side wall at the object positioning part is in soft contact with the object, avoiding damage to the object, while the flexibility provides stability for the positioning of the object, reducing slippage and improving the versatility of the shape and size.
[0010] Further, at least the part of the object positioning part that engages with the object is made of flexible material. For example, the surface layer of the object positioning part is made of flexible material, such as silicone or other suitable known material.
[0011] Further, the hot press base is integrally formed of flexible material. The seamless integration of the object positioning part and the base eliminates the assembly process, improves production efficiency, and ensures the stability between the object positioning part and the base.
[0012] Further, the side wall has two opposite long sides and end sides arranged at the ends of the long sides, and the object positioning part is arranged on at least one of the long sides of the side wall; or, the object positioning part is provided with two object positioning parts arranged on the two long sides of the side wall. The object positioning parts are distributed on the long sides of the side wall, providing more space for the width selection of the object positioning part; when the two object positioning parts are arranged on the two long sides of the side wall, the two object positioning parts can position the two sides of the object, achieving better positioning effect, and the span of the two object positioning parts is relatively small, reducing the length requirement for placing the object.
[0013] Further, a convex curved supporting part is constructed on the outer surface of the side wall. The convex curved design of the supporting part allows the hot press base to be used to support curved objects, such as the back of a shoe or the inside of a hat brim. This design not only optimizes the use of the base, but also significantly improves its adaptability, making the hot press base more flexible and widely applicable.
[0014] Further, the curved supporting part is arranged on the outer side of one end of the short side of the side wall. In the design of the hot press base, the curvature of the outer surface of one end of the short side of the side wall is relatively large. The construction of the curved supporting part in this area has little effect on the overall appearance and is ingeniously integrated into the design of the press base. The curved surface of the supporting part integrates with the curved surface of the short side of the side wall, meeting the functional requirements and also considering the aesthetic requirements, achieving a good balance between practicality and aesthetics.
[0015] Another aspect of the present application provides another technical solution of the heat press machine base, which comprises a receiving space and an object positioning part. The receiving space is formed by the inner side of the side wall and is used to receive at least part of the lower end of the heat press machine. The heat press machine base comprises a base body and a lining piece. The base body comprises a base body side wall, and the lining piece covers at least part of the base body side wall. The object positioning part is defined by the concave part of the side wall from the upper side to the lower side, and the lining piece at least defines the upper surface of the object positioning part. The base of the heat press machine base of the present solution adopts a split piece design, which is composed of a base body and a lining piece. The base body serves as a framework support, and the lining piece is ingeniously arranged to define the upper surface of the object positioning part, isolate the object from the base body, and protect the printing object and the base body.
[0016] Further, the base body side wall is configured with a side wall positioning area concave from the upper side to the lower side, the lining piece is configured with a lining piece coupling part matched with the side wall positioning area, and the object positioning part is defined by the concave lining piece coupling part in the side wall positioning area. The lining piece coupling part is embedded in the side wall positioning area to form a firm connection. This connection mode ensures the close combination of the lining piece and the base body.
[0017] Further, the base body further comprises a supporting base, and the lining piece further comprises a heat-resistant part on the bottom surface of the lining piece base, which is configured to support the pressing surface of the heat press machine.
[0018] Another aspect of the present application is to provide a heat pressing system comprising the heat press machine base of the present application and a heat press machine. The heat press machine comprises a body and a hot plate. The upper end of the body is configured with a portable hand-held part. The hot plate is arranged at the lower part of the body, and the lower end of the hot plate is configured with a pressing surface and a curved pressing part. The curved pressing part is defined by the concave part of the lower end of the hot plate. Since the curved pressing part is concave in the pressing surface, when the user needs to perform heat transfer printing on the curved part, the columnar object that needs to be subjected to curved heat transfer printing can be placed on the object positioning part of the heat press machine base for positioning, and then the heat transfer printing can be realized through the curved pressing part. The heat pressing system of the present application has the functions of placing the heat press machine and positioning the columnar object. The heat press machine can realize plane heat transfer printing operation and curved heat transfer printing operation, has good economy, high overall utilization rate, compact overall design, and is convenient to carry and store.
[0019] Another heat pressing system provided by the application includes the heat press machine base and the heat press machine of the application. The heat press machine includes: a body and a hot plate, the upper end of the body is configured with a portable handheld part, the hot plate is arranged at the lower part of the body, the lower end of the hot plate is configured with a pressing surface and a curved pressing part, the curved pressing part is defined by the recessed part at the lower end of the hot plate; wherein the curved pressing part is arranged at one end of the hot plate in the forward and backward deflection direction of the user's wrist during use of the heat press machine. The design position of the curved pressing part takes into account the wrist movement of the user during use of the heat press machine, and is arranged at one end of the natural deflection of the wrist during operation of the heat press machine, which helps to reduce wrist fatigue caused by long-time operation and makes the operation more ergonomic. Although the curved pressing part is added, since it is arranged at one end of the hot plate, the influence on the operation is minimized when performing planar heat transfer. The user can choose to use the planar or curved pressing part as needed without interfering with each other.
[0020] Another heat pressing system provided by the application includes the heat press machine base and the heat press machine of the application. The heat press machine base includes: a receiving space formed by the inner side space of the side wall for receiving at least part of the lower end of the heat press machine and an object positioning part defined by the recessed part of the side wall from the upper side to the lower side; the side wall has two opposite long sides and end sides arranged at the two ends of the long sides, the object positioning part is arranged on at least one long side of the side wall; an outward convex curved supporting part is configured on the outer surface of at least one end side of the side wall; the heat press machine includes: a body and a hot plate, the upper end of the body is configured with a portable handheld part, the hot plate is arranged at the lower part of the body, the lower end of the hot plate is configured with a pressing surface and a curved pressing part, the curved pressing part is defined by the recessed part at the lower end of the hot plate. The design of the outward convex curved supporting part makes the heat press machine base applicable to supporting curved objects such as the inside of the back of a shoe or the inside of a hat brim at the same time. This design not only optimizes the use of the base, but also significantly improves its adaptability, making the heat pressing system have more flexible and extensive application scenarios.
[0021] Another heat pressing system provided by the application includes the heat press machine base and the heat press machine of the application. The heat press machine base includes: a receiving space formed by the inner side space of the side wall for receiving at least part of the lower end of the heat press machine and an object positioning part defined by the recessed part of the side wall from the upper side to the lower side; the side wall has two opposite long sides and end sides arranged at the two ends of the long sides, the object positioning part is arranged on at least one long side of the side wall; an outward convex curved supporting part is configured on the outer surface of at least one end side of the side wall; the heat press machine includes: a body and a hot plate, the upper end of the body is configured with a portable handheld part, the hot plate is arranged at the lower part of the body, the lower end of the hot plate is configured with a pressing surface and a curved pressing part, the curved pressing part is defined by the recessed part at the lower end of the hot plate; wherein the curved pressing part is arranged at one end of the hot plate in the forward and backward deflection direction of the user's wrist during use of the heat press machine.
[0022] Another technical scheme of the hot pressing system provided in the application comprises the hot press base and the hot press of the application, and the hot press comprises a body and a hot plate, the upper end of the body is configured with a portable handheld part, the body is provided with a control circuit, the hot plate is arranged at the lower part of the body, the lower end of the hot plate is configured with a pressing surface and a curved pressing part, and the curved pressing part is defined by the concave part of the lower end of the hot plate; the hot plate comprises a first hot plate part and a second hot plate part, the lower end of the first hot plate part is configured with the pressing surface, and the second hot plate part is provided with at least the curved pressing part, wherein the curved pressing part is defined by the concave part of the second hot plate part;
[0023] The first hot plate part and the second hot plate part are controlled by respective heating elements, and the control circuit is provided with a control device for starting and stopping the heating state of the first hot plate part and the second hot plate part; or the first hot plate part and the second hot plate part are controlled by the same heating element. The first hot plate part and the second hot plate part are in a split structure, which facilitates separate processing and manufacturing, and can also be controlled by zones according to requirements. BRIEF DESCRIPTION OF DRAWINGS
[0024] Fig. 1 is a perspective view of the hot press base of the application
[0025] Fig. 2 is a perspective view of the hot press base of the application
[0026] Fig. 3 is a perspective view of the hot press base of the application from the bottom
[0027] Fig. 4 is a top view of the hot press base of the application
[0028] Fig. 5 is a perspective view of the hot press base of the application from the side
[0029] Fig. 6 is a perspective view of the second embodiment of the hot press base of the application
[0030] Fig. 7 is a perspective view of the third embodiment of the hot press base of the application
[0031] Fig. 8 is an exploded view 1 of the third embodiment of the hot press base of the application
[0032] Fig. 9 is an exploded view 2 of the third embodiment of the hot press base of the application
[0033] Fig. 10 is a perspective view of the third embodiment of the hot press base of the application
[0034] Fig. 11 is an exploded view 3 of the third embodiment of the hot press base of the application
[0035] Fig. 12 is an exploded view 4 of the third embodiment of the hot press base of the application
[0036] Fig. 13 is a schematic view of the hot pressing system
[0037] Figure 14 is a diagram of one use state of the press base of the present application
[0038] Figure 15 is a diagram of another use state of the press base of the present application
[0039] Figure 16 is a diagram of the hot press of the present application
[0040] Figure 17 is a diagram of the hot press of the present application from another angle
[0041] Figure 18 is a diagram of the hot press of the present application from a bottom angle
[0042] Figure 19 is a diagram of the hot press of the present application from a front view
[0043] Figure 20 is a diagram of the hot press of the present application from a right view
[0044] Figure 21 is an exploded view of the control circuit of the present application
[0045] Figure 22 is a diagram of the hot plate of the present application
[0046] Figure 23 is a diagram of another scheme of the hot plate of the present application DETAILED DESCRIPTION
[0047] Referring to Figures 1 to 8, the hot press base b comprises a receiving space 600 and an object positioning portion 60; the receiving space 600 is formed by the inner side space of the side wall 6 for receiving at least part of the lower end of the hot press a; the object positioning portion 60 is defined by the downwardly concave portion of the side wall 6 from the upper side. As shown in Figure 13, the lower end of the hot press a is received in the receiving space 600.
[0048] As shown in Figures 14 and 15, taking the example of heat transferring graphic elements (such as text, patterns) on the surface of a cup c, the cup c is positioned on the object positioning portion 60, and the graphic elements (not shown) to be heat transferred are arranged on the surface of the cup c, and the curved heat pressing portion 2.1 of the heated portable hot press a is used to heat transfer the graphic elements.
[0049] The object positioning portion 60 of the hot press base b of the present application is configured on the side wall 6 of the hot press base b, and can position a columnar object to be heat transferred on the curved surface, so as to facilitate the user to operate the portable hot press a with the curved heat pressing portion to perform heat transfer operation, increase the function of the hot press base b and the use mode of the portable hot press a with the curved heat pressing portion, and is economical and low in use cost for the user; the overall design of the hot press base b is compact, small in occupied space, and convenient to carry and store.
[0050] In some embodiments, the article positioning portion 60 is arc-shaped, and the projection width of the article positioning portion 60 is 500-800 mm, and the depth is 100-400 mm. The article positioning portion 60 is designed to be arc-shaped, which can better adapt to columnar or other curved surface articles, ensure the positioning effect of the article during the heat transfer printing process, and thus improve the quality of heat transfer printing. At the same time, the arc-shaped design makes the placement and removal of the article more convenient, improving the operation efficiency.
[0051] In some embodiments, the side wall 6 is covered with a lining layer having a flexible attachment surface at least at the position of the article positioning portion 60, and the recessed part of the lining layer defines the article positioning portion 60. The side wall 6 is covered with a lining layer having a flexible attachment surface at the article positioning portion 60, which softly contacts the article, avoids damage to the article, and at the same time provides stability for the positioning of the article by utilizing the flexibility, reduces slippage, and improves the universality of shape and size. The lining layer is made of flexible materials such as silica gel or other existing known materials, which form a flexible attachment surface by utilizing the material properties. Since it has a large contact friction, it can achieve the effect of positioning the article and preventing slipping. Specifically, the lining layer is installed and covered on the side wall 6 to form the article positioning portion 60 by means of connection such as embedding and bonding in the existing technology. In some embodiments, at least the part where the article positioning portion 60 engages with the article is made of flexible material. For example, the surface layer of the article positioning portion 60 is made of flexible material such as silica gel or other suitable known materials. The lining layer can also be multi-layered, such as a flexible material on the surface and other layers made of existing materials such as nylon.
[0052] In the embodiments shown in FIGS. 1-8, the hot press base b is integrally formed from a flexible material. The integral formation of the article positioning portion 60 and the base b seamlessly eliminates the assembly process, improves production efficiency, and ensures the stability between the article positioning portion 60 and the base b. The flexible material can be silica gel or other materials with good heat resistance, structural properties, and stability. Of course, it can also be other existing known flexible materials.
[0053] Referring to FIGS. 1 and 3, the side wall 6 has two opposite long sides 6a and end sides 6b arranged opposite to the two ends of the long sides 6a, and the article positioning portion 60 is arranged opposite to the two long sides 6a of the side wall 6. The article positioning portion 60 is distributed on the longer two sides of the side wall 6, with a relatively small span, reducing the length requirement for placing the article; at the same time, it provides more space for the width selection of the article positioning portion 60.
[0054] In some embodiments, the article positioning portion 60 is arranged on one of the long sides 6a of the side wall 6, as shown in FIG. 15. The article such as a cup is placed on one side of the article positioning portion 60, and the other side is placed on a flat surface, and the article is positioned on one side by the article positioning portion 60.
[0055] In some embodiments, a convexly curved supporting portion 6.1 is configured on the outer surface of the side wall 6. The convexly curved design of the supporting portion 6.1 enables the heat press base b to be used to support curved objects, such as the inside of a shoe heel or a hat brim, etc. This design not only optimizes the use of the base, but also significantly improves its adaptability, making the heat press base b more flexible and widely applicable.
[0056] In the embodiments shown in FIGS. 1-5, the curved supporting portion 6.1 is configured on the end side (6b) of the side wall 6. In the design of the press base b, the curvature of the outer surface of the end side 6b of the side wall 6 is relatively large. Configuring the curved supporting portion 6.1 in this area has little effect on the overall appearance and ingeniously integrates it into the design of the press base b. The curved surface of the supporting portion 6.1 is integrated with the short side curved surface of the side wall 6, meeting the functional requirements and taking into account the aesthetic requirements, so that the press base b achieves a good balance between practicality and aesthetics. One method of use is to insert the heat press base b into a shoe as a whole, with the supporting portion 6.1 abutting against the shoe heel that needs to be heat transferred, and then performing the corresponding heat transfer operation.
[0057] Referring to FIGS. 1, 2 and 4, the inner side of the side wall 6 is configured with a supporting portion 6.3 for supporting the pressing surface 20 of the heat press a. In some embodiments, the supporting portion 6.3 is a stepped structure.
[0058] In some embodiments, one or more lateral guide ribs 6.4 are provided on the upper side of the supporting portion 6.3 of the side wall 6, which are used to limit the position of the heat press plate 2 on the supporting portion 6.3, so as to form a heat dissipation space between the heat press plate 2 and the inner side of the side wall 6, avoiding the accumulation of heat on the side of the heat press plate 2.
[0059] Referring to FIG. 2, the upper surface of the supporting portion 6.3 is configured as a slope with an inner edge higher than an edge close to the side wall 6. The heat press plate 2 is lifted by the highest point of the slope, ensuring that the heat press plate 2 can dissipate heat downward and laterally.
[0060] In some embodiments, a bottom plate 6.5 is configured below the inner side of the supporting portion 6.3, and heat dissipation holes can be configured on the bottom plate 6.5 to improve heat dissipation.
[0061] One or more support feet 6.6 are further configured on the lower end of the heat press base b.
[0062] Referring to FIG. 6, in other embodiments, the upper surface of the supporting portion 6.3 is configured as a plane.
[0063] Referring to Figs. 7-12, in another aspect of the present application, a heat press base b is provided, which includes a receiving space 600 and an article positioning portion 60; the receiving space 600 is formed by the inner side space of the side wall 6 for receiving at least part of the lower end of the heat press a; the heat press base b includes a base body b' and a lining piece 7, the base body b' includes a base body side wall 6', and the lining piece 7 covers at least part of the base body side wall 6'; the article positioning portion 60 is defined by the downwardly recessed portion of the side wall 6, and the lining piece 7 defines at least the upper surface of the article positioning portion 60. The base b' of the heat press base b in this solution is designed in a split piece, which is composed of the base body b' and the lining piece 7. The base body b' serves as a skeleton support, and the lining piece 7 is ingeniously arranged to define the upper surface of the article positioning portion 60, which separates the article from the base body b' and serves to protect the printing substrate and the base body b'.
[0064] Preferably, a material with good heat resistance and certain flexibility is used, such as silica gel or other suitable known materials.
[0065] Referring to Figs. 7-9, the base body b' is configured with a downwardly recessed side wall positioning area 60', and the lining piece 7 includes a lining piece skirt 7.1 covering at least the upper edge of the base body side wall 6' and a lining piece side wall 7.2 covering at least part of the inner side of the base body side wall 6'. The lining piece 7 is configured with a lining layer coupling portion 70 cooperating with the side wall positioning area 60', and the article positioning portion 60 is defined by the recess of the lining layer coupling portion 70 in the side wall positioning area 60'. The lining layer coupling portion 70 is embedded in the side wall positioning area 60', forming a firm connection, which ensures the close combination of the lining piece 7 and the base body b'. The lining piece skirt 7.1 effectively prevents the temperature of the heat press plate 2 from affecting the upper end of the base body side wall 6', avoiding the change of the structural properties and the color of the appearance due to the temperature rise of the material, and ensuring the service life and the aesthetics of the product. In another aspect, the lining piece skirt 7.1 covers the upper edge of the base body side wall 6', which also serves to fix the lining piece 7.
[0066] The base body b' further includes a supporting base 6.3', and the lining piece 7 further includes a lining piece base 7.3 engaged with the supporting base 6.3', which is configured to support the pressing surface 2.1 of the heat press a.
[0067] Referring to Fig. 7, the side wall 6 has two opposite long sides 6a and end sides 6b arranged opposite to the two ends of the long sides 6a, and the article positioning portions 60 are oppositely arranged on the two long sides 6a of the side wall 6. The article positioning portions 60 are distributed on the longer two sides of the side wall 6, with a relatively small span, which reduces the length requirement of the placed article; and at the same time, it provides more space for the width selection of the article positioning portions 60.
[0068] In some embodiments, the article positioning portion 60 is arranged on one of the long sides 6a of the side wall 6. As shown in FIG. 15, an article such as a cup is placed with one side on the article positioning portion 60 and the other side on a flat surface, and the article is positioned on one side by the article positioning portion 60.
[0069] In some embodiments, a convexly curved supporting portion 6.1 is configured on the outer surface of the side wall 6. The convexly curved design of the supporting portion 6.1 allows the heat press base b to be used to support curved articles such as the back of a shoe or the inside of a hat brim. This design not only optimizes the use of the base, but also significantly improves its adaptability, making the heat press base b more flexible and widely applicable.
[0070] The convexly curved supporting portion 6.1 is arranged on the end side 6b of the side wall 6. In the design of the press base b, the curvature of the outer surface of the end side 6b of the side wall 6 is relatively large. The convexly curved supporting portion 6.1 is configured in this area, which has little effect on the overall appearance and is ingeniously integrated into the design of the press base b. The curvature of the supporting portion 6.1 is integrated with the short side curvature of the side wall 6, meeting the functional requirements and also considering the aesthetic requirements, so that the press base b achieves a good balance between practicality and aesthetics. One method of use is to insert the heat press base b into a shoe as a whole, with the supporting portion 6.1 abutting the heel that needs to be heat transferred, and then performing the corresponding heat transfer operation.
[0071] As shown in FIGS. 9 and 10, a bottom plate 6.5 is arranged below the supporting base 6.3'. In some embodiments, the bottom plate 6.5 can be configured with heat dissipation holes to improve heat dissipation.
[0072] One or more support feet 6.6 are also configured at the lower end of the heat press base b.
[0073] In one embodiment, the lining piece 7 is made of a heat-resistant material such as silica gel or other existing known materials.
[0074] In one embodiment, the supporting base 6.3' is configured with one or more, such as eight, lining piece connecting through holes 6.31' as shown in FIGS. 9 to 12, and the lining piece base 7.3 is provided with a corresponding number of embedded lining piece connecting portions 7.31. The lining piece connecting portions 7.31 are embedded in the corresponding lining piece connecting through holes 6.31' to connect the lining piece 7 to the base b'.
[0075] In some embodiments, the lining piece 7 is integrally formed from silica gel. With this scheme, the lining piece connecting portions 7.31 have a certain flexibility, and the lining piece connecting portions 7.31 are embedded in the corresponding lining piece connecting through holes 6.31' for easier and faster installation.
[0076] Referring to FIGS. 9-10, in some embodiments, the gasket coupling portion 70 is configured with a limiting groove 701 on the lower side, and the side wall positioning area 60' is correspondingly configured with a limiting sheet 601', which is inserted into the limiting groove 701, so that the limiting cooperation between the gasket coupling portion 70 and the side wall positioning area 60' is increased.
[0077] Referring to FIGS. 7, 9, 11 and 12, the lower side of the base b' is provided with a support foot insertion slot 6.6' for installing a support foot 6.6, the support foot 6.6 is embeddedly installed in the support foot insertion slot 6.6' and protrudes from the lower end of the support foot insertion slot 6.6'. The support foot 6.6 is optionally made of silica gel, and can also be made of other known suitable materials.
[0078] In some embodiments, the gasket connecting through hole 6.31' is arranged at a position corresponding to the top wall of the support foot insertion slot 6.6', so that the gasket connecting portion 7.31 can be hidden in the support foot insertion slot 6.6', improving the appearance of the product.
[0079] Referring to FIGS. 13, 15-17, the first embodiment of the hot pressing system of the present application includes a hot press a and a hot press base b of the present application; the hot press a includes a body 1 and a hot plate 2, the upper end of the body 1 is configured with a portable handheld portion 1.1, the hot plate 2 is arranged at the lower part of the body 1, and the lower end of the hot plate 2 is configured with a pressing surface 20 and a curved pressing portion 2.1, the curved pressing portion 2.1 is defined by the concave part of the lower end of the hot plate 2.
[0080] By improving the hot press base b, the functions of arranging the hot press a and positioning the columnar object are integrated, and by improving the hot press a, the curved pressing portion 2.1 is arranged on the hot plate 2, the hot pressing system of the present application realizes the expansion of functions and the improvement of use experience, and meets the diversified transfer printing needs of the market.
[0081] The hot press a has a dual thermal transfer printing function, that is, by ingeniously designing an inner concave curved pressing portion 2.1 on the hot plate 2, not only the traditional planar thermal transfer printing is supported, but also the transfer printing needs of curved or arc surfaces are met, thereby significantly enhancing the versatility and practicality of the equipment. By integrating the planar and curved thermal transfer printing functions in one device, the hot press a not only has high economy, but also improves the overall utilization rate.
[0082] Referring to FIGS. 15 and 21, the curved pressing portion 2.1 is integrally formed on the hot plate 2, such as by die casting or machining.
[0083] Referring to Fig. 21, the heat plate 2 generally comprises a heat base plate 2a and a heat generating element 2b, the heat base plate 2a can be made of aluminum material, the heat generating element 2b can be made of a heat pipe, the heat generating element 2b and the heat base plate 2a are configured together by die casting. The above-mentioned heat plate 2 structure is known in the art, in addition to the above-mentioned materials, the heat plate 2 can also be made of other suitable materials and processes known in the art.
[0084] Referring to Fig. 18, in some embodiments, the body 1 comprises a base body 1' and a connecting seat 4, the heat plate 2 is connected to the connecting seat 4 and then integrally connected to the base body 1' (such as by screw connection).
[0085] Referring to Fig. 18, in some embodiments, a heat insulation part 201 is arranged between the heat plate 2 and the connecting seat 4, the heat insulation part 201 can comprise one or more layers of heat insulation material. The heat insulation material is known in the art.
[0086] Referring to Figs. 15, 16, 18 and 20, in an embodiment, the body 1 is provided with a control circuit 3, the control circuit 3 comprises control devices 31, the control devices 31 are at least indirectly electrically connected to the heat plate 3, the control devices 31 are used to realize function selection, such as power switch, setting, gain, loss, etc., the part of control implementation means, such as by inputting relevant signals through the control devices 31, controlling the working state of the heat plate 3 through the control circuit 3, etc. are existing. Of course, in some known applications, an external control terminal can be used instead of the control devices 31, such as a mobile terminal, an app, etc. As shown in one example in the drawings, 311 is a gain control device, 312 is a loss control device, 313 is a setting control device, and 314 is a power control device. For example, after turning on through 314, the temperature setting is selected through 313 control device, the temperature of the heat plate 3 can be increased through 311 gain control device, and the temperature of the heat plate 3 can be reduced through 312 loss control device. Of course, the configuration of the above-mentioned control devices 311 to 314 is only one embodiment of the present application, and the specific number and function setting can be implemented according to the needs.
[0087] One of the control devices 311 to 314 is a commonly used push switch control in the art; of course, other suitable control devices known in the art can also be selected.
[0088] In an embodiment, the holding part 1.1 is adjacent to the position, such as the front side, is provided with the operation part 311', the operation part 312', the operation part 313', and the operation part 314' for operating the control device 31. In the embodiment shown in FIG. 20, the operation part 311', the operation part 312', the operation part 313', and the operation part 314' are arranged on the operation piece 31', and at least the operation part 311', the operation part 312', the operation part 313', and the operation part 314' of the operation piece 31 are arranged as flexible parts to enable the user to press the control device 31 through the above-mentioned parts. One arrangement of the operation piece 31 can be made of a flexible material as a whole, such as silicone.
[0089] Generally, the circuit part further comprises a master control circuit, which part of the circuit is used to control the power output of the hot plate 3, such as through a thyristor control, and the working principle of this part of the control circuit is of course existing. In this application, the master control circuit can be arranged separately from the control circuit 3, that is, the master control circuit is arranged on a separate circuit board, the control circuit 3 is electrically connected to the master control circuit board, the master control circuit is electrically connected to the hot plate 3, and the control circuit 3 and the master control circuit board can be physically separated or connected, such as through a connecting member. The master control circuit can also be integrated on the control circuit 3, such as on the other side or the same side of the control circuit 3, and the technical means of such circuit integration is of course existing.
[0090] Referring to FIG. 20, in an embodiment, the outer side of the operation piece 31 is provided with a connecting cover 321, and the connecting cover 321 is provided with a hole structure for mounting the operation piece 31, and the operation piece 31 is connected to the body 1 through the connecting cover 321.
[0091] Referring to FIG. 20, in an embodiment, the control circuit 3 is provided with a display module 3.1, such as a digital screen, a capacitive screen, etc., for displaying the working state of the device, such as temperature, setting parameters, etc. The connecting cover 321 covers the outer side of the display module 3.1, and the part corresponding to the display module 3.1 can be transparent to the working light, that is, at least when the display module 3.1 is working, the user can observe the information of the display module 3.1 from the connecting cover 321, and this kind of transparent way belongs to the existing technology.
[0092] Referring to FIGS. 13, 15 to 21, the second embodiment of the hot pressing system of the present application comprises a hot press a and the hot press base b of the present application; the hot press a comprises: a body 1 and a hot plate 2, the upper end of the body 1 is configured with a holding part 1.1, the hot plate 2 is arranged at the lower part of the body 1, and the lower end of the hot plate 2 is configured with a pressing surface 20 and a curved pressing part 2.1, the curved pressing part 2.1 is defined by the concave part of the lower end of the hot plate 2; wherein the curved pressing part 2.1 is arranged at one end of the hot plate 2 in the direction of the wrist deflection of the user before and after the hot press is used.
[0093] The design position of the curved pressing part 2.1 in this embodiment takes into account the wrist action of the user when using the heat press machine, and is arranged at the end where the wrist naturally deflects when the user operates the heat press machine, which helps to reduce wrist fatigue caused by long-time operation, makes the operation more ergonomic, and further optimizes the user experience. Although the curved pressing part 2.1 is added, since it is arranged at one end of the hot plate 2, the impact on the operation is minimized when performing planar heat transfer printing. The user can choose to use the planar or curved pressing part 2.1 as needed without interfering with each other.
[0094] In some embodiments, the position of the body 1 corresponding to the curved pressing part 2.1 (the position marked as 4.10 in FIG. 19) is recessed. Using the above scheme, the product structure is more compact.
[0095] Referring to FIGS. 15-21, in some embodiments, the curved pressing part 2.1 is configured at the rear end of the user's wrist forward and backward turning direction when the hot plate 2 is in use. The curved pressing part 2.1 is arranged at the rear of the hot plate 2, which design can minimize the impact on the pressing surface 20 during regular use, ensure that there is almost no interference when performing regular planar heat transfer printing, and also takes into account the overall appearance of the device. Through this design, the functionality and aesthetics of the heat press machine are well balanced, providing users with a smoother and more efficient working experience.
[0096] Referring to FIGS. 15 and 18, the power supply line L connected at least indirectly with the hot plate 2 is arranged on the rear side of the body 1 and above the curved pressing part 2.1. The power supply line L is arranged on the rear side of the body 1 and above the curved pressing part 2.1, which layout is convenient for power connection, and since the curved pressing part 2.1 is cleverly designed at the rear of the hot plate 2, such position selection has little impact on the daily use and overall appearance of the product.
[0097] Referring to FIGS. 15 and 18, the body 1 is provided with an avoidance area 100 extending through the left and right sides, and the top wall of the avoidance area 100 and the upper end surface of the body 1 constitute at least part of the portable handheld part 1.1.
[0098] In other embodiments, one end of the portable handheld part is open, and the portable handheld part is provided with an avoidance area extending through the left and right sides of the body 1, and the top wall of the avoidance area and the upper end surface of the body constitute at least part of the portable handheld part.
[0099] Referring to FIGS. 15 and 18, at least the upper end surface of the body 1 is provided with an arc-shaped surface extending in the forward and backward turning direction of the user's wrist. With the above structure, it is convenient for the user to use and improve the operation feeling.
[0100] Referring to FIG. 1, FIG. 6, FIG. 13, FIG. 15 to FIG. 21, the third embodiment of the heat pressing system of the present application is described, which is different from the first or second embodiment in that the heat press base b comprises a receiving space 600 formed by the inner space of the side wall 6 for receiving at least part of the lower end of the heat press and an object positioning part 60 defined by the downwardly recessed part of the side wall 6. The side wall 6 has two opposite long sides 6a and end sides 6b arranged at the two ends of the long sides 6a, and the object positioning part 60 is arranged on at least one of the long sides 6a of the side wall 6. An outwardly convex curved supporting part 6.1 is configured on the outer surface of at least one of the end sides 6b of the side wall 6. The outwardly convex curved design of the supporting part 6.1 allows the heat press base b to be used to support curved objects such as the inside of the back of a shoe or the inside of a hat brim. This design not only optimizes the use of the base, but also significantly improves its adaptability, making the heat press base b more flexible and widely applicable.
[0101] Referring to FIG. 1, FIG. 6, FIG. 13, FIG. 15 to FIG. 21, the fourth embodiment of the heat pressing system of the present application is described, which is different from the third embodiment in that the curved pressing part (2.1) is arranged at one end of the heat plate (2) in the direction of the user's wrist deflection before and after the heat press is used. This improvement helps to reduce wrist fatigue caused by long-time operation and makes the operation more ergonomic.
[0102] Referring to FIG. 1, FIG. 6, FIG. 13, FIG. 15 and FIG. 23, the fifth embodiment of the heat pressing system of the present application is described, which is different from the first four embodiments in that the heat plate 2 comprises a first heat plate part 20' and a second heat plate part 2.1'. The lower end of the first heat plate part 20' is provided with a pressing surface 20, and the second heat plate part 2.1' is provided with at least a curved pressing part 2.1, wherein the curved pressing part 2.1 is defined by the recessed part of the second heat plate part 2.1'.
[0103] Regarding the heating of the first heat plate part 20' and the second heat plate part 2.1', it can be controlled by the respective heating elements arranged and controlled by the control circuit 3. The control circuit 3 is provided with control devices for starting and stopping the heating state of the first heat plate part 20' and the second heat plate part 2.1'. In other embodiments, the first heat plate part 20' and the second heat plate part 2.1' are controlled by the same heating element. The first heat plate part 20' and the second heat plate part 2.1' are separately configured, which facilitates separate processing and manufacturing, and can also be controlled by zones according to needs.
[0104] Referring to FIG. 17 and FIG. 18, other improvements of the heat press machine a of the present application also include that the curved pressing part 2.1 extends along the front end of the heat plate 2 and intersects with the pressing surface 20 at an angle, so that the vertex 2.11 of the outer end of the curved pressing part 2.1 is higher than the intersection point of the inner end with the pressing surface 20 (the position marked by 2.12 in FIG. 18). In this way, when the curved pressing part 2.1 moves relative to the arc-shaped part of the printing material, the printing material avoids the curved pressing part 2.1 by moving at an angle to the pressing surface 20, thereby avoiding interference with the movement of the curved pressing part 2.1.
[0105] Referring to FIG. 17 to FIG. 19, the curved pressing part 2.1 has the same curvature. The curved pressing part 2.1 adopts a unified curvature design, which ensures close contact during heat transfer printing. At the same time, the smooth curve makes the movement more smooth and reduces the operation resistance. In addition, the curved pressing part with the same curvature also simplifies the processing and manufacturing process, improves the production efficiency, and brings convenience to the manufacturers.
[0106] The technical effects of the technical features among the embodiments of the present application can be mutually referenced and combined.
[0107] According to the disclosure and teaching of the above description, the skilled in the art of the present application can also change and modify the above embodiments, and the present application is not limited to the specific embodiments disclosed and described above. Some modifications and changes of the present application should also fall within the protection scope of the claims of the present application.
Claims
1. Hot press base (b) characterized in that, The utility model relates to a heat press machine base (b) and a heat press machine base (b) of heat press machine, and it is characterized by comprising: The receiving space (600) for receiving the lower end of the heat press machine is formed by the space inside the side wall (6); The article positioning part (60) is defined by the concave part of the side wall (6) from the upper side to the lower side.
2. Hot press bed (b) according to claim 1, characterized in that The article positioning part (60) is arc-shaped.
3. Hot press bed (b) according to claim 1, characterized in that The side wall (6) is covered with a lining layer with a flexible attachment surface at least at the part of the article positioning part (60), and the lining layer defines the article positioning part (60) by the concave part.
4. Hot press bed (b) according to claim 3, characterized in that At least the part of the article positioning part (60) that is in contact with the article is made of a flexible material; alternatively, the heat press machine base (b) is integrally formed of a flexible material.
5. Hot press bed (b) according to claim 3, characterized in that The support part (6.3) for supporting the pressing surface of the heat press machine is arranged on the inner side of the side wall (6), and the upper surface of the support part (6.3) is configured to have an inner edge higher than the edge close to the side wall (6).
6. The hot press platen (b) of claim 1, wherein The side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on at least one of the long sides (6a) of the side wall (6); Alternatively, the side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on both of the long sides (6a) of the side wall (6).
7. Hot press base (b) according to claim 6, characterized in that The convex curved supporting part (6.1) is arranged on the outer surface of the side wall (6).
8. Hot press base (b) according to claim 7, characterized in that The curved supporting part (6.1) is arranged on the end side (6b) of the side wall (6).
9. Hot press base (b) characterized in that, The utility model relates to a heat press machine base (b) and a heat press machine base (b) of heat press machine, and it is characterized by comprising: The receiving space (600) for receiving the lower end of the heat press machine is formed by the space inside the side wall (6); The article positioning part (60) is defined by the concave part of the side wall (6) from the upper side to the lower side.
10. Hot press bed (b) according to claim 9, characterized in that The article positioning part (60) is arc-shaped.
11. Hot press bed (b) according to claim 10, characterized in that The side wall (6) is covered with a lining layer with a flexible attachment surface at least at the part of the article positioning part (60), and the lining layer defines the article positioning part (60) by the concave part. At least the part of the article positioning part (60) that is in contact with the article is made of a flexible material; alternatively, the heat press machine base (b) is integrally formed of a flexible material. The support part (6.3) for supporting the pressing surface of the heat press machine is arranged on the inner side of the side wall (6), and the upper surface of the support part (6.3) is configured to have an inner edge higher than the edge close to the side wall (6). The side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on at least one of the long sides (6a) of the side wall (6); Alternatively, the side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on both of the long sides (6a) of the side wall (6). The convex curved supporting part (6.1) is arranged on the outer surface of the side wall (6). The curved supporting part (6.1) is arranged on the end side (6b) of the side wall (6). The utility model relates to a heat press machine base (b) and a heat press machine base (b) of heat press machine, and it is characterized by comprising: The receiving space (600) for receiving the lower end of the heat press machine is formed by the space inside the side wall (6); The article positioning part (60) is defined by the concave part of the side wall (6) from the upper side to the lower side. The article positioning part (60) is arc-shaped. The side wall (6) is covered with a lining layer with a flexible attachment surface at least at the part of the article positioning part (60), and the lining layer defines the article positioning part (60) by the concave part. At least the part of the article positioning part (60) that is in contact with the article is made of a flexible material; alternatively, the heat press machine base (b) is integrally formed of a flexible material. The support part (6.3) for supporting the pressing surface of the heat press machine is arranged on the inner side of the side wall (6), and the upper surface of the support part (6.3) is configured to have an inner edge higher than the edge close to the side wall (6). The side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on at least one of the long sides (6a) of the side wall (6); Alternatively, the side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite to the two ends of the long sides (6a), and the article positioning part (60) is arranged on both of the long sides (6a) of the side wall (6). The convex curved supporting part (6.1) is arranged on the outer surface of the side wall (6). The curved supporting part (6.1) is arranged on the end side (6b) of the side wall (6).
12. The hot press platen (b) of claim 9, wherein, The side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite at both ends of the long sides (6a), and the article positioning part (60) is arranged on at least one long side (6a) of the side wall (6); Or, the side wall (6) has two opposite long sides (6a) and end sides (6b) arranged opposite at both ends of the long sides (6a), and the article positioning part (60) is provided with two article positioning parts (60) arranged opposite on the two long sides (6a) of the side wall (6).
13. The hot press base (b) according to claim 12, characterized in that An outwardly convex curved surface-shaped supporting part (6.1) is arranged on the outer surface of the side wall (6); Or, an outwardly convex curved surface-shaped supporting part (6.1) is arranged on the outer surface of the side wall (6), and the curved surface-shaped supporting part (6.1) is arranged on the end side (6b).
14. Hot pressing system, characterized in that Comprising: The hot press base (b) of any one of claims 1 to 13; The hot press (a) comprises a body (1) and a hot plate (2), the upper end of the body (1) is provided with a portable handheld part (1.1), the hot plate (2) is arranged at the lower part of the body (1), and the lower end of the hot plate (2) is provided with a pressing surface (20) and a curved pressing part (2.1), the curved pressing part (2.1) is defined by the concave part at the lower end of the hot plate (2).
15. Hot pressing system, characterized in that Comprising: The hot press base (b) of any one of claims 1 to 13; The hot press (a) comprises a body (1) and a hot plate (2), the upper end of the body (1) is provided with a portable handheld part (1.1), the hot plate (2) is arranged at the lower part of the body (1), and the lower end of the hot plate (2) is provided with a pressing surface (20) and a curved pressing part (2.1), the curved pressing part (2.1) is defined by the concave part at the lower end of the hot plate (2); wherein the curved pressing part (2.1) is arranged at one end of the hot plate (2) in the direction of the wrist deflection of the user during use of the hot press.
16. Hot pressing system, characterized in that Comprising: The hot press base (b) of any one of claims 1 to 13; The hot press (a) comprises a body (1) and a hot plate (2), the upper end of the body (1) is provided with a portable handheld part (1.1), the hot plate (2) is arranged at the lower part of the body (1), and the lower end of the hot plate (2) is provided with a pressing surface (20) and a curved pressing part (2.1), the curved pressing part (2.1) is defined by the concave part at the lower end of the hot plate (2).
17. Hot pressing system, characterized in that Comprising: The hot press base (b) comprises: a receiving space (600) formed by the inner space of the side wall (6) for receiving at least part of the lower end of the hot press and an object positioning part (60) defined by the downwardly recessed part of the side wall (6); the side wall (6) has two opposite long sides (6a) and end sides (6b) arranged at the two ends of the long sides (6a), and the object positioning part (60) is arranged on at least one long side (6a) of the side wall (6); the outer surface of at least one end side (6b) of the side wall (6) is configured with an outwardly convex curved supporting part (6.1); The hot press (a) comprises: a body (1) and a hot plate (2), the upper end of the body (1) is configured with a portable hand-held part (1.1), the hot plate (2) is arranged at the lower part of the body (1), and the lower end of the hot plate (2) is configured with a pressing surface (20) and a curved pressing part (2.1), the curved pressing part (2.1) is defined by the recessed part of the lower end of the hot plate (2); wherein the curved pressing part (2.1) is arranged at one end of the hot plate (2) in the forward and backward deflection direction of the user's wrist during use of the hot press.
18. Hot pressing system, characterized in that Comprise: The hot press base (b) of any one of claims 1 to 13; The hot press (a) comprises: a body (1) and a hot plate (2), the upper end of the body (1) is configured with a portable hand-held part (1.1), the body (1) is configured with a control circuit (3), the hot plate (2) is arranged at the lower part of the body (1), and the lower end of the hot plate (2) is configured with a pressing surface (20) and a curved pressing part (2.1), the curved pressing part (2.1) is defined by the recessed part of the lower end of the hot plate (2); the hot plate (2) comprises a first hot plate part (20') and a second hot plate part (2.1'), the lower end of the first hot plate part (20') is configured with a pressing surface (20), and the second hot plate part (2.1') is configured with at least a curved pressing part (2.1), wherein the curved pressing part (2.1) is defined by the recessed part of the second hot plate part (2.1'); Wherein the first hot plate part (20') and the second hot plate part (2.1') are controlled by respective heating elements, and the control circuit (3) is configured with a control device for starting and stopping the heating state of the first hot plate part (20') and the second hot plate part (2.1'); or, the first hot plate part (20') and the second hot plate part (2.1') are controlled by the same heating element.
Citation Information
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