Heat press machine
By designing a concave curved pressing part on the hot plate of the hot press, the problem of needing two machines to process the heat transfer of flat and curved parts in the existing technology is solved, realizing the dual heat transfer function of the same machine, improving the versatility and utilization of the machine, and optimizing the user experience.
Patent Information
- Application Number
- PCT/CN2025/099731
- 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
Existing hot presses require two separate machines to handle heat transfer on flat and curved surfaces, resulting in high costs and low utilization.
A concave curved pressing part is designed on the hot plate of the hot press. By combining the flat and curved pressing parts, heat transfer printing can be achieved on flat and curved parts.
It enables dual heat transfer functions on both flat and curved surfaces using the same device, improving the device's versatility and usability, reducing user fatigue, and optimizing the user experience.
Smart Images

Figure CN2025099731_11122025_PF_FP_ABST
Abstract
Description
Hot press TECHNICAL FIELD
[0001] The utility model relates to hot transfer equipment technical field, concretely relates to hot press, especially can be applicable to the printing material plane part and arc part. BACKGROUND
[0002] The hot press related in the application is a kind of equipment by the heat of hot plate assembly, user applies pressure and transfers the layer on transfer paper to the printing material on top, generally including holding portion and hot press plate component, and user controls hot press by holding portion.The existing this kind of hot press such as CN218020701U disclosed hot press, the hot press surface of the hot press plate component is plane, only applicable to the hot transfer of printing material plane part, not applicable to the hot transfer of arc part, and user needs to purchase another hot press with concave arc surface as hot press surface to complete the hot transfer of printing material arc part, leading to cost increase;In addition, the frequency of use of the hot press with arc hot press surface is much less than that of the hot press with plane hot press surface for general user, so the utilization rate of the hot press with arc hot press surface is low.
[0003] This part does not mean all the prior art. SUMMARY
[0004] This part provides the general overview of the present application, but is not the full disclosure of all the scope or all the features of the features.
[0005] The purpose of the present application is to overcome the problem that printing material plane part and arc part need to be realized by two hot presses in prior art, leading to high cost and low overall utilization, and a scheme of the present application is to solve the problem by configuring concave curved pressing part on pressing surface.
[0006] The hot press provided by one aspect of the present application includes body, holding portion and hot plate;The holding portion is constructed on the body, and the hot plate is constructed on the lower part of the body, and is constructed with pressing surface and at least one curved pressing part, wherein the at least one curved pressing part is defined by the concave part of the lower end of the hot plate.
[0007] Compared with prior art, the hot press of the present application adds concave curved pressing part on hot plate, and has the following technical effects:
[0008] Double hot transfer function: by ingeniously designing a concave curved pressing part on hot plate, the hot press not only supports traditional plane hot transfer, but also meets the transfer requirement of curved or arc surface, thereby significantly enhancing the versatility and practicability of the equipment.
[0009] Optimization of user experience: the design position of the curved pressing part takes into account the wrist action of the user when using the heat press, and is arranged at the end where the wrist naturally deflects when the user operates the heat press, which helps to reduce wrist fatigue caused by long-time operation, and makes the operation more ergonomic.
[0010] Little impact on flat heat transfer operation: although the curved pressing part is added, since it is arranged at one end of the heat plate, the design minimizes the impact on the operation when performing flat heat transfer. Users can choose to use flat or curved pressing parts as needed without interfering with each other.
[0011] Economy and utilization rate: by integrating flat and curved heat transfer functions in one device, the heat press of the present application not only has high economy, but also improves overall utilization rate, meeting the diversified transfer needs of the market.
[0012] In summary, by arranging the curved pressing part at one end of the heat plate, the heat press of the present application successfully realizes the expansion of functions and the improvement of user experience.
[0013] By arranging at least one curved pressing part concave in the pressing surface structure, when the user needs to perform heat transfer on the arc-shaped part, the curved pressing part can be used to achieve it, so that the heat press of the present application realizes flat heat transfer and curved heat transfer, has good economy and high overall utilization rate.
[0014] In some examples, the at least one curved pressing part is communicated with the side of the heat plate. Since the at least one curved pressing part is communicated with the side of the heat plate, the curved pressing part can move relative to the arc-shaped part of the printed material during operation, so as not to be limited by the size of the curved pressing part.
[0015] In some examples, the at least one curved pressing part is communicated with the side of the heat plate and arranged at an angle relative to the pressing surface, so that the vertex of the outer end of the curved pressing part is higher than the intersection point of the inner end and the pressing surface. In this way, when the curved pressing part moves relative to the arc-shaped part of the printed material, the printed material is avoided to interfere with the movement of the curved pressing part by being at an angle relative to the pressing surface.
[0016] In some examples, the at least one curved pressing part is communicated with the side of the heat plate and arranged at an angle relative to the pressing surface, and the height of the curved pressing part relative to the pressing surface has an overall increasing trend from the inner side to the outer side. By adopting the above scheme, the surface of the curved pressing part has an increasing trend, and the user can control the heat press to bias the curved pressing part within an angle range during operation, which does not interfere with the pressing surface and is convenient to operate and use.
[0017] In some examples, the at least one curved pressing part is communicated with the side of the heat plate and arranged at an angle relative to the pressing surface, and the surface of the curved pressing part has the same curvature.
[0018] In some examples, the curved pressing part is arranged at the rear of the hot plate and communicates with the rear end.
[0019] In some examples, two ends of the at least one curved pressing part respectively communicate with the side of the hot plate.
[0020] Further, the position of the curved pressing part on the body is concave. With the above-mentioned solution, the product structure is more compact.
[0021] Further, the curved pressing part is arranged at one end of the hot plate in the direction of the wrist of the user before and after the turning, preferably, the curved pressing part is arranged at the rear end of the hot plate in the direction of the wrist of the user before and after the turning. The curved pressing part is arranged at the rear of the hot plate, which can minimize the impact on the pressing surface in daily use, ensure that the regular planar heat transfer is almost not disturbed, and also consider the overall appearance of the equipment. Through this design, the functionality and aesthetics of the heat press are well balanced, providing users with a smoother and more efficient work experience.
[0022] Further, the body is provided with an avoiding area penetrating through the left and right side edges, the top wall of the avoiding area and the upper end surface of the body constitute at least part of the holding part; or, one end of the holding part is open, and the holding part is provided with an avoiding area penetrating through the left and right side edges of the body, the top wall of the avoiding area and the upper end surface of the body constitute at least part of the holding part.
[0023] Further, at least the upper end surface of the body is provided with an arc-shaped surface extending in the direction of the wrist of the user before and after the turning. With the above-mentioned structure, the user can use it more conveniently and improve the operation feeling.
[0024] Further, the curved pressing part is integrally formed on the hot plate.
[0025] Further, the curved pressing part extends in the direction of the front end of the hot plate and intersects with the pressing surface at an angle, so that the vertex of the outer end of the curved pressing part is higher than the intersection point of the inner end and the pressing surface.
[0026] Further, the curved pressing part has the same curvature. The curved pressing part adopts a unified curvature design, which ensures the close contact during heat transfer. 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 manufacturer.
[0027] Another aspect of the present application provides a heat press, comprising: a body, a holding part and a heat pressing plate component;
[0028] The holding part is arranged on the upper part of the body; the hot-pressing plate part is arranged on the lower part of the body and comprises a hot plate; the hot plate is arranged with a pressing surface and a curved pressing surface; the curved pressing surface is defined by the concave part at the lower end of the hot plate; the curved pressing surface is arranged on the rear part of the hot plate and communicates with the side part of the hot plate; and the curved pressing surface extends along the front end direction of the hot plate and intersects with the pressing surface. Since the curved pressing surface is arranged on the rear part of the hot plate, the interference and influence on the most common movement of the pressing surface forward and sideways during use are minimized; on the other hand, the power cord of the hot press is generally arranged on the lower part of the rear side of the body, and the arrangement of the curved pressing surface on the rear part of the hot plate has little influence on the appearance and use of the product.
[0029] The hot press provided by another aspect of the present application comprises a body, a holding part and a hot-pressing plate part.
[0030] The holding part is arranged on the upper part of the body; the hot-pressing plate part is arranged on the lower part of the body and comprises a hot plate; the hot plate is arranged with a pressing surface and a curved pressing surface; the curved pressing surface is defined by the concave part at the lower end of the hot plate; the curved pressing surface is arranged on the rear part of the hot plate and communicates with the side part of the hot plate; and the curved pressing surface extends along the front end direction of the hot plate and intersects with the pressing surface. Since the curved pressing surface is arranged on the rear part of the hot plate, the interference and influence on the most common movement of the pressing surface forward and sideways during use are minimized; on the other hand, the power cord of the hot press is generally arranged on the lower part of the rear side of the body, and the arrangement of the curved pressing surface on the rear part of the hot plate has little influence on the appearance and use of the product.
[0031] The hot press provided by another aspect of the present application comprises a body, a holding part and a hot-pressing plate part.
[0032] The holding part is arranged on the upper part of the body; the hot-pressing plate part is arranged on the lower part of the body and comprises a hot plate; the hot plate is arranged with a pressing surface and a curved pressing surface; the curved pressing surface is defined by the concave part at the lower end of the hot plate; the curved pressing surface is arranged on the rear part of the hot plate and communicates with the side part of the hot plate; and the curved pressing surface extends along the front end direction of the hot plate and intersects with the pressing surface. Since the curved pressing surface is arranged on the rear part of the hot plate, the interference and influence on the most common movement of the pressing surface forward and sideways during use are minimized; on the other hand, the power cord of the hot press is generally arranged on the lower part of the rear side of the body, and the arrangement of the curved pressing surface on the rear part of the hot plate has little influence on the appearance and use of the product.
[0033] The hot press provided by another aspect of the present application comprises a body, a holding part and a hot-pressing plate part, the holding part is arranged on the upper part of the body; the hot-pressing plate part is arranged on the lower part of the body and comprises a hot plate and a heat-insulating part; the hot plate is arranged with a pressing surface and a curved pressing surface; at least one curved pressing surface is defined by the concave part at the lower end of the hot plate, and the two ends of the curved pressing surface communicate with the side part of the hot plate.
[0034] In another aspect, the hot press comprises a body, a holding portion configured on an upper portion of the body, and a hot plate configured on a lower portion of the body. The hot plate comprises a first hot plate portion and a second hot plate portion. The first hot plate portion is configured with a pressing surface at a lower end thereof, and the second hot plate portion is configured with a curved pressing portion. The curved pressing portion is defined by a concave portion of the second hot plate portion. The hot plate is configured by the first hot plate portion and the second hot plate portion, which facilitates separate manufacturing.
[0035] The first hot plate portion and the second hot plate portion can be configured with heating elements and controlled by a control circuit. The control circuit is configured with a controller for starting and stopping the heating of the first hot plate portion and the second hot plate portion. In other embodiments, the first hot plate portion and the second hot plate portion are controlled by the same heating element. The first hot plate portion and the second hot plate portion are configured separately, which facilitates separate manufacturing and allows for zoned control.
[0036] In some examples, the second hot plate portion is configured at a rear portion or a side portion of the first hot plate portion.
[0037] In some examples, the curved pressing portion is configured at a rear side of the second hot plate portion, and the curved pressing portion is configured at an angle relative to the pressing surface, with an outer end of the curved pressing portion being higher than the pressing surface.
[0038] The details of one or more implementations are set forth in the accompanying drawings and the description below. Other aspects, features, and advantages will become apparent from the description, the drawings, and the claims. BRIEF DESCRIPTION OF DRAWINGS
[0039] FIG. 1 is a perspective view of a hot press according to an embodiment of the disclosure.
[0040] FIG. 2 is another perspective view of the hot press according to an embodiment of the disclosure.
[0041] FIG. 3 is a third perspective view of the hot press according to an embodiment of the disclosure.
[0042] FIG. 4 is a front view of the hot press according to an embodiment of the disclosure.
[0043] FIG. 5 is a left view of the hot press according to an embodiment of the disclosure.
[0044] FIG. 6 is an exploded view of a control circuit according to an embodiment of the disclosure.
[0045] FIG. 7 is an exploded view of the hot press according to an embodiment of the disclosure.
[0046] FIG. 8 is a perspective view of a hot plate assembly according to an embodiment of the disclosure.
[0047] FIG. 9 is a cross-sectional view of the hot plate assembly according to an embodiment of the disclosure.
[0048] FIG. 10 is an exploded view of the hot plate assembly according to an embodiment of the disclosure.
[0049] Fig. 11 is a bottom view of a second embodiment of the hot plate
[0050] Fig. 12 is a bottom view of a third embodiment of the hot plate
[0051] Fig. 13 is a bottom view of a fourth embodiment of the hot plate
[0052] Fig. 14 is a bottom view of a fifth embodiment of the hot plate
[0053] Fig. 15 is a bottom view of a sixth embodiment of the hot plate
[0054] Fig. 16 is a schematic view of another embodiment of the hot plate DETAILED DESCRIPTION
[0055] Referring to Figs. 1-7, the hot press provided by one aspect of the present application includes a body 1, a holding portion 1.1 and a hot plate 3; wherein the holding portion 1.1 is configured on the body 1, and the hot plate 3 is configured on the lower portion of the body 1, and is configured with a pressing surface 30 and at least one curved pressing portion 3.1, wherein the at least one curved pressing portion 3.1 is defined by the concave portion at the lower end of the hot plate 3.
[0056] As shown in Figs. 1-7, the hot plate 3 is configured with one curved pressing portion 3.1, of course, in other embodiments, multiple curved pressing portions 3.1 can be configured as needed, such as the size of the pressing surface 30, the need for operation, etc., as shown in Figs. 12 and 14.
[0057] Since the at least one curved pressing portion 3.1 is concave on the pressing surface 30, when the user needs to perform heat transfer printing on the curved portion, it can be achieved through the curved pressing portion 3.1, so that the hot press of the present application realizes the flat heat transfer printing operation and the curved heat transfer printing operation, which is economical and has high overall utilization rate.
[0058] In one embodiment, the curved pressing portion 3.1 is arranged at one end of the hot plate 3 in the direction of the user's wrist deflection before and after use of the hot press. Preferably, the curved pressing portion 3.1 is arranged at the rear end of the hot plate 3 in the direction of the user's wrist deflection when the hot plate 3 is used. The curved pressing portion 3.1 is arranged at the rear of the hot plate 3, which design can minimize the impact on the daily use of the pressing surface 30, ensure that the conventional flat heat transfer printing is almost not disturbed, and also takes into account the overall appearance of the equipment. Through this design, the functionality and aesthetics of the hot press are well balanced, providing users with a smoother and more efficient working experience.
[0059] In some embodiments, the curved pressing portion 3.1 is integrally formed on the hot plate 3, such as by die casting or machining.
[0060] In some embodiments, the body 1 is concave at the position corresponding to the curved pressing portion 3.1. Using the above scheme, the product structure is more compact.
[0061] In some embodiments, the power supply line indirectly connected with the hot plate 3 is arranged on the back side of the body 1 and above the curved pressing part 3.1. The power supply line is arranged on the back side of the body 1 and above the curved pressing part 3.1. Such arrangement is convenient for power connection, and since the curved pressing part 3.1 is ingeniously designed at the back of the hot plate 3, such position selection has little effect on the daily use and overall appearance of the product.
[0062] Referring to FIG. 2, the body 1 is provided with a clearance zone 110 extending through the left and right sides, and the top wall of the clearance zone 110 and the upper end surface of the body 1 are configured to form at least part of the holding portion 1.1.
[0063] In other embodiments, one end of the holding portion is open, and the holding portion is provided with a clearance zone extending through the left and right sides of the body 1, and the top wall of the clearance zone and the upper end surface of the body are configured to form at least part of the holding portion.
[0064] Referring to FIG. 2, at least the upper end surface of the body 1 is provided with an arc-shaped surface extending in the forward and backward flipping direction of the user's wrist. With the above structure, the user can use it conveniently and improve the operation feeling.
[0065] Referring to FIGS. 1, 4 and 6, in one embodiment, the body 1 is provided with a control circuit e, which includes a control device e1 that is at least indirectly electrically connected with the hot plate 3, and the control device e1 is used to realize function selection, such as power switch, setting, gain, loss, etc. The existing part control means, such as inputting relevant signals through the control device e1, controlling the working state of the hot plate 3 through the control circuit e, etc. Of course, in some known applications, an external control terminal can be used instead of the control device e1, such as a mobile terminal, an app, etc. As shown in one example in the drawings, e11 is a gain control device, e12 is a loss control device, e13 is a setting control device, and e14 is a power control device. For example, after turning on through e14, the temperature setting is selected through e13, the temperature of the hot plate 3 can be increased through e11 gain control device, and the temperature of the hot plate 3 can be reduced through e12 loss control device. Of course, the above-mentioned control devices e11 to e14 are only one embodiment of the present application, and the specific number and function setting can be implemented as needed.
[0066] One of the control devices e11 to e14 is a commonly used press switch control; of course, other suitable control devices known in the art can also be selected.
[0067] In one embodiment, the holding portion 1.1 is provided with a control part e11', a control part e12', a control part e13', and a control part e14' adjacent to the position, such as the front side, for controlling the control device e1. In the embodiment shown in Fig. 6, the control part e11', the control part e12', the control part e13', and the control part e14' are arranged on the control member e1', and the control member e1 is provided with at least the control part e11', the control part e12', the control part e13', and the control part e14' as flexible parts to enable the user to press the control device e1 through the above-mentioned parts. One arrangement of the control member e1 can be made of flexible material, such as silicone, as a whole.
[0068] Generally, the circuit portion further comprises a main control circuit, which controls the power output of the hot plate 3, such as through a thyristor, and the working principle of the control circuit is known. In the present application, the main control circuit can be arranged separately from the control circuit e, i.e. the main control circuit is arranged on a separate circuit board, the control circuit e is electrically connected to the main control circuit board, and the main control circuit is electrically connected to the hot plate 3. The main control circuit and the control circuit e can be physically separated or connected, such as through a connecting member. The main control circuit can also be integrated on the control circuit e, such as on the other side or the same side of the control circuit e, and the technical means for such circuit integration is known.
[0069] Referring to Fig. 6, in one embodiment, the outer side of the control member e1 is provided with a connecting cover e21, which is provided with a hole structure for mounting the control member e1, and the control member e1 is connected to the body 1 through the connecting cover e21.
[0070] Referring to Fig. 6, in one embodiment, the control circuit e is provided with a display module e.1, such as a digital screen or a capacitive screen, for displaying the working state of the device, such as the temperature and the setting parameters. The connecting cover e21 covers the outer side of the display module e.1, and the part corresponding to the display module e.1 is transparent to the working light, i.e. at least when the display module e.1 is working, the user can observe the information of the display module e.1 from the connecting cover e21, and such a transparent mode is known in the art.
[0071] The hot plate 3 generally comprises a hot base plate 3a and a heating element 3b. The base plate 3a can be made of aluminum, and the heating element 3b can be a heating tube. The heating element 3b and the base plate 3a are constructed together by die casting. The structure of the hot plate 3 is known in the art, and in addition to the above-mentioned materials, other suitable materials known in the art can also be used.
[0072] In some examples, the at least one curved pressing portion 3.1 is connected to the side of the hot plate 3. As the at least one curved pressing portion 3.1 is connected to the side of the hot plate 3, the curved pressing portion 3.1 can move relative to the curved portion of the printing material during operation, and is not limited by the size of the curved pressing portion 3.1. Referring to FIGS. 1-7, the curved pressing portion 3.1 is connected to the side of the hot plate 3. Of course, in addition to the scheme shown in FIGS. 1-7, which only shows one curved pressing portion 3.1, a person skilled in the art can refer to the manner shown in FIGS. 1-7 to configure two or more curved pressing portions 3.1, as shown in FIGS. 12 and 14.
[0073] In some examples, the at least one curved pressing portion 3.1 is connected to the side of the hot plate 3 and is arranged at an angle relative to the pressing surface 30, such that the vertex 3.11 of the outer end of the curved pressing portion 3.1 is higher than the intersection 3.12 of the inner end of the curved pressing portion 3.1 and the pressing surface 30. In this way, when the curved pressing portion 3.1 moves relative to the curved portion of the printing material, the printing material is angled away from the pressing surface 30 to avoid interfering with the movement of the curved pressing portion 3.1. Referring to FIGS. 1-7, the curved pressing portion 3.1 is connected to the side of the hot plate 3 and is arranged at an angle relative to the pressing surface 30.
[0074] In some examples, the at least one curved pressing portion 3.1 is connected to the side of the hot plate 3 and is arranged at an angle relative to the pressing surface 30, and the height of the curved pressing portion 3.1 relative to the pressing surface 30 has an overall increasing trend from the inner side to the outer side. With the above scheme, the surface of the curved pressing portion 3.1 has an increasing trend, and the user can bias the curved pressing portion 3.1 within a range of angles during operation of the hot press, without interfering with the pressing surface 30 and facilitating operation and use.
[0075] Referring to FIG. 5, in some examples, the at least one curved pressing portion 3.1 is connected to the side of the hot plate 3 and is arranged at an angle relative to the pressing surface 30, and the surface of the curved pressing portion 3.1 has the same curvature. The curved pressing portion 3.1 has the same curvature, and when the curved portion is hot stamped, the fit is good, the movement is smooth, and the processing and manufacturing are facilitated.
[0076] Referring to FIGS. 1-10, in some examples, the curved pressing portion 3.1 is provided at the rear of the hot plate 3 and is connected to the rear end. The curved pressing portion 3.1 is arranged at the rear of the hot plate 3, has less impact on the daily use of the pressing surface 30, and also has less impact on the appearance of the product.
[0077] Referring to FIG. 15, in some examples, the two ends of the curved pressing part 3.1 are respectively communicated with the side of the hot plate 3, and the printed object can be moved relative to the two ends of the curved pressing part 3.1, which is convenient for use and operation. FIG. 15 shows a curved pressing part 3.1 whose two ends are respectively communicated with the side of the hot plate 3; in other embodiments, two or more curved pressing parts 3.1 can be configured as needed; of course, one curved pressing part 3.1 as shown in FIG. 15, and the other curved pressing part 3.1 as shown in FIG. 3, or one or more combinations of the curved pressing parts 3.1 as shown in FIGS. 11-14 can also be configured.
[0078] In addition to the shapes shown in FIGS. 1-12, in some examples of the present application, the curved pressing part 3.1 can also have a special shape, such as the spherical shape shown in FIG. 13. In addition to the spherical shape, it can also be an ellipsoidal shape, and of course it can also be other specific shapes as needed. The number can also be configured to be two or more as needed. Referring to FIG. 14, two curved pressing parts 3.1 are configured, one of which is spherical and the other of which is ellipsoidal. When the curved pressing part 3.1 has a specific shape, the curved pressing part 3.1 serves as a hot pressing working surface of a dedicated specific shape printing part.
[0079] Referring to FIGS. 1-9, another embodiment of the hot press provided by the present application includes: a body 1, a holding part 1.1, and a hot pressing plate component 300; the holding part 1.1 is configured at the upper part of the body 1; the hot pressing plate component 300 is configured at the lower part of the body 1 and includes a hot plate 3 and a heat insulation part 301; the hot plate 3 is configured with a pressing surface 30 and at least one curved pressing part 3.1; wherein the at least one curved pressing part 3.1 is defined by a recessed part at the lower end of the hot plate 3. The heat insulation part 301 can effectively block the heat transfer between the hot plate 3 and the body 1, protect the electrical devices inside the body 1, and ensure the user's hand experience. In the embodiment shown in FIGS. 1-9, the hot plate 3 is provided with one curved pressing part 3.1, and in other embodiments, two, three, or other numbers according to actual needs can be provided.
[0080] In some embodiments, the heat insulation part 301 can include one or more layers of heat insulation material.
[0081] Referring to FIGS. 5, 7-10, in one embodiment, the body 1 includes a base body 100 and a connecting seat 101, and the hot pressing plate component 300 is connected to the connecting seat 101 and then integrally connected to the base body 100.
[0082] Referring to Figs. 9-10, the connecting seat 101 is configured with a side skirt 101' at the edge thereof, the lower side of the side skirt 101 is connected with the downward extension of the edge of the connecting seat 101, forming a gap area 102, and the lower end of the edge of the base 100 is connected with the lower end of the side skirt 101. The gap area 102 is configured to effectively block the heat of the hot plate component 300 from being transferred outward, avoiding the temperature of the outer side surface of the lower part of the equipment from being too high.
[0083] Referring to Figs. 7-10, in an embodiment, the connecting seat 101 and the heat insulation part 301 are connected with the connecting part of the hot plate 3 through the connecting member 3011, such as a screw, so as to be fixed together. Of course, the heat insulation part 301 and the hot plate 3, and the connecting seat 101 and the heat insulation part 301 are configured with corresponding positioning structures, so as to keep the stable connection of the three.
[0084] Referring to Figs. 7-10, the upper part of the base 100 is configured with a cover 102, and at least part of the control circuit e is installed on the cover 102. The connecting seat 101 is provided with a plurality of connecting parts 1011, and the connecting member (such as a screw) is locked from the upper side of the base 100 downward to the connecting part 1011, so as to fix and connect the hot plate component 300 and the connecting seat 101 with the base 100, and then the cover 102 is covered on the upper part of the base 100.
[0085] Referring to Figs. 1-9, another embodiment of the hot press provided by the present application comprises: a body 1, a holding part 1.1 and a hot plate component 300; the holding part 1.1 is configured at the upper part of the body 1; the hot plate component 300 is configured at the lower part of the body 1, comprising a hot plate 3; the hot plate 3 is configured with a pressing surface 30 and a curved pressing part 3.1; the curved pressing part 3.1 is defined by the concave part at the lower end of the hot plate 3; the curved pressing part 3.1 is configured at the rear part of the hot plate 3 and communicates with the side part of the hot plate 3, and extends along the front end direction of the hot plate 3 and intersects with the pressing surface 30. Since the curved pressing part 3.1 is configured at the rear part of the hot plate 3, in the use process, especially when the pressing surface 30 is moved forward and laterally, which is the most commonly used movement, the interference and influence are minimal. On the other hand, the power cord of the hot press is generally at the lower part of the rear side of the body 1, and the curved pressing part 3.1 is configured at the rear part of the hot plate 3, which has little influence on the product and appearance.
[0086] Referring to Figs. 1-10, the hot press according to another aspect of the present application comprises a body 1, a holding portion 1.1 configured at an upper portion of the body 1, and a hot plate component 300 configured at a lower portion of the body 1, wherein the hot plate component 300 comprises a hot plate 3 configured with a pressing surface 30 and a curved pressing portion 3.1 defined by a recessed portion at a lower end of the hot plate 3, wherein the curved pressing portion 3.1 is configured at a rear portion of the hot plate 3 and communicates with a rear end of the hot plate 3, and the curved pressing portion 3.1 extends in a direction of a front end of the hot plate 3 and intersects with the pressing surface 30. In the improvement, the hot plate 3 comprises a hot base plate 3a and a heating element 3b, and the heating element 3b extends to the curved pressing portion 3.1, so that the working temperature of the curved pressing portion 3.1 can be ensured, and the heat transfer printing effect is guaranteed.
[0087] The hot press according to another aspect of the present application comprises a body 1, a holding portion 1.1 configured at an upper portion of the body 1, and a hot plate component 300 configured at a lower portion of the body 1, wherein the hot plate component 300 comprises a hot plate 3 configured with a pressing surface 30 and a curved pressing portion 3.1 defined by a recessed portion at a lower end of the hot plate 3, wherein the curved pressing portion 3.1 is configured at a rear portion of the hot plate 3 and communicates with a rear end of the hot plate 3, and the curved pressing portion 3.1 extends in a direction of a front end of the hot plate 3 and intersects with the pressing surface 30. In the improvement, the hot plate 3 comprises a hot base plate 3a and a heating element 3b, and the heating element 3b extends to the curved pressing portion 3.1, so that the working temperature of the curved pressing portion 3.1 can be ensured, and the heat transfer printing effect is guaranteed.
[0088] The hot press according to another aspect of the present application comprises a body 1, a holding portion 1.1 configured at an upper portion of the body 1, and a hot plate component 300 configured at a lower portion of the body 1, wherein the hot plate component 300 comprises a hot plate 3 configured with a pressing surface 30 and a curved pressing portion 3.1 defined by a recessed portion at a lower end of the hot plate 3, wherein the curved pressing portion 3.1 is configured at a rear portion of the hot plate 3 and communicates with a rear end of the hot plate 3, and the curved pressing portion 3.1 extends in a direction of a front end of the hot plate 3 and intersects with the pressing surface 30. In the improvement, the hot plate 3 comprises a hot base plate 3a and a heating element 3b, and the heating element 3b extends to the curved pressing portion 3.1, so that the working temperature of the curved pressing portion 3.1 can be ensured, and the heat transfer printing effect is guaranteed.
[0089] The hot press according to another aspect of the present application comprises a body 1, a holding portion 1.1 configured at an upper portion of the body 1, and a hot plate component 300 configured at a lower portion of the body 1, wherein the hot plate component 300 comprises a hot plate 3 configured with a pressing surface 30 and a curved pressing portion 3.1 defined by a recessed portion at a lower end of the hot plate 3, wherein the curved pressing portion 3.1 is configured at a rear portion of the hot plate 3 and communicates with a rear end of the hot plate 3, and the curved pressing portion 3.1 extends in a direction of a front end of the hot plate 3 and intersects with the pressing surface 30. In the improvement, the hot plate 3 comprises a hot base plate 3a and a heating element 3b, and the heating element 3b extends to the curved pressing portion 3.1, so that the working temperature of the curved pressing portion 3.1 can be ensured, and the heat transfer printing effect is guaranteed.
[0090] In some examples, the first hot plate portion 30' and the second hot plate portion 3.1' are controlled by respective heating elements, and the control circuit e is configured with control means for starting and stopping the heating state of the first hot plate portion 30' and the second hot plate portion 3.1'. With the above scheme, the first hot plate portion 30' and the second hot plate portion 3.1' can be individually controlled according to the need, saving energy consumption.
[0091] In some examples, the second hot plate portion 3.1' is arranged at the rear of the first hot plate portion 30'.
[0092] In some examples, the curved pressing portion 3.1 communicates with the rear side of the second hot plate portion 3.1', and the curved pressing portion 3.1 is arranged at an angle relative to the pressing surface 30, with the vertex of the outer end being higher than the pressing surface 30.
[0093] According to the disclosure and teaching of the above description, those skilled in the art of the present application can also make changes and modifications to 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, characterized in that The utility model relates to a heat press plate component, comprising: A body (1); A holding part (1.1) configured on the upper part of the body (1); A heat plate (3) configured on the lower part of the body (1); At least one curved pressing part (3.1) configured on the pressing surface (30) of the heat plate (3); The at least one curved pressing part (3.1) is defined by the concave part at the lower end of the heat plate (3).
2. Hot press according to claim 1, characterized in that The at least one curved pressing part (3.1) is connected to the side of the heat plate (3).
3. Hot press according to claim 2, characterized in that The at least one curved pressing part (3.1) is connected to the side of the heat plate (3) and is arranged at an angle relative to the pressing surface (30), so that the vertex of the outer end of the curved pressing part (3.1) is higher than the intersection point of the inner end and the pressing surface (30). Alternatively, the curved pressing part (3.1) extends in the direction of the front end of the heat plate (3) and intersects the pressing surface (30) at an angle, so that the vertex of the outer end of the curved pressing part (3.1) is higher than the intersection point of the inner end and the pressing surface (30).
4. The hot press of claim 1, wherein, The at least one curved pressing part (3.1) is connected to the side of the heat plate (3) and is arranged at an angle relative to the pressing surface (30), and the height of the curved pressing part (3.1) relative to the pressing surface (30) has an overall increasing trend from the inner side to the outer side.
5. The hot press of claim 2, wherein, The at least one curved pressing part (3.1) is connected to the side of the heat plate (3) and is arranged at an angle relative to the pressing surface (30), and the surface of the curved pressing part (3.1) has the same curvature.
6. Hot press according to any one of claims 3 to 5, characterized in that The curved pressing part (3.1) is arranged at one end of the heat plate (3) in the direction of the wrist deflection of the user when the heat press machine is used.
7. The hot press of claim 1, wherein, The two ends of the at least one curved pressing part (3.1) are respectively connected to the sides of the heat plate (3).
8. The hot press of claim 1, wherein, The position of the body (1) corresponding to the curved pressing part (3.1) is concave.
9. The hot press of claim 1, wherein, The curved pressing part (3.1) is arranged at one end of the heat plate (3) in the direction of the wrist deflection of the user when the heat press machine is used.
10. The hot press of claim 1, wherein, The body (1) is provided with an avoidance area (110) penetrating through the left and right sides, and the top wall of the avoidance area (110) and the upper end surface of the body (1) are configured to form at least part of the holding part (1.1). Alternatively, one end of the holding part is open, and the holding part is provided with an avoidance area penetrating 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 are configured to form at least part of the holding part.
11. Hot press according to claim 10, characterized in that At least the upper end surface of the body (1) is provided with an arc-shaped surface extending in the direction of the wrist deflection of the user.
12. The hot press of claim 1, wherein, The curved pressing part (3.1) is integrally formed on the heat plate (3).
13. The hot press of claim 3, wherein, The curved pressing part (3.1) has the same curvature.
14. The hot press of claim 1, wherein, The curved pressing part (3.1) is arranged at one end of the heat plate (3) in the direction of the wrist deflection of the user when the heat press machine is used.
15. The hot press of claim 1, wherein, The heat plate (3) comprises a heat base plate (3a) and a heating element (3b), and the heating element (3b) extends to the curved pressing part (3.1).
16. Hot press, characterized in that The utility model relates to a heat press plate component, comprising: A body (1); A holding part (1.1) configured on the upper part of the body (1); A heat press plate component (300) configured on the lower part of the body (1), comprising a heat plate (3) and a heat insulation part (301); At least one curved pressing part (3.1) configured on the pressing surface (30) of the heat plate (3); The at least one curved pressing part (3.1) is defined by a concave part of the lower end of the second hot plate part (3.1').
17. Hot press, characterized in that The application comprises: a body (1); a holding part (1.1) configured on the upper part of the body (1); a hot plate (3) configured on the lower part of the body (1); The hot plate (3) comprises a first hot plate part (30') and a second hot plate part (3.1'), the lower end of the first hot plate part (30') is provided with a pressing surface (30), and the second hot plate part (3.1') is provided with at least one curved pressing part (3.1), wherein the curved pressing part (3.1) is defined by a concave part of the second hot plate part (3.1').
18. The hot press of claim 17, wherein, The first hot plate part (30') and the second hot plate part (3.1') are controlled by respective heating elements, and the control circuit (e) is provided with control devices for starting and stopping the heating state of the first hot plate part (30') and the second hot plate part (3.1'). Alternatively, the first hot plate part (30') and the second hot plate part (3.1') are controlled by the same heating element.
19. Hot press according to claim 17 or 18, characterized in that The second hot plate part (3.1') is configured at the rear or side of the first hot plate part (30').
20. The hot press of claim 19, wherein, The curved pressing part (3.1) is connected to the rear side of the second hot plate part (3.1'), and the curved pressing part (3.1) is arranged at an angle relative to the pressing surface (30), and the vertex of the outer end is higher than the pressing surface (30).
Citation Information
Patent Citations
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