Detachable multifunctional heat press machine
By designing a disassembled multi-functional hot machine, using an integrated circuit board and a drive motor, combined with a linkage mechanism and an aviation plug connection functional mechanism, the problems of high equipment costs and large space in the existing technology are solved, and lower purchase costs and higher convenience of use are achieved.
Patent Information
- Application Number
- CN202421695494.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-17
AI Technical Summary
In the prior art, the hot machine, the hat machine and the cup machine each need separate integrated circuit boards, power supplies and controllers, resulting in high production costs and large space occupancy.
A disassembled multi-functional hot-skin machine is designed, which adopts an integrated circuit board, drive motor, linkage mechanism and controller. The functional mechanism is connected to the plug interface through an aviation plug to achieve multi-functional disassembly replacement.
By sharing integrated circuit boards, drive motors and controllers, the acquisition cost and space of the equipment are reduced, while the replacement of functional mechanisms is more convenient.
Smart Images

Figure CN222858990U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of ...., in particular to a detachable multifunctional heat transfer machine. Background Art
[0002] Thermal transfer, also known as thermal sublimation, is a special process in which any picture such as portraits and landscapes is printed on ordinary paper or high-precision printing paper using thermal transfer ink, and then the corresponding thermal transfer equipment is heated to a certain temperature within a few minutes to transfer the image on the paper to porcelain cups, plates, tiles, clothes, metals, hats and other items with realistic colors.
[0003] In the prior art, heat press machines can heat transfer various heat presses onto fabrics such as cotton, linen, and chemical fibers, and can also perform heat treatment processes such as screen printing, glue, and foaming. They can also bake color codes, portraits, and landscape patterns onto porcelain plates and metal plates. Hat baking machines can heat transfer various heat presses onto the front end of hats. Cup baking machines can heat transfer various heat presses onto the outer surface of cups. In order to use different heat transfer functions, people need to purchase heat press machines, hat baking machines, and cup baking machines at the same time, which takes up a lot of space. In addition, for electric heat transfer machines, each device needs to be equipped with a separate integrated circuit board, power supply, and controller, which has high production costs, resulting in high purchase costs, and it is necessary to improve the existing electric heat transfer machines. Utility Model Content
[0004] In order to solve the above problems, the utility model proposes a detachable multifunctional heat transfer machine.
[0005] The technical solution adopted by the utility model is: a detachable multifunctional heat transfer machine, comprising:
[0006] Base;
[0007] A mounting frame, fixed above the base, the mounting frame being provided with a plug interface;
[0008] A driving motor is fixed on the mounting frame;
[0009] A linkage mechanism, mounted on the mounting frame and linked to the drive motor, the linkage mechanism being used to cooperate in driving at least one movable beam frame to rise and fall, or to flip around one end;
[0010] A support seat, fixed above the mounting frame;
[0011] Several functional mechanisms, including at least a heat transfer mechanism, a cap baking mechanism and a cup baking mechanism, wherein the upper end of the functional mechanism is detachably installed under the movable beam, and the lower end of the functional mechanism is detachably installed above the support seat, and the power supply end of the functional mechanism is provided with an aviation plug for mating with the plug interface;
[0012] A controller, mounted in the mounting frame or outside the mounting frame;
[0013] An integrated circuit board is installed in a mounting frame, and the drive motor, the plug interface and the controller are all electrically connected to the integrated circuit board.
[0014] Several optional methods are also provided below, but they are not intended to be additional limitations on the above-mentioned overall solution, but are merely further supplements or preferences. Under the premise that there are no technical or logical contradictions, each optional method can be combined with the above-mentioned overall solution separately, and multiple optional methods can also be combined.
[0015] Preferably, the upper end of the functional mechanism is fixed below the movable beam frame by a plurality of screws, and the lower end of the functional mechanism is fixed above the support seat by a plurality of screws.
[0016] Preferably, the mounting frame includes at least two mutually opposing vertical plates arranged above the rear side of the base, and the vertical plates are provided with a first guide groove and a second guide groove, wherein the first guide groove is located in the front and lower part of the second guide groove, and the second guide groove extends along a vertical straight line, and the first guide groove includes a first section and a second section from bottom to top, the first section extends along the vertical straight line, and the second section extends along the front and upper part.
[0017] Preferably, the linkage mechanism comprises:
[0018] A first swing rod, linked to the driving motor;
[0019] A second swing rod, one end of which is transferred to the end of the first swing rod, and the other end of which is fixed to the first shaft rod, the first shaft rod is fixed to the moving beam frame, and both ends of the first shaft rod are respectively installed in the first guide groove through bearings;
[0020] The second shaft rod has two ends respectively installed in the second guide groove through bearings, and the second shaft rod is fixed on the moving beam frame.
[0021] Preferably, there are two movable beams, two first swing arms and two second swing arms, and the driving motor is a double-headed motor.
[0022] Preferably, at least one connecting rod is fixedly provided between the two movable beams.
[0023] Preferably, the mounting frame also includes a first cover shell covering between the two vertical plates, the first cover shell is arranged at the rear position of the mounting frame, the plug interface is arranged at the front end of the first cover shell, and the upper end of the first cover shell is provided with a make way opening for the movable beam frame to flip over and make way.
[0024] Preferably, the driving motor is fixed on the inner side of the front end of the first housing, and the plug interface is arranged on the outer side of the front end of the first housing.
[0025] Preferably, a second cover shell and a third cover shell are further provided between the two vertical plates, wherein the third cover shell is arranged at the front position of the mounting frame, the support seat is fixed above the third cover shell, and the second cover shell is arranged between the first cover shell and the third cover shell.
[0026] More preferably, an electrical socket is provided at the rear end of the mounting frame, and the electrical socket is used for an external power cord.
[0027] Compared with the prior art, the utility model has the following beneficial effects:
[0028] When the functional mechanism needs to be replaced, the original functional mechanism is removed from the mounting frame and the movable beam frame, and the aviation plug is pulled out from the plug interface. The functional mechanism to be replaced is then fixed on the mounting frame and the movable beam frame by screws, and the aviation plug of the functional mechanism is inserted into the plug interface. The replacement of the functional mechanism can be completed, which is equivalent to providing all functional mechanisms with a common integrated circuit board, controller, drive motor and linkage mechanism. While providing a variety of thermal transfer functions, it effectively reduces the space occupied by the equipment, reduces the purchase cost, and the replacement of the functional mechanism is also relatively convenient and practical. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying creative work.
[0030] Figure 1 This is a front side view of the overall structure of the first heat transfer mechanism installed in one embodiment of the present application;
[0031] Figure 2 This is an overall structural diagram of the second heat transfer mechanism installed in one embodiment of the present application;
[0032] Figure 3 This is an overall structural diagram from an upper side perspective of a baking cap mechanism installed in one embodiment of the present application;
[0033] Figure 4 This is an overall structural diagram from a lower side perspective of a baking cap mechanism installed in one embodiment of the present application;
[0034] Figure 5This is a schematic diagram of a structure in which a baking cap mechanism is installed in an embodiment of the present application, and the protective shell is exploded and separated upward;
[0035] Figure 6 This is an overall structural diagram from a rear side perspective after the functional mechanism is removed in one embodiment of the present application;
[0036] Figure 7 This is a front side view of the overall structure after the functional mechanism is removed in one embodiment of the present application;
[0037] Figure 8 This is an overall structural diagram of an embodiment of the present application in which the functional mechanism is removed and one of the vertical panels is hidden;
[0038] Fig. 9 This is an overall structural diagram of an embodiment of the present application in which the functional mechanism is removed and one of the vertical plates and a portion of the first cover shell are hidden.
[0039] Marked in the attached drawings are: 1-base, 2-mounting frame, 21-vertical plate, 211-first guide groove, 212-second guide groove, 22-first cover shell, 221-yield opening, 23-second cover shell, 24-third cover shell, 3-drive motor, 4-linkage mechanism, 41-first swing rod, 42-second swing rod, 43-first shaft rod, 44-second shaft rod, 45-connecting rod, 5-movable beam, 6-hot stamping mechanism, 61-pressing assembly, 62-lower supporting assembly, 7-baking cap mechanism, 71-upper ironing assembly, 72-lower supporting assembly, 73-rotating circle rod, 74-reset spring, 75-protective shell, 8-support seat, 9-plug interface, 10-aviation plug, 11-electrical socket.
[0040] The realization of the purpose, functional features and advantages of the utility model will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0041] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0042] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0043] In addition, the descriptions of "first", "second", etc. in the present utility model are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.
[0044] Specific implementation plan: see Figure 1-Figure 9 The utility model is a detachable multifunctional heat transfer machine, comprising:
[0045] Base 1;
[0046] A mounting frame 2 is fixed above the base 1, and a plug interface 9 is provided on the mounting frame 2;
[0047] A driving motor 3 is fixed on the mounting frame 2;
[0048] The linkage mechanism 4 is mounted on the mounting frame 2 and linked to the driving motor 3. The linkage mechanism 4 is used to cooperate and drive at least one moving beam frame 5 to rise and fall, or to flip around one end;
[0049] A support seat 8 is fixed above the mounting frame 2;
[0050] Several functional mechanisms, including at least a heat transfer mechanism 6, a cap baking mechanism 7 and a cup baking mechanism, the upper end of the functional mechanism is detachably installed under the movable beam 5, the lower end of the functional mechanism is detachably installed above the support seat 8, and the power supply end of the functional mechanism is provided with an aviation plug 10 for matching the plug interface 9;
[0051] A controller is installed in the mounting frame 2 or outside the mounting frame 2;
[0052] The integrated circuit board is installed in the mounting frame 2, and the drive motor 3, the plug interface 9 and the controller are all electrically connected to the integrated circuit board.
[0053] As a preferred implementation of this embodiment, please refer to Figure 1 and Figure 3 It can be seen that the upper end of the functional mechanism is fixed to the bottom of the moving beam 5 by a number of screws, and the lower end of the functional mechanism is fixed to the top of the support seat 8 by a number of screws.
[0054] Then, see Figure 7 and Figure 8It can be seen that in this embodiment, the mounting frame 2 also includes a first cover shell 22 covering the two vertical plates 21. The first cover shell 22 is arranged at the rear position of the mounting frame 2, and the plug-in port 9 is arranged at the front end of the first cover shell 22. The upper end of the first cover shell 22 is provided with a clearance opening 221 for the movable beam frame 5 to flip and make way.
[0055] Then, see Figure 8 In this embodiment, the driving motor 3 is fixed on the inner side of the front end of the first housing 22 , and the plug-in interface 9 is arranged on the outer side of the front end of the first housing 22 .
[0056] Here, the plug-in port 9 is arranged outside the front end of the first cover shell 22, which can make it more convenient to plug in the aviation plug 10 on the functional mechanism.
[0057] In this embodiment, a second cover shell 23 and a third cover shell 24 are further provided between the two vertical plates 21, wherein the third cover shell 24 is arranged at the front position of the mounting frame 2, the support seat 8 is fixed above the third cover shell 24, and the second cover shell 23 is arranged between the first cover shell 22 and the third cover shell 24.
[0058] See also Figure 1 It can be seen that when the functional mechanism is selected as the first heat transfer mechanism 6, the heat transfer mechanism 6 includes a pressing component 61 and a lower supporting component 62, wherein the upper end of the pressing component 61 is fixed to the movable beam 5 by a plurality of screws, and the lower end of the lower supporting component 62 is fixed to the supporting seat 8 by a plurality of screws.
[0059] Also, see Figure 2 When the functional mechanism is selected as the second heat press mechanism 6, the second heat press mechanism 6 is different from the first heat press mechanism 6, and the area for placing the products to be hot-stamped is larger.
[0060] See also Figure 3 , Figure 4 and Figure 8 It can be seen that when the functional mechanism is selected as the hat-baking mechanism 7, the hat-baking mechanism 7 includes an upper ironing component 71 and a lower supporting component 72. The upper ironing component 71 is fixed on the moving beam frame 5. In order to be more beautiful, in this embodiment, a protective shell 75 is also fixed on the moving beam frame 5, and the upper ironing component 71 is located inside the protective shell 75. In addition, a rotating circle rod 73 is rotatably mounted on the third cover shell 24, and a reset spring 74 is also fixed on the inner side of the third cover shell 24. The setting of the rotating circle rod 73 and the reset spring 74 is used to cooperate with fixing the brim of the hat. This is a prior art and will not be elaborated here.
[0061] It should be noted that when the baking cap mechanism 7 needs to be replaced with the heat transfer mechanism 6, since the rotating circle rod 73 is arranged on the third cover shell 24, it will not affect the use of the heat transfer mechanism 6, and the rotating circle rod 73 can be selected not to be disassembled.
[0062] Then, see Figure 2 It can be seen that in this embodiment, the mounting frame 2 at least includes two mutually opposing vertical plates 21 arranged on the upper rear side of the base 1, and the vertical plates 21 are provided with a first guide groove 211 and a second guide groove 212, wherein the first guide groove 211 is located in the front and lower part of the second guide groove 212, and the second guide groove 212 extends along a vertical straight line. The first guide groove 211 includes a first section and a second section from bottom to top, the first section extends along the vertical straight line, and the second section extends along the front and upper part.
[0063] Preferably, the linkage mechanism 4 comprises:
[0064] A first swing rod 41, linked to the driving motor 3;
[0065] The second swing rod 42 has one end connected to the end of the first swing rod 41 and the other end fixed to the first shaft rod 43. The first shaft rod 43 is fixed to the moving beam frame 5, and both ends of the first shaft rod 43 are respectively installed in the first guide groove 211 through bearings;
[0066] Both ends of the second shaft rod 44 are respectively installed in the second guide groove 212 through bearings, and the second shaft rod 44 is fixed on the moving beam frame 5.
[0067] Next, see Fig. 9 In this embodiment, there are two movable beams 5, two first swing arms 41 and two second swing arms 42, and the driving motor 3 is a double-headed motor.
[0068] Working principle of linkage mechanism 4: Taking the functional mechanism as an example of the heat transfer mechanism 6, when it is necessary to place the product to be hot stamped above the lower support component 62, it is necessary to move the upper hot stamping component 71 upward. At this time, the integrated circuit board controls the driving motor 3 to work. Since the driving motor 3 is a double-headed motor, its two motor rods respectively drive the first swing rod 41 to rotate around the axis. Since one end of the second swing rod 42 is transferred to the end of the first swing rod 41 and the other end is fixed on the first shaft rod 43, the first shaft rod 43 is driven to translate along the first guide groove 211. Since the first section of the first guide groove 211 extends along a vertical straight line, and the second section extends along the front and upper side. Therefore, when the two ends of the first shaft rod 43 translate upward along the first guide groove 211, the two ends of the second shaft rod 44 will be driven to translate along the second guide groove synchronously. Since the second guide groove 212 extends along a vertical straight line, and the first guide groove 211 is located in front of and below the second guide groove 212, when the end of the second shaft rod 44 translates to the upper end of the second guide groove 212, the end of the first shaft rod 43 translates to the upper part of the first section (since the first shaft rod 43 and the second shaft rod 44 are both fixed on the moving beam frame 5, the moving beam frame 5 will be driven to translate upward during this process). When the first shaft rod 43 continues to translate upward along the second section, since the second shaft rod 44 will not continue to translate upward, the moving beam frame 5 will flip upward with the second shaft rod 44 as the rotation axis.
[0069] After the product to be stamped is placed on the lower support assembly 62, it is necessary to reset the upper stamping assembly 71, that is, reset the movable beam 5. At this time, the driving motor 3 drives the motor rod to rotate in the reverse direction. Similarly, at this time, the first shaft rod 43 first translates to the bottom along the second section, then translates and descends along the first section, and drives the second shaft rod 44 to descend along the second guide groove 212.
[0070] Note that the bidirectional motor, and the design of the two first swing arms 41 and the two second swing arms 42 can more smoothly drive the two moving beams 5 to perform lifting and flipping.
[0071] Also, see Fig. 9 In order to make the two moving beams 5 form a whole and make the overall structure more stable, in this embodiment, at least one connecting rod 45 is fixedly provided between the two moving beams 5.
[0072] More specifically, an electrical socket 11 is disposed at the rear end of the mounting frame 2 , and the electrical socket 11 is used for connecting an external power cord.
[0073] It should be noted that in this embodiment, in addition to the switch button, the controller is also provided with a function button. When the aviation plug 10 of the heat press mechanism 6 is plugged into the plug interface 9, the heat press function is selected, and when another functional mechanism, such as the aviation plug 10 of the baking cup mechanism, is plugged into the plug interface 9, the baking cup function is selected, and the switching between different functions is very convenient.
[0074] The above description of a detachable multifunctional heat press machine of the utility model is only a preferred embodiment of the utility model, and does not limit the patent scope of the utility model. All equivalent structural changes made by using the contents of the utility model specification and drawings under the inventive concept of the utility model, or directly / indirectly used in other related technical fields are included in the patent protection scope of the utility model.
Claims
1. A detachable multifunctional heat transfer machine, characterized in that: include: Base; A mounting frame, fixed above the base, the mounting frame being provided with a plug interface; A driving motor is fixed on the mounting frame; A linkage mechanism, mounted on the mounting frame and linked to the drive motor, the linkage mechanism being used to cooperate in driving at least one movable beam frame to rise and fall, or to flip around one end; A support seat, fixed above the mounting frame; Several functional mechanisms, including at least a heat transfer mechanism, a cap baking mechanism and a cup baking mechanism, wherein the upper end of the functional mechanism is detachably installed under the movable beam, and the lower end of the functional mechanism is detachably installed above the support seat, and the power supply end of the functional mechanism is provided with an aviation plug for mating with the plug interface; A controller, mounted in the mounting frame or outside the mounting frame; An integrated circuit board is installed in a mounting frame, and the drive motor, the plug interface and the controller are all electrically connected to the integrated circuit board.
2. The detachable multifunctional heat press machine according to claim 1, characterized in that: The upper end of the functional mechanism is fixed below the moving beam frame by a plurality of screws, and the lower end of the functional mechanism is fixed above the supporting seat by a plurality of screws.
3. The detachable multifunctional heat transfer machine according to claim 2, characterized in that: The mounting frame includes at least two mutually opposing vertical plates arranged above the rear side of the base, and the vertical plates are provided with a first guide groove and a second guide groove, wherein the first guide groove is located in the front and lower part of the second guide groove, and the second guide groove extends along a vertical straight line. The first guide groove includes a first section and a second section from bottom to top, the first section extends along the vertical straight line, and the second section extends along the front and upper part.
4. The detachable multifunctional heat transfer machine according to claim 3, characterized in that: The linkage mechanism comprises: A first swing rod, linked to the driving motor; The second swing rod has one end connected to the end of the first swing rod and the other end fixed to the first shaft rod. The first shaft rod is fixed to the movable beam frame, and the two ends of the first shaft rod are respectively installed in the first guide groove through bearings; the second shaft rod has two ends respectively installed in the second guide groove through bearings, and the second shaft rod is fixed to the movable beam frame.
5. The detachable multifunctional heat transfer machine according to claim 4, characterized in that: There are two movable beams, two first swing arms and two second swing arms, and the driving motor is a double-headed motor.
6. The detachable multifunctional heat transfer machine according to claim 5, characterized in that: At least one connecting rod is fixedly arranged between the two movable beam frames.
7. The detachable multifunctional heat press machine according to claim 5, characterized in that: The mounting frame also includes a first cover shell covering between two vertical plates, the first cover shell is arranged at the rear position of the mounting frame, the plug interface is arranged at the front end of the first cover shell, and the upper end of the first cover shell is provided with a clearance opening for the movable beam frame to flip and make way.
8. The detachable multifunctional heat press machine according to claim 7, characterized in that: The driving motor is fixed on the inner side of the front end of the first housing, and the plug interface is arranged on the outer side of the front end of the first housing.
9. The detachable multifunctional heat press machine according to claim 8, characterized in that: A second cover shell and a third cover shell are also provided between the two vertical plates, wherein the third cover shell is arranged at the front position of the mounting frame, the support seat is fixed above the third cover shell, and the second cover shell is arranged between the first cover shell and the third cover shell.
10. The detachable multifunctional heat press machine according to claim 1, characterized in that: An electrical socket is provided at the rear end of the mounting frame, and the electrical socket is used for connecting an external power line.