Laminator heater blade mounting mechanism and method of use
By designing a heating element mounting mechanism for the laminator, the motor-driven clamping claws and pressing plate independently control and press down the card-type solar cells, solving the problem that existing laminators cannot effectively laminate small card-type solar cells, improving lamination efficiency and reducing labor costs.
Patent Information
- Application Number
- CN202211287885.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-20
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2042-10-20
AI Technical Summary
Existing laminators cannot effectively laminate small card-type solar cells, and traditional heating plate mounting mechanisms cannot control the pressing of individual heating elements, resulting in low lamination efficiency and high labor costs.
A laminator heating element mounting mechanism was designed, including a heating element clamping and flattening mechanism. The heating element is independently controlled and pressed down by a motor-driven clamping claw and a pressing plate, so as to achieve stable clamping and flattening of card-type solar cells.
This technology enables efficient lamination of card-type solar cells, reducing labor costs and improving lamination efficiency.
Smart Images

Figure CN115528140B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of laminators, specifically to a heating element mounting mechanism for a laminator and its usage method. Background Technology
[0002] A laminator is a mechanical device that presses multiple layers of material together. Photovoltaic modules in a photovoltaic system also undergo lamination processing. As a core piece of equipment in photovoltaic production, the solar cell module laminator (hereinafter referred to as the laminator) plays a crucial role in photovoltaic manufacturing.
[0003] With the booming development of the photovoltaic industry, the demand for miniaturized, card-type solar cells for various portable devices is increasing. However, there is currently no dedicated laminator designed for card-type solar cells, which is not conducive to the industrial production of this type of solar cell.
[0004] Furthermore, most existing laminators use heat transfer oil as the heating medium to heat the solar photovoltaic modules on the heating plate through heat transfer. This heating method involves multiple energy exchange processes, and energy is lost in each process, resulting in the laminator consuming a significant amount of additional electrical energy during operation. Since the heating plate of the laminator is manufactured as a single piece, existing heating plate installation mechanisms use a separate flat plate to press down on the heating plate to achieve installation. However, because the heating plate is usually formed by assembling individual heating elements, traditional laminators cannot control the pressing down of individual heating elements, resulting in operational defects.
[0005] Therefore, in response to these problems, we propose a laminator heating element installation mechanism and its usage method. Summary of the Invention
[0006] To address the shortcomings of existing technologies, this invention provides a laminator heating element installation mechanism and its usage method. This laminator is a "card-type laminator" that can be used for small card-type solar heating components to laminate thin sheet-like objects, avoiding the problems of traditional laminators being limited to laminating large-area solar cells, as well as the low lamination efficiency and high labor costs of small solar components.
[0007] This solves the problem that traditional laminators cannot control the pressing of individual heating elements.
[0008] To achieve the above objectives, the present invention provides the following technical solution:
[0009] A laminator heating element mounting mechanism, comprising:
[0010] Institutional main body;
[0011] The heating element clamping mechanism clamps the heating element.
[0012] The heating element flattening mechanism flattens the heating element;
[0013] Laminator heating element body;
[0014] The main body of the mechanism includes a support frame, which is a vertical rod. A mounting base is fixedly connected to the bottom end of the support frame, and the support frame is installed perpendicular to the mounting base.
[0015] In a further preferred embodiment, the heating element clamping mechanism includes:
[0016] The first reciprocating rod is a cylindrical rod.
[0017] First reciprocating motor;
[0018] The first reciprocating sleeve is fitted onto the outside of the first reciprocating rod to achieve reciprocating lifting and lowering on the first reciprocating rod;
[0019] The first connecting crossbeam has two sets of the first reciprocating movable sleeves, and the first connecting crossbeam connects the two sets of the first reciprocating movable sleeves.
[0020] The first drive motor is connected to the outside of the first connecting crossbeam.
[0021] The user controls the operation of the first reciprocating motor inside the heating element clamping mechanism. The first reciprocating motor then starts working, driving the first reciprocating movable sleeve to move back and forth on the first reciprocating rod. The first reciprocating movable sleeve thereby drives the first connecting crossbeam to rise and fall. The first connecting crossbeam then drives the first drive motor and the first drive rod to rise and fall synchronously, adjusting the height of the first receiving plate.
[0022] In a further preferred embodiment, the heating element clamping mechanism further includes:
[0023] The first drive rod is connected to the first drive motor;
[0024] The first receiving plate is connected to the outside of the first drive rod;
[0025] The first buffer spring has its top end connected to the first connecting crossbeam and its bottom end connected to the first receiving plate.
[0026] Rotate the screw to connect it to the first drive rod;
[0027] A rotating sleeve is fitted onto the outer surface of the rotating screw.
[0028] The clamping claw is connected to the outside of the rotating sleeve.
[0029] After the height of the first receiving plate is adjusted, the first drive motor drives the first drive rod to rotate, which in turn drives the rotating screw connected to its bottom to rotate. The rotating sleeve connected to the outside of the rotating screw rotates synchronously, and the clamping claws connected to the outside of the rotating sleeve move relative to each other synchronously. The two sets of opposing clamping claws come together to clamp the heating element assembly, thereby controlling the individual heating elements in the heating element assembly during installation, which is convenient for installation and disassembly.
[0030] A further preferred technical solution is that the heating element flattening mechanism includes:
[0031] The second reciprocating rod is a cylindrical rod.
[0032] The second reciprocating motor; the first reciprocating motor and the second reciprocating motor are miniature forward and reverse reciprocating motors, model ET-DCM2513R.
[0033] The second reciprocating sleeve is fitted onto the outside of the second reciprocating rod to achieve reciprocating lifting and lowering on the second reciprocating rod;
[0034] The second connecting crossbeam has two sets of the second reciprocating movable sleeve, and the second connecting crossbeam connects the two sets of the second reciprocating movable sleeve.
[0035] The second drive motor is connected to the outside of the second connecting crossbeam.
[0036] The user activates the second reciprocating motor inside the heating element flattening mechanism. The second reciprocating motor then drives the second reciprocating movable sleeve to move back and forth on the second reciprocating rod. The second reciprocating movable sleeve then drives the second connecting beam to rise and fall. The second connecting beam then drives the second drive motor and the second drive rod to rise and fall synchronously, adjusting the height of the second receiving plate.
[0037] In a further preferred embodiment, the heating element flattening mechanism further includes:
[0038] The second drive rod is connected to the second drive motor;
[0039] The second receiving plate is connected to the outside of the second drive rod;
[0040] The second buffer spring is connected at its top end to the second connecting crossbeam and at its bottom end to the second receiving plate.
[0041] The pressure plate is fixedly connected to the bottom of the second receiving plate.
[0042] After the height of the second receiving plate is adjusted, the second drive motor drives the second drive rod to rotate. The second drive rod then drives the second receiving plate connected to its bottom end to press down. The pressure plate connected to the bottom end of the second receiving plate then presses down synchronously. The pressure plate then presses onto the upper surface of the heating element assembly, thus realizing the pressing and installation of the heating element assembly.
[0043] In a further preferred embodiment, the laminator heating element body comprises:
[0044] Mounting rack;
[0045] Mounting base, attached to the top of the mounting bracket;
[0046] The heating element assembly is mounted above the mounting base. The heating element assembly for the laminator is placed above the mounting base, and its stability is ensured by the support of the mounting bracket.
[0047] A further preferred technical solution is a method for using a heating element mounting mechanism for a laminator, the method comprising the following steps:
[0048] S1: When in use, the heating element assembly for the laminator is placed above the mounting base, and the stability of the heating element assembly is ensured by the support of the mounting bracket;
[0049] S2: After the heating element assembly is stabilized, the user immediately controls the operation of the first reciprocating motor inside the heating element clamping mechanism. The first reciprocating motor then starts to work, and drives the first reciprocating movable sleeve to move back and forth on the first reciprocating rod. The first reciprocating movable sleeve thereby drives the first connecting crossbeam to rise and fall. The first connecting crossbeam thereby drives the first drive motor and the first drive rod to rise and fall synchronously, adjusting the height of the first receiving plate.
[0050] S3: After the height of the first receiving plate is adjusted; through the operation of the first drive motor, the first drive motor drives the first drive rod to rotate, the first drive rod drives the rotating screw connected to its bottom end to rotate, the rotating sleeve connected to the outside of the rotating screw rotates synchronously, and the clamping claws connected to the outside of the rotating sleeve move relative to each other synchronously. The two sets of opposing clamping claws move closer to each other to clamp the heating element assembly, so that the independent heating elements in the heating element assembly can be controlled during installation, which is convenient for installation and disassembly.
[0051] S4: After using the gripper to pick up and put in the individual heating element in the heating element assembly, the user operates the second reciprocating motor inside the heating element flattening mechanism. The second reciprocating motor then starts working, and drives the second reciprocating movable sleeve to move back and forth on the second reciprocating rod. The second reciprocating movable sleeve then drives the second connecting beam to rise and fall. The second connecting beam then drives the second drive motor and the second drive rod to rise and fall synchronously, adjusting the height of the second receiving plate.
[0052] S5: After the height of the second receiving plate is adjusted; through the operation of the second drive motor, the second drive motor drives the second drive rod to rotate, and the second drive rod then drives the second receiving plate connected to its bottom end to press down. The pressure plate connected to the bottom end of the second receiving plate then presses down synchronously, and the pressure plate then presses on the upper surface of the heating element assembly, realizing the pressing and installation of the heating element assembly.
[0053] The technical solution of this invention has the following advantages compared with the prior art:
[0054] 1. The heating element installation mechanism of the laminator and its usage method, through the operation of the first drive motor, the first drive motor drives the first drive rod to rotate, the first drive rod drives the rotating screw connected to its bottom end to rotate, the rotating sleeve connected to the outside of the rotating screw rotates synchronously, and the clamping claws connected to the outside of the rotating sleeve move relative to each other synchronously. The two sets of opposing clamping claws move closer to each other to clamp the heating element assembly, thereby controlling the independent heating elements in the heating element assembly during installation, which is convenient for installation and disassembly.
[0055] 2. The heating element installation mechanism of the laminator and its usage method: through the operation of the second drive motor, the second drive motor drives the second drive rod to rotate, and the second drive rod then drives the second receiving plate connected to its bottom end to press down. The pressure plate connected to the bottom end of the second receiving plate then presses down synchronously, and the pressure plate then presses on the upper surface of the heating element assembly, thereby realizing the pressing installation of the heating element assembly. Attached Figure Description
[0056] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:
[0057] Figure 1 This is a schematic diagram of the overall structure in Embodiment 1 of the present invention;
[0058] Figure 2 This is a schematic diagram of the connection structure of the heating element clamping mechanism in Embodiment 1 of the present invention;
[0059] Figure 3Example 1: A heating element mounting mechanism for a laminator and its usage method according to the present invention. Figure 2 Schematic diagram of the middle section of the structure;
[0060] Figure 4 This is a schematic diagram of the heating element clamping mechanism in Embodiment 1 of the present invention;
[0061] Figure 5 This is a schematic diagram of the connection structure of the heating element flattening mechanism in Embodiment 1 of the present invention;
[0062] Figure 6 This is Embodiment 1 of the present invention. Figure 5 Schematic diagram of the middle section of the structure;
[0063] Figure 7 This is a schematic diagram of the overall structure of the heating element flattening in Embodiment 1 of the present invention;
[0064] Figure 8 This is a schematic diagram of the connection structure of the heating element assembly in Embodiment 1 of the present invention.
[0065] In the diagram: 1. Main body of the mechanism; 2. Support frame; 3. Mounting base;
[0066] 4. Heating element clamping mechanism; 41. First reciprocating rod; 42. First reciprocating motor; 43. First reciprocating movable sleeve; 44. First connecting crossbeam; 45. First drive motor; 46. First drive rod; 47. First receiving plate; 48. First buffer spring; 49. Rotating screw; 410. Rotating sleeve; 411. Clamping claw;
[0067] 5. Heating element flattening mechanism; 51. Second reciprocating rod; 52. Second reciprocating motor; 53. Second reciprocating movable sleeve; 54. Second connecting crossbeam; 55. Second drive motor; 56. Second drive rod; 57. Second receiving plate; 58. Second buffer spring; 59. Pressing plate;
[0068] 6. Laminator heating element body; 61. Mounting bracket; 62. Mounting base; 63. Heating element assembly. Detailed Implementation
[0069] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0070] In this disclosure, terms such as "upper," "lower," "left," "right," "front," "back," "vertical," "horizontal," "side," and "bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are merely relational terms determined for the convenience of describing the structural relationship of the various components or elements in this disclosure, and do not specifically refer to any component or element in this disclosure, nor should they be construed as limiting this disclosure.
[0071] In this disclosure, terms such as "fixed connection," "connected," and "linked" should be interpreted broadly, indicating a fixed connection, an integral connection, or a detachable connection; a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can determine the specific meaning of these terms in this disclosure based on the specific circumstances, and they should not be construed as limitations on this disclosure.
[0072] Example 1:
[0073] like Figure 1 As shown, in one embodiment, a laminator heating element mounting mechanism includes:
[0074] Institutional Entity 1;
[0075] The heating element clamping mechanism 4 clamps the heating element;
[0076] Heating element flattening mechanism 5 flattens the heating element;
[0077] Laminator heating element body 6;
[0078] The main body 1 of the mechanism includes a support frame 2, which is a vertical rod. The bottom end of the support frame 2 is fixedly connected to a mounting base 3, and the support frame 2 and the mounting base 3 are installed perpendicularly.
[0079] like Figures 2-3 As shown, in one embodiment, the heating element clamping mechanism 4 includes:
[0080] The first reciprocating rod 41 is a cylindrical rod.
[0081] First reciprocating motor 42;
[0082] The first reciprocating movable sleeve 43 is sleeved on the outside of the first reciprocating rod 41 to realize reciprocating lifting and lowering on the first reciprocating rod 41;
[0083] The first connecting crossbeam 44, the first reciprocating movable sleeve 43 is provided in two sets, and the first connecting crossbeam 44 is connected between the two sets of the first reciprocating movable sleeve 43.
[0084] The first drive motor 45 is connected to the outside of the first connecting beam 44.
[0085] The user then controls the operation of the first reciprocating motor 42 inside the heating element clamping mechanism 4. The first reciprocating motor 42 then starts working, driving the first reciprocating movable sleeve 43 to reciprocate on the first reciprocating rod 41. The first reciprocating movable sleeve 43 thereby drives the first connecting beam 44 to rise and fall. The first connecting beam 44 thereby drives the first drive motor 45 and the first drive rod 46 to rise and fall synchronously, adjusting the height of the first receiving plate 47.
[0086] like Figure 4 As shown, in one embodiment, the heating element clamping mechanism 4 further includes:
[0087] The first drive rod 46 is connected to the first drive motor 45;
[0088] The first receiving plate 47 is connected to the outside of the first drive rod 46;
[0089] The first buffer spring 48 is connected at its top end to the first connecting beam 44 and at its bottom end to the first receiving plate 47.
[0090] Rotate screw 49 to connect with the first drive rod 46;
[0091] Rotating sleeve 410 is fitted onto the outer surface of the rotating screw 49;
[0092] The clamping claw 411 is connected to the outside of the rotating sleeve 410.
[0093] After the height of the first receiving plate 47 is adjusted, the first drive motor 45 drives the first drive rod 46 to rotate. The first drive rod 46 then drives the rotating screw 49 connected to its bottom end to rotate. The rotating sleeve 410 connected to the outside of the rotating screw 49 then rotates synchronously. The clamping claws 411 connected to the outside of the rotating sleeve 410 move relative to each other synchronously. The two sets of opposing clamping claws 411 move closer together to clamp the heating element assembly 63, thereby controlling the independent heating elements in the heating element assembly 63 during installation, which facilitates installation and disassembly.
[0094] like Figures 5-6 As shown, in one embodiment, the heating element flattening mechanism 5 includes:
[0095] The second reciprocating rod 51 is a cylindrical rod.
[0096] The second reciprocating motor 52; the first reciprocating motor 42 and the second reciprocating motor 52 are miniature forward and reverse reciprocating motors, model ET-DCM2513R.
[0097] The second reciprocating movable sleeve 53 is sleeved on the outside of the second reciprocating rod 51 to realize reciprocating lifting and lowering on the second reciprocating rod 51;
[0098] The second connecting crossbeam 54, the second reciprocating movable sleeve 53 is provided in two sets, and the second connecting crossbeam 54 is connected between the two sets of the second reciprocating movable sleeve 53;
[0099] The second drive motor 55 is connected to the outside of the second connecting beam 54.
[0100] The user operates the second reciprocating motor 52 inside the heating element flattening mechanism 5. The second reciprocating motor 52 then starts working, driving the second reciprocating movable sleeve 53 to reciprocate on the second reciprocating rod 51. The second reciprocating movable sleeve 53 then drives the second connecting beam 54 to rise and fall. The second connecting beam 54 then drives the second drive motor 55 and the second drive rod 56 to rise and fall synchronously, adjusting the height of the second receiving plate 57.
[0101] like Figure 7 As shown, in one embodiment, the heating element flattening mechanism 5 further includes:
[0102] The second drive rod 56 is connected to the second drive motor 55;
[0103] The second receiving plate 57 is connected to the outside of the second drive rod 56;
[0104] The second buffer spring 58 is connected at its top end to the second connecting beam 54 and at its bottom end to the second receiving plate 57.
[0105] The pressure plate 59 is fixedly connected below the second receiving plate 57.
[0106] After the height of the second receiving plate 57 is adjusted, the second drive motor 55 drives the second drive rod 56 to rotate. The second drive rod 56 then drives the second receiving plate 57 connected to its bottom end to press down. The pressure plate 59 connected to the bottom end of the second receiving plate 57 then presses down synchronously. The pressure plate 59 then presses on the upper surface of the heating element assembly 63, realizing the pressing installation of the heating element assembly 63.
[0107] like Figure 8 As shown, in one embodiment, the laminator heating element body 6 includes:
[0108] Mounting bracket 61;
[0109] Mounting base 62 is connected to the top of mounting bracket 61;
[0110] The heating element assembly 63 is mounted above the mounting base 62. The heating element assembly 63 for the laminator is placed above the mounting base 62, and its stability is ensured by the support of the mounting bracket 61.
[0111] Example 2:
[0112] The difference between Example 2 and Example 1 is that Example 2 provides a method for using the laminator heating element mounting mechanism of Example 1, the method including the following steps:
[0113] S1: When in use, the heating element assembly 63 for the laminator is placed above the mounting base 62, and the stability of the heating element assembly 63 is ensured by the support of the mounting bracket 61.
[0114] S2: After the heating element assembly 63 is stabilized, the user immediately controls the operation of the first reciprocating motor 42 inside the heating element clamping mechanism 4. The first reciprocating motor 42 then starts to work, and drives the first reciprocating movable sleeve 43 to reciprocate on the first reciprocating rod 41. The first reciprocating movable sleeve 43 thereby drives the first connecting beam 44 to rise and fall. The first connecting beam 44 thereby drives the first drive motor 45 and the first drive rod 46 to rise and fall synchronously, adjusting the height of the first receiving plate 47.
[0115] S3: After the height of the first receiving plate 47 is adjusted, the first drive motor 45 drives the first drive rod 46 to rotate. The first drive rod 46 then drives the rotating screw 49 connected to its bottom end to rotate. The rotating sleeve 410 connected to the outside of the rotating screw 49 rotates synchronously. The clamping claws 411 connected to the outside of the rotating sleeve 410 move relative to each other synchronously. The two sets of opposing clamping claws 411 move closer together to clamp the heating element assembly 63, thereby controlling the independent heating elements in the heating element assembly 63 during installation, which is convenient for installation and disassembly.
[0116] S4: After using the gripper 411 to individually pick up and place the independent heating element in the heating element assembly 63, the user operates the second reciprocating motor 52 inside the heating element flattening mechanism 5. The second reciprocating motor 52 then starts working, and drives the second reciprocating movable sleeve 53 to reciprocate on the second reciprocating rod 51. The second reciprocating movable sleeve 53 then drives the second connecting beam 54 to rise and fall. The second connecting beam 54 then drives the second drive motor 55 and the second drive rod 56 to rise and fall synchronously, adjusting the height of the second receiving plate 57.
[0117] S4: After the height of the second receiving plate 57 is adjusted, the second drive motor 55 drives the second drive rod 56 to rotate. The second drive rod 56 then drives the second receiving plate 57 connected to its bottom end to press down. The pressure plate 59 connected to the bottom end of the second receiving plate 57 then presses down synchronously. The pressure plate 59 then presses on the upper surface of the heating element assembly 63, realizing the pressing installation of the heating element assembly 63.
[0118] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A laminating machine heating sheet mounting mechanism characterized by comprising: Include: The mechanism body (1); The heating sheet clamping mechanism (4) clamps the heating sheet; The heating sheet flattening mechanism (5) flattens the heating sheet; The laminating machine heating sheet body (6); The mechanism body (1) includes a support frame (2), the support frame (2) is a vertical pole body, the bottom end of the support frame (2) is fixedly connected with a mounting base (3), the support frame (2) and the mounting base (3) are vertically installed; The heating sheet clamping mechanism (4) includes: The first reciprocating rod (41) is a cylindrical rod body; The first reciprocating motor (42); The first reciprocating movable sleeve (43) is sleeved on the outside of the first reciprocating rod (41), and reciprocating lifting on the first reciprocating rod (41) is realized; The first connecting cross beam (44) is provided with two groups of the first reciprocating movable sleeve (43), and the first connecting cross beam (44) is connected between the two groups of the first reciprocating movable sleeve (43); The first drive motor (45) is connected with the first drive motor (45); The first clamping plate (47) is connected on the outside of the first drive rod (46); The first buffer spring (48) is connected at the top of the first connecting cross beam (44), and the bottom is connected with the first clamping plate (47); The rotating screw (49) is connected with the first drive rod (46); The rotating sleeve (410) is sleeved on the outer surface of the rotating screw (49); The clamping claw (411) is connected on the outside of the rotating sleeve (410); The heating sheet flattening mechanism (5) includes: The second reciprocating rod (51) is a cylindrical rod body; The second reciprocating motor (52); The second reciprocating movable sleeve (53) is sleeved on the outside of the second reciprocating rod (51), and reciprocating lifting on the second reciprocating rod (51) is realized; The second connecting cross beam (54) is provided with two groups of the second reciprocating movable sleeve (53), and the second connecting cross beam (54) is connected between the two groups of the second reciprocating movable sleeve (53); The second drive motor (55) is connected with the second drive motor (55); The second clamping plate (57) is connected on the outside of the second drive rod (56); The second buffer spring (58) is connected at the top of the second connecting cross beam (54), and the bottom is connected with the second clamping plate (57); The flattening plate (59) is fixedly connected below the second clamping plate (57); The laminating machine heating sheet body (6) includes: The mounting frame (61); The mounting seat (62) is connected above the mounting frame (61); The heating sheet assembly (63) is installed above the mounting seat (62); The first reciprocating motor (42) and the second reciprocating motor (52) are micro positive and negative rotation motors, and the model is ET-DCM2513R. 2. The method for using the laminating machine heating sheet mounting mechanism, applied to the laminating machine heating sheet mounting mechanism of claim 1, characterized in that: The use method comprises the following steps: S1: in use, the heating sheet assembly for the laminating machine is placed above the mounting seat, and the stability of the heating sheet assembly is ensured through the support of the mounting frame; S2: after the stability of the heating sheet assembly, the user controls the work of the first reciprocating motor in the heating sheet clamping mechanism, the first reciprocating motor starts to work, the first reciprocating motor drives the first reciprocating movable sleeve to reciprocate on the first reciprocating rod, the first reciprocating movable sleeve drives the first connecting beam to ascend and descend, the first connecting beam drives the first driving motor and the first driving rod to ascend and descend synchronously, and the height of the first supporting plate is adjusted; S3: after the height adjustment of the first supporting plate is completed; through the work of the first driving motor, the first driving motor drives the first driving rod to rotate, the first driving rod drives the rotating screw connected at the bottom end to rotate, the rotating sleeve connected outside the rotating screw rotates synchronously, the clamping claw connected outside the rotating sleeve moves synchronously, the two groups of opposite clamping claws move relatively to clamp, the independent heating sheet in the heating sheet assembly is clamped, so that the independent heating sheet in the heating sheet assembly can be controlled during installation, and the installation and disassembly are facilitated.
3. The method of using a lamination press heating sheet mounting mechanism of claim 2, wherein: The use method further comprises the following steps: S4: after the independent heating sheet in the heating sheet assembly is taken out and placed by the clamping claw, the user adjusts the height of the second supporting plate through the work of the second reciprocating motor in the heating sheet flattening mechanism, the second reciprocating motor starts to work, the second reciprocating motor drives the second reciprocating movable sleeve to reciprocate on the second reciprocating rod, the second reciprocating movable sleeve drives the second connecting beam to ascend and descend, the second connecting beam drives the second driving motor and the second driving rod to ascend and descend synchronously, and the height of the second supporting plate is adjusted; S5: after the height adjustment of the second supporting plate is completed; through the work of the second driving motor, the second driving motor drives the second driving rod to rotate, the second driving rod drives the second supporting plate connected at the bottom end to press down, the flattening plate connected at the bottom end of the second supporting plate is pressed down synchronously, the flattening plate is pressed on the upper surface of the heating sheet assembly, and the heating sheet assembly is installed by pressing down.
Citation Information
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