A hot melt apparatus
Patent Information
- Application Number
- CN202522010244.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-17
AI Technical Summary
[0003]然而,在现有的热熔设备中,可以采用人工方式对柔性电路板进行热熔,但操作人员无法保证产品质量和外观统一性,且效率较低
[0033]In addition to the technical problems solved by this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions as described above, other technical problems that can be solved by the hot-melting equipment provided by this application, other technical features contained in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments.
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Figure CN224726464U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of hot melt technology, and more particularly to a hot melt device. Background Technology
[0002] In battery packs, flexible circuit boards are typically placed on electrical isolation plates. The tops of the fixing posts on the electrical isolation plate are melted and shaped into mushroom-shaped bulges, thus securing the flexible circuit board. The hot-melt process is particularly important in battery pack manufacturing, directly affecting the securing effect of the flexible circuit board. On hot-melt equipment, flexible circuit boards in various sizes and specifications are produced in small quantities during the sample stage, frequently requiring production changes, and each product needs to undergo a hot-melt process.
[0003] However, in existing hot-melt equipment, flexible circuit boards can be hot-melted manually, but operators cannot guarantee product quality and appearance uniformity, and the efficiency is low. Alternatively, a small hot-melt fixture can be used to press the entire board down for hot-melt melting, but due to factors such as the structure of the electrical isolation board itself and processing precision, the electrical isolation board is prone to deformation and warping during the hot-melt process, causing changes in the position of the fixing posts and affecting the hot-melt quality. Furthermore, each product requires the development of a dedicated hot-melt fixture, resulting in poor compatibility and versatility, and failing to meet the diverse needs of sample production. Utility Model Content
[0004] This application provides a hot-melt device. By setting multiple motor modules, the hot-melt assembly and the product to be processed can cooperate to achieve free movement in multiple directions. By utilizing the single-point hot-melt method of the hot-melt assembly, the compatibility and versatility of the hot-melt device are improved.
[0005] This application provides a hot-melt device, including:
[0006] Equipment platform, used to place products to be processed;
[0007] The hot melt assembly is located on the equipment platform and includes a detachable hot melt head for hot melting and fixing the product to be processed.
[0008] The drive assembly includes a first motor module and a second motor module connected to each other. The thermoplastic assembly is connected to the second motor module. The thermoplastic assembly realizes reciprocating motion in a first direction on the first motor module through the second motor module, and realizes reciprocating motion in a second direction on the second motor module.
[0009] The drive components also include a third motor module, which is located below the equipment platform. The equipment platform drives the product to be processed to achieve reciprocating motion in the third direction on the third motor module.
[0010] The hot-melt equipment provided in the first aspect of this application includes an equipment platform, a hot-melt assembly, and a drive assembly. The equipment platform is used to place the product to be processed. The hot-melt assembly is located on the equipment platform and includes a detachable hot-melt head for hot-melting and fixing the product to be processed. The drive assembly includes a first motor module and a second motor module connected to each other. The hot-melt assembly is connected to the second motor module, and the hot-melt assembly achieves reciprocating motion in a first direction on the first motor module via the second motor module, and reciprocating motion in a second direction on the second motor module. The drive assembly also includes a third motor module located below the equipment platform, and the equipment platform drives the product to be processed to achieve reciprocating motion in a third direction on the third motor module. Thus, the hot-melt equipment provided in this application, by setting multiple motor modules, allows the hot-melt assembly and the product to be processed to cooperate and achieve free movement in multiple directions. Utilizing the single-point hot-melt method of the hot-melt assembly improves the compatibility and versatility of the hot-melt equipment.
[0011] In one possible implementation, it further includes: a camera assembly located at one end of the hot melt assembly in the first direction;
[0012] The camera component is used to photograph the product to be processed and to adjust the position of the hot melt component in different directions based on the position information of the photographed product.
[0013] In one possible implementation, the camera assembly includes: a camera module, a camera bracket, a light source, and a first detection element;
[0014] The camera bracket is fixedly connected to one end of the hot melt assembly in the first direction. The camera module includes a camera end and a fixed end. The fixed end is fixed to the camera bracket. The camera end is oriented towards the light source. The light source is used to provide illumination brightness for the camera end of the camera module.
[0015] The first detection component is fixed at one end of the camera in the first direction and is used to detect the height of the product to be processed in the second direction.
[0016] In one possible implementation, it further includes: an installation component;
[0017] The mounting components include a first mounting plate, a second mounting plate, a third mounting plate, and a fourth mounting plate. The first mounting plate is connected to the second motor module, and the second mounting plate is vertically fixed to the first mounting plate.
[0018] The second mounting plate has a first side and a second side opposite to each other. The first side is connected to the third mounting plate, the third mounting plate is fixedly connected to the thermoelectric assembly, and the second side is connected to the fourth mounting plate, the fourth mounting plate is fixedly connected to the camera assembly.
[0019] In one possible implementation, the hot melt assembly further includes: a driving element, a heat insulation element, a second detection element, and a heating element;
[0020] The driving component and the heat insulation component are connected. The heating component is located between the heat insulation component and the hot melt head. The second detection component is located on one side of the heating component and is used to detect the temperature of the heating component.
[0021] In one possible implementation, it further includes: a fixing component;
[0022] The fixing component includes a first fixing plate and a support base. The first motor module is fixedly connected to the first fixing plate, and the support base is supported on the first fixing plate.
[0023] In one possible implementation, the fixing component further includes a second fixing plate;
[0024] The second motor module is fixedly connected to the second fixed plate, and the second fixed plate is slidably connected to the first motor module.
[0025] In one possible implementation, it further includes: linear guides located at both ends of the third motor module in the first direction;
[0026] Both the linear guide rail and the third motor module are located below the equipment platform. The third motor module drives the equipment platform to reciprocate along the third direction on the linear guide rail.
[0027] In one possible implementation, the equipment platform is provided with a product mounting plate and positioning components;
[0028] The product to be processed is placed on the product mounting plate. The positioning component is located at the third-side upward end of the product mounting plate and is used for installation and positioning when changing to different models of the product to be processed.
[0029] In one possible implementation, it further includes: a rack;
[0030] The rack includes a first rack and a second rack, which are connected to each other and form an operating area between them. The equipment platform is located in the operating area.
[0031] The first frame is equipped with an operation panel and a display device;
[0032] The second frame houses the electrical equipment and supports the hot-melt equipment.
[0033] In addition to the technical problems solved by this application, the technical features constituting the technical solutions, and the beneficial effects brought about by the technical features of these technical solutions as described above, other technical problems that can be solved by the hot-melting equipment provided by this application, other technical features contained in the technical solutions, and the beneficial effects brought about by these technical features will be further explained in detail in the specific embodiments. Attached Figure Description
[0034] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments of this application or the prior art will be briefly introduced below. Obviously, the drawings described below are only a part of the embodiments of this application. These drawings and text descriptions are not intended to limit the scope of the concept of this application in any way, but to illustrate the concept of this application to those skilled in the art by referring to specific embodiments. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0035] Figure 1 This is a schematic diagram of the overall structure of the hot melt equipment provided in the embodiments of this application;
[0036] Figure 2 This is a partial structural schematic diagram of the hot melt equipment provided in the embodiments of this application;
[0037] Figure 3 A schematic diagram illustrating the structure of the hot-melt assembly, camera module, and mounting assembly of the hot-melt equipment provided in this embodiment of the application.
[0038] Figure 4 A schematic diagram of the structure of the hot-melt assembly, drive assembly, and fixing assembly of the hot-melt equipment provided in the embodiments of this application;
[0039] Figure 5 A schematic diagram of the structure of the equipment platform and the third motor module of the hot melt equipment provided in the embodiments of this application.
[0040] Explanation of reference numerals in the attached figures:
[0041] 100-Hot melt equipment;
[0042] 200 - Equipment platform; 210 - Product mounting plate; 220 - Positioning component;
[0043] 300-Hot melt assembly; 310-Hot melt head; 320-Driver; 330-Heat insulation; 340-Second detection component; 350-Heating component; 360-Heat conduction block;
[0044] 400 - Drive assembly; 410 - First motor module; 420 - Second motor module; 430 - Third motor module;
[0045] 500 - Camera assembly; 510 - Camera module; 511 - Camera end; 512 - Fixed end; 520 - Camera bracket; 530 - Light source; 540 - First inspection piece;
[0046] 600 - Mounting component; 610 - First mounting plate; 620 - Second mounting plate; 621 - First side; 622 - Second side; 630 - Third mounting plate; 640 - Fourth mounting plate;
[0047] 700 - Fixing component; 710 - First fixing plate; 720 - Support base; 730 - Second fixing plate;
[0048] 800-Linear Guide;
[0049] 900 - Rack; 910 - First rack; 911 - Operation panel; 912 - Display device; 920 - Second rack; 930 - Operation area;
[0050] x - First direction; y - Second direction; z - Third direction. Detailed Implementation
[0051] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0052] As described in the background section, in existing hot-melt equipment, flexible circuit boards can be hot-melted manually. However, operators cannot guarantee product quality and appearance uniformity, and the efficiency is low. Alternatively, a small hot-melt fixture can be used to press the entire board down for hot-melt processing. However, due to factors such as the structure of the electrical isolation board itself and processing precision, the electrical isolation board is prone to deformation and warping during the hot-melt process. This causes changes in the position of the fixing posts, affecting the hot-melt quality. Furthermore, each product requires the development of a dedicated hot-melt fixture, resulting in poor compatibility and versatility, and failing to meet the diverse needs of sample production.
[0053] To address the aforementioned technical problems, this application provides a hot-melt device. The hot-melt device includes a device platform, a hot-melt assembly, and a drive assembly. The device platform is used to place the product to be processed. The hot-melt assembly is located on the device platform and includes a detachable hot-melt head for hot-melting and fixing the product to be processed. The drive assembly includes a first motor module and a second motor module connected together. The hot-melt assembly is connected to the second motor module, and the hot-melt assembly achieves reciprocating motion in a first direction on the first motor module via the second motor module, and reciprocating motion in a second direction on the second motor module. The drive assembly also includes a third motor module located below the device platform, and the device platform drives the product to be processed to achieve reciprocating motion in a third direction on the third motor module. Thus, the hot-melt device provided in this application, by setting multiple motor modules, allows the hot-melt assembly and the product to be processed to cooperate and achieve free movement in multiple directions. Utilizing a single-point hot-melt method with the hot-melt assembly improves the compatibility and versatility of the hot-melt device.
[0054] To make the above-mentioned objectives, features, and advantages of the embodiments of this application more apparent and understandable, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0055] This application provides a hot-melt device. By setting multiple motor modules, the hot-melt assembly and the product to be processed can cooperate to achieve free movement in multiple directions. Utilizing a single-point hot-melt method for the hot-melt assembly improves the compatibility and versatility of the hot-melt device. The specific structure of the hot-melt device provided in this application embodiment will be described below with reference to the accompanying drawings.
[0056] refer to Figure 1 This application provides a hot melt equipment 100. The hot melt equipment 100 may include a platform 200. In one possible implementation, the platform 200 may be a rectangular structure, but this application does not impose any limitations on this. It is understood that the platform 200 can be used to place products to be processed, thereby allowing the products to be processed on the platform 200.
[0057] Continue to refer to Figure 1 Based on the above embodiments, the hot-melt equipment 100 may further include a hot-melt assembly 300. For example, Figure 2As shown, the hot melt assembly 300 can be located on the equipment platform 200, and the hot melt assembly 300 can further include a hot melt head 310. It is understood that the hot melt head 310 can be used to hot melt and fix the product to be processed. In one possible implementation, the hot melt head 310 is a detachable structure. Thus, by switching the hot melt head 310, different models of products can be processed, improving the versatility of the hot melt equipment 100, simplifying and facilitating operation, and reducing costs.
[0058] Continue to refer to Figure 2 Based on the above embodiments, the hot-melt device 100 may further include a drive assembly 400. The drive assembly 400 may further include a first motor module 410 and a second motor module 420. In one possible implementation, the first motor module 410 and the second motor module 420 are connected, and the hot-melt assembly 300 is connected to the second motor module 420. It is understood that the second motor module 420 can move in a first direction on the first motor module 410, thereby enabling the hot-melt assembly 300 to reciprocate in the first direction on the first motor module 410 via the second motor module 420, and the hot-melt assembly 300 can also reciprocate in a second direction on the second motor module 420.
[0059] Continue to refer to Figure 2 Based on the above embodiments, the drive component 400 may further include a third motor module 430. The third motor module 430 may be located below the device platform 200. It is understood that the device platform 200 can perform third-direction movement on the third motor module 430, thereby enabling the device platform 200 to drive the product to be processed to achieve third-direction reciprocating motion on the third motor module 430.
[0060] In this way, the hot melt assembly 300 can move in a first or second direction, and the product to be processed can move in a third direction. Through the cooperation of the hot melt assembly 300 and the product to be processed, the product to be processed can be hot melted in the first, second, and third directions. Additionally, in one possible implementation, the hot melt assembly 300 can hot melt the product to be processed using a single-point hot melt method, improving the compatibility and versatility of the hot melt equipment 100.
[0061] It should be noted that, for ease of description, in this embodiment, the first direction can be the length direction of the device platform, i.e. Figure 2 The x-direction. The second direction can be the height direction of the device platform, i.e. Figure 2 The y-direction. The third direction can be the width direction of the device platform, i.e. Figure 2 The z-direction in the equation.
[0062] Continue to refer to Figure 2 Based on the above embodiments, the hot-melt equipment 100 may further include a camera component 500. The camera component 500 may be located at one end of the hot-melt component 300 in the first direction. It is understood that the camera component 500 can be used to photograph the product to be processed and transmit the photographed position information of the product to the control unit. The control unit then controls the drive component 400 to adjust the position of the hot-melt component 300 in different directions. In this way, the camera component 500 can correct the hot-melt position of the product by photographing it, thereby improving the accuracy of the hot-melt position.
[0063] refer to Figure 3 Based on the above embodiments, the camera assembly 500 may further include: a camera module 510, a camera bracket 520, and a light source 530. The camera bracket 520 is fixedly connected to one end of the thermoplastic assembly 300 in the first direction. The camera module 510 is fixed to the camera bracket 520, and the light source 530 may be located below the camera module 510. In one possible implementation, the camera module 510 may include a camera end 511 and a fixed end 512. The fixed end 512 may be fixed to the camera bracket 520, and the camera end 511 may be positioned towards the light source 530. It is understood that the light source 530 can be used to provide illumination brightness for the camera end 511 of the camera module 510.
[0064] Additionally, please refer to... Figure 3 The camera assembly 500 may further include a first detection element 540. The first detection element 540 may be fixed to one end of the camera end 511 of the camera module 510 in the first direction. It is understood that the first detection element 540 can be used to detect the height of the product to be processed in the second direction, thereby further detecting the hot-melt position of the product to be processed.
[0065] Continue to refer to Figure 3 Based on the above embodiments, the hot melt equipment 100 may further include a mounting assembly 600. The mounting assembly 600 may further include a first mounting plate 610, a second mounting plate 620, a third mounting plate 630, and a fourth mounting plate 640. In this embodiment, the first mounting plate 610 may be connected to the second motor module 420, while the second mounting plate 620 may be vertically fixed to the first mounting plate 610.
[0066] Continue to refer to Figure 3In one possible implementation, the second mounting plate 620 has a first surface 621 and a second surface 622 facing each other. The first surface 621 of the second mounting plate 620 can be connected to one side of the third mounting plate 630, while the other side of the third mounting plate 630 can be fixedly connected to the thermoforming assembly 300. Alternatively, the second surface 622 of the second mounting plate 620 can be connected to one side of the fourth mounting plate 640, while the other side of the fourth mounting plate 640 can be fixedly connected to the camera assembly 500. It is understood that the mounting assembly 600 can establish a mounting area, allowing both the thermoforming assembly 300 and the camera assembly 500 to be fixedly connected to the mounting assembly 600, facilitating operation.
[0067] Continue to refer to Figure 3 In one possible implementation, the hot melt assembly 300 may further include: a driving member 320, a heat insulation member 330, a second detection member 340, and a heating member 350. The driving member 320 may be connected to the heat insulation member 330, with the heat insulation member 330 located below the driving member 320. The heating member 350 is located between the heat insulation member 330 and the hot melt head 310. Additionally, the second detection member 340 may be located on one side of the heating member 350. It is understood that the second detection member 340 can be used to detect the temperature of the heating member 350 and adjust it according to the different hot melt temperature requirements of the processed products.
[0068] In the embodiments of this application, it is understood that by cooperating with the hot melt assembly 300 and the product to be processed, after the position of the product to be processed is adjusted in the first direction, the second direction, and the third direction, the hot melt assembly 300 can be driven by the driving component 320 to realize the hot melt function of the hot melt assembly 300. In one possible implementation, exemplarily, the driving component 320 can be a slide cylinder, the first detection component 540 can be a distance sensor, and the second detection component 340 can be a temperature sensor; however, this embodiment of the application is not limited thereto.
[0069] Continue to refer to Figure 3 Based on the above embodiments, the heating element 350 can be located on the heat-conducting block 360. In one possible implementation, the number of heating elements 350 can be two, and this application embodiment does not impose a limitation. In this application embodiment, the two heating elements 350 can be protruding from the heat-conducting block 360 in a first direction, and the second detection element 340 can be disposed between the two heating elements 350. Additionally, the hot melt head 310 can be protruding from the heat-conducting block 360 in a second direction. It is understood that the heating elements 350 are capable of heating the heat-conducting block 360.
[0070] refer to Figure 4Based on the above embodiments, the hot melt equipment 100 further includes a fixing component 700. The fixing component 700 may further include a first fixing plate 710 and a support base 720. In one possible implementation, the first motor module 410 may be fixedly connected to the first fixing plate 710, while the support base 720 may support the first fixing plate 710, thereby enabling both the first fixing plate 710 and the support base 720 to bear loads.
[0071] Continue to refer to Figure 4 Based on the above embodiments, the fixing component 700 may further include a second fixing plate 730. The second motor module 420 may be fixedly connected to the second fixing plate 730, and the second fixing plate 730 may be slidably connected to the first motor module 410. Thus, while the second fixing plate 730 serves a load-bearing function, it can also drive the second motor module 420 to reciprocate in a first direction on the first motor module 410.
[0072] refer to Figure 5 Based on the above embodiments, the hot melt equipment 100 may further include a linear guide rail 800. In one possible implementation, the number of linear guide rails 800 may be two, and this application embodiment does not impose a limitation. In this application embodiment, two linear guide rails 800 are used as an example, and the two linear guide rails 800 may be located at both ends of the third motor module 430 in the first direction.
[0073] Continue to refer to Figure 5 Based on the above embodiments, both linear guides 800 and the third motor module 430 can be located below the device platform 200. In this embodiment, it is understood that the third motor module 430 can drive the device platform 200 to reciprocate along a third direction on the linear guides 800.
[0074] Continue to refer to Figure 5 Based on the above embodiments, the equipment platform 200 may be equipped with a product mounting plate 210 and a positioning element 220. The product to be processed can be placed on the product mounting plate 210, and the product to be processed can be matched with the product mounting plate 210. In one possible implementation, the positioning element 220 may be located at one end of the product mounting plate 210 in a third-party direction. It is understood that when changing to different models of products to be processed, the positioning element 220 can be used to install and position the corresponding model of the product mounting plate 210.
[0075] Continue to refer to Figure 1Based on the above embodiments, the hot melt equipment 100 may further include a frame 900. The frame 900 may further include a first frame 910 and a second frame 920. The first frame 910 and the second frame 920 are connected to form the entire frame 900. Additionally, an operating area 930 may be formed between the first frame 910 and the second frame 920, and the equipment platform 200 may be located within the operating area 930, thereby facilitating the processing of the products to be processed.
[0076] Continue to refer to Figure 1 Based on the above embodiments, in one possible implementation, the first frame 910 may be equipped with an operation panel 911 and a display device 912, thereby facilitating manual operation and viewing of the hot melt equipment 100. Additionally, the second frame 920 may contain an electrical device (not shown in the figure), enabling the electrical device to support the hot melt equipment 100.
[0077] In the embodiments of this application, it is understood that when the model of the product to be processed needs to be changed, only the product positioning plate and the hot melt head 310 need to be switched. This offers the advantages of simple and convenient operation. The hot melt equipment 100 provided in the embodiments of this application improves process efficiency and reduces manufacturing costs.
[0078] In this embodiment of the application, the hot melt equipment 100 provided in this embodiment of the application sets up multiple motor modules so that the hot melt component 300 and the product to be processed can move freely in multiple directions. By using the single-point hot melt method of the hot melt component 300, the compatibility and versatility of the hot melt equipment 100 are improved.
[0079] The various embodiments or implementation methods described in this specification are presented in a progressive manner. Each embodiment focuses on the differences from other embodiments, and the same or similar parts between the embodiments can be referred to each other.
[0080] It should be noted that phrases such as "in specific implementations," "in some embodiments," "in this embodiment," and "exemplarily" in the specification indicate that the described embodiments may include specific features, structures, or characteristics, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Moreover, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments, whether explicitly described or not, is within the knowledge scope of those skilled in the art.
[0081] Generally speaking, terms should be understood at least in part by their use in context. For example, at least in part by context, the term "one or more" as used in the text can be used to describe any feature, structure, or characteristic of the singular meaning, or a combination of features, structures, or characteristics of the plural meaning. Similarly, at least in part by context, terms such as "a" or "the" can also be understood to convey either singular or plural usage.
[0082] It should be readily understood that “on,” “above,” and “on top of” in this disclosure should be interpreted in the broadest manner, such that “on” means not only “directly on something” but also “on something” with an intermediate feature or layer therebetween, and that “above” or “on top of” means not only “on something” but also “on something” without an intermediate feature or layer therebetween (i.e., directly on something).
[0083] Furthermore, for ease of explanation, spatially relative terms such as "below," "below," "under," "above," and "above" may be used to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation other than those shown in the figures. The device may have other orientations (rotated 90 degrees or in other orientations), and the spatially relative descriptive terms used herein may be interpreted accordingly.
[0084] Finally, it should be noted that other embodiments of this application will readily conceive of by those skilled in the art upon consideration of the specification and practice of the application disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein, and is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and alterations may be made without departing from its scope. The scope of this application is limited only by the appended claims.
Claims
1. A hot-melt device, characterized in that, include: Equipment platform (200), the equipment platform (200) is used to place products to be processed; A hot melt assembly (300) is located on the equipment platform (200) and includes a detachable hot melt head (310) for hot melting and fixing the product to be processed; A drive assembly (400) includes a first motor module (410) and a second motor module (420) connected to each other. A thermoplastic assembly (300) is connected to the second motor module (420). The thermoplastic assembly (300) performs a first reciprocating motion on the first motor module (410) via the second motor module (420), and performs a second reciprocating motion on the second motor module (420). The drive assembly (400) also includes a third motor module (430), which is located below the equipment platform (200). The equipment platform (200) drives the product to be processed to achieve a third-direction reciprocating motion on the third motor module (430).
2. The hot-melt equipment according to claim 1, characterized in that, Also includes: A camera assembly (500) is located at one end of the thermoplastic assembly (300) in the first direction; The camera component (500) is used to photograph the product to be processed and to adjust the position of the hot melt component (300) in different directions according to the position information of the photographed product to be processed.
3. The hot-melt equipment according to claim 2, characterized in that, The camera assembly (500) includes: a camera module (510), a camera bracket (520), a light source (530), and a first detection element (540); The camera bracket (520) is fixedly connected to one end of the hot melt assembly (300) in the first direction. The camera module (510) includes a camera end (511) and a fixed end (512). The fixed end (512) is fixed to the camera bracket (520). The camera end (511) is arranged facing the light source (530). The light source (530) is used to provide illumination brightness for the camera end (511) of the camera module (510). The first detection element (540) is fixed to one end of the camera end (511) in the first direction and is used to detect the height of the product to be processed in the second direction.
4. The hot-melt equipment according to claim 3, characterized in that, Also includes: Install components (600); The mounting assembly (600) includes a first mounting plate (610), a second mounting plate (620), a third mounting plate (630), and a fourth mounting plate (640). The first mounting plate (610) is connected to the second motor module (420), and the second mounting plate (620) is vertically fixed to the first mounting plate (610). The second mounting plate (620) has a first side (621) and a second side (622) opposite to each other. The first side (621) is connected to the third mounting plate (630), which is fixedly connected to the hot melt assembly (300). The second side (622) is connected to the fourth mounting plate (640), which is fixedly connected to the camera assembly (500).
5. The hot-melt equipment according to any one of claims 1-4, characterized in that, The hot melt assembly (300) further includes: a driving component (320), a heat insulation component (330), a second detection component (340), and a heating component (350); The driving component (320) is connected to the heat insulation component (330), the heating component (350) is located between the heat insulation component (330) and the hot melt head (310), and the second detection component (340) is located at one end of the heating component (350). The second detection component (340) is used to detect the temperature of the heating component (350).
6. The hot-melt equipment according to claim 4, characterized in that, Also includes: Fixed component (700); The fixing component (700) includes a first fixing plate (710) and a support base (720), wherein the first motor module (410) is fixedly connected to the first fixing plate (710), and the support base (720) is supported on the first fixing plate (710).
7. The hot-melt equipment according to claim 6, characterized in that, The fixing component (700) also includes a second fixing plate (730); The second motor module (420) is fixedly connected to the second fixing plate (730), and the second fixing plate (730) is slidably connected to the first motor module (410).
8. The hot-melt equipment according to any one of claims 1-4, characterized in that, Also includes: Linear guide rail (800), the linear guide rail (800) is located at both ends of the third motor module (430) in the first direction; The linear guide rail (800) and the third motor module (430) are both located below the equipment platform (200). The third motor module (430) drives the equipment platform (200) to reciprocate along the third direction on the linear guide rail (800).
9. The hot-melt equipment according to any one of claims 1-4, characterized in that, The equipment platform (200) is provided with a product mounting plate (210) and a positioning component (220). The product to be processed is placed on the product mounting plate (210), and the positioning component (220) is located at one end of the product mounting plate (210) in the third direction, and is used for installation and positioning when changing different models of products to be processed.
10. The hot-melt equipment according to any one of claims 1-4, characterized in that, Also includes: Rack (900); The rack (900) includes a first rack (910) and a second rack (920), the first rack (910) and the second rack (920) are connected, and an operating area (930) is formed between the first rack (910) and the second rack (920), and the equipment platform (200) is located in the operating area (930); The first frame (910) is provided with an operation panel (911) and a display device (912). The second frame (920) is equipped with electrical devices and is used to support the hot melt equipment (100).