Lamp strip line shaping device
By combining high-temperature furnace and tunnel furnace for heating treatment, along with the discharge output component, the problem of extra textures caused by the unshaped surface of the light strip was solved, achieving uniform shaping of the light strip and improving its appearance quality.
Patent Information
- Application Number
- CN202520093110.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-01-14
AI Technical Summary
In the prior art, the surface of freshly extruded LED strips is not yet shaped and is easily affected by the pulling or transporting devices, resulting in the formation of extra textures and affecting the aesthetic appearance.
The light strip is initially heated and shaped in a high-temperature furnace, and then subjected to long-term low-temperature heating in a tunnel furnace. Combined with the discharge output component, the light strip is suspended and passed through the high-temperature furnace and then shaped again in the tunnel furnace to avoid the generation of additional textures.
It achieves uniform heating and shaping of the inside and outside surface of the LED strip housing, avoiding the generation of extra textures and ensuring the appearance quality of the LED strip.
Smart Images

Figure CN223802897U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a lamp strip manufacturing technical field especially relates to a lamp strip grain shaping device. BACKGROUND
[0002] The surface of the lamp strip just extruded has not been shaped in prior art, so the surface of the lamp strip just extruded is easily affected by the pulling belt or other conveying devices, resulting in additional grain on the surface of the lamp strip, thereby affecting the appearance of the lamp strip. SUMMARY
[0003] Therefore, the utility model provides a lamp strip grain shaping device to solve the problem of additional grain on the surface of the lamp strip in prior art.
[0004] To achieve one or part or all of the above purposes or other purposes, the utility model provides a lamp strip grain shaping device, which comprises a high-temperature furnace, a tunnel furnace and a discharge output assembly; the discharge end of the high-temperature furnace is used for connecting the discharge end of the external lamp strip output device to input the lamp strip made by the external lamp strip output device, the discharge end and the discharge end of the tunnel furnace are respectively connected with the discharge end of the high-temperature furnace and the discharge end of the discharge output assembly, and the discharge end of the discharge output assembly is used for clamping the lamp strip with high-temperature shaping; the heating temperature of the tunnel furnace is lower than that of the high-temperature furnace, and the heating area of the tunnel furnace is longer than that of the high-temperature furnace; the high-temperature furnace is used for high-temperature heating treatment of the shell of the lamp strip suspended and inserted to pre-shape the outer surface of the shell of the lamp strip, and the tunnel furnace is used for high-temperature heating treatment of the shell of the lamp strip to secondarily shape the inner surface and the outer surface of the shell of the lamp strip.
[0005] Further, the discharge output assembly comprises a discharge output support, a driving pulling belt component, a driven pulling belt component and a lifting driving component; the driving pulling belt component is fixed on the discharge output support; the driven pulling belt component is drivenly connected with the driving pulling belt component, and a material passing gap is formed between the driving pulling belt component and the driven pulling belt component, the material passing gap is used for clamping the lamp strip with high-temperature shaping; the lifting driving component is fixed on the driving pulling belt component, and the driving end of the lifting driving component is fixed on the driven pulling belt component.
[0006] Further, the high-temperature furnace comprises a high-temperature support, a high-temperature shell and a high-temperature heating assembly; the high-temperature shell is fixed to the high-temperature support; the high-temperature shell is provided with a high-temperature cavity, a high-temperature feeding hole and a high-temperature discharging hole, two ends of the high-temperature cavity are communicated with a discharging end of the high-temperature feeding hole and a feeding end of the high-temperature discharging hole respectively; the high-temperature heating assembly is arranged on a bottom cavity wall and a side cavity wall of the high-temperature cavity; the high-temperature heating assembly is used for high-temperature heating treatment of a lamp strip suspended through the high-temperature cavity; the feeding end of the high-temperature feeding hole is used for communication with a discharging end of an external lamp strip output device; and the discharging end of the high-temperature discharging hole is communicated with a feeding end of the tunnel furnace.
[0007] Further, the high-temperature shell comprises a furnace bottom shell and a furnace shell cover; the furnace bottom shell is fixed to the high-temperature support; the furnace bottom shell is provided with a high-temperature groove, a high-temperature feeding groove and a high-temperature discharging groove; one side end of the furnace shell cover is screw-linked to the furnace bottom shell; the high-temperature cavity is formed by the furnace shell cover and a groove opening of the high-temperature groove; the high-temperature feeding hole is formed by the furnace shell cover and a groove opening of the high-temperature feeding groove; and the high-temperature discharging hole is formed by the furnace shell cover and a groove opening of the high-temperature discharging groove.
[0008] Further, the high-temperature shell further comprises a high-temperature card support, a high-temperature card piece and a high-temperature embedding seat; the high-temperature card support is fixed to the furnace bottom shell; the high-temperature card piece is rotationally fixed to the high-temperature card support; the high-temperature embedding seat is fixed to the furnace shell cover; and a card embedding end of the high-temperature card piece is buckled to the high-temperature embedding seat to realize cover connection of the furnace shell cover and the furnace bottom shell.
[0009] Further, the tunnel furnace comprises a tunnel support, a tunnel shell and a tunnel heating assembly; the tunnel shell is fixed to the tunnel support; the tunnel shell is provided with a tunnel heating cavity, a tunnel feeding hole and a tunnel discharging hole; two ends of the tunnel heating cavity are communicated with a discharging end of the tunnel feeding hole and a feeding end of the tunnel discharging hole respectively; the feeding end of the tunnel feeding hole is communicated with the discharging end of the high-temperature discharging hole; and the discharging end of the tunnel discharging hole is communicated with the feeding end of the discharging output assembly; the tunnel heating assembly is arranged on a side cavity wall of the tunnel heating cavity; and the tunnel heating assembly is used for heating treatment of a lamp strip through the tunnel heating cavity.
[0010] Further, the tunnel furnace further comprises a tunnel conveying assembly; the tunnel conveying assembly comprises a tunnel conveying driving member, a tunnel conveying driving support, a tunnel conveying driving gear, a tunnel conveying driven support, a tunnel conveying driven gear and a tunnel conveying belt; the tunnel conveying driving support and the tunnel conveying driven support are respectively fixed to two ends of the tunnel support, the tunnel heating cavity is located between the tunnel conveying driving support and the tunnel conveying driven support; the tunnel conveying driving gear is fixed to the tunnel conveying driving support, and the tunnel conveying driven gear is fixed to the tunnel conveying driven support; one ring end of the tunnel conveying belt is sleeved with the tunnel conveying driving gear, and the other ring end of the tunnel conveying belt is sleeved with the tunnel conveying driven gear; and one ring belt segment of the tunnel conveying belt is arranged in the high-temperature cavity to convey the lamp strip output by the high-temperature furnace.
[0011] Further, the lamp strip pattern shaping device further comprises a cooling assembly; the inlet end of the cooling assembly is communicated with the outlet end of the high-temperature furnace, and the outlet end of the cooling assembly is communicated with the inlet end of the tunnel furnace; and the cooling assembly is used for cooling the lamp strip suspended and penetrated.
[0012] Further, the lamp strip pattern shaping device further comprises an exhaust assembly; the suction end of the exhaust assembly is arranged at the inlet end and the outlet end of the high-temperature furnace, and is used for sucking the hot gas discharged by the high-temperature furnace; and the suction end of the exhaust assembly is also arranged at the inlet end and the outlet end of the tunnel furnace, and is used for sucking the hot gas discharged by the tunnel furnace.
[0013] Further, the heating temperature range of the high-temperature furnace is 400-600 degrees, the heating temperature range of the tunnel furnace is 150-200 degrees, and the length of the heating area of the tunnel furnace is greater than or equal to 20 meters.
[0014] The embodiment of the utility model has the following beneficial effects:
[0015] The lamp strip pattern shaping device provided by the utility model is subjected to high-temperature treatment by the high-temperature furnace after being extruded, so that the outer surface of the lamp strip is preliminarily shaped, and then is subjected to long-distance heating treatment by the tunnel furnace; in addition, the heating temperature of the tunnel furnace is lower than that of the high-temperature furnace, so that the high-temperature heating treatment is carried out without damaging the internal structure of the lamp strip, the internal part and the shell of the lamp strip shell are heated, and the internal part and the shell of the lamp strip shell are both secondarily treated and shaped to a specified shape, so that additional patterns are avoided on the internal part and the shell of the lamp strip shell; the output assembly and the external lamp strip output device are combined, so that the lamp strip is suspended and penetrated into the high-temperature furnace, the bottom outer wall of the lamp strip is also shaped, and the subsequent penetration into the tunnel furnace is facilitated, and the heating treatment effect of the tunnel furnace is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0017] Among them:
[0018] Figure 1 It is a structure schematic view of the lamp strip grain shaping device in an embodiment of the present application.
[0019] Figure 2 It is a sectional view of Figure 1
[0020] Figure 3 It is a structure schematic view of the lamp strip grain shaping device in another embodiment of the present application.
[0021] Figure 4 It is a sectional view of Figure 1
[0022] Figure 5 It is a sectional view of Figure 1
[0023] Reference signs:
[0024] 100, high-temperature furnace; 110, high-temperature support; 120, high-temperature shell; 121, furnace bottom shell; 122, furnace shell cover; 123, high-temperature card support; 124, high-temperature card; 125, high-temperature embedding seat; 126, high-temperature handle; 130, high-temperature heating assembly; 140, high-temperature universal wheel; 150, high-temperature door body; 200, tunnel furnace; 210, tunnel support; 220, tunnel shell; 230, tunnel heating assembly; 240, tunnel universal wheel; 250, tunnel conveying assembly; 251, tunnel conveying driving support; 252, tunnel conveying driving gear; 253, tunnel conveying driven support; 254, tunnel conveying driven gear; 255, tunnel conveying belt; 260, supporting roller; 300, discharge output assembly; 310, discharge output support; 320, driving pull belt component; 330, driven pull belt component; 340, lifting driving component; 400, cooling assembly; 1000, lamp strip; 2000, lamp strip output device. DETAILED DESCRIPTION
[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used in the specification herein is for describing particular embodiments only and is not intended to be limiting of the application; the present application is well suited to carry out the objects and to attain the ends specified herein above with respect to the technical solutions of the present application; the terminology used in the specification of the present application and the claims and the above description of the drawings is intended to cover not only the meanings of the terminology but also all the technical equivalents as per the present application; the terms "including", "containing" and "having" and any variations thereof in the specification of the present application and the claims and the above description of the drawings are intended to cover the inclusion not the exclusion of any listed steps or elements; the terms "first", "second", and the like in the specification of the present application and the claims and the above description of the drawings are intended to distinguish different objects and are not intended to describe a particular sequential order, the cold water mentioned in the specification of the present application includes normal temperature water.
[0026] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. It is expressly understood that the embodiments described herein are merely examples from among a great variety of embodiments that can be made by a person skilled in the art.
[0027] In order to make the person skilled in the art better understand the technical solutions of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings.
[0028] With reference to Figures 1 to 5 , the first embodiment of the present application proposes a lamp strip texture shaping device, which comprises: a high-temperature furnace 100, a tunnel furnace 200 and a discharge output assembly 300; the discharge end of the high-temperature furnace 100 is used to communicate with the discharge end of the external lamp strip output device 2000 to input the lamp strip 1000 made by the external lamp strip output device 2000, the discharge end of the high-temperature furnace 100 and the discharge end of the tunnel furnace 200 are respectively communicated with the discharge end of the high-temperature furnace 100 and the discharge end of the discharge output assembly 300, and the discharge end of the discharge output assembly 300 is used to clamp the high-temperature shaped lamp strip 1000; the heating temperature of the tunnel furnace 200 is lower than that of the high-temperature furnace 100, and the heating area of the tunnel furnace 200 is longer than that of the high-temperature furnace 100; the high-temperature furnace 100 is used to high-temperature heat treatment of the shell of the lamp strip 1000 suspended and inserted to pre-shape the outer surface of the shell of the lamp strip 1000, and the tunnel furnace 200 is used to high-temperature heat treatment of the shell of the lamp strip 1000 to shape the inner and outer surfaces of the shell of the lamp strip 1000.
[0029] In the embodiment, the high-temperature furnace 100 is used for preliminarily heating and pre-shaping the shell outer surface of the lamp strip 1000, so as to quickly pre-shape the shell outer surface of the lamp strip 1000 in a short time, mainly to quickly pre-shape the shell bottom outer surface of the lamp strip 1000, facilitate the subsequent feeding of the lamp strip 1000 into the tunnel furnace 200, and if the tunnel furnace 200 is provided with a conveying assembly or a supporting assembly, the conveying assembly or the supporting assembly is avoided to affect the shell bottom outer surface of the lamp strip 1000, so as to facilitate the heating treatment of the lamp strip 1000 in the tunnel furnace 200. The tunnel furnace 200 is used for high-temperature heating of the shell of the lamp strip 1000 for a long time, so that the shell of the lamp strip 1000 in the tunnel furnace 200 is more uniformly heated and more deeply shaped, that is, the inside and the outer surface of the shell of the lamp strip 1000 are heated and shaped, so as to obtain the lamp strip 1000 meeting the specified shape. The shaped lamp strip 1000 is conveyed to the next processing device by the discharging output assembly 300, and the discharging output assembly 300 is combined with the external lamp strip output device 2000, so that the lamp strip 1000 can be suspended and penetrated into the high-temperature furnace 100, and the bottom surface of the shell of the lamp strip 1000 is pre-shaped.
[0030] Referring to Figures 1 to 3 The discharging output assembly 300 comprises a discharging output support 310, a driving pulling belt component 320, a driven pulling belt component 330, and a lifting driving component 340. The driving pulling belt component 320 is fixed to the discharging output support 310. The driven pulling belt component 330 is connected to the driving pulling belt component 320 in a driven mode. A material passing gap is formed between the driving pulling belt component 320 and the driven pulling belt component 330, and is used for clamping output of the high-temperature shaped lamp strip 1000. The lifting driving component 340 is fixed to the driving pulling belt component 320, and a driving end of the lifting driving component 340 is fixed to the driven pulling belt component 330.
[0031] In the embodiment, the discharging output support 310 is used as a support structure of the driving pulling belt component 320, the driven pulling belt component 330, and the lifting driving component 340, so as to facilitate fixation of the driving pulling belt component 320, the driven pulling belt component 330, and the lifting driving component 340 at a specified working station. The material passing gap formed between the driving pulling belt component 320 and the driven pulling belt component 330 is used for clamping output of the lamp strip 1000, and is used in cooperation with the external lamp strip output device 2000 to realize suspension and penetration of the lamp strip 1000 into the high-temperature furnace 100. The lifting driving component 340 is used to lift the driven pulling belt component 330 away from the driving pulling belt component 320 to increase the material passing gap, or to lower the driven pulling belt component 330 away from the driving pulling belt component 320 to decrease the material passing gap, so as to facilitate penetration of the lamp strip 1000 into the material passing gap, or to facilitate penetration of lamp strips 1000 with different thicknesses.
[0032] Further based on the embodiment, the discharging output assembly 300 further comprises a discharging output universal wheel fixed to the bottom of the discharging output support 310, and the discharging output assembly 300 is moved through the discharging output universal wheel.
[0033] With reference to Figure 2 , the high-temperature furnace 100 comprises a high-temperature support 110, a high-temperature shell 120, and a high-temperature heating assembly 130; the high-temperature shell 120 is fixed to the high-temperature support 110; the high-temperature shell 120 is provided with a high-temperature cavity, a high-temperature feeding hole, and a high-temperature discharging hole; two ends of the high-temperature cavity are respectively communicated with a discharging end of the high-temperature feeding hole and a feeding end of the high-temperature discharging hole; the high-temperature heating assembly 130 is arranged on the bottom cavity wall and the side cavity wall of the high-temperature cavity; the high-temperature heating assembly 130 is used for high-temperature heating treatment of the lamp strip 1000 suspended through the high-temperature cavity; the feeding end of the high-temperature feeding hole is used for communication with the discharging end of the external lamp strip output device 2000; and the discharging end of the high-temperature discharging hole is communicated with the feeding end of the tunnel furnace 200.
[0034] In the embodiment, the high-temperature cavity is formed by the high-temperature shell 120, so as to avoid the heat generated by the high-temperature heating assembly 130 from being dissipated outward, thereby ensuring the high-temperature heating treatment effect of the lamp strip 1000.
[0035] With reference to Figures 1 to 2 Further based on the embodiment, the high-temperature furnace 100 further comprises a high-temperature universal wheel 140 fixed to the bottom of the high-temperature support 110, and the high-temperature furnace 100 is moved through the high-temperature universal wheel 140.
[0036] Further based on the embodiment, the high-temperature furnace 100 further comprises a high-temperature door body 150 provided with a high-temperature adjusting groove; the high-temperature door body 150 is arranged at the feeding end of the high-temperature feeding hole and the discharging end of the high-temperature discharging hole through screws, so as to close the high-temperature cavity; and the high-temperature door body 150 is slid in the high-temperature adjusting groove through the screws, so as to realize the opening or closing of the high-temperature feeding hole and the opening or closing of the high-temperature discharging hole.
[0037] Further based on the embodiment, the high-temperature heating assembly 130 is in a sheet shape.
[0038] With reference to Figure 1 , Figure 2 and Figure 4The high-temperature shell 120 includes a furnace bottom shell 121 and a furnace shell cover 122. The furnace bottom shell 121 is fixed to the high-temperature support 110. The furnace bottom shell 121 is provided with a high-temperature groove, a high-temperature feeding groove, and a high-temperature discharging groove. One side end of the furnace shell cover 122 is screw-connected to the furnace bottom shell 121. The high-temperature cavity is formed by the furnace shell cover 122 and the groove opening of the high-temperature groove. The high-temperature feeding hole is formed by the furnace shell cover 122 and the groove opening of the high-temperature feeding groove. The high-temperature discharging hole is formed by the furnace shell cover 122 and the groove opening of the high-temperature discharging groove.
[0039] In the embodiment, the furnace bottom shell 121 and the furnace shell cover 122 are screw-connected, so that the high-temperature shell 120 is opened and closed, and the lamp strip 1000 is conveniently put in.
[0040] Referring to Figure 1 , Figure 2 and Figure 4 , the high-temperature shell 120 further includes a high-temperature card support 123, a high-temperature card 124, and a high-temperature embedding seat 125. The high-temperature card support 123 is fixed to the furnace bottom shell 121. The high-temperature card 124 is rotationally fixed to the high-temperature card support 123. The high-temperature embedding seat 125 is fixed to the furnace shell cover 122. The clamping end of the high-temperature card 124 is buckled to the high-temperature embedding seat 125, so as to realize the cover connection of the furnace shell cover 122 and the furnace bottom shell 121.
[0041] In the embodiment, the high-temperature card support 123, the high-temperature card 124, and the high-temperature embedding seat 125 are used to realize the openable and closable cover fixing of the furnace bottom shell 121 and the furnace shell cover 122.
[0042] Further based on the embodiment, the high-temperature shell 120 further includes a high-temperature handle 126 fixed to the furnace shell cover 122. The furnace shell cover 122 is conveniently pulled to rotate away from the furnace bottom shell 121.
[0043] Referring to Figure 2 , the tunnel furnace 200 includes a tunnel support 210, a tunnel shell 220, and a tunnel heating assembly 230. The tunnel shell 220 is fixed to the tunnel support 210. The tunnel shell 220 is provided with a tunnel heating cavity, a tunnel feeding hole, and a tunnel discharging hole. The two ends of the tunnel heating cavity are respectively communicated with the discharging end of the tunnel feeding hole and the feeding end of the tunnel discharging hole. The feeding end of the tunnel feeding hole is communicated with the discharging end of the high-temperature discharging hole. The discharging end of the tunnel discharging hole is communicated with the feeding end of the discharging output assembly 300. The tunnel heating assembly 230 is arranged in the side cavity wall of the tunnel heating cavity. The tunnel heating assembly 230 is used for heating the lamp strip 1000 passing through the tunnel heating cavity.
[0044] In the embodiment, the tunnel shell 220 is used to form the high-temperature cavity, and the heat generated by the tunnel heating assembly 230 is prevented from dissipating to ensure the high-temperature heating treatment effect of the lamp strip 1000.
[0045] With reference to Figures 1 to 4 Further based on the embodiment, the tunnel furnace 200 further comprises tunnel universal wheels 240 fixed to the bottom of the tunnel support 210, and the tunnel universal wheels 240 facilitate the movement of the tunnel furnace 200.
[0046] Further based on the embodiment, the tunnel shell 220 is composed of the same components as the high-temperature shell 120.
[0047] With reference to Figures 1 to 2 Further based on the embodiment, the tunnel furnace 200 further comprises a tunnel conveying assembly 250; the tunnel conveying assembly 250 comprises a tunnel conveying drive, a tunnel conveying driving support 251, a tunnel conveying driving gear 252, a tunnel conveying driven support 253, a tunnel conveying driven gear 254, and a tunnel conveying belt 255; the tunnel conveying driving support 251 and the tunnel conveying driven support 253 are respectively fixed to the two ends of the tunnel support 210, and the tunnel heating cavity is located between the tunnel conveying driving support 251 and the tunnel conveying driven support 253; the tunnel conveying driving gear 252 is fixed to the tunnel conveying driving support 251, and the tunnel conveying driven gear 254 is fixed to the tunnel conveying driven support 253; one loop end of the tunnel conveying belt 255 is sleeved on the tunnel conveying driving gear, and the other loop end of the tunnel conveying belt 255 is sleeved on the tunnel conveying driven gear; and one loop belt segment of the tunnel conveying belt 255 is arranged in the high-temperature cavity to convey the lamp strip 1000 output by the high-temperature furnace 100.
[0048] In the embodiment, the tunnel conveying drive, the tunnel conveying driving support 251, the tunnel conveying driving gear 252, the tunnel conveying driven support 253, the tunnel conveying driven gear 254, and the tunnel conveying belt 255 are used to realize the feeding of the lamp strip 1000 into the tunnel furnace 200 along the direction parallel to the horizontal plane.
[0049] With reference to Figure 2 Further based on the embodiment, the tunnel furnace 200 further comprises a plurality of supporting rollers 260; the plurality of supporting rollers 260 are arranged in a spaced manner along the feeding direction of the tunnel conveying assembly 250, the two ends of each supporting roller 260 are respectively fixed to the two side cavity walls of the tunnel heating cavity, the supporting roller 260 is attached to the inner loop wall of the tunnel conveying belt 255, and the loop belt segment of the tunnel conveying belt 255 pressed by the lamp strip 1000 is supported by the supporting roller 260.
[0050] With reference to Figure 3The lamp strip pattern setting device further comprises a cooling assembly 400, the inlet end of the cooling assembly 400 is communicated with the outlet end of the high-temperature furnace 100, the outlet end of the cooling assembly 400 is communicated with the inlet end of the tunnel furnace 200, and the cooling assembly 400 is used for cooling the lamp strip 1000 suspendedly passing in.
[0051] In the embodiment, the lamp strip 1000 after the heating treatment of the high-temperature furnace 100 is cooled by the cooling assembly 400, so that the lamp strip 1000 after the treatment of the high-temperature furnace 100 is quickly set.
[0052] In some embodiments, the lamp strip pattern setting device further comprises an exhaust assembly; the suction end of the exhaust assembly is arranged at the inlet end and the outlet end of the high-temperature furnace 100, and is used for sucking the hot gas discharged by the high-temperature furnace 100; and the suction end of the exhaust assembly is also arranged at the inlet end and the outlet end of the tunnel furnace 200, and is used for sucking the hot gas discharged by the tunnel furnace 200.
[0053] In the embodiment, the hot gas discharged by the high-temperature furnace 100 and the tunnel furnace 200 is sucked by the exhaust assembly, so that the hot gas is avoided from remaining in the work station.
[0054] Preferably, the heating temperature range of the high-temperature furnace 100 is 400-600 degrees, the heating temperature range of the tunnel furnace 200 is 150-200 degrees, and the length of the heating area of the tunnel furnace 200 is greater than or equal to 20 meters.
[0055] Obviously, the above-described embodiments are only some embodiments of the present application, rather than all the embodiments, and the preferred embodiments of the present application are given in the drawings, but do not limit the patent scope of the present application. The present application can be realized in many different forms, and conversely, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing specific embodiments, or equivalently replace some technical features. Any equivalent structure made by using the content of the present application specification and drawings, directly or indirectly applied to other related technical fields, is also within the patent protection scope of the present application.
Claims
1. A light strip texturing device, characterized by, The application relates to a lamp strip output device, which comprises a high-temperature furnace, a tunnel furnace and a discharge output assembly; the discharge end of the high-temperature furnace is used for being connected with the discharge end of an external lamp strip output device to input lamp strips made by the external lamp strip output device; the discharge end and the discharge end of the tunnel furnace are respectively connected with the discharge end of the high-temperature furnace and the discharge end of the discharge output assembly; the discharge end of the discharge output assembly is used for clamping and outputting the lamp strips which have been high-temperature shaped; the heating temperature of the tunnel furnace is lower than that of the high-temperature furnace; the heating area of the tunnel furnace is longer than that of the high-temperature furnace; the high-temperature furnace is used for high-temperature heating treatment of the shell of the lamp strips which are suspended and inserted to pre-shape the outer surface of the shell of the lamp strips; the tunnel furnace is used for high-temperature heating treatment of the shell of the lamp strips to secondarily shape the inner surface and the outer surface of the shell of the lamp strips.
2. The light strip texturing device of claim 1, wherein, The discharge output assembly comprises a discharge output support, a driving pulling belt component, a driven pulling belt component and a lifting driving component; the driving pulling belt component is fixed on the discharge output support; the driven pulling belt component is drivenly connected with the driving pulling belt component; a material passing gap is formed between the driving pulling belt component and the driven pulling belt component; the material passing gap is used for clamping and outputting the lamp strips which have been high-temperature shaped; the lifting driving component is fixed on the driving pulling belt component; the driving end of the lifting driving component is fixed on the driven pulling belt component.
3. The light strip texturing device of claim 2, wherein, The high-temperature furnace comprises a high-temperature support, a high-temperature shell and a high-temperature heating assembly; the high-temperature shell is fixed on the high-temperature support; the high-temperature shell is provided with a high-temperature cavity, a high-temperature feeding hole and a high-temperature discharge hole; the two ends of the high-temperature cavity are respectively connected with the discharge end of the high-temperature feeding hole and the feeding end of the high-temperature discharge hole; the high-temperature heating assembly is arranged on the bottom cavity wall and the side cavity wall of the high-temperature cavity; the high-temperature heating assembly is used for high-temperature heating treatment of the lamp strips which are suspended and inserted through the high-temperature cavity; the feeding end of the high-temperature feeding hole is used for being connected with the discharge end of an external lamp strip output device; the discharge end of the high-temperature discharge hole is connected with the feeding end of the tunnel furnace.
4. The light strip texturing device of claim 3, wherein, The high-temperature shell comprises a furnace bottom shell and a furnace shell cover; the furnace bottom shell is fixed on the high-temperature support; the furnace bottom shell is provided with a high-temperature groove, a high-temperature feeding groove and a high-temperature discharge groove; one side end of the furnace shell cover is screw-linked with the furnace bottom shell; the high-temperature cavity is formed by the furnace shell cover and the groove opening of the high-temperature groove; the high-temperature feeding hole is formed by the furnace shell cover and the groove opening of the high-temperature feeding groove; the high-temperature discharge hole is formed by the furnace shell cover and the groove opening of the high-temperature discharge groove.
5. The light strip texturing device of claim 4, wherein, The high-temperature shell further comprises a high-temperature card support, a high-temperature card component and a high-temperature embedding seat; the high-temperature card support is fixed on the furnace bottom shell; the high-temperature card component is rotationally fixed on the high-temperature card support; the high-temperature embedding seat is fixed on the furnace shell cover; the clamping end of the high-temperature card component is buckled and connected with the high-temperature embedding seat to realize the cover connection of the furnace shell cover and the furnace bottom shell.
6. The light strip texturing device of claim 5, wherein, The tunnel furnace comprises a tunnel support, a tunnel shell and a tunnel heating assembly, the tunnel shell is fixed to the tunnel support, the tunnel shell is provided with a tunnel heating cavity, a tunnel feeding hole and a tunnel discharging hole, two ends of the tunnel heating cavity are communicated with a discharging end of the tunnel feeding hole and a feeding end of the tunnel discharging hole respectively, the feeding end of the tunnel feeding hole is communicated with the discharging end of the high-temperature discharging hole, and the discharging end of the tunnel discharging hole is communicated with the feeding end of the discharging output assembly; the tunnel heating assembly is arranged on a side cavity wall of the tunnel heating cavity, and the tunnel heating assembly is used for heating treatment of a lamp strip passing through the tunnel heating cavity.
7. The light strip texture shaping device of claim 6, wherein, The tunnel furnace further comprises a tunnel conveying assembly; the tunnel conveying assembly comprises a tunnel conveying driving member, a tunnel conveying driving support, a tunnel conveying driving gear, a tunnel conveying driven support, a tunnel conveying driven gear and a tunnel conveying belt; the tunnel conveying driving support and the tunnel conveying driven support are respectively fixed to two ends of the tunnel support, and the tunnel heating cavity is located between the tunnel conveying driving support and the tunnel conveying driven support; the tunnel conveying driving gear is fixed to the tunnel conveying driving support, and the tunnel conveying driven gear is fixed to the tunnel conveying driven support; One ring end of the tunnel conveying belt is sleeved on the tunnel conveying driving gear, the other ring end of the tunnel conveying belt is sleeved on the tunnel conveying driven gear, and a ring belt segment of the tunnel conveying belt is arranged in the high-temperature cavity to convey the lamp strip output by the high-temperature furnace.
8. The light strip texture shaping device of claim 2, wherein, The lamp strip pattern shaping device further comprises a cooling assembly, a feeding end of the cooling assembly is communicated with a discharging end of the high-temperature furnace, a discharging end of the cooling assembly is communicated with a feeding end of the tunnel furnace, and the cooling assembly is used for cooling treatment of the lamp strip suspended and fed in.
9. The light strip texture shaping device of claim 2, wherein, The lamp strip pattern shaping device further comprises an exhaust assembly; the suction end of the exhaust assembly is arranged at the feeding end and the discharging end of the high-temperature furnace, and is used for extracting hot gas discharged by the high-temperature furnace; and the suction end of the exhaust assembly is also arranged at the feeding end and the discharging end of the tunnel furnace, and is used for extracting hot gas discharged by the tunnel furnace.
10. The light strip texture shaping device of claim 2, wherein, The heating temperature range of the high-temperature furnace is 400-600 degrees, the heating temperature range of the tunnel furnace is 150-200 degrees, and the length of the heating region of the tunnel furnace is greater than or equal to 20 meters.