Batch heating primer device

By using a batch heating blunting device to achieve the blunting operation of optical fibers, the problem of slow blunting rate of optical fibers in the existing technology is solved, and the processing efficiency is improved.

CN224296140UActive Publication Date: 2026-05-29武夷学院

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
武夷学院
Filing Date
2025-06-24
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing technologies, the blunt end process of optical fibers is relatively slow, which affects processing efficiency.

Method used

A batch heating head-bending device is adopted, which realizes the surface head-bending operation of optical fiber through the sliding table module in the front-back, left-right, and up-down directions, and uses regional heating plates for batch heating.

Benefits of technology

It improves the efficiency of blunt ends of optical fibers, reduces the number of operations, and increases processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a batch heating and toning head device, it includes main control platform and install on the front -back direction slide platform module of main control platform, the front -back direction slide platform module is slidably connected with first slide platform, the top of first slide platform is connected with left -right direction slide platform module, and the left -right direction slide platform module is slidably connected with second slide platform, the front side of second slide platform is equipped with up -down direction slide platform module, and up -down direction slide platform module is slidably connected with third slide platform, and the front side of third slide platform is connected with the docking plate, and the bottom of docking plate is connected with the area heating plate, the utility model discloses the traditional point toning head mode is adjusted to the face toning head mode, and according to the size control toning head's number of times of area heating plate, has improved the toning head efficiency of light guide fiber.
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Description

Technical Field

[0001] This utility model relates to the field of mold equipment technology, and in particular to a batch heating head device. Background Technology

[0002] When processing translucent concrete handicrafts, before pouring the concrete, the ends of the light-guiding fibers on the concrete mold need to be blunted to prevent the light-guiding fibers embedded in the concrete mold from detaching.

[0003] The current main heating method involves installing a heating head on the optical fiber implantation device. After the CNC device completes the implantation of the optical fiber, the horizontal adjustment mechanism is controlled to repeat the implantation trajectory of the optical fiber, and the end of each optical fiber is blunted (heat-fused). However, due to the limited movement speed of the horizontal adjustment mechanism, the process of blunting the optical fiber is slow, which seriously affects subsequent operations. Utility Model Content

[0004] The purpose of this invention is to provide a batch heating head-bending device that can realize batch, large-area optical fiber head-bending operations and improve work efficiency.

[0005] This utility model is achieved through the following technical solution:

[0006] A batch heating head device includes a main control panel 1 and a front-to-back sliding table module 11 mounted on the main control panel 1; a first sliding table 111 is slidably connected to the front-to-back sliding table module 11; a left-to-right sliding table module 12 is connected to the top of the first sliding table 111, and a second sliding table 121 is slidably connected to the left-to-right sliding table module 12.

[0007] The front side of the second slide 121 is provided with a vertical slide module 13, and a third slide 131 is slidably connected to the vertical slide module 13. A docking plate 141 is connected to the front side of the third slide 131, and a regional heating plate 14 is connected to the bottom of the docking plate 141.

[0008] Compared with previous technologies, the beneficial effects of this utility model are as follows:

[0009] 1. This utility model adjusts the traditional point-to-point striking mode to a surface-to-point striking mode, and controls the number of strikings according to the size of the area heating plate, thereby improving the striking efficiency of the optical fiber. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the structure of this utility model.

[0011] Labeling Explanation: 1 Main Control Panel, 11 Forward and Backward Slide Module, 111 First Slide, 112 First Frame, 114 First Motor, 115 Guide Rail, 12 Left and Right Slide Module, 121 Second Slide, 122 Second Frame, 123 Second Lead Screw, 124 Second Motor, 13 Up and Down Slide Module, 131 Third Slide, 132 Third Frame, 133 Third Lead Screw, 134 Third Motor, 14 Zone Heating Plate, 141 Connecting Plate, 142 Heat Insulation Plate. Detailed Implementation

[0012] The present invention will now be described in detail with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description:

[0013] like Figure 1 As shown, the batch heating head device includes a main control panel 1 and a front-to-back sliding table module 11 mounted on the main control panel 1; a first sliding table 111 is slidably connected to the front-to-back sliding table module 11; a left-to-right sliding table module 12 is connected to the top of the first sliding table 111, and a second sliding table 121 is slidably connected to the left-to-right sliding table module 12.

[0014] The front side of the second slide 121 is provided with a vertical slide module 13, and a third slide 131 is slidably connected to the vertical slide module 13. A docking plate 141 is connected to the front side of the third slide 131, and a regional heating plate 14 is connected to the bottom of the docking plate 141.

[0015] It should be noted that this utility model has a flexible adjustment structure, including slide modules in the front-back, left-right, and up-down directions, which can quickly adjust the hot pressing position according to the size and shape of different molds, thus improving the versatility and compatibility of this utility model. It should also be noted that the area heating plate 14 here is simply a heated metal plate.

[0016] For example, assuming the mold is rectangular with a long side of 50-100 units and a width of 40-100 units, a heating plate 14 with a length of 50x40 units can be prepared. Assuming there are 200 optical fibers, previously 200 heating cycles would have been required. Now, with 200 optical fibers distributed within a 50x40 mold, only one heating cycle is needed; and with 200 (or more) optical fibers distributed within a 100x100 mold, a maximum of six heating cycles are required (partial overlapping heating).

[0017] Furthermore, the heating plate 14 in the area is also provided with a heat insulation plate 142;

[0018] The bottom of the docking plate 141 is connected to the heat insulation plate 142 by screws, and the bottom of the heat insulation plate 142 is connected to the area heating plate 14 by screws.

[0019] It should be noted that the heat insulation plate can effectively block the heat generated by the heating head from being conducted to the upper structure of the equipment, avoiding thermal expansion and deformation of the adjustment mechanism or overheating of the operating area, thus ensuring stable operation of the equipment and the safety of personnel.

[0020] Furthermore, the front-to-back sliding module 11 includes a first frame 112 mounted on the top of the main control panel 1, and a first slide 111 slidably connected to the first frame 112; a first lead screw extending in the front-to-back direction is rotatably mounted on the first frame 112, a first motor 114 is connected to the rear end of the first lead screw, the front end of the first lead screw extends into the first slide 111 and is threadedly engaged with the first slide 111, and the first motor 114 is fixedly connected to the rear of the first frame 112.

[0021] Furthermore, the top left and right ends of the first frame 112 are provided with guide rails 115 extending in the front-back direction, and the bottom left and right ends of the first slide table 111 are respectively connected to the two guide rails 115.

[0022] Furthermore, the left-right sliding module 12 includes a second frame 122 fixedly connected to the top of the first sliding module 111. The second frame 122 extends in the left-right direction, and a second sliding module 121 is slidably connected inside the second frame 122. A second lead screw 123 extending in the left-right direction is also rotatably connected to the second frame 122. The second lead screw 123 passes through the second sliding module 121 and is threadedly engaged with the second sliding module 121. A second motor 124 is connected to the right end of the second lead screw 123, and the second motor 124 is fixedly installed on the second frame 122.

[0023] Furthermore, the vertical slide module 13 includes a third frame 132 fixedly connected to the front end of the second slide 121. The third frame 132 extends in the vertical direction, and the third slide 131 is slidably connected inside the third frame 132. A vertically arranged third lead screw 133 is also rotatably connected inside the third frame 132. The third lead screw 133 passes through the third slide 131 and is threadedly engaged with the third slide 131. A third motor 134 is connected to the top end of the third lead screw 133, and the third motor 134 is fixed to the third frame 132.

[0024] It should be noted that the front-to-back sliding module 11, the left-to-right sliding module 12, and the up-to-down sliding module 13 can respectively control the precise movement of the heating plate 14 in multiple directions such as front-to-back, left-to-right, and up-to-down, so as to achieve control over the hot pressing area of ​​the mold.

[0025] In use, the mold is placed on the main control panel 1 and positioned below the area heating plate 14. Then, the area heating plate 14 is activated, and the protruding part of the optical fiber on the mold is hot-pressed by controlling the front-back sliding module 11, the left-right sliding module 12, and the up-down sliding module 13, thereby forming a punch.

[0026] Although this utility model has been illustrated and described using specific embodiments and alternative methods, it should be understood that various changes and modifications are permitted as long as they do not depart from the spirit and scope of this utility model. Therefore, it should be understood that this utility model is not limited in any sense except by the appended claims and their equivalents.

Claims

1. A batch heating head device, characterized in that: It includes a main control panel (1) and a front-to-back sliding module (11) mounted on the main control panel (1); a first slide (111) is slidably connected to the front-to-back sliding module (11); a left-to-right sliding module (12) is connected to the top of the first slide (111), and a second slide (121) is slidably connected to the left-to-right sliding module (12). The front side of the second slide (121) is provided with a vertical slide module (13), and a third slide (131) is slidably connected on the vertical slide module (13). A docking plate (141) is connected to the front side of the third slide (131), and a regional heating plate (14) is connected to the bottom of the docking plate (141).

2. The batch heating head device according to claim 1, characterized in that: The area heating plate (14) is also provided with a heat insulation plate (142). The bottom of the docking plate (141) is connected to the heat insulation plate (142) by screws, and the bottom of the heat insulation plate (142) is connected to the area heating plate (14) by screws.

3. The batch heating head device according to claim 1, characterized in that: The front-to-back sliding module (11) includes a first frame (112) mounted on the top of the main control panel (1), and a first slide (111) slidably connected to the first frame (112); a first lead screw extending in the front-to-back direction is rotatably mounted on the first frame (112), a first motor (114) is connected to the rear end of the first lead screw, the front end of the first lead screw extends into the first slide (111) and is threadedly engaged with the first slide (111), and the first motor (114) is fixedly connected to the rear of the first frame (112).

4. The batch heating head device according to claim 3, characterized in that: The first frame (112) has guide rails (115) extending in the front-back direction at both the left and right ends of the top, and the first slide table (111) has two guide rails (115) respectively connecting to the left and right ends of the bottom.

5. The batch heating head device according to claim 1, characterized in that: The left-right sliding module (12) includes a second frame (122) fixedly connected to the top of the first sliding table (111). The second frame (122) extends in the left-right direction, and the second sliding table (121) is slidably connected inside the second frame (122). A second lead screw (123) extending in the left-right direction is also rotatably connected to the second frame (122). The second lead screw (123) passes through the second sliding table (121) and is threadedly engaged with the second sliding table (121). A second motor (124) is connected to the right end of the second lead screw (123), and the second motor (124) is fixedly installed on the second frame (122).

6. The batch heating head device according to claim 1, characterized in that: The vertical slide module (13) includes a third frame (132) fixedly connected to the front end of the second slide (121). The third frame (132) extends in the vertical direction, and the third slide (131) is slidably connected inside the third frame (132). A vertically arranged third lead screw (133) is also rotatably connected inside the third frame (132). The third lead screw (133) passes through the third slide (131) and is threadedly engaged with the third slide (131). A third motor (134) is connected to the top of the third lead screw (133), and the third motor (134) is fixed on the third frame (132).