Simulation light source angle adjusting device for energy-saving intelligent window performance test

CN223895885UActive Publication Date: 2026-02-10TIANJIN SYP ENG GLASS CO LTD
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Patent Information

Application Number
CN202520588421.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-10
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

[0003]本公开实施例涉及一种节能智能窗性能测试的模拟光源角度调节装置,以解决上述背景技术中提出的在智能窗模拟光源测试过程中,常用的模拟光源角度调节装置的调节角度有限,导致智能窗部分范围内无法完全模拟到光源的照射,进而影响到节能智能窗性能测试精度,无法全面的对智能窗进行测试操作的问题

Benefits of technology

[0012]通过当需要不同角度的光源测试使用时,可以通过旋转调整螺杆A,调整螺杆A的旋转会带动调整座移动,能够改变调整座上所设置的调整滑座与智能窗之间的距离,这种距离的变化,意味着测试光源与智能窗之间的测试距离可以随需而变,为性能测试提供了更多的可能性,再通过旋转调整螺杆B,调整调整滑座与智能窗之间的高度距离,通过多次这样的调节,我们可以在不同的位置对智能窗进行性能测试,从而更全面地评估其性能表现,测试热致变色和热致隔热的能力,提高测试的精度和可靠性。

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Abstract

The utility model provides a simulated light source angle adjusting device for an energy-saving intelligent window performance test, relates to the technical field of intelligent window light source test, and solves the problems that in the intelligent window simulated light source test process, the adjusting angle of a common simulated light source angle adjusting device is limited, so that irradiation of a light source cannot be completely simulated in a part of range of an intelligent window, and the test efficiency is poor. And the performance test precision of the energy-saving intelligent window is influenced. A simulation light source angle adjusting device for an energy-saving intelligent window performance test is characterized in that when light sources with different angles need to be tested and used, an adjusting screw A can be rotated to drive an adjusting seat to move, and the distance between an adjusting sliding seat arranged on the adjusting seat and an intelligent window can be changed; and the height distance between the adjusting sliding seat and the intelligent window is adjusted by rotating the adjusting screw rod B, so that the performance of the intelligent window can be evaluated more comprehensively through multiple times of adjustment, and the test precision and reliability are improved.
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Description

Technical Field

[0001] This application belongs to the field of intelligent window light source testing technology, and more specifically, it relates to a simulated light source angle adjustment device for energy-saving intelligent window performance testing. Background Technology

[0002] In energy-saving smart window performance testing, adjusting the simulated light source angle is crucial for accurately evaluating the window's optical performance. By adjusting the light source angle, the angle of sunlight incidence at different times and seasons can be simulated, thus comprehensively evaluating the energy-saving effect of the smart window under different lighting conditions. However, in the simulated light source testing of smart windows, the adjustment angle of commonly used simulated light source angle adjustment devices is limited. This results in some areas of the smart window not being fully simulated to reflect the light source's illumination, thus affecting the accuracy of the energy-saving smart window performance test and preventing a comprehensive testing operation of the smart window. Summary of the Invention

[0003] This disclosure relates to a simulated light source angle adjustment device for energy-saving smart window performance testing, in order to solve the problem mentioned in the background art that the commonly used simulated light source angle adjustment device has a limited adjustment angle, which results in the inability to fully simulate the illumination of the light source within a certain range of the smart window, thereby affecting the accuracy of energy-saving smart window performance testing and making it impossible to comprehensively test the smart window.

[0004] This application discloses a simulated light source angle adjustment device for energy-saving smart window performance testing, achieved through the following specific technical means:

[0005] In a first aspect, this disclosure provides a simulated light source angle adjustment device for testing the performance of an energy-saving smart window, comprising: a test placement seat, the test placement seat having a circular shape and an adjustment frame rotatably disposed on the outside of the test placement seat; an adjustment seat slidably disposed on one side of the adjustment frame; the test placement seat further comprising: a toothed ring fixed to the outside of the test placement seat; and a support frame, the number of which is set to six, the support frames being fixed to the bottom of the test placement seat in a circular array.

[0006] As a preferred embodiment of this application, the adjustment frame further includes: a servo motor, which is fixedly installed on one side of the top of the adjustment frame; a transmission gear, which is fixedly installed on the bottom of the servo motor shaft; and the transmission gear meshes with the gear ring.

[0007] As a preferred embodiment of this application, the adjusting frame further includes: a fixed side seat, which is integrally disposed on one side of the adjusting frame; two limiting posts, which are symmetrically fixedly installed on one side of the fixed side seat; an adjusting screw A, which rotates to the middle of one side of the fixed side seat; and a threaded connection between the adjusting screw A and the adjusting seat.

[0008] As a preferred embodiment of this application, the adjusting seat further includes: a limiting head A, wherein the number of limiting heads A is set to two, and the limiting heads A are symmetrically and integrally disposed on both sides of the adjusting seat; the limiting heads A are slidably connected to the limiting posts; and a connecting seat is fixed to the top of the adjusting seat.

[0009] As a preferred embodiment of this application, the adjusting seat further includes: an adjusting screw B, which rotates to the center of the top of the connecting seat; and two limiting rods, which are symmetrically and integrally disposed on the top of the connecting seat.

[0010] As a preferred embodiment of this application, the adjusting seat further includes: an adjusting slide block, which slides on the top of the connecting seat; a threaded connection between the adjusting slide block and the adjusting screw B; two limiting heads B, which are symmetrically and integrally disposed on both sides of the adjusting slide block; a sliding connection between the limiting heads B and the limiting rod; and a test light source, which is installed on one side of the adjusting slide block via an angle adjuster.

[0011] Compared with the prior art, this application has the following beneficial effects:

[0012] When testing with light sources at different angles is required, adjusting screw A can be rotated. Rotating screw A moves the adjusting seat, changing the distance between the adjusting slide on the adjusting seat and the smart window. This change in distance means that the test distance between the test light source and the smart window can be adjusted as needed, providing more possibilities for performance testing. Then, adjusting screw B can be rotated to adjust the height distance between the adjusting slide and the smart window. Through multiple such adjustments, we can perform performance tests on the smart window from different positions, thereby more comprehensively evaluating its performance, testing its thermochromic and thermo-insulating capabilities, and improving the accuracy and reliability of the test.

[0013] Once the test light source is adjusted, the test range can be further expanded by activating the servo motor. The servo motor drives the adjustment frame to rotate through the meshing of the transmission gear and the gear ring, ensuring that the test light source and the adjustment frame rotate synchronously. This allows for a more comprehensive and detailed performance test of the smart window. This design not only improves the efficiency and accuracy of the test but also provides more comprehensive and objective data support for the performance evaluation of the smart window. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall axial three-dimensional structure of this application.

[0015] Figure 2 This is a schematic diagram of the test placement base structure of this application.

[0016] Figure 3This is a schematic diagram of the adjustment frame structure of this application.

[0017] Figure 4 This is a schematic diagram of the fixed side seat structure of this application.

[0018] Figure 5 This is a schematic diagram of the adjustment seat structure of this application.

[0019] Figure 6 This is a schematic diagram of the adjustable slide structure of this application.

[0020] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0021] 1. Test placement seat; 101. Gear ring; 102. Support frame; 2. Adjustment frame; 201. Servo motor; 202. Transmission gear; 203. Fixed side seat; 204. Limiting post; 205. Adjusting screw A; 3. Adjustment seat; 301. Limiting head A; 302. Connecting seat; 303. Adjusting screw B; 304. Limiting rod; 305. Adjusting slide; 306. Limiting head B; 307. Test light source. Detailed Implementation

[0022] The embodiments of this application will be described in further detail below with reference to the accompanying drawings and examples.

[0023] Example: As attached Figure 1 To be continued Figure 6 As shown:

[0024] This application provides a simulated light source angle adjustment device for energy-saving smart window performance testing, including: a test placement seat 1, which is circular in shape and has an adjustment frame 2 rotatably mounted on its exterior; an adjustment seat 3 is slidably mounted on one side of the adjustment frame 2; the test placement seat 1 also includes: a toothed ring 101, which is fixed to the exterior of the test placement seat 1; and a support frame 102, which consists of six supports arranged in a circular array and fixed to the bottom of the test placement seat 1.

[0025] The adjustment frame 2 also includes: a servo motor 201, which is fixedly installed on one side of the top of the adjustment frame 2; a transmission gear 202, which is fixedly installed on the bottom of the shaft of the servo motor 201; the transmission gear 202 meshes with the gear ring 101; a fixed side seat 203, which is integrally set on one side of the adjustment frame 2; two limit posts 204, which are symmetrically fixedly installed on one side of the fixed side seat 203; and an adjustment screw A205, which rotates in the middle of one side of the fixed side seat 203; the adjustment screw A205 is threadedly connected to the adjustment seat 3.

[0026] The adjusting seat 3 further includes: two limiting heads A301, which are symmetrically and integrally arranged on both sides of the adjusting seat 3; the limiting heads A301 are slidably connected to the limiting post 204; a connecting seat 302, which is fixed to the top of the adjusting seat 3; an adjusting screw B303, which rotates in the middle of the top of the connecting seat 302; and two limiting rods 304, which are symmetrically and integrally arranged. The adjustment slide 305 is located on the top of the connecting seat 302; the adjustment slide 305 slides on the top of the connecting seat 302; the adjustment slide 305 is threadedly connected to the adjustment screw B303; the limit head B306 is set to two, and the limit heads B306 are symmetrically and integrally set on both sides of the adjustment slide 305; the limit head B306 is slidably connected to the limit rod 304; the test light source 307 is installed on one side of the adjustment slide 305 through an angle adjuster.

[0027] The specific usage and function of this embodiment: During the use of the device, the smart window is placed on top of the test placement seat 1, and then the test light source 307 is aimed at the smart window to perform a light source test.

[0028] When testing with light sources at different angles is required, the adjusting screw A205 can be rotated. This screw will move the adjusting seat 3, changing the distance between the adjusting slide 305 on the adjusting seat 3 and the smart window. This allows for changing the testing distance between the test light source 307 on one side of the adjusting slide 305 and the smart window. Then, by rotating the adjusting screw B303, the adjusting slide 305 will move, changing the height distance between the adjusting slide 305 and the smart window. Through multiple adjustments, the performance of the smart window can be tested at different positions, improving testing accuracy.

[0029] Once the test light source 307 has been adjusted, the servo motor 201 can be started. The servo motor 201 will drive the adjustment frame 2 to rotate through the meshing between the transmission gear 202 and the gear ring 101, so that the test light source 307 will rotate together with the adjustment frame 2, thereby enabling a more comprehensive performance test of the smart window.

Claims

1. A simulated light source angle adjustment device for energy-saving smart window performance testing, characterized in that, include: The test placement seat (1) is circular in shape and has an adjustment frame (2) rotatably mounted on its exterior. An adjustment seat (3) is slidably mounted on one side of the adjustment frame (2). The test placement seat (1) also includes: a gear ring (101) fixed to the exterior of the test placement seat (1); and a support frame (102) consisting of six supports arranged in a circular array at the bottom of the test placement seat (1).

2. The simulated light source angle adjustment device for energy-saving smart window performance testing as described in claim 1, characterized in that: The adjustment frame (2) also includes: a servo motor (201), which is fixedly installed on one side of the top of the adjustment frame (2); a transmission gear (202), which is fixedly installed on the bottom of the shaft of the servo motor (201); the transmission gear (202) meshes with the gear ring (101).

3. The simulated light source angle adjustment device for energy-saving intelligent window performance testing as described in claim 2, characterized in that: The adjusting frame (2) further includes: a fixed side seat (203), which is integrally set on one side of the adjusting frame (2); two limiting posts (204), which are symmetrically fixedly installed on one side of the fixed side seat (203); an adjusting screw A (205), which rotates in the middle of one side of the fixed side seat (203); and a threaded connection between the adjusting screw A (205) and the adjusting seat (3).

4. The simulated light source angle adjustment device for energy-saving smart window performance testing as described in claim 1, characterized in that: The adjustment seat (3) further includes: a limiting head A (301), the number of limiting heads A (301) is set to two, the limiting heads A (301) are symmetrically and integrally arranged on both sides of the adjustment seat (3); the limiting head A (301) is slidably connected to the limiting post (204); and a connecting seat (302), the connecting seat (302) is fixed to the top of the adjustment seat (3).

5. The simulated light source angle adjustment device for energy-saving intelligent window performance testing as described in claim 4, characterized in that: The adjusting seat (3) further includes: adjusting screw B (303), which rotates at the top center of the connecting seat (302); and limiting rod (304), which is set to two, and the limiting rods (304) are symmetrically and integrally set on the top of the connecting seat (302).

6. The simulated light source angle adjustment device for energy-saving smart window performance testing as described in claim 5, characterized in that: The adjustment seat (3) further includes: an adjustment slide (305), which slides on the top of the connecting seat (302); the adjustment slide (305) is threadedly connected to the adjustment screw B (303); a limit head B (306), which has two limit heads B (306) and is symmetrically and integrally arranged on both sides of the adjustment slide (305); the limit head B (306) is slidably connected to the limit rod (304); and a test light source (307), which is installed on one side of the adjustment slide (305) through an angle adjuster.