Movable support for installing indoor temperature collector
By designing a movable bracket, the combination of support columns and sun visors solves the problems of inflexibility and light impact of existing brackets, and achieves flexible deployment and high-precision monitoring of temperature collectors.
Patent Information
- Application Number
- CN202422756631.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The existing temperature collector brackets are fixed to the collector, which limits the data acquisition range and depth, is not flexible enough, and the collector is susceptible to direct light and causes deviation in measurement results, affecting the acquisition accuracy.
Design a movable bracket including a bracket base and auxiliary adjustment components, which enables flexible deployment and protection against light through the combination of support columns and sun visors. The support columns can adjust the height, and the sun visor blocks sunlight, providing stable fixation and sun protection.
It realizes flexible monitoring of the temperature collector in different regions and times, reduces data errors, improves the quality and accuracy of monitoring data, and prevents high temperatures caused by light.
Smart Images

Figure CN223307698U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of smart heating, and in particular to a movable bracket for installing an indoor temperature collector. Background Art
[0002] In the smart heating system, indoor temperature is an important parameter and a key basis for evaluating the quality of heating and whether there is thermal imbalance. When collecting indoor temperature data, a temperature collector is needed to measure the indoor temperature in real time and upload the data to the room temperature cloud platform or the monitoring platform of the relevant heating company. According to the indoor temperature data sent back by the collector, the boiler heating load is adjusted in advance, the heating balance between the systems is adjusted, and constant temperature heating is achieved. When installing the temperature collector, a bracket is needed to stabilize the installation position of the temperature collector.
[0003] During use, the existing collector bracket usually uses a supporting base to fix the collector for temperature collection, which limits the range and depth of the collector's data collection, resulting in lack of flexibility when the monitoring position needs to be adjusted, reducing the detection effect. At the same time, the collector is exposed to the environment and is easily exposed to direct sunlight, which causes the temperature of the collector itself to rise, resulting in a deviation between the measurement results and the actual indoor temperature, affecting the collector's detection accuracy.
[0004] Therefore, for the above-mentioned existing collector bracket, a supporting base plate is usually used to fix the collector for temperature collection, which limits the range and depth of the collector data collection, resulting in lack of flexibility when the monitoring position needs to be adjusted, reducing the detection effect. At the same time, the collector is exposed to the environment and is susceptible to direct sunlight, which causes the temperature of the collector itself to rise, resulting in a deviation between the measurement result and the actual indoor temperature, affecting the collector's detection accuracy. A movable bracket for installing the indoor temperature collector can be designed to facilitate temperature monitoring in different areas or at different times, reduce data errors, and block the impact of direct sunlight on the room temperature collector, thereby improving the quality of monitoring data. Utility Model Content
[0005] In order to overcome the existing collector bracket, a supporting base plate is usually used to fix the collector for temperature collection, which limits the range and depth of the collector data collection, resulting in lack of flexibility when the monitoring position needs to be adjusted, reducing the detection effect. At the same time, the collector is exposed to the environment and is susceptible to direct sunlight, which causes the temperature of the collector itself to rise, resulting in a deviation between the measurement results and the actual indoor temperature, affecting the collector's detection accuracy.
[0006] The technical solution of the utility model is: a movable bracket for installing an indoor temperature collector, comprising a bracket base and an auxiliary adjustment component; an auxiliary adjustment component for assisting the bracket in moving and limiting is installed at the upper end of the bracket base; the auxiliary adjustment component comprises a bracket backboard, a placement box, a support column, a sun visor, a limit plate, a positioning rod, an insert plate, and a load-bearing block; the upper end of the bracket base is provided with a bracket backboard, the upper end of the bracket base is provided with a limit groove for accommodating the bracket backboard, a plurality of groups of through holes are provided inside the bracket backboard, two groups of support columns are provided inside the plurality of through holes, and a placement box is provided above the support columns.
[0007] Preferably, by utilizing two groups of support columns to adjust their heights along the inside of multiple groups of through holes according to the collection requirements of the collector, different installation environments and collection requirements can be adapted, so that the temperature collector can be flexibly deployed indoors, facilitating temperature monitoring in different areas or at different times, reducing data errors, and improving the quality of monitoring data. Anti-slip pads are laid between the card slots and the support columns to provide a stable fixing effect, increase the friction between the card slots and the support columns, and prevent the temperature collector from shifting or tipping over due to accidental collisions or vibrations. By placing two groups of sunshades installed on the upper end of the box, direct sunlight is effectively blocked, reducing the direct impact of sunlight on the temperature collector, avoiding high temperature readings due to direct sunlight, and improving the accuracy of temperature data.
[0008] Preferably, two groups of card slots are provided at the lower end of the placement box, and the placement box is fixed to the support column through the card slots, and anti-slip pads are laid inside the two groups of card slots.
[0009] Preferably, a sun visor is symmetrically provided on the upper end of the placement box, and the sun visor is fixedly connected to the placement box.
[0010] Preferably, a limit plate is provided at one end of the two groups of support columns, a threaded ring for accommodating the limit plate is provided inside the support column, the limit plate is fixed to the support column by threads, and the inner wall of the limit plate is fitted with the placement box.
[0011] Preferably, two groups of positioning rods are provided inside the back plate of the bracket, and a connecting plate is provided at one end of the two groups of positioning rods. The two groups of positioning rods are fixedly connected by the connecting plate, and positioning holes for accommodating the positioning rods are opened inside the back plate of the bracket and the support column.
[0012] Preferably, an insert plate is provided inside the bracket base, and a connecting groove for accommodating the insert plate is provided inside the bracket base and the bracket back plate. The bracket base is fixedly connected to the bracket back plate through the insert plate, and pins are symmetrically provided at the outer ends of the insert plate.
[0013] Preferably, a load-bearing block is provided at the lower corner of the bracket base, and the bottom of the load-bearing block is paved with anti-slip particles.
[0014] Beneficial effects of the utility model:
[0015] 1. Compared with the traditional collector bracket, by using two sets of support columns to adjust their height along multiple sets of through holes according to the collection requirements of the collector, it adapts to different installation environments and collection requirements, so that the temperature collector can be flexibly deployed indoors, convenient for temperature monitoring in different areas or at different times, reducing data errors and improving the quality of monitoring data. In addition, anti-slip pads are laid between the card slots and the support columns to provide a stable fixing effect, increase the friction between the card slots and the support columns, and prevent the temperature collector from shifting or tipping over due to accidental collisions or vibrations. By placing two sets of sunshades installed on the top of the box, direct sunlight is effectively blocked, reducing the direct impact of sunlight on the temperature collector, avoiding high temperature readings due to direct sunlight, and improving the accuracy of temperature data. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the overall structure of the mobile bracket of the present utility model;
[0017] Figure 2 Shown is a schematic diagram of the structure of the mobile bracket support column of the utility model;
[0018] Figure 3 Shown is a schematic diagram of the structure of the mobile bracket placement box of the present utility model;
[0019] Figure 4 Shown is a schematic diagram of the structure of the mobile bracket positioning rod of the utility model.
[0020] Explanation of the accompanying drawings: 1. bracket base; 201. bracket back plate; 202. placement box; 203. support column; 204. sun visor; 205. limit plate; 206. positioning rod; 207. connecting plate; 208. plug plate; 209. latch; 210. load-bearing block; 211. anti-slip gasket. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figures 1-4 The utility model provides an embodiment: a movable bracket for installing an indoor temperature collector, comprising a bracket base 1 and an auxiliary adjustment component; an auxiliary adjustment component for assisting the bracket in moving and limiting is installed on the upper end of the bracket base 1; the auxiliary adjustment component comprises a bracket back plate 201, a placement box 202, a support column 203, a sun visor 204, a limit plate 205, a positioning rod 206, an insert plate 208, and a load-bearing block 210. The upper end of the bracket base 1 is provided with a bracket back plate 201, and the upper end of the bracket base 1 is provided with a limiting groove for accommodating the bracket back plate 201. A plurality of groups of through holes are provided inside the bracket back plate 201, and two groups of support columns 203 are provided inside the plurality of through holes. A placement box 202 is provided above the support columns 203.
[0023] See also Figure 1-Figure 2 In this embodiment, two groups of card slots are provided at the lower end of the placement box 202, and the placement box 202 is fixed to the support column 203 through the card slots. Anti-slip pads 211 are laid inside the two groups of card slots. By laying anti-slip pads 211 between the card slots and the support column 203, a stable fixing effect is provided, and the friction between the card slots and the support column 203 is increased to prevent the temperature collector from shifting or tipping over due to accidental collision or vibration, thereby improving the stability of the adjustment and detection process. Sunshades 204 are symmetrically provided at the upper end of the placement box 202, and the sunshades 204 are fixedly connected to the placement box 202. By installing two groups of sunshades 204 on the upper end of the placement box 202, direct sunlight is effectively blocked, reducing the direct impact of sunlight on the temperature collector, avoiding high temperature readings due to direct sunlight, and improving the accuracy of temperature data.
[0024] See also Figure 1-Figure 3 The support column 203 is fixed with a threaded ring 205, and the inner wall of the limit plate 205 is fitted with the placement box 202. The limit plate 205 assists the support column 203 to fit tightly with the placement box 202, thereby strengthening the fixing strength between the support column 203 and the placement box 202, preventing displacement caused by external force or vibration, and ensuring stable support for the collector. Two sets of positioning rods 206 are provided inside the bracket back plate 201, and one end of the two sets of positioning rods 206 is provided with a connecting plate 207. The two sets of positioning rods 206 are fixedly connected by the connecting plate 207. The bracket back plate 201 and the support column 203 are provided with positioning holes for accommodating the positioning rods 206. After the support column 203 is inserted, the positioning rods 206 are used to plug and position, thereby reducing the shaking of the support column 203, providing more stable support, and assisting the temperature collector in taking accurate values.
[0025] See also Figure 2-Figure 4, in this embodiment, an insert plate 208 is provided inside the bracket base 1, and a connecting groove for accommodating the insert plate 208 is opened inside the bracket base 1 and the bracket back plate 201, and the bracket base 1 is fixedly connected to the bracket back plate 201 through the insert plate 208, and the outer end of the insert plate 208 is symmetrically provided with a latch 209. After the bracket back plate 201 is installed, the insert plate 208 is used for plugging and positioning, which simplifies the installation process, makes the assembly and positioning of the bracket faster, and improves the installation efficiency. The insert plate 208 is used to assist in plugging, which facilitates multiple disassembly and reinstallation of the bracket back plate 201, which is suitable for scenarios where frequent adjustment or movement of the temperature collector is required, thereby improving the reusability of the bracket. A load-bearing block 210 is provided at the lower end corner of the bracket base 1, and the bottom of the load-bearing block 210 is paved with anti-slip particles. By using anti-slip particles to assist the load-bearing plate in supporting the equipment, the equipment is prevented from sliding or tipping over during use, thereby improving the stability of the device during use.
[0026] The dimensions of the bracket back plate 201 (length, width, thickness) are: 500mm, 100mm, 30mm, and the material is PP;
[0027] Holes on the bracket back plate 201: two holes are opened every 150 mm in the length direction of the back plate, evenly distributed in the width direction, with a hole depth of 20 mm and a hole diameter of 10 mm;
[0028] The dimensions of the bracket base 1 (length, width, height) are: 150mm, 102mm, 50mm, and are made of stainless steel. The stainless steel is slotted in the middle of its length, and the bracket back plate 201 is placed in the slot. The slot dimensions (length, width, depth) are: 100mm, 35mm, 40mm.
[0029] The support column 203 is a cylinder with a diameter of 9mm and a length of 60mm, with a round plug at one end and a diameter of 15mm. The material is PP. The support column 203 can be placed in the holes of the bracket back plate 201 at different heights according to the required installation height;
[0030] The bottom of the placement box 202 is a frosted PP board with a length, width and thickness of 110mm, 50mm and 20mm. When the center lines of the bracket base 1 and the bracket back plate 201 are aligned, a circular groove with a size of 10mm is opened at the position where the support column 203 overlaps.
[0031] The two sets of sunshades 204 have the same width and thickness as the base plate, are 50 mm long, are made of PP, and are fixedly connected to the placement box 202.
[0032] When working, first move the bracket base 1 to the designated area according to the position where the collector needs to collect temperature, and use the anti-slip particles to assist the load-bearing plate to support the equipment to prevent the equipment from sliding or tipping over during use. Secondly, insert the bracket back plate 201 into the bracket base 1, and use the plug-in plate 208 to horizontally penetrate the bracket base 1 and the bracket back plate 201 for plugging and fixing. After the plug-in plate 208 is plugged in, the pins 209 are placed into the two ends of the plug-in plate 208 for limiting, simplifying the installation process, making the assembly and positioning of the bracket faster, and using the plug-in plate 208 to assist in plugging, it is convenient to disassemble and reinstall the bracket back plate 201 multiple times, which is suitable for scenarios where frequent adjustment or movement of the temperature collector is required. After the bracket back plate 201 is installed, according to the collection requirements of the collector, use two sets of support columns 203 to plug its height along the multiple sets of through holes to adapt to different installation environments and collection requirements, so that the temperature collector can be flexibly deployed indoors, convenient for temperature monitoring in different areas or at different times.
[0033] After the support column 203 is plugged in, the positioning rod 206 is inserted into the bracket back plate 201 to fix the support column 203, reducing the shaking of the support column 203 and providing more stable support. Secondly, the placement box 202 is connected to the outer wall of the two groups of support columns 203 in combination with the card slot, and an anti-slip pad 211 is laid between the card slot and the support column 203 to provide a stable fixing effect, increase the friction between the card slot and the support column 203, and prevent the temperature collector from shifting or tipping over due to accidental collision or vibration, ensuring smooth collection of subsequent collectors. After the placement box 202 is clamped, two groups of limit plates 205 are used to screw and fix with the support column 203 to assist in fitting the placement box 202 and strengthen the fixing strength between the support column 203 and the placement box 202. During the collector detection process, the two groups of sunshades 204 installed on the upper end of the placement box 202 can effectively block direct sunlight, reduce the direct impact of sunlight on the temperature collector, and ensure the accuracy of temperature data collection.
[0034] Through the above steps, by using two groups of support columns 203 to adjust the height along the inside of multiple groups of through holes according to the collection requirements of the collector, different installation environments and collection requirements can be adapted, so that the temperature collector can be flexibly deployed indoors, which is convenient for temperature monitoring in different areas or at different times, reduces data errors, and improves the quality of monitoring data. In addition, an anti-slip pad 211 is laid between the card slot and the support column 203 to provide a stable fixing effect, increase the friction between the card slot and the support column 203, and prevent the temperature collector from shifting or tipping over due to accidental collision or vibration. The two groups of sunshades 204 installed on the upper end of the placement box 202 effectively block direct sunlight, reduce the direct impact of sunlight on the temperature collector, avoid high temperature readings due to direct sunlight, and improve the accuracy of temperature data.
Claims
1. A movable bracket for mounting an indoor temperature collector, comprising a bracket base (1); characterized in that: The invention also includes an auxiliary adjustment component; the upper end of the bracket base (1) is equipped with an auxiliary adjustment component for assisting the bracket in moving and limiting; the auxiliary adjustment component includes a bracket back plate (201), a placement box (202), a support column (203), a sun visor (204), a limit plate (205), a positioning rod (206), an insert plate (208), and a load-bearing block (210); the upper end of the bracket base (1) is provided with a bracket back plate (201); the upper end of the bracket base (1) is provided with a limit groove for accommodating the bracket back plate (201); the interior of the bracket back plate (201) is provided with multiple groups of through holes; the interior of the multiple groups of through holes is provided with two groups of support columns (203); and the upper part of the support columns (203) is provided with a placement box (202).
2. The movable bracket for installing an indoor temperature collector according to claim 1, characterized in that: The lower end of the placement box (202) is provided with two groups of card slots, and the placement box (202) is fixed to the support column (203) through the card slots, and the interiors of the two groups of card slots are paved with anti-slip pads (211).
3. The movable bracket for installing an indoor temperature collector according to claim 2, characterized in that: A sunshade (204) is symmetrically provided on the upper end of the placement box (202), and the sunshade (204) is fixedly connected to the placement box (202).
4. The movable bracket for installing an indoor temperature collector according to claim 3, characterized in that: One end of the two groups of support columns (203) is provided with a limiting disk (205), and a threaded ring for accommodating the limiting disk (205) is provided inside the support column (203). The limiting disk (205) is fixed to the support column (203) by threads, and the inner wall of the limiting disk (205) is fitted with the placement box (202).
5. The movable bracket for installing an indoor temperature collector according to claim 4, characterized in that: Two groups of positioning rods (206) are provided inside the bracket back plate (201), one end of the two groups of positioning rods (206) is provided with a connecting plate (207), the two groups of positioning rods (206) are fixedly connected through the connecting plate (207), and positioning holes for accommodating the positioning rods (206) are opened inside the bracket back plate (201) and the support column (203).
6. The movable bracket for installing an indoor temperature collector according to claim 5, characterized in that: An inserting plate (208) is provided inside the support base (1), and a connecting groove for accommodating the inserting plate (208) is provided inside the support base (1) and the support back plate (201). The support base (1) is fixedly connected to the support back plate (201) through the inserting plate (208), and latches (209) are symmetrically provided at the outer ends of the inserting plate (208).
7. The movable bracket for installing an indoor temperature collector according to claim 5, characterized in that: A load-bearing block (210) is provided at a corner of the lower end of the bracket base (1), and the bottom of the load-bearing block (210) is paved with anti-slip particles.