Concentration detection device for essence production
By introducing a control mechanism into the concentration detection device for flavor production, the problem of the difficulty in observing the movement distance of the diamond-shaped metal block is solved, ensuring the accuracy and convenience of the measurement.
Patent Information
- Application Number
- CN202422985310.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing fragrance density testing devices make it difficult to observe the specific distance and height of the diamond-shaped metal block's vertical movement when using it, resulting in inconvenient measurement.
A concentration detection device for flavor production was designed, comprising a detection platform, a weighing mechanism, a lifting mechanism, a control mechanism, and a pendant mechanism. Through the cooperation of the control plate and the vertical plate, the descent height of the drill block is monitored in real time to ensure measurement accuracy.
It enables precise monitoring of the descent height of the drill-shaped metal block, improving measurement accuracy and ease of use.
Smart Images

Figure CN223538704U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fragrance manufacturing technology, and in particular to a concentration detection device for fragrance production. Background Technology
[0002] The density of fragrance is an important indicator for measuring the quality of fragrance products. When a conventional density meter is used to place a metal block inside the fragrance liquid, the rapid descent and the shape of the metal block cause splashes and waves in the fragrance liquid, resulting in internal shaking of the fragrance and the generation of bubbles, which reduces the detection effect.
[0003] In the prior art, patent (CN214472538U) proposes a densitometer for the quality of fragrance research and production, including a base plate, a first locking block fixedly connected to the right end of a slide rod, the first locking block being slidably connected to a side plate, a spring fixedly connected to the left end of the first locking block, a gear fixedly connected to one end of a limiting ring, a limiting post fixedly connected to the rear end of the slide rod, and a second locking block fixedly connected to the outside of the limiting post. This utility model improves the fixing and sealing effect by rotating the cover plate to press the first locking block, and by using the spring to fix the first locking block to the cover plate. When stationary, it prevents dust and various impurities from falling into the densitometer, thus affecting the next test result. By manually reducing its descent speed and by using the shape of the diamond-shaped metal block, the diamond-shaped metal block enters without generating water splashes or waves, preventing shaking and the generation of air bubbles, thereby improving the test result.
[0004] However, in the aforementioned prior art, it is not convenient to observe the specific moving distance or know the descent height of the drill-shaped metal block during its up-and-down movement, making it relatively inconvenient to use. Utility Model Content
[0005] The purpose of this invention is to provide a concentration detection device for flavor production, which solves the problem that it is inconvenient to observe the specific moving distance and the height of descent when the diamond-shaped metal block moves up and down, making it relatively inconvenient to use.
[0006] To achieve the above objectives, this utility model provides a concentration detection device for flavor production, comprising a detection platform, a weighing mechanism, a lifting mechanism, a reference mechanism, and a pendant mechanism. The pendant mechanism is fixedly connected to the lifting mechanism and located inside the lifting mechanism. The lifting mechanism is fixedly connected to the detection platform and located above the detection platform. The weighing mechanism is fixedly connected to the detection platform and located above the detection platform. The reference mechanism includes a vertical plate, a mounting ring, and a reference plate. The reference plate is fixedly connected to the mounting ring and located on one side of the mounting ring. The mounting ring is fixedly connected to the lifting mechanism and located on one side of the lifting mechanism. The vertical plate is fixedly connected to the detection platform and located above the detection platform.
[0007] The testing platform includes a platform body, a control panel, and multiple foot pads. Each foot pad is fixedly connected to the platform body and located below the platform body. The control panel is fixedly connected to the platform body and located above the platform body. The platform body is fixedly connected to the weighing mechanism and located below the weighing mechanism.
[0008] The weighing mechanism includes an electronic scale pan, a placement tray, and a beaker. The beaker is movably connected to the placement tray and is located above the placement tray. The placement tray is fixedly connected to the electronic scale pan and is located above the electronic scale pan. The electronic scale pan is fixedly connected to the platform and is located above the platform.
[0009] The lifting mechanism includes two electric telescopic rods and a crossbar. The two ends of the crossbar are fixedly connected to the corresponding electric telescopic rods and are located at the upper ends of the corresponding electric telescopic rods. The lower ends of the two electric telescopic rods are fixedly connected to the platform and are located above the platform.
[0010] The pendant mechanism includes two limiting rings, a wire, and a drill block. The drill block is fixedly connected to the wire and located at the lower end of the wire. The upper end of the wire is fixedly connected to the crossbar and located on the periphery of the crossbar. Both limiting rings are fixedly connected to the crossbar and located on the periphery of the crossbar.
[0011] This utility model discloses a concentration detection device for flavor production. The control plate moves along with the lifting mechanism and is compared with the vertical plate to obtain the specific height change data of the movement, thereby determining the descent height of the diamond-shaped block. This ensures the final accuracy of the measurement. The design structure is simple and solves the problems of inconvenience in observing the specific movement distance and determining the descent height of the diamond-shaped metal block during its up-and-down movement, making it relatively inconvenient to use. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of a concentration detection device for flavor production according to this utility model.
[0014] Figure 2 This is a top view of a concentration detection device for flavor production according to this utility model.
[0015] Figure 3 This is a front view of a concentration detection device for flavor production according to this utility model.
[0016] Figure 4 This is the utility model Figure 3 Enlarged view of the local structure at point A.
[0017] In the diagram: 101-Testing platform, 102-Weighing mechanism, 103-Lifting mechanism, 104-Comparison mechanism, 105-Suspension mechanism, 106-Upright plate, 107-Mounting ring, 108-Comparison plate, 109-Platform body, 110-Control panel, 111-Foot pad, 112-Electric weighing pan, 113-Placement pan, 114-Beaker, 115-Electric telescopic rod, 116-Horizontal bar, 117-Limit ring, 118-Wire, 119-Drill block. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] The first embodiment of this application is as follows:
[0020] Please see Figures 1 to 4 ,in Figure 1 This is a schematic diagram of the overall structure of a concentration detection device for flavor production according to this utility model. Figure 2 This is a top view of a concentration detection device for flavor production according to this utility model. Figure 3 This is a front view of a concentration detection device for flavor production according to this utility model. Figure 4 This is the utility model Figure 3 Enlarged view of the local structure at point A.
[0021] This utility model provides a concentration detection device for flavor production: it includes a detection platform 101, a weighing mechanism 102, a lifting mechanism 103, a reference mechanism 104, and a pendant mechanism 105. The reference mechanism 104 includes a vertical plate 106, a mounting ring 107, and a reference plate 108. The detection platform 101 includes a platform body 109, a control panel 110, and multiple foot pads 111. The weighing mechanism 102 includes an electronic weighing pan 112, a placement pan 113, and a beaker 114. The lifting mechanism 103 includes two electric telescopic rods 115 and a crossbar 116. The pendant mechanism 105 includes two limiting rings 117, a wire 118, and a diamond-shaped block 119.
[0022] In this specific embodiment, the pendant mechanism 105 is fixedly connected to the lifting mechanism 103, the lifting mechanism 103 is fixedly connected to the testing platform 101, the weighing mechanism 102 is fixedly connected to the testing platform 101, the reference plate 108 is fixedly connected to the mounting ring 107, the mounting ring 107 is fixedly connected to the lifting mechanism 103, the upright plate 106 is fixedly connected to the testing platform 101, each foot pad 111 is fixedly connected to the platform body 109, the control panel 110 is fixedly connected to the platform body 109, the platform body 109 is fixedly connected to the weighing mechanism 102, the beaker 114 is movably connected to the placement tray 113, the placement tray 113 is fixedly connected to the electronic scale pan 112, and the electronic scale pan 112 is fixedly connected to the platform body 109. Next, both ends of the crossbar 116 are fixedly connected to the corresponding electric telescopic rods 115, and the lower ends of both electric telescopic rods 115 are fixedly connected to the platform 109. The drill block 119 is fixedly connected to the wire 118, and the upper end of the wire 118 is fixedly connected to the crossbar 116. Both limiting rings 117 are fixedly connected to the crossbar 116. The reference plate 108, which is set up now, moves with the lifting mechanism 103. By comparing with the upright plate 106, the specific height change data of the movement can be obtained, thereby determining the descent height of the drill block 119. This ensures the final accuracy of the measurement. This design structure is simple and solves the problem that it is not convenient to observe the specific movement distance and the descent height of the drill metal block during its up and down movement, making it inconvenient to use.
[0023] The pendant mechanism 105 is located inside the lifting mechanism 103, which is located above the testing platform 101. The weighing mechanism 102 is located above the testing platform 101. The reference plate 108 is located on one side of the mounting ring 107, which is located on one side of the lifting mechanism 103. The upright plate 106 is located above the testing platform 101. Since the length of the lead screw is fixed, after the drill block 119 descends, the lower section of the wire 118 enters the water in the beaker 114. Due to the refraction of light in the water, it is not easy to observe the specific height of the descent of the drill block 119 with the naked eye. At this time, by observing the reference plate 108 and the upright plate 106 for comparison, the specific height of the movement of the crossbar 116 can be determined, thereby determining the moving height of the drill block 119.
[0024] Secondly, each of the foot pads 111 is located below the platform 109, the control panel 110 is located above the platform 109, the platform 109 is located below the weighing mechanism 102, the beaker 114 is located above the placement tray 113, the placement tray 113 is located above the electronic scale pan 112, and the electronic scale pan 112 is located above the platform 109. The foot pads 111 support the platform 109, increase friction with the tabletop, and keep the platform 109 stable when detecting the concentration of flavoring in the beaker 114, ensuring that the electronic scale pan 112 measures accurate data. The control panel 110 is mainly for the convenience of staff to control and know the data measured by the electronic scale pan 112.
[0025] Meanwhile, the two ends of the crossbar 116 are respectively located at the upper ends of the corresponding electric telescopic rods 115, and the lower ends of the two electric telescopic rods 115 are both located above the platform 109. The drill block 119 is located at the lower end of the wire 118, and the upper end of the wire 118 is located on the periphery of the crossbar 116. The two limiting rings 117 are both located on the periphery of the crossbar 116. The setting of the two limiting rings 117 facilitates the stable restriction of the wire 118, preventing the wire 118 and the drill block 119 from sliding left and right on the periphery of the crossbar 116, fixing the descent position of the drill block 119, and ensuring that the crossbar 116 is in a horizontal posture when moving up and down.
[0026] In this embodiment of the fragrance production concentration detection device, because the length of the lead screw is fixed, after the drill block 119 descends a certain height, the lower section of the lead screw 118 enters the water in the beaker 114. Due to the refraction of light in the water, it is difficult to observe the exact height the drill block 119 descends with the naked eye. At this time, by comparing the control plate 108 and the vertical plate 106, the exact height the horizontal bar 116 moves can be determined, thus revealing the height the drill block 119 moves. The foot pad 111 supports the platform 109, increasing friction with the tabletop and maintaining the... The platform 109 is stable when detecting the concentration of flavoring in the beaker 114, ensuring that the electronic scale pan 112 measures accurate data. The control panel 110 is mainly for the convenience of staff to control and know the data measured by the electronic scale pan 112. The two limiting rings 117 are set to stably limit the wire 118, preventing the wire 118 and the drill block 119 from sliding left and right on the periphery of the crossbar 116, and fixing the descent position of the drill block 119. The two electric telescopic rods 115 have the same lifting control frequency, ensuring that the crossbar 116 is in a horizontal position when moving up and down.
[0027] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A concentration detection device for flavor production, comprising a detection platform, a weighing mechanism, a lifting mechanism, and a pendant mechanism, wherein the pendant mechanism is fixedly connected to the lifting mechanism and located inside the lifting mechanism, the lifting mechanism is fixedly connected to the detection platform and located above the detection platform, and the weighing mechanism is fixedly connected to the detection platform and located above the detection platform, characterized in that, It also includes a comparison mechanism, which includes a vertical plate, a mounting ring, and a comparison plate. The comparison plate is fixedly connected to the mounting ring and located on one side of the mounting ring. The mounting ring is fixedly connected to the lifting mechanism and located on one side of the lifting mechanism. The vertical plate is fixedly connected to the testing platform and located above the testing platform.
2. The concentration detection device for flavor production as described in claim 1, characterized in that, The testing platform includes a platform body, a control panel, and multiple foot pads. Each foot pad is fixedly connected to the platform body and located below the platform body. The control panel is fixedly connected to the platform body and located above the platform body. The platform body is fixedly connected to the weighing mechanism and located below the weighing mechanism.
3. The concentration detection device for flavor production as described in claim 2, characterized in that, The weighing mechanism includes an electronic scale pan, a placement tray, and a beaker. The beaker is movably connected to the placement tray and is located above the placement tray. The placement tray is fixedly connected to the electronic scale pan and is located above the electronic scale pan. The electronic scale pan is fixedly connected to the platform and is located above the platform.
4. The concentration detection device for flavor production as described in claim 3, characterized in that, The lifting mechanism includes two electric telescopic rods and a crossbar. The two ends of the crossbar are fixedly connected to the corresponding electric telescopic rods and are located at the upper ends of the corresponding electric telescopic rods. The lower ends of the two electric telescopic rods are fixedly connected to the platform and are located above the platform.
5. The concentration detection device for flavor production as described in claim 4, characterized in that, The pendant mechanism includes two limiting rings, a wire, and a diamond-shaped block. The diamond-shaped block is fixedly connected to the wire and located at the lower end of the wire. The upper end of the wire is fixedly connected to the crossbar and located on the periphery of the crossbar. Both limiting rings are fixedly connected to the crossbar and located on the periphery of the crossbar.
Citation Information
Patent Citations
Density meter for essence research, development and production quality
CN214472538U