Metering temperature measuring cup
By embedding an iron ring and a magnet at the bottom of the measuring cup to attract the guide block and guide rod, the problem of air bubbles affecting the measurement accuracy when the solution is poured is solved, and accurate measurement in different solution states is achieved.
Patent Information
- Application Number
- CN202520023804.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Some solutions are prone to generating air bubbles when poured into the measuring cup due to impact, which affects the measurement accuracy.
A fixed annular iron ring is embedded in the bottom of the measuring cup, and a guide block and a guide rod structure that is attracted by a magnet are set to guide the solution to flow in and reduce impact. It is equipped with a detachable guide block and additional graduation lines to adapt to different solution states.
It effectively reduces bubble generation, ensures accurate measurement of solution volume and temperature, and adapts to the measurement needs of different solution states.
Smart Images

Figure CN223581110U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of measuring cup, concretely to a kind of measurement temperature cup. BACKGROUND
[0002] Measuring cup, also known as measuring cup, is a kind of glass or plastic appliance for accurately measuring the volume of liquid, widely used in laboratory, kitchen, medical and chemical industry and other fields, its design is unique, cup is marked with clear scale line, usually in milliliter (ml) or liter (L) as unit, to ensure that users can accurately measure the required liquid volume, measuring cup usually has wide mouth design, easy to pour and clean, some models are also equipped with handle, for user to hold and operate, in order to realize the purpose of measuring temperature, the bottom of part of measuring cup is also provided with temperature probe, which can measure temperature while measuring solution, to facilitate temperature measurement during test.
[0003] Because part of solution is poured into measuring cup, it is easy to produce more bubbles due to the impact of poured solution and measuring cup or solution in measuring cup, which affects the accuracy of solution measurement of measuring cup. Therefore, we propose a kind of measurement temperature cup. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of measurement temperature cup, by embedding the ring-shaped iron ring in the bottom of cup body, and setting guide block can be placed in the middle position of cup body by the magnet inside it and iron ring adsorption, and connecting guide rod above guide block, when pouring solution that is easy to produce bubbles, make solution can be guided by guide rod and guide block and flow smoothly into cup body, reduce the impact between solution and cup body, avoid bubble production, and then be beneficial to accurate measurement volume, solve the problem proposed in background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of measurement temperature cup, including cup body and temperature probe, the temperature probe is embedded and fixed in the inside lower surface of cup body;The lower inside of cup body is provided with guide block, and the upper side of guide block is vertically connected with guide rod, and the top of guide rod is flush with the upper side of cup body, and the connecting place of guide rod and guide block is guided by arc edge, and the outer surface of cup body is vertically provided with first scale line, and the density of first scale line is sequentially increased from bottom to top, and the upper side of first scale line is uniformly distributed.
[0006] By adopting the above technical scheme, when measuring and measuring temperature for solution that is easy to produce bubbles, make solution enter cup body smoothly by the guidance of guide rod and guide block, reduce the production of bubbles to accurately measure volume and temperature, and when measuring solution that is not easy to produce bubbles, guide rod and guide block can be removed, and another group of scale lines are used for accurate measurement of solution volume and temperature.
[0007] Optionally, the guide block is placed in the interior of the cup body in a detachable manner, and the guide block is located at the middle position of the bottom of the cup body.
[0008] By using the above technical scheme, the guide block is detachably arranged, so that when the solution that is not easy to generate bubbles is measured in volume and temperature, the guide block and the guide rod can be removed.
[0009] Optionally, a ring-shaped magnet is embedded and fixed in the interior of the guide block, and a ferrous ring is embedded and fixed at the middle position of the bottom of the cup body, and the guide block is detachably placed in the cup body by the way that the magnet adsorbs the ferrous ring.
[0010] Optionally, a second scale line is vertically arranged on the surface of the cup body, and the second scale line is vertically and uniformly distributed on the surface of the cup body.
[0011] By using the above technical scheme, when the guide block and the guide rod are removed for use, the second scale line which is uniformly distributed can be used to measure the volume of the solution.
[0012] Optionally, a display is connected to the upper side edge of the cup body through a connecting rod, a computer board and a battery are further fixed in the shell of the display, and the temperature probe is connected to the computer board.
[0013] By using the above technical scheme, the display is used to display the temperature data measured by the temperature probe.
[0014] Optionally, a handle is fixed on the side surface of the cup body.
[0015] By using the above technical scheme, the cup body can be held and poured with the solution by the handle.
[0016] Compared with the prior art, the beneficial effects of the technical scheme of the present application are as follows:
[0017] 1. The technical scheme of the present application embeds and fixes a ring-shaped ferrous ring at the bottom of the cup body, and arranges a guide block which can be placed in the middle position of the interior of the cup body by the way that the magnet in the interior of the guide block adsorbs the ferrous ring, and connects a guide rod above the guide block, so that when the solution which is easy to generate bubbles is poured, the solution can flow smoothly into the cup body through the guide rod and the guide block, the impact between the solutions and the impact between the solution and the cup body are reduced, the generation of bubbles is avoided, and the accurate measurement of the volume is facilitated.
[0018] 2. The technical scheme of the present application fixes the guide block by the way of magnetic attraction, so that the guide block and the guide rod can be taken out, and additionally arranges a second scale line which is adapted to the taking out and use of the guide block and the guide rod, so that the guide block and the guide rod can be taken out for use in the measurement and temperature measurement of the solution which will not generate bubbles. BRIEF DESCRIPTION OF DRAWINGS
[0019] Other features, objects, and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments thereof as read in conjunction with the accompanying drawings:
[0020] Figure 1 It is an overall structure schematic view of the measuring temperature cup of the present application;
[0021] Figure 2 It is an internal structure schematic view of the cup body of the measuring temperature cup of the present application;
[0022] Figure 3 It is a bottom structure schematic view of the cup body of the measuring temperature cup of the present application;
[0023] Figure 4 It is a bottom structure schematic view of the guide block of the measuring temperature cup of the present application.
[0024] In the figure: 1, cup body; 11, first scale line; 12, second scale line; 13, iron ring; 14, handle; 2, temperature probe; 3, display; 31, connecting rod; 4, guide block; 41, guide rod; 42, arc edge; 43, magnet. DETAILED DESCRIPTION
[0025] Please refer to Figures 1-4 The present application provides a technical solution: a measuring temperature cup, comprising a cup body 1 and a temperature probe 2, the temperature probe 2 is embedded and fixed below the inner surface of the cup body 1, the upper side of the cup body 1 is connected with a display 3 through a connecting rod 31, the shell of the display 3 is also fixed with a computer board and a battery, the temperature probe 2 is connected with the computer board, the battery can be replaced or charged, when the solution is poured into the inside of the cup body 1, the temperature of the solution can be measured by the temperature probe 2, and then displayed on the display 3, as for the structure and principle that the temperature probe 2 cooperates with the computer board to measure the temperature of the solution and display on the display 3, they are all prior art, therefore, no further description is made.
[0026] A guide block 4 is arranged below the inside of the cup body 1, the upper side of the guide block 4 is vertically connected with a guide rod 41, the top of the guide rod 41 is flush with the upper side of the cup body 1, the connecting position of the guide rod 41 and the guide block 4 is guided through the arc edge 42, when the solution prone to generating bubbles is measured, the solution is poured from the middle position downward, so that it is smoothly poured into the cup body 1 through the cooperation of the guide rod 41, the guide block 4 and the arc edge 42, the impact between the solutions and the impact between the solution and the cup body 1 can be reduced, the generation of bubbles is reduced, which is beneficial to the accurate volume measurement later.
[0027] The traditional measuring cup measures the volume of the solution by evenly distributed scale lines. However, due to the structure of the guide block 4 and the guide rod 41 in the present application, the volume occupied by the combination in the cup body 1 decreases from bottom to top, and the volume occupied by the upper guide rod 41 is fixed. Therefore, the first scale line 11 is vertically arranged on the outer surface of the cup body 1, and the density of the first scale line 11 increases from bottom to top. The upper part of the first scale line 11 is evenly distributed, and the volume of the poured solution can be accurately measured by the first scale line 11.
[0028] There are solutions that do not produce bubbles when poured into the cup body 1, and there is no need to worry about the influence of bubbles when measuring the temperature of these solutions. Therefore, the guide block 4 is detachably arranged in the interior of the cup body 1, and the annular magnet 43 is embedded and fixed in the interior of the guide block 4. The iron ring 13 is embedded and fixed in the middle position of the bottom of the cup body 1. The guide block 4 is detachably arranged in the middle position of the bottom of the cup body 1 by the way of the magnet 43 attracting the iron ring 13. The guide block 4 and the guide rod 41 can be taken out to measure and measure the temperature of the solution.
[0029] In order to accurately measure the volume after the guide block 4 and the guide rod 41 are taken out, the second scale line 12 is also vertically arranged on the surface of the cup body 1. The difference between the second scale line 12 and the first scale line 11 is that the second scale line 12 is vertically and evenly distributed on the surface of the cup body 1. The accurate volume value of the solution after the guide block 4 and the guide rod 41 are taken out can be measured by the second scale line 12. In order to balance the small volume occupied by the temperature probe 2, the zero position of the first scale line and the second scale line needs to be slightly offset upwards. The purpose is to reduce the error caused by the volume occupied by the temperature probe 2.
[0030] The handle 14 is fixed on the side surface of the cup body 1. After measuring and measuring the temperature, the cup body 1 can be taken up by the handle 14, and then the solution can be poured out. Since the guide block 4 is fixed by magnetic attraction, the guide block 4 and the guide rod 41 will not fall off when pouring the solution.
[0031] When in use, the solution to be measured is poured into the cup body 1 from the middle position to the lower position. During the pouring process, the solution smoothly enters the cup body 1 under the guiding action of the guide rod 41, the arc edge 42 and the guide block 4, which can reduce the impact between the solutions and the impact between the solutions and the cup body 1, reduce the generation of bubbles, and finally the volume of the solution can be read by the first scale line 11, and the temperature of the solution can be detected by the temperature probe 2, and finally displayed on the display 3. If the measured solution is not easy to produce bubbles due to impact during pouring, the guide rod 41 and the guide block 4 can be taken out before measurement, and then the solution to be measured can be directly poured into the cup body 1, and then the volume of the solution can be measured by the second scale line 12, and the temperature of the solution can be detected by the temperature probe 2, and finally displayed on the display 3.
Claims
1. A metrological temperature measuring cup comprising a cup body (1) and a temperature probe (2), characterized in that: The temperature probe (2) is embedded and fixed below the inner surface of the cup (1); A guide block (4) is arranged below the inner surface of the cup (1), the upper portion of the guide block (4) is vertically connected with a guide rod (41), the top of the guide rod (41) is flush with the upper portion of the cup (1), the connection between the guide rod (41) and the guide block (4) is guided by an arc edge (42), the outer surface of the cup (1) is vertically provided with first scale lines (11), the density of the first scale lines (11) increases from bottom to top, and the upper portion of the first scale lines (11) is uniformly distributed.
2. The metrology temperature measuring cup of claim 1, wherein: The guide block (4) is detachably arranged in the inner portion of the cup (1), and the guide block (4) is located at the middle position of the bottom of the cup (1).
3. The metering thermocouple cup of claim 2, wherein: A ring-shaped magnet (43) is embedded and fixed in the inner portion of the guide block (4), and a ferrous ring (13) is embedded and fixed at the middle position of the bottom of the cup (1), and the guide block (4) is detachably arranged in the cup (1) by the way that the magnet (43) adsorbs the ferrous ring (13).
4. The metrology temperature measuring cup of claim 2, wherein: The surface of the cup (1) is also vertically provided with second scale lines (12), and the second scale lines (12) are vertically and uniformly distributed on the surface of the cup (1).
5. The metrology temperature measuring cup of claim 1, wherein: The upper side of the cup (1) is connected with a display (3) through a connecting rod (31), the shell of the display (3) is also fixed with a computer board and a battery, and the temperature probe (2) is connected with the computer board.
6. The metrology temperature measuring cup of claim 1, wherein: The side surface of the cup (1) is fixed with a handle (14).