Analyzing apparatus and analyzing method
11598737 · 2023-03-07
Assignee
Inventors
- Takeshi Umemoto (Tokyo, JP)
- Shinya NISHIMURA (Tokyo, JP)
- Susumu Ito (Tokyo, JP)
- Nobuaki Okubo (Tokyo, JP)
Cpc classification
International classification
Abstract
An analyzing apparatus includes a memory unit that stores analysis conditions of each standards specifying analysis conditions for each analytical technique, a control unit, and an analysis unit that performs an analysis in accordance with a predetermined analytical technique. The control unit reads out the analysis conditions of the standard, and the control unit displays analysis conditions in time sequence, the displayed analysis conditions being necessary for the analysis and selected from out of the read-out analysis conditions, or the control unit prompts to input the analysis conditions in time sequence. When the analysis conditions are input, the control unit determines whether or not the input analysis conditions comply with the read-out analysis conditions, and in a case where a result of the determination is positive, the control unit displays a next analysis condition being necessary for the analysis, or the control unit prompts to input the next analysis condition.
Claims
1. An analyzing apparatus comprising: a memory unit configured to store analysis conditions of one or more standards specifying analysis conditions for each of one or more analytical techniques; a control unit; a display unit; an input unit; and an analysis unit configured to perform an analysis in accordance with the analytical technique, wherein when the analytical technique is designated, the control unit reads out the analysis conditions of the corresponding standard, and the control unit displays analysis conditions in time sequence, the displayed analysis conditions being necessary for the analysis by the analysis unit and selected from out of the read-out analysis conditions, or the control unit prompts to input the analysis conditions in time sequence, and when the analysis conditions are input through the input unit, the control unit determines whether or not the input analysis conditions comply with the read-out analysis conditions, and in a case where a result of the determination is positive, the control unit displays a next analysis condition being necessary for the analysis by the analysis unit, or the control unit prompts to input the next analysis condition.
2. The analyzing apparatus of claim 1, wherein the analysis conditions include temperature control information of a sample to be analyzed, sample atmosphere information, mass of the sample, composition of a reference sample, and mass of a sample container.
3. The analyzing apparatus of claim 1, wherein the analysis conditions include an interpretation method for each of the analytical techniques, and the control unit automatically performs an interpretation of a result of the analysis by the analysis unit based on the read-out analysis conditions, the interpretation corresponding to the analytical technique.
4. An analyzing method of storing analysis conditions of one or more standards specifying analysis conditions for each of one or more analytical techniques to perform an analysis corresponding to the analytical technique, the method comprising: a first step of, when the analytical technique is designated, reading out the analysis conditions of the corresponding standard, and displaying analysis conditions in time sequence, the displayed analysis conditions being necessary for the analysis and selected from out of the read-out analysis conditions, or prompting to input the analysis conditions in time sequence, and a second step of, when the analysis conditions are input through an input unit, determining whether or not the input analysis conditions comply with the read-out analysis conditions, and in a case where a result of the determination is positive, displaying a next analysis condition being necessary for the analysis, or prompting to input the next analysis condition.
5. The analyzing method of claim 4, wherein the analysis conditions include temperature control information of a sample to be analyzed, sample atmosphere information, mass of the sample, composition of a reference sample, and mass of a sample container.
6. The analyzing method of claim 4, wherein the analysis conditions include an interpretation method for each of the analytical techniques, and the method further comprises a step of automatically performing an interpretation of a result of the analysis based on the read-out analysis conditions, the interpretation corresponding to the analytical technique.
7. The analyzing method of claim 4, further comprising: a step of reporting a warning in a case where the result of the determination in the second step is negative.
8. The analyzing method of claim 7, wherein the warning includes a report of the analysis conditions in order that the result of the determination in the second step becomes positive.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the accompanying drawings:
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DETAILED DESCRIPTION
(19) Hereinafter, embodiments of the present disclosure will be described with reference to the drawings.
(20) Furthermore, according to the present embodiment, the analyzing apparatus 100 is a Differential Scanning Calorimetry (DSC) apparatus.
(21) As illustrated in
(22) The memory unit 102 stores analysis conditions of one or more standards. Here, the standards refer to official requirements and specifications of analysis conditions in a predetermined analytical technique. Examples of the standards may include ISO 11357-4, JIS K 7123, and ASTM E 1269 as illustrated in
(23) As illustrated in
(24) Also, the “analytical technique” is a test method used for the actual analysis, which corresponds to the “specific heat capacity measurement by the DSC” in the present embodiment. Analytical techniques are also specified in standards.
(25) Furthermore, as illustrated in
(26) Furthermore, after the analysis by the analysis unit 120 is completed, the control unit 104 automatically interprets in accordance with the standard corresponding to the analytical technique (step S6).
(27) Furthermore, in
(28) Next, with reference to
(29) Furthermore, according to the present embodiment, the “specific heat capacity measurement by the DSC” is performed in accordance with the standard “ISO 11357-4”, and these are designated in step S2.
(30) First, the control unit 104 prompts to input information regarding an empty container (step S41). Here, although not illustrated in
(31) Furthermore, according to the present embodiment, total four containers, that is, a reference-side container, an empty container, a container for accommodating a reference material, and a container for accommodating a sample to be measured are used. Same containers are used as reference-side containers for the latter three measurements.
(32) Furthermore, in the DSC measurement, while an empty container is installed on the reference side, (1) a container containing nothing (empty container), (2) a container accommodating a reference material, and (3) a container accommodating a sample to be measured are installed on the sample side and measurements (total of 3 measurements) are performed.
(33) Next, the control unit 104 prompts to input a “measurement condition”, which is the analysis condition for the next analysis (step S42). The measurement condition is a heating pattern (temperature control information) and, as illustrated in the screen of the display unit 106 described below (
(34) When the operator clicks “next” on the screen illustrated in
(35) On the other hand, when a result of the determination is negative (No), the control unit 104 does not proceed to the step S43, and the screen of the display unit 106 remains as illustrated in
(36) Next, the control unit 104 performs the DSC measurement of the empty container in the step S43. In the step S43, as illustrated in
(37) When the step S43 is completed, the control unit 104 displays “reference material information”, which is the analysis condition for the next analysis (step S44). As illustrated in
(38) In the step S44, only “α-alumina having a purity of 99.9% or higher (synthetic sapphire or the like)”, which is the analysis condition of the “reference material”, is displayed on the screen of the display unit 106 (
(39) In this regard, even when only the analysis conditions are displayed, the analysis conditions may guide the operator to determine whether the analysis is being performed in accordance with the standard.
(40) Next, the control unit 104 performs DSC measurement of the reference material (step S45). In the step S45, the control unit 104 displays the actual measurement procedure in the display box in the screen of the display unit 106 (
(41) Next, the control unit 104 prompts to input “information regarding sample to be measured”, which is the analysis condition for the next analysis (step S46). The information regarding sample to be measured is the mass of sample to be measured (the sample weight in
(42) Next, the control unit 104 determines whether the input sample weight complies with the analysis condition (see
(43) On the other hand, when the result of the determination is negative (No), the control unit 104 does not proceed to the step S43, and the screen of the display unit 106 remains as illustrated in
(44) In this regard, when the DSC measurements of (1) the empty container, (2) the reference material, and (3) the sample to be measured are completed, the control unit 104 records results of these analyses (measured data) in the memory unit 102. Here, according to the present embodiment, the analysis conditions of the standard “ISO 11357-4” read out from the memory unit 102 by the control unit 104 include a method of interpreting the results of analyses. Accordingly, the control unit 104 automatically interprets the results of the analyses based on the read out analysis conditions (step S48).
(45) As described above, since analysis conditions of the standard corresponding to the analytical technique are displayed in time sequence, the display may guide the operator to determine whether the analysis is being performed in accordance with the standard. Also, by prompting to input analysis conditions in time sequence, a system determines whether the input analysis condition complies with the standard and, when the result of the determination is positive, the system prompts to display or input of the next analysis condition, thereby preventing erroneous analysis with analysis conditions not complying with the standard.
(46) Therefore, even when an analysis is performed in accordance with a complicated standard, the workload on an operator can be reduced and erroneous analysis can be prevented.
(47) Also, when an analyzing apparatus is configured to automatically interpret results of analyses in accordance with the standard, the workload on the operator is further reduced.
(48) Next, examples of switching screen displayed on the display unit 106 according to the flows of
(49) First, when “guidance function” is selected on the screen illustrated in
(50) When the selection is made in
(51) The screen of
(52) The screen of
(53) When the operator clicks “next” in the screen of
(54) After the measurement, when the operator clicks “next” on the screen of
(55) In the screen of
(56) In the screen of
(57) The screen of
(58) In the screen of
(59) Here, in the analyzing method according to the present disclosure, the processes executed by the control unit correspond to a first process, a second process, a third process, and a fourth process, respectively.
(60) The present disclosure is not limited to the above-described embodiments, but it goes without saying that it extends to various modifications and equivalents included in the spirit and scope of the present invention.