12 unifying physics of accelerators, lasers and plasma
TABLE
TRIZ contradiction matrix for speed–temperature parameters and
indexes of the corresponding inventive principles
Improving parameter
Parameter that deteriorates
... 9.Speed ... 17.Temperature ...
...
...
...
...
...
...
9.Speed
...
...
...
2,28,30,36
...
...
17.Temperature
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
1.1
ing dilemma (which can be suggested according to the selected inventive principle of phase transition) is to use ice
together with abrasive particles, which provides efficient uniform cooling, as illustrated in Fig. 1.18.
FIGURE 1.18
Illustration of TRIZ in action — specific solution.
Before we discuss the connection between TRIZ and science, allow us to present a complete list of the standard TRIZ
contradicting parameters (shown in Table 1.2) as well as the
list of inventive principles (Table 1.3). A detailed description of the TRIZ principles is also available at the web page
mentioned in footnote 4 of this chapter.
TABLE 1.2
Elements of TRIZ contradiction matrix
No.Parameter
No.Parameter
No.Parameter
1. Weight of moving obj.
14. Strength
27. Reliability
2. Weight of stat. obj.
15. Durability of mov. obj.
28. Measurement accuracy
3. Length of moving obj.
16. Durability of stat. obj.
29. Manufacturing precision
4. Length of stat. obj.
17. Temperature
30. Object-affected harmful
5. Area of moving object
18. Illumination intensity
31. Object-generated harmful
6. Area of stationary obj.
19. Energy use by mov. obj. 32. Ease of manufacture
7. Volume of moving obj. 20. Energy use by stat. obj.
33. Ease of operation
8. Volume of stat. obj.
21. Power
34. Ease of repair
9. Speed
22. Loss of energy
35. Adaptability or versatility
10. Force (Intensity)
23. Loss of substance
36. Device complexity
11. Stress or pressure
24. Loss of information
37. Difficulty of detecting
12. Shape
25. Loss of time
38. Extent of automation
13. Stability of the object
26. Quantity of substance
39. Productivity
TABLE
TRIZ contradiction matrix for speed–temperature parameters and
indexes of the corresponding inventive principles
Improving parameter
Parameter that deteriorates
... 9.Speed ... 17.Temperature ...
...
...
...
...
...
...
9.Speed
...
...
...
2,28,30,36
...
...
17.Temperature
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
...
1.1
ing dilemma (which can be suggested according to the selected inventive principle of phase transition) is to use ice
together with abrasive particles, which provides efficient uniform cooling, as illustrated in Fig. 1.18.
FIGURE 1.18
Illustration of TRIZ in action — specific solution.
Before we discuss the connection between TRIZ and science, allow us to present a complete list of the standard TRIZ
contradicting parameters (shown in Table 1.2) as well as the
list of inventive principles (Table 1.3). A detailed description of the TRIZ principles is also available at the web page
mentioned in footnote 4 of this chapter.
TABLE 1.2
Elements of TRIZ contradiction matrix
No.Parameter
No.Parameter
No.Parameter
1. Weight of moving obj.
14. Strength
27. Reliability
2. Weight of stat. obj.
15. Durability of mov. obj.
28. Measurement accuracy
3. Length of moving obj.
16. Durability of stat. obj.
29. Manufacturing precision
4. Length of stat. obj.
17. Temperature
30. Object-affected harmful
5. Area of moving object
18. Illumination intensity
31. Object-generated harmful
6. Area of stationary obj.
19. Energy use by mov. obj. 32. Ease of manufacture
7. Volume of moving obj. 20. Energy use by stat. obj.
33. Ease of operation
8. Volume of stat. obj.
21. Power
34. Ease of repair
9. Speed
22. Loss of energy
35. Adaptability or versatility
10. Force (Intensity)
23. Loss of substance
36. Device complexity
11. Stress or pressure
24. Loss of information
37. Difficulty of detecting
12. Shape
25. Loss of time
38. Extent of automation
13. Stability of the object
26. Quantity of substance
39. Productivity
