1460934553-3ac14c52-b13f-41a7-8bab-9ca3207d2d8c

1. A method for visual marking glass panes that are tempered and then heat-treated, the method comprising:
producing a marking field that includes an uneven surface structure on a limited area of a smooth side surface of a glass pane, wherein the limited area is smaller than a total area of the side surface of the glass pane, and wherein the uneven surface structure is more rough than portions of the side surface of the glass pane that are outside of the limited area of the side surface of the glass pane;
depositing a marking layer on the marking field such that the marking layer penetrates intermediate spaces or hollows within the marking field so as to create an intimate adhesive bond between the marking layer and the marking field; and
modifying the marking layer deposited on the marking field via heat treatment, wherein the marking layer visually indicates that the heat treatment has been carried out, and wherein the color of the marking layer is irreversibly modified by the heat treatment.
2. The method as claimed in claim 1, wherein the marking field is produced on the surface of the glass pane before the glass pane is tempered.
3. The method as claimed in claim 1, wherein a color containing a thermochromic pigment is used as the marking layer, the color of which pigment is irreversibly modified at a temperature for the heat treatment.
4. The method as claimed in claim 1, wherein the heat-treatment is done via a hot storage test or a heat soaking test.
5. The method as claimed in claim 1, wherein the marking field configured for depositing the marking layer is produced by a chemical andor mechanical action on the surface of the glass pane, during which hollows are formed in the surface into which the marking layer can penetrate.
6. The method as claimed in claim 1, wherein the marking field includes a coating that is deposited on the surface of the glass pane with defined open intermediate spaces into which the marking layer is introduced.
7. The method as claimed in claim 6, wherein the coating is deposited by screen printing and is then baked before the marking layer is deposited.
8. The method as claimed in claim 7, wherein the coating is baked during the heat tempering of the glass pane.
9. The method as claimed in claim 1, wherein the marking field comprises a portion of a marking stamp provided on the surface of the glass pane.
10. The method as claimed in claim 1, wherein a size and surface structure of the marking field and an amount and consistency of the marking layer to be deposited on the marking field are tailored to one another such that, in mass production, a same amount of material of the marking layer is always deposited in the marking field.
11. The method as claimed in claim 1, wherein the heat treatment has a maximum temperature of between 180 and 340\xb0 C.
12. A method for visual marking glass panes that are tempered and then submitted to a heat-soak test, with a marking layer that visually indicates that the heat-soak-test has been carried out, the method comprising:
producing, before the heat-soak-test, a marking field on a local portion of a surface of a side of a glass pane by a local modification, wherein the marking field comprises an uneven surface structure, wherein the local portion of the surface of the side of the glass pane is a limited surface area on the side of the glass pane that is smaller than a total surface area of the side of the glass pane; and
depositing, after the tempering, a marking color on said marking field so as to produce the marking layer, wherein the marking color fills said uneven surface structure so as to create an intimate adhesive bond between the marking layer and the marking field.
13. A method for visually marking glass panes, the method comprising:
providing a glass pane that includes a first face and a second face;
locally modifying a surface of said first face of said glass pane so as to produce a marking field that includes an uneven surface that is more rough than portions of the surface of said first face that are not within said marking field;
depositing a marking layer of thermochromic marking color on said marking field such that the marking layer penetrates intermediate spaces or hollows within the marking field so as to create an intimate adhesive bond between the marking layer and the marking field; and
submitting, after the depositing the marking layer on said marking field, the glass pane to a heat-soak test that irreversibly modifies the thermochromic marking color.
14. A method for visually marking glass panes as claimed in claim 13, wherein the glass pane is a tempered glass pane.
15. A method for visually marking glass panes as claimed in claim 13, wherein said locally modifying the surface of said first face of said glass pane so as to produce said marking field includes creating areas of unevenness or hollows in the surface of said first face.
16. A method for visually marking glass panes as claimed in claim 15, wherein said areas of unevenness or said hollows in the surface of said first face are created by sand blasting a local portion of the surface of said first face of said glass pane.
17. A method for visually marking glass panes as claimed in claim 15, wherein said areas of unevenness or said hollows in the surface of said first face are created by acid etching a local portion of the surface of said first face of said glass pane.
18. A method for visually marking glass panes as claimed in claim 13, wherein said locally modifying the surface of said first face of said glass pane includes depositing an additional surface structure that includes a plurality of intermediate spaces on a local portion of the surface of said first face of said glass pane.
19. A method for visually marking glass panes as claimed in claim 18, further comprising:
heat tempering said glass pane, wherein said additional surface structure is deposited on the local portion of the surface of said first face of said glass pane before said heat tempering is performed, and wherein said depositing the layer of thermochromic marking color on said marking field is performed after said heat tempering is performed.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A downhole logging-while-drilling or measurement-while-drilling tool for formation logging, comprising: a tool body configured to move in a borehole; a plurality of sensor modules, at least one sensor module mounted in at least one mounting location on the tool body, wherein the at least one sensor module is interchangeable with other sensor modules that make different measurements; and
a measurement system disposed in the tool body operatively coupled to the at least one sensor module, wherein the measurement system includes a capability to automatically identify a sensor module mounted in the mounting location and to configure the measurement system for acquisition and processing according to the identified sensor module; and
wherein the mounting location is recessed on the tool body such that the sensor module faces the wall of the borehole, and wherein the mounting location is of a selected shape and dimensions that correspond to the shape and dimensions of the plurality of sensor modules, and
wherein the measurement system includes a plurality of modular units including an acquisition module for controlling data acquisitioned by any one of the plurality of sensor modules disposed in the at least one mounting location, the plurality of sensor modules having a common interface for operatively coupling to the acquisition module of the measurement system.
2. The downhole tool of claim 1, wherein the measurement system comprises at least one of a power source, a motion sensor, a process and memory, and acquisition electronics.
3. The downhole tool of claim 2, wherein the measurement system further comprises a communication link.
4. The downhole tool of claim 1, wherein the plurality of sensor modules includes a first sensor module comprising at least one of a resistivity sensor, a sonic sensor, a neutron sensor, and a gamma ray sensor a second sensor module different from the first sensor module, each of the first and second modules having a common shape and dimensions corresponding to the shape and dimensions of the mounting location.
5. The downhole tool of claim 1, wherein the at least one mounting location on the tool body is on a drill collar, a stabilizer, or a pad.
6. The downhole tool of claim 1, wherein the at least one mounting location on the tool body is on an articulating pad.
7. The downhole tool of claim 1, wherein the downhole tool is a logging-while-drilling tool or a measurement-while-drilling tool.
8. The downhole tool of claim 1, wherein the at least one sensor module comprises at least two sensor modules having different types of sensors.
9. The dowahole tool of claim 1, wherein the at least one sensor module comprises at least one of a high-frequency electromagnetic propagation sensor, a high-resolution current injection sensor, a cross magnetic dipole sensor, a micro-sonic propagation sensor, an azimuthal natural gamma ray sensor, and an ultrasonic echo-pulse sensor.