1. A manufacturing method of a liquid crystal panel, comprising following steps of:
providing a first substrate and a second substrate, and coating an alignment film the first substrate for forming made, wherein the first substrate is a thin film transistor (TFT) substrate;
forming a passivation layer on a surface of the alignment film;
heating the passivation layer to decompose the passivation layer when a predetermined Q-time arrives; and
spraying liquid crystals onto the surface of the alignment film, and attaching the second substrate to the first substrate for forming a liquid crystal panel.
2. The manufacturing method as claimed in claim 1, wherein the passivation layer is made of polymers.
3. The manufacturing method as claimed in claim 2, wherein the polymers are polyurethane (PU).
4. The manufacturing method as claimed in claim 1, wherein the step of removing the passivation layer comprises:
spraying a solvent on the passivation layer for dissolving and removing the passivation layer with the solvent.
5. The manufacturing method as claimed in claim 1, wherein the step of removing the passivation layer comprises:
illuminating the passivation layer to decompose the passivation layer.
6. The manufacturing method as claimed in claim 1, wherein the predetermined Q-time is between 10 and 30 seconds.
7. The manufacturing method as claimed in claim 1, wherein the second substrate is a color filter (CF) substrate.
8. A manufacturing method of a liquid crystal panel, comprising following steps of:
providing a first substrate and a second substrate, and coating an alignment film on the first substrate;
forming a passivation layer on a surface of the alignment film;
heating the passivation layer to decompose the passivation layer when a predetermined Q-time arrives;
spraying liquid crystals onto the surface of the alignment film, and attaching the second substrate to the first substrate for forming a liquid crystal panel.
9. The manufacturing method as claimed in claim 8, wherein the passivation layer is made of polymers.
10. The manufacturing method as claimed in claim 9, wherein the polymers are polyurethane (PU).
11. The manufacturing method as claimed in claim 8, wherein the step of forming the passivation layer on the surface of the alignment film comprises:
forming the passivation layer on the surface of the alignment film by means of coating.
12. The manufacturing method as claimed in claim 8, wherein the step of removing the passivation layer comprises:
spraying a solvent on the passivation layer for dissolving and removing the passivation layer with the solvent.
13. The manufacturing method as claimed in claim 8, wherein the step of removing the passivation layer comprises:
illuminating the passivation layer to decompose the passivation layer.
14. The manufacturing method as claimed in claim 8, wherein the predetermined Q-time is between 10 and 30 seconds.
15. The manufacturing method as claimed in claim 8, wherein the first substrate is a thin film transistor (TFT) substrate.
16. The manufacturing method as claimed in claim 8, wherein the second substrate is a color filter (CF) substrate.
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. An earth engaging assembly comprising:
a support member;
a wear member telescoped with said support member rearwardly along a first axis;
said support member and said wear member having communicating connector openings generally aligned along a second axis transverse to said first axis; and
connector apparatus disposed in said connector openings and releasably retaining said wear member on said support member, said connector apparatus comprising:
a spool member having a central body portion longitudinally extending parallel to said second axis and having opposite end portions rearwardly bearing against said wear member,
a shim member forwardly spaced apart from said spool member and having a central body portion longitudinally extending parallel to said second axis and forwardly bearing against said support member, and first and second ends with rearwardly facing sloped surfaces thereon, and
a wedge screw member positioned between said spool member and said shim member and having (1) a threaded, non-tapered body portion longitudinally extending parallel to said second axis and threadingly engaging a front side portion of said central body portion of said spool member, (2) a non-threaded head portion with a tapered side surface rampingly engaging said sloped surface of said first end of said shim member, and (3) a non-threaded point portion with a tapered side surface rampingly engaging said sloped surface of said second end of said shim member,
said wedge screw member being threadingly advanceable relative to said spool member to rearwardly move said spool member relative to said shim member and thereby rearwardly move said wear member relative to said support member.
2. The earth engaging assembly of claim 1 wherein:
said wear member is outwardly telescoped onto said support member.
3. The earth engaging assembly of claim 2 wherein:
said connector apparatus is essentially entirely recessed within the balance of said earth engaging assembly.
4. The earth engaging assembly of claim 1 wherein:
said wear member is an adapter, and
said support member is a bucket lip.
5. The earth engaging assembly of claim 1 wherein:
said opposite end portions of said central body portion of said spool member are transverse to said central body portion of said spool member and project rearwardly therefrom.
6. The earth engaging assembly of claim 5 wherein:
said wear member has an interior notch, and
one of said opposite end portions of said central body portion of said spool member has a locking projection received in said interior notch.
7. The earth engaging assembly of claim 1 wherein:
said spool member has a forwardly facing sloped surface defining a stop surface complementarily engageable by said tapered side surface of said non-threaded head portion of said wedge screw member in a manner precluding further axial advancement of said wedge screw member relative to said spool member.
8. An earth engaging assembly comprising:
a support member;
a wear member rearwardly telescoped onto said support member,
said support member and said wear member having generally aligned connector openings extending therethrough; and
connector apparatus extending through said connector openings and releasably retaining said wear member on said support member, said connector apparatus comprising:
a spool member rearwardly bearing against said wear member, and a forwardly facing side portion,
a shim member forwardly spaced apart from said spool member and having a rearwardly facing sloped surface area; and
a wedge screw member interposed between said spool member and said shim member, said wedge screw member having an elongated, non-tapered body portion threadingly engaging said side portion of said spool member, and a non-threaded, radially sloped surface area rampingly engaging said rearwardly facing sloped surface area of said shim member in a manner such that threaded advancement of said wedge screw member relative to said spool member rearwardly moves said wear member relative to said support member.
9. The earth engaging assembly of claim 8 wherein:
said connector apparatus is essentially entirely recessed within the balance of said earth engaging assembly.
10. The earth engaging assembly of claim 8 wherein:
said wear member is an adapter, and
said support member is a bucket lip.
11. The earth engaging assembly of claim 8 wherein:
said spool member has rearwardly projecting opposite end portions bearing against said wear member.
12. The earth engaging assembly of claim 11 wherein:
said wear member has an interior notch, and
one of said opposite end portions of said spool member has a locking projection received in said interior notch.
13. The earth engaging assembly of claim 8 wherein:
said wedge screw member has a radially enlarged head portion, and
said spool member has a stop surface engageable by said head portion in a manner precluding further axial advancement of said wedge screw relative to said spool member.
14. The earth engaging assembly of claim 8 wherein:
said wedge screw member has non-threaded head and point portions having side surface areas defining said radially sloped surface area of said wedge screw member.
15. For use in releasably retaining a ground engaging wear member on a support member onto which the wear member is rearwardly telescoped, the telescoped wear and support members having generally aligned connector openings extending therethrough, connector apparatus being insertable into the connector openings and comprising:
a spool member positionable to rearwardly bear against the wear member;
a shim member having a sloping surface area and positionable in a forwardly spaced relationship with said spool member to forwardly bear against the support member with said sloping surface area facing said spool member and
a wedge screw member interposable between said spool and shim members and having an elongated, non-tapered threaded body portion threadingly engageable with said spool member, and non-threaded, radially sloped surface area rampingly engageable with said sloping surface area of said shim member in a manner such that threaded advancement of said wedge screw member relative to said spool member rearwardly moves the wear member relative to the support member to thereby adjustably tighten the wear member on the support member.
16. The connector apparatus of claim 15 wherein:
said connector apparatus is sized and configured so as to be essentially entirely recessable within the telescoped wear and support members.
17. The connector apparatus of claim 15 wherein:
said spool member has an elongated central body portion from which transverse opposite end portions rearwardly project.
18. The connector apparatus of claim 18 wherein:
one of said opposite end portions of said spool member has a locking projection thereon.
19. The connector apparatus of claim 15 wherein:
said wedge screw member has a radially enlarged head portion, and
said spool member has a stop member positioned and configured to be contacted by said head portion in a manner precluding further axial advancement of said wedge screw member relative to said spool member.
20. The connector apparatus of claim 15 wherein:
said wedge screw member has non-threaded head and point portions having side surface areas defining said radially sloped surface area of said wedge screw member.