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7/29/2019 Ips e.max Cad Zircad Ceram
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IPS e.maxcomprises highly aesthetichighly aesthetic
and high-strengthhigh-strength matematerials
for both the PRESSPRESSand the
CAD/CAM techniqueCAD/CAM technique.
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All Ceramic Products
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IPS e.max
One System For Every Indication
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IPS e.max System
one system that covers the entire spectrum of all-ceramic restorations
maximum versatility due to the modular design of the system
Possibility of combining lithium disilicate (LS2) and
zirconium oxide (ZrO2)
One layering ceramic for the IPS e.max-System
various cementation options dependent upon the indication
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IPS e.max System
Lithium disilicate
glass ceramicZirconium
oxide
(Nano-) Fluor-Apatite
glass ceramic
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IPS e.max System
Lithium disilicate
glass ceramicZirconium
oxide
(Nano-) Fluor-Apatite
glass ceramic
processing:
fully anatomic, cut-back and
framework
strength:
360-400 MPa
processing:
press-on / layering ceramic
strength:
90-120 MPa
processing:
framework
strength:
>900 MPa
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IPS e.max System
The right material for every indication
Lithium disilicate (LS2) for single-unit restorations
and up to three-unit premolar bridges
High strength Zirconium IPS e.max ZirCAD (ZrO2) for wide-span bridges
up to 12 units
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IPS e.max System Indication Overview
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Ivoclar Vivadents patented lithium disilicate material is
truly a revolution for the dental industry.
Never before has a material been able to combine high
strength, high esthetics and ease of use into one
product, until now.
Lithium Disilicate (LS2)
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Lithium disilicate (LS2)
IPS e.max lithium disilicate material
exhibit superior durability featuring 360-
400 MPa of flexural strength.
When fabricated to full-contour, the
monolithic structure is the most robust
ceramic crown tested to date.
360-400 MPaof flexural strength.
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Why lithium disilicate (LS2) for single-unit restorations?
- Lithium disilicate combines high strength and high esthetics
- Broad indication range because of the high strength of 360-400 MPa
- depending upon on the indication Lithium disilicate offers flexibility
when it comes to cementation
- Various translucency levels and a comprehensive shade range allow
versatile esthetic options
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Lithium disilicate (LS2) for all single unit restorations
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Lithium disilicate (LS2) for all single unit restorations
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Lithium disilicate (LS2) for all single unit restorations
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Study at the New York University
Mouth Motion Fatigue and Durability Study*
Objective:
To evaluate the effect of on mouth-motion-step-stress-fatigue onreliability and failure modes of monolithic lithium disilicate full crowns
(IPS e.max CAD) and to compare these results with hand-layer veneered
Y-TZP based crowns (IPS e.max ZirCAD/Ceram).
*Mouth Motion Fatigue and Durability Study
Petra C Guess, Ricardo Zavanelli, Nelson Silva and Van P Thompson,
New York University, March 2009
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Lithium disilicate (LS2)
monolithic
Zirconium oxide (ZrO2)veneered
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Zirconium oxide crown (veneered) with failure pattern
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Durability of IPS e.max CAD Lithium Disilicate (LS2) crowns (monolithic)
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IPS e.max CAD Specimens tested
to 1000 N and up to one million
cycles!
No chips, cracks or fractures!
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Dr. A. Kurbad / K. Reichel, Germany
Lithium disilicate (LS2) glass ceramcis Esthetic Characteristics
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Shade Taking
Optimum integration in the oral cavity of the patient is the prerequisite for a
true-to-nature all-ceramic restoration.
The overall esthetic result of an all-ceramic restoration is influenced by the
following factors:
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Contrast ratio %
HIGH
OPACITY
IPS e.max System Translucency Concept
MEDIUM
OPACITY
LOW
TRANSLUCENCY
Layering
technique
HIGHTRANSLUCENCYStaining and
Cut-Back
Technique
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IPS e.max lithium disilicate (LS2) offers esthetic options regardless
of fabrication technique.
Lithium disilicate is available in 16 A-D shades and 4 bleach
shades with 4 translucencies to choose from for creating
exceptional true-to-nature restorations.
Prof. Dr. D. Edelhoff / O. Brix, Deutschland
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Material properties of various dental ceramics
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Clinical Success
Multiple global IPS e.max lithium disilicate clinical trials
Up to 9 years of documented clinical success
99% success rate
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IPS e.max CAD:All you need for the CAD/CAM technique in the future
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IPS e.max CAD
Lithium-Disilicate (LS2) glass ceramic
Innovative, unique lithium disilicate (LS2) glass ceramic
IPS e.max CAD is being milled in an intermediate state, when it shows its
typical blue colour. In this state it can be milled easily, quickly and
precisely.
The material strength and the esthetic properties are reached by a fast
and easy crystallization process
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Lithium disilicate (LS2) blocs for the CAD/CAM technique
High strength (360 MPa)
Available in 3 levels of translucency
3 fabrication methods (layering, cut-back, staining technique) Restorations can be adhesively, self-adhesively and conventionally
cemented.
authorized CAD/CAM partners
IPS e.max CAD
lithium disilicate (LS2) glass-ceramic bloc
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Physical properties
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In 30 min., the restoration is endowed
with its final properties
Properties of IPS e.max CAD
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such as shade, opacity and strength.
Properties IPS e.max CAD
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IPS e.max CAD
Lithium disilicate (LS2) glass-ceramic bloc
Available in 3 levels of translucency:
HT-High Translucency (16 A-D and 4 Bleach BL shades)
LT Low Translucency (16 A-D and 4 Bleach BL shades)
MO Medium Opacity (5 shade groups)
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IPS e.max CAD blocs are available in 2 sizes.
C14 (12.4 x 14.5 x 18.0 mm)
I12 (10.4 x 12.0 x 15.0 mm)
IPS e.max CAD Blocs
18.0mm
14.5
mm
12.4
mm
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IPS e.max CAD Blocs
IPS e.max CAD HT
Blocs with high translucency (compared to LT)
20 shades in 2 sizes (I12 und C14)
16 A-D shades A1, A2, A3, A3,5, A4, B1, B2, B3, B4, C1, C2, C3, C4, D2, D3, D4
4 Bleach BL shades BL1, BL2, BL3, BL4
suitable for the fabrication of restorations of the staining technique
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IPS e.max CAD HT high translucency
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IPS e.max CAD Blocs
IPS e.max CAD LT
Blocs with increased translucency (compared to MO)
20 shades in 2 sizes (I12 und C14)
16 A-D shades A1, A2, A3, A3,5, A4, B1, B2, B3, B4, C1, C2, C3, C4, D2, D3, D4
4 Bleach BL shades BL1, BL2, BL3, BL4
suitable for the fabrication of restorations of the staining and the
cut-back technique
Veneering with IPS e.max Ceram
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IPS e.max CAD LT low translucency
Dr. K. Hoederath/ V. Brosch, Germany
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IPS e.max CAD blocs
IPS e.max CAD LT before and after the crystallization
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IPS e.max CAD MO (medium opacity) 5 shade groups in 1 size (MO 0, MO 1, MO 2, MO 3, MO 4)
Ideal for fabricating frameworks for the layering technique with
IPS e.max Ceram
Suitable for vital and slightly discoloured teeth
Gives the basis for true-to-nature restorations in A-D, Chromascop
and Bleach BL shades.
IPS e.max CAD blocs
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IPS e.max CAD MO medium opacity
Dr. A. Kurbad / K. Reichel, Germany
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Indications(consider bloc assortment)
Veneers
Partial crowns
Anterior and Posterior crowns
Implant superstructures
Primary telescope crowns
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IPS e.max CAD
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IPS e.max CAD lithium disilicate (LS2)
Basically all restorations can be fabricated with any bloc!
For reasons of esthetics, the following blocs are recommended.
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Minimal invasive possibilities
1,0
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Preparation Guidlines (dimensions in mm)
Veneer Anterior crown
Inlay Onlay
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Preparation Guidlines (dimensions in mm)
Partial crown Posterior crown
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Layer thicknesses
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J. Seger,IV/ Liechtenstein
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Authorized CAD/CAM partners
IPS e.max CAD can be processed with a system of choice ofthe global authorized CAD/CAM partners.
D4D is only in the USA, Canada, Australia, New Zealand and South Africa available.
Diadem is only in the USA, Canada, Italy and France available.
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Processing options with the Staining Technique
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Application of Object Fix
IPS Object Fix is available in 2 consistency.
Putty: e.g. for crownsFlow: e.g. for Inlays, Onlays, Veneers
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IPS e.max CAD Crystall./Glaze Paste and Spray
There are 2 options available for glazing of the blue restoration:
Glaze Paste for the standardapplication
Glaze Spray for easy andefficient handling
IPS e.max CAD Crystall./products
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Processing of the layering technique
Cut-back and layering technique
1) Milling of the blue framework
2) Crystallization (crystallization firing)
3) Veneering with IPS e.max Ceram layering materials4) Final glaze firing
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Crystallization - labside
All Ivoclar Vivadent furnaces are compatible, particularly
P300, P500 und P700,
IPS e.max CAD
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IPS e.max CAD - Kristallisation
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IPS e.max CAD - Kristallisation
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Cementation (adhesive, self-adhesive or conventional) Veneers adhesive
Inlays, Onlays, partial crowns adhesive
Anterior/posterior crowns adhesive, self-adhesive or conventional
IPS e.max CAD Cementation
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IPS e.max lithium disilicate options for cementation
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IPS e.max CAD
Lithium disilicate (LS2) glass-ceramic bloc
IPS e.max CADIPS e.max CAD combines high strength and outstanding aesthetics
IPS e.max CADIPS e.max CAD combines efficient and economical processing
IPS e.max CADIPS e.max CAD combines crystallization and glaze in one step
IPS e.max CADIPS e.max CAD combines easy processing by conventional
cementation
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PRODUCT FEATURES CUSTOMER BENEFITS
Unique blue LS2 glass-ceramic
of 360 MPa strength andtranslucency
Conventional/self-adhesivecementable all-ceramic crown
Maximum flexibility due to 3different translucency levels
(MO, LT, HT)
Cost-conscious and high-endaesthetics possible depending on
the processing technique
Depends on the indicationself-adhesive or conventional
cementation
Easy handling opens up new
target groups
IPS e.max CAD
Lithium disilicate (LS2) glass-ceramic bloc
Crystallization and glaze firing inone step
The fastest CAD/CAM all-ceramic from scanning to the completed
crown in 1 hour
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IPS e.max ZirCAD: Alles fr die CAD/CAM Technik
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IPS e.max ZirCAD
Yttrium-stabilized zirconium oxide bloc
Yttrium-stabilized zirconium oxide block for the CAD/CAM technique
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IPS e.max ZirCAD
- Ideally suitable for indications, that require high strength, such as
anterior and posterior (widespan) bridges
- frameworks are milled to contour approximately
20-25% larger than required and subsequently
sintered. At this, they shrink to their final size andobtain their typical, high fracture toughness.
- Finally IPS e.max ZirCAD frameworks are conventionally veneered
using the IPS e.max Ceram layering ceramic or pressed over using
the IPS e.max ZirPress fluorapatite ingots.
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Product information
High performance all-ceramic for dental applications(>900 MPa)
Excellent biocompatibility and low heat conductivity
Delicate framework design
adhesive, self-adhesive or conventional cementation
Due to its excellent final strength, the material is capable of fulfillingthe clinical requirements in the posterior region (bridges) bywithstanding the high chewing forces in that area.
IPS e.max ZirCAD
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Up to 12-unit bridge frameworks for anterior and posterior regions
Crown copings in the anterior and posterior
Inlay-retained bridge frameworks
Primary telescope crowns
Implant superstructures (single tooth and bridge frameworks)
Indications
INN-Keramik, Austria J. Seger, IV/Liechtenstein
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Physical properties
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Processing
inLab System
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Product concept
IPS e.max ZirCAD for inLab are available in 9 sizes
C13, C15 and C15L (for single tooth copings)
B40 and B40L (for 3- to 4-unit bridge frameworks)
B55 and B65 (for 4- to 6-unit bridge frameworks)
B65L and B85L (for up to 12-unit bridge frameworks
or stack milling)
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Product concept
IPS e.max ZirCAD for inLab in 3 shades
MO O (uncoloured)
MO 1 und MO 2 (pre-coloured)
The shade concept is based on IPS e.max Press and CAD MO
shades MO 3 und MO 4 can be realized with the Colouring Liquids
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Preparation Guidelines (dimensions in mm)
Single Crowns to 3-unit Bridges
Multi-Unit Bridges
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Layer thicknesses
- The IPS e.max ZirCAD framework material is the high-strength
component of your restoration and must always be given a design that
supports the overall shape of the restoration and the cusps.
- In large preparations, the excess available space must be compensated
by the corresponding dimensions of the high-strength IPS e.max ZirCAD
component and not by the pressed-on or layered-on materials.- The following minimum thicknesses have to be observed:
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- with targeted drying (e.g. infrared, convection,warm air stream) the drying time can be
clearly reduced.
- Drying times are to be considered after milling and
after colouring with liquids
Colouring Liquids Drying Times
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Colouring Liquids - Application
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Long-span bridge frameworks
from inLab Software 3D V 3.60
long span frameworks (> 5 units)
stack milling
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Long-span bridge frameworks
For long-span bridge frameworks (> 5 bridge units), the following
supplementary/different working steps have to be observed.
CAM construction
The IPS e.max ZirCAD B65L-17 and IPS e.max ZirCAD B85L-22 are
processed using inLab MC XL (from Software version: inLab 3D V 3.60).
Users have the option to either mill long-span frameworks or to processseveral frameworks in one milling procedure by means of stack milling.
After the selection of various frameworks (milling data) they are automatically
placed within the bloc and the milling procedure can be started.
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Long-span bridge frameworks
Use the one-piece milling tools and the manual bloc chuck to process
the large blocks.
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Long-span bridge frameworks
Place the framework in the firing sagger either on the sinter support
structure or with the occlusal surface facing down.
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Long-span bridge frameworks
For long-span bridge frameworks (> 5 bridge units), the following
supplementary/different working steps have to be observed.
Finishing and Preparation for sintering
after stack milling, the frameworks must be separated very carefully
observe the following sequence when separating:
- 1. Connection at the outermost end
- 2. Attachment point to the bloc
- 3. Attachment point to the bloc
- 4. Individual units from each other
Single-tooth frameworks as well as smaller bridges frameworks are carefullyseparated from each other with a diamond
Do not separate long-span bridge frameworks from the sinter support structure.
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Long-span bridge frameworks
For long-span bridge frameworks (> 5 bridge units), the followingsupplementary/different working steps have to be observed.
Framework finishing after sintering
For sintering, an empty firing saggerwithout ZrO2beads is used.
Place the framework in the firing sagger either on the sinter support structure
or with the occlusal surface facing down. Separate the sinter structure with a diamond separating disk
(under water cooling)
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Sintering process
SINTERING ZrO2CROWNS IN JUST 90 MINUTES
Short sintering process saves a lot of time:
approx. 90 minutes instead of 5-8 hours for
a single-unit framework
More efficiency, because crowns and bridges onZrO2base structures can now be fabricated in
one working day.
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short sintering times
the time-saving sintering process has apositive effect on the production costs
(less energy is consumed power Saving Technology)
Graphic display with proven membrane-sealed keypad
OSD operating status display
Easily accessible sintering chamber
Compact design and light weight
Sinterprozess
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Sintering
Regeneration Firing (optional):
Basically, adjustments of sintered IPS ZirCAD frameworks should be keptto a minimum.
A Regeneration firing is only recommended after:
- Large-scale adjustment of the IPS e.max ZirCAD framework (e.g. reductionof cusps and overall thickness)
- Use of grinding instruments not listed in the IPS e.max grinding toolrecommendations.
- Grinding with diamond grinding tools (graining >100 m).
Please note:
Fractures or cracks in the IPS e.max ZirCAD framework caused by roughfinishing, e.g. blasting with high pressure, cannot be healed by aRegeneration firing.
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IPS e.max Ceram ZirLiner
The specially developed zircon liners mediate an optimum bond, both
for the veneering and the press-on technique
High light transmission and high fluorescence
They allow you to give the frameworks some colour and a natural shade
and in-depth effect
Special Gingiva Liner for the use in
implant prosthetics
Processing
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Veneering of IPS e.max ZirCAD
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Pressing onto IPS e.max ZirCAD
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Firing parameters
lower heating rate slow cooling
IPS e max ZirCAD
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PRODUCT FEATURES CUSTOMER BENEFITS
High-strength, high performance
and biocompatible all-ceramic
Great range of indications(especially posterior bridges)
Choice between adhesive, self-adhesive and conventional
cementationAdvantage in many dental offices
Veneering with IPS e.max Ceram orpressing over with IPS e.max
ZirPress
Exceptional aesthetics andhighest strength combined
IPS e.max ZirCAD
Yttrium-stabilized zirconium oxide bloc
A i
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Accessories
IPS Natural Die Material
Simulates the shade of the prepared tooth
Provides the optimum basis for a natural
shade reproduction of the given oral situation
A i
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Accessories
IPS Natural Die Material
A i
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Accessories
IPS Object Fix (Flow / Putty)
available in 2 consistencies: Flow und Putty
The auxiliary firing pastes can be used for
all-ceramics restorations, e.g. to secure theveneers on the firing pin.
IPS e max Ceram:
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IPS e.max Ceram:
All you need to achieve consistent esthetics and shading
IPS e max Ceram
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IPS e.max Ceram
Nano-fluorapatite layering ceramic
Nano-fluorapatite glass-ceramic for veneering and characterizing
all-ceramic frameworks
IPS e max Ceram
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IPS e.max Ceram
Nano-fluorapatite layering ceramic
The low-fusing IPS e.max CeramIPS e.max Ceram combines the elements of the
IPS e.max System.
Veneering of lithium disilicate glass and zirconium oxide ceramics
with highly aesthetic results
One common layering scheme for predictable shade results
Restorations veneered with IPS e.max Ceram exhibit the same clinical
behaviour, e.g. regarding wear and gloss.
Physical properties
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Physical properties
IPS e.max Ceram
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IPS e.max Ceram
Veneering of lithium disilicate glass ceramic (LS2) as well as
zirconium oxide (ZrO2)
One common layering scheme and accurate shade matching.
same clinical behaviour and therefore, comparable wear and surfacegloss of the veneered restorations
Comprehensive range of supplementary materials (shades,
essences) for individual esthetics
Gingiva masses for the realization of true-to-nature gingival areas,
which are particularly important for implant-retained restorations.
Indications
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Indications
Veneering and characterization of all IPS e.max components
Veneering of frameworks, implant abutments and implant
superstructures made of zirconium oxide (green body/HIP) in a CTE
range of 10.5 - 11.0 x 10-6 K-1 (100-500 C)
Layered veneers
IPS e max Ceram Layering Scheme
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IPS e.max Ceram Layering Scheme
IPS e max Ceram Layering Scheme
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IPS e.max Ceram Layering Scheme
IPS e.max Ceram One for 4
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IPS Empress
Esthetic ProCAD Befestigung glass ceramic zirconium oxide
Klinische
Langzeitstudien KommunikationIPS e.max System
IPS e.max Press IPS e.max ZirPress IPS e.max ZirCAD IPS e.max CAD
IPS e.max Ceram Glaze Spray
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p y
For the easy and fast glazing of fully anatomical pressed/milled or
layered IPS e.max restorations
IPS e.max Ceram Spray Glaze 270 ml
with uncrystallized/blue IPS e.max CAD restorations
the special IPS e.max CAD Crystall./Glaze Spray must be used
IPS e max Ceram on ZrO
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IPS e.max Ceram on ZrO2
V. Brosch, Germany
IPS e max Ceram on ZrO
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IPS e.max Ceram on ZrO2
Prof. Dr. D. Edelhoff/ O. Brix,
Germany
IPS e.max Ceram on LS2
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IPS e.max Ceram on LS2
Dr. A. Kurbad / K. Reichel, Germany
IPS e.max Ceram on LS2
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IPS e.max Ceram on LS2
Dr. K. Ogura / S. Sasaki, Japan
IPS e.max Ceram Gingiva
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T. Michel, Germany
IPS e.max Ceram Gingiva
New Abutment technique IPS e.max Ceram
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New Abutment technique IPS e.max CeramAdaptation Emergence Profile
ZirLinerstarting situation
glaze and stains finished abutmentpolishing
layering
NewAbutment technique IPS e.max Ceram
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qAdaptation Emergence Profile
NewAbutment technique IPS e.max Ceram
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qDirect veneering
Maximum layering thickness of IPS e.max Ceram
NewAbutment technique IPS e.max Ceram
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qDirect veneering
ZirLinerstarting situation
Layering glaze and stainspolishing
Layering
NewAbutment technique IPS e.max Ceram
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qDirect veneering
Straumann Anatomic IPS e.max Abutment
directly veneered
IPS e.max Ceram
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One layering ceramic for highly-aesthetic
glass-ceramics and high-strength zirconiumoxide
Highly aesthetic restorations,independent of the framework
material
One layering scheme independent of the framework
material
IPS e.max Ceram:
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PRODUCT FEATURES CUSTOMER BENEFITS
One layering ceramic for glassand zirconium oxide ceramics
Low investment and stock-keeping; efficient and economical
processing
Nano-fluorapatite glass-ceramicHighly aesthetic restorations,independent of the framework
material
From the layered veneer to theZrO2-supported bridge all
veneered with one ceramic
Shade matching and same clinicalproperties due to a consistentmaterials composition
All you need to achieve consistent esthetics and shading
IPS e.max: All you need for cementation
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IPS e.max: Preparing for cementation glass-ceramic
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IPS e.max: Preparing for cementation zirconium oxide
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IPS e.max: all you need for cementation
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The cementation is conducted using the following materials:
Variolink II, Variolink Veneer, Multilink Automix, SpeedCEM oderVivaglass CEM
IPS e.max: All you need for cementation
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Glass-ceramics are generally etched(IPS Ceramic Etching Gel)
Glass-ceramics are generally silanized (Monobond Plus).only when followed by conventional cementation (glass ionomer)conditioning is not needed
Oxide ceramics are not etched
Oxide ceramics are silanized for adhesive cementationwhen self-adhesively or conventionally cemented,
conditioning is not needed
IPS e.max All you need for all-ceramics
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IPS e.max System
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PRODUCT FEATURES CUSTOMER BENEFITS
Choice between
highly aestheticglass-ceramics(LS2) and
high-strength zirconium oxide (ZrO2)
Depending on the patientrequirements,
exceptional aesthetics and
highest strength can be combined
One
layering ceramic for
glass-ceramics and zirconium oxide
Exact shade match and
same clinical behaviour(e.g. wear, gloss),
independentof the framework
Conventional, self-adhesive and
adhesive cementation
Flexible and versatile use
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