3D print head with shutter

The print head design with a rotor-stator mechanism and tubular membrane addresses the issue of pressure fluctuations in 3D printing systems, ensuring consistent material deposition and improved print quality.

FR3149822B1Active Publication Date: 2025-06-06SAINT GOBAIN WEBER FRANCE
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Patent Information

Application Number
FR2023005980
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-06-13
Publication Date
2025-06-06
Estimated Expiration
2043-06-13

AI Technical Summary

Technical Problem

Existing 3D printing systems for construction materials, such as concrete or mortar, experience poor print quality due to pressure fluctuations when stopping and restarting the printing process, resulting in inconsistent material deposition and potentially fragile construction areas.

Method used

A print head design featuring a rotor-stator mechanism with a tubular membrane that allows for precise control of material flow by rotating the rotor relative to the stator, maintaining constant pressure and flow during pauses in the printing process.

Benefits of technology

The solution enables seamless start-stop phases without pressure loss, ensuring consistent and high-quality material deposition, thereby enhancing the structural integrity of 3D printed construction materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a print head (10) for a three-dimensional printing system (1) of material, said head comprising a main body (12) provided with an inlet opening (13) and an outlet opening (14) through which the material to be printed passes, said head further comprising means (30) for closing the outlet opening, characterized in that the closing means comprise a rotor (32) associated with a motor element (38), a stator (34) and a tubular membrane (36) fixed by one end to the rotor and by the other end to the stator. Fig 1
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Description

Title of the invention: sealing means for 3D printing system

[0001] The present invention relates to the field of 3D printing and in particular the 3D printing of material for construction. Prior art

[0002] 3D printing of construction material such as concrete or mortar is known to design construction elements or even buildings. This 3D printing consists of having a tank of material. A pump is used to bring said material from the tank to a print head. This print head includes an opening-closing means used to allow or block printing. This opening-closing means is used when creating an object / building. Indeed, it is sometimes necessary to interrupt printing during construction in order to form openings or for the creation of complex parts with discontinuities.

[0003] The disadvantage of existing systems is that the process of stopping and restarting printing results in poor print quality. This poor quality is the consequence of the fact that, upon restart, the pressure in the printing system is not instantly returned to its operating value. As a result, the stream of material deposited during this period of time is not of high quality, its dimensions are not in accordance with the wishes, i.e. the stream of material is thinner. This results in a construction which may have more fragile areas.

[0004] There is therefore a need to find a solution to this problem of the quality of material deposition. Summary of the invention

[0005] The present invention seeks to solve the problems of the prior art by providing a printing system which allows a constant flow of output to be maintained when pausing said printing.

[0006] In this respect, the invention relates to a print head for a system for three-dimensional printing of material, said head comprising a main body provided with an opening and an outlet through which the material to be printed passes, said head further comprising means for closing the outlet opening, characterized in that the closing means comprise a rotor associated with a motor element, a stator and a tubular membrane fixed by one end to the rotor and by the other end to the stator.

[0007] According to one example, the rotor and the stator are circular and concentric.

[0008] According to one example, the main body is a conduit acting as a stator.

[0009] According to one example, the main body is a conduit, the rotor being arranged to surrounding said main body.

[0010] According to one example, the membrane has a cylindrical or conical shape or comprises two cylindrical portions of different diameters connected by a conical portion.

[0011] According to one example, the rotor or the stator are mounted to be mobile in translation, the mobility in translation being controlled by damping means.

[0012] According to one example, the damping means comprise at least one spring, preferably several springs, even more preferably, a series of regularly distributed springs.

[0013] According to one example, the membrane is fixed to the rotor and / or to the stator by a clamping ring.

[0014] According to one example, the clamping ring has a rounded profile.

[0015] The invention further relates to a three-dimensional printing device comprising a material reservoir connected to a print head via a pipe, said print head being carried by a structure allowing said print head to move along at least three axes: length, width and height, said printing device being controlled by a computing unit, characterized in that said print head is the print head according to the invention. Description of the drawings

[0016] Other features and advantages will become clear from the description given below, for informational purposes only and in no way limiting, with reference to the attached drawings, in which:

[0017] - [Fig.l] represents a view of a printing system according to the invention;

[0018] - [Fig.2] represents a diagram of the printing system according to the invention;

[0019] - [Fig.3] represents a print head of the printing system according to the invention;

[0020] - [Fig.4] and 5 represent means for closing the print head according to the invention;

[0021] - [Fig.6] shows different versions of a membrane of a print head of the printing system according to the invention;

[0022] - [Fig.7] to 9 represent configurations of the printing system according to the invention;

[0023] - [Fig. 10] represents a variant of the print head with dampers according to the invention;

[0024] - [Fig.l 1] represents a variant of a clamping ring of a print head according to the invention. Detailed description

[0025] In [Fig.l], a system 1 for printing material in three dimensions is shown. The printing system 1 is used to produce a construction object such as a brick or a concrete block or to directly produce a building. The printing system comprises a print head 10 by which the material is deposited. The print head 10 is mounted on a structure 2 allowing said print head 10 to move along at least three axes: length, width and height to carry out said printing. This structure 2 may be in the form of an articulated arm or gantries. The print head 10 and the structure 2 are connected to a control unit.

[0026] The print head 10, visible in [Fig.2], is connected to a reservoir 20 via a conduit called the main conduit 40. The reservoir 20 is a reservoir in which the mixture used for printing is stored. The reservoir 20 is also called a mixer when it is equipped with means for mixing the mixture such as an endless screw or rotating blades.

[0027] The printing system 1 further comprises a pump 50 for bringing the mixture from the reservoir to the print head. The whole is controlled by a control unit 60.

[0028] The print head 10, visible in [Fig. 3], comprises a main body 12 provided with an inlet 13 through which the main conduit is connected and an outlet 14 through which the material is ejected to be printed. The print head further comprises sealing means 30 arranged at the outlet allowing the material to be printed or not.

[0029] According to the invention, the closure means 30 comprise a rotor 32 and a stator 34 as visible in [Fig.4]. The closure means 30 further comprise a membrane 36. This membrane 36 is fixed both to the stator 34 and to the rotor 32. The rotor 32 and the stator are arranged to be one inside the other, that is to say concentric, and thus form an inner element and an outer element. Preferably, the rotor and the stator are circular in shape. It is possible for the rotor 32 and / or the stator 34 to be at least hexagonal in shape, for example octagonal or dodecagonal.

[0030] Rotating the rotor relative to the stator allows the membrane 36 to be moved and rotated. This rotation of the membrane 36 causes it to overlap on itself, resulting in the appearance of folds 360 allowing the membrane to simulate an iris as seen in [Fig.5].

[0031] The membrane 36 used is a tubular type membrane. This membrane 36 has a cylindrical or conical or other shape such as for example a shape comprising two portions of different diameters connected to each other by a conical portion as visible in [Fig.6].

[0032] This membrane 36 is fixed to the rotor and to the stator in a clever manner. For this purpose, it is considered that the membrane 36 comprises an outer face and an inner face. The tubular stator 34 and rotor 32 also comprise an inner face and an outer face. The membrane 36 is then fixed to the rotor 32 and to the stator 34 so that the outer face of the membrane 36 is in contact with the inner face of the rotor / stator element arranged as an inner element. The membrane 36 is then fixed to the rotor 32 and to the stator 34 so that the outer face of the membrane 36 is in contact with the outer face of the rotor / stator element arranged as an outer element. For this purpose, the membrane 36 is turned over. To do this, the membrane 36 is first fixed to the inner element acting as rotor 32 or stator 34 and then is turned over, folded back on itself for fixing to the outer element.The membrane 36 is fixed by different fixing means as visible in [Fig.7].

[0033] An example of fastening means consists of a clamping ring. This clamping ring can be screwed directly to the rotor or stator or comprise two portions which screw together. Another example consists of screwing the membrane to the rotor and the stator.

[0034] The membrane 36 is fixed so that it is taut once in place.

[0035] In a first embodiment visible in [Fig.8], the main body 12 is in the form of a conduit, that is to say a tubular part. This main body 12 is the stator 34. The print head then comprises a rotor 32. This rotor 32 is in the form of a tubular part which surrounds the stator 34. The rotor 32 is mounted in rotation by means of a motor. This motor 38 is controlled by the control unit. In this first embodiment, the material is thus expelled by said stator 34.

[0036] In a second embodiment visible in [Fig.9], the main body 12 is in the form of a conduit, that is to say a tubular part. The rotor 32 is a conduit which surrounds the main body, the two conduits being circular allowing the rotor to be rotated. The stator 34 is a fixed conduit, fixed to the main body 12 for example. In this second embodiment, the material is thus expelled through the main conduit 12.

[0037] Of course, the main body 12 does not necessarily have the form of a conduit. This conduit shape may be limited to the part at which the outlet opening is made. The main body 12 may thus have the form of a square or rectangle or triangle from which a circular conduit forming the exit extends.

[0038] The motor 38 used for rotating the rotor 32 is preferably a stepper motor. Such a motor allows fine, step-by-step rotation, thus opening or closing the membrane precisely.

[0039] The advantage of the system according to the invention is to allow a start-stop phase without loss of pressure.

[0040] In a variant, one of the conduits is mounted on a horn damper visible in [Fig.10]. Indeed, during the deformation of the membrane 36, a traction is exerted on said external conduit. So that the traction is not localized only on the membrane, the rotor 32 or the stator 34 are mounted on a damper. Preferably, the conduit mounted on the damper is the external conduit. The assembly then consists of having an external conduit fixed to a fixed point by a series of damping elements such as springs. Thus, when the rotor 32 rotates, the membrane 36 closes and extends. This extension of the membrane 36 causes a tension. The presence of the springs makes it possible to compensate for this tension since instead of having the tension which is localized on the membrane 36, this tension is compensated by the springs which allow the conduit mounted on springs to move.The springs allow, when the rotor rotates in the opposite direction, the membrane to relax and therefore a return to the initial position of the spring-mounted conduit.

[0041] In a variant, the attachment of the membrane 36 to the inner duct is a clamping ring. This clamping ring has a rounded shape as seen in [Fig.l 1]. This rounded shape helps protect the membrane. Indeed, when stretched, the membrane 36 presses and rubs against the edge of the inner duct. With the rotation of the membrane 36, this pressure can damage said membrane. The rounded clamping ring helps limit friction on the membrane.

[0042] Of course, the present invention is not limited to the illustrated example but is susceptible to various variants and modifications which will appear to those skilled in the art.

Claims

Claims

1. Print head (10) for a three-dimensional printing system (1) of material, said head comprising a main body (12) provided with an inlet opening (13) and an outlet opening (14) through which the material to be printed passes, said head further comprising means (30) for closing the outlet opening, characterized in that the closing means comprise a rotor (32) associated with a motor element (38), a stator (34) and a tubular membrane (36) fixed by one end to the rotor and by the other end to the stator.

2. A print head according to the preceding claim, wherein the rotor (32) and the stator (34) are circular and concentric.

3. A print head according to claim 1 or 2, wherein the main body is a conduit acting as a stator.

4. A print head according to either of claims 1 or 2, wherein the main body is a conduit, the rotor being arranged to surround said main body.

5. Print head according to one of the preceding claims, in which the membrane (36) has a cylindrical or conical shape or comprises two cylindrical portions of different diameter connected by a conical portion.

6. Print head according to one of the preceding claims, in which the rotor or the stator are mounted to move in translation, the translation mobility being controlled by damping means.

7. Print head according to the preceding claim, in which the damping means comprise at least one spring, preferably several springs, even more preferably, a series of regularly distributed springs.

8. A print head according to any preceding claim, wherein the membrane is attached to the rotor and / or stator by a clamping ring.

9. Print head according to the preceding claim, in which the clamping ring has a rounded profile.

10. A three-dimensional printing device (1) comprising a material reservoir connected to a print head via a pipe, said print head being carried by a structure allowing said print head to move along at least three axes length, width and height, said printing device being controlled by a computing unit characterized in that said print head is the print head according to one of the preceding claims. pre-