This application claims priority of Taiwanese Application No. 103122089, filed on Jun. 26, 2014.
The invention relates to a forming device, more particularly to a forming device for a three-dimensional printing machine.
Stereolithography (SL) is a kind of three-dimensional printing technique. U.S. Patent Application Publication No. 20130337100 A1 discloses a stereolithography machine for producing a three-dimensional product.
A household SL three-dimensional printing machine generally includes a container for containing a light-curable liquid therein, and a rigid forming platform. During operation of the SL three-dimensional printing machine, the forming platform enters the container, and the light-curable liquid receives incident beams with a specific wavelength such that part of the light-curable liquid is solidified to form a product layer on the forming platform. Then the forming platform is moved up, followed by solidifying a portion of the remaining light-curable liquid into another product layer. With repetition of the abovementioned steps, a product with a desired shape is formed on the forming platform. The forming platform needs to be removed from the printing machine for retrieval of the product. However, the rigidity of the forming platform makes it difficult to retrieve the formed product attached thereon. A tool, such as a putty knife or a shovel, is often required to separate the formed product from the forming platform. The use of tool may damage the formed product or the forming platform.
According to one aspect of the present invention, a forming device for use in a three-dimensional printing machine is provided. The forming device includes a holding mechanism and a flexible forming platform. The holding mechanism includes an abutting base that has an abutting surface, and a pair of holding units that are connected to the abutting base and that are respectively disposed at opposite sides of the abutting surface. The flexible forming platform includes a forming member and a pair of engaging members. The forming member has a forming surface for permitting a light-curable liquid to be solidified and formed thereon, and a positioning surface opposite to the forming surface. The engaging members are connected to the forming member and are respectively disposed at two opposite sides of the positioning surface. Each of the engaging members is engageable with a respective one of the holding units of the holding mechanism to place the positioning surface of the forming member in tight abutment with the abutting surface of the abutting base. The flexible forming platform is bendable such that the forming surface is able to flex away and separate easily from a surface of a product that is formed from the light-curable liquid.
According to another aspect of the present invention, a three-dimensional printing machine is provided. The three-dimensional printing machine includes a container, a laser for producing laser beams, a scanner and a forming device. The container defines a retaining space for retaining a light-curable liquid therein. The retaining space has an upper opening for replenishing the container with the light-curable liquid. The scanner reflects the laser beams produced by the laser to at least a portion of the light-curable liquid. The forming device includes a holding mechanism and a flexible forming platform. The holding mechanism includes an abutting base that has an abutting surface, and a pair of holding units that are connected to the abutting base and that are respectively disposed at opposite sides of the abutting surface. The holding mechanism is vertically movable relative to the container such that the holding mechanism is operable to pass the upper opening and to enter the retaining space. The flexible forming platform includes a forming member and a pair of engaging members. The forming member has a forming surface for permitting said at least a portion of the light-curable liquid to be solidified and formed thereon, and a positioning surface opposite to the forming surface. The engaging members are connected to the forming member and are respectively disposed at two opposite sides of the positioning surface. Each of the engaging members is engageable with a respective one of the holding units of the holding mechanism to place the positioning surface of the forming member in tight abutment with the abutting surface of the abutting base. The flexible forming platform is bendable such that the forming surface is able to flex away and separate easily from a surface of a product that is formed from said at least a portion of the light-curable liquid.
Other features and advantages of the present invention will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
The housing 2 includes a housing body 21, and a covering member 22 connected movably to the housing body 21. The housing body 21 defines a containing space 23 for containing the liquid container 3, the base 4, the laser 5, the scanner 6 and the forming device 7 therein. The covering member 22 is movable between a closing state (see
The liquid container 3 is mounted on the base 4 for containing a light-curable liquid 8 therein. The liquid container 3 includes a light-transmissive base wall 31 and a surrounding wall 32 vertically extending from the base wall 31. The base wall 31 and the surrounding wall 32 cooperatively define a retaining space 33 for retaining the light-curable liquid 8 therein. The retaining space 33 has an upper opening 331 for replenishing the liquid container 3 with the light-curable liquid 8.
The laser 5 is located at a position lower than the liquid container 3 and produces laser beams with a specific wavelength toward the scanner 6. The scanner 6 is located underneath the liquid container 3 and reflects the laser beams from the laser 5 toward the base wall 31 of the liquid container 3 in order to cure at least a portion of the light-curable liquid 8 retained in the liquid container 3. Technique of producing laser beams is well-known in the art and therefore is not further elaborated for the sake of brevity.
Referring further to
The holding mechanism 72 includes an abutting base 721 that has an abutting surface 7210, and a pair of holding units 722 that are connected to the abutting base 721 and that are respectively disposed at opposite sides of the abutting surface 7210. Each of the holding units 722 includes a pivot member 723 that is disposed at the respective one of the opposite sides of the abutting surface 7210, and a hooking member 724 that is pivotally connected to the pivot member 723. The hooking member 724 of each of the holding units 722 includes a hooking part 725 and a pivoting part 726 that extends transversely from the hooking part 725 and that is pivotally connected to the pivot member 723.
The flexible forming platform 73 includes a forming member 731 and a pair of engaging members 732. The forming member 731 has a forming surface 7320 for permitting the light-curable liquid 8 to be solidified and formed thereon, and a positioning surface 7310 opposite to the forming surface 7320. The engaging members 732 are connected to the forming member 731 and are respectively disposed at two opposite sides of the positioning surface 7310. The engaging members 732 cooperate with the forming member 731 to define a recess 733 contiguous to the positioning surface 7310. In other words, the recess 733 is on the side of the positioning surface 7310 as opposed to being on the side of the forming surface 7320. Each of the engaging members 732 includes an engaging end 734 that is substantially parallel to the positioning surface 7310 of the forming member 731, and a connecting wall 735 that extends transversely between and interconnects the engaging end 734 and the forming member 731. The engaging end 734 protrudes from the connecting wall 735 in a direction away from the forming member 731.
The engaging end 734 of each of the engaging members 732 of the flexible forming platform 73 is removably engaged with the hooking part 725 of the hooking member 724 of the respective one of the holding units 722 to couple the holding mechanism 72 to the flexible forming platform 73, such that the abutting base 721 is received in the recess 733 with the positioning surface 7310 of the forming member 731 tightly abutting against the abutting surface 7210 of the abutting base 721.
The flexible forming platform 73 may be made of rubber or steel.
Operation of the three-dimensional printing machine will be described below.
Referring particularly to
Then, the connecting arm 74 descends along the sliding rail 71 such that the coupled pair of the holding mechanism 72 and the flexible forming platform 73 passes through the upper opening 331, enters the retaining space 33 and stops at a position proximate to the base wall 31 (see
Then, the connecting arm 74 moves back to the top end of the sliding rail 71, bringing the coupled pair of the holding mechanism 72 and the flexible forming platform 73 away from the liquid container 3. The covering member 22 is moved to the opening state to uncover the containing space 33, so that the flexible forming platform 73 and the product 1 formed thereon can be retrieved by a user.
To remove the flexible forming platform 73 and the product 1 from the holding mechanism 72, referring particularly to
Referring to
Referring to
The fastening member 729 of each of the holding units 722 may be an adjustment screw or a thumbscrew.
Operation steps of the second embodiment are similar to those of the first embodiment. The differences reside in the way of coupling the flexible forming platform 73 to the holding mechanism 72. The fastening member 729 of each of the holding units 722 is unfastened such that the carrier part 728 descends relative to the extension wall 727. Therefore, the sliding channels 720 become bigger in size such that the engaging end 734 of each of the engaging members 732 can be easily inserted into the sliding channel 720 of the respective one of the holding units 722. The fastening member 729 is then fastened such that the abutting base 721 is received in the recess 733 and the positioning surface 7310 of the forming member 731 tightly abuts against the abutting surface 7210 of the abutting base 721. The carrier part 728 of each of the holding units 722 consequently supports the engaging end 734 of the respective one of the engaging members 732 thereon.
To sum up, since the flexible forming platform 73 is flexible in nature, it can be bent to flex the forming surface 7320 away from the surface of a product 1. Without using a tool, such as a putty knife or a shovel that may damage the product 1 or the flexible forming platform 73, the product 1 could be easily removed from the forming surface 7320 of the flexible forming platform 73.
While the present invention has been described in connection with what are considered the most practical embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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103122089 | Jun 2014 | TW | national |