3D 打印也适用于加工超软 TPE 化合物
使用 3D 打印机对凯柏胶宝® 的热塑性弹性体进行熔融沉积建模
为检验其热塑性弹性体 (TPE) 材料在增材制造 (AM) 中的适用性,凯柏胶宝® 开展了广泛的测试。测试表明,公司内几乎所有的 TPE 材料,都可以用在 Pollen AM 的设备上进行熔融沉积建模 (FDM),并且效果极佳。
增材制造正在为制造业世界带来巨大的改变和发展。曾经只能进行原型制造的产品,现今越来越多地可以进行更小批量的生产和用作备件。由于设备相对简单易用且无需额外的工具,因此即使是复杂的零件也可以在需要的时候进行快速打印。该技术具有巨大潜力,可显著节省时间、工作量和成本。
凯柏胶宝® 欧洲、中东和非洲地区产品管理部的 Thomas Wagner 博士说:“由于物理性质上的限制,大多数经典 3D 线材打印机不适合处理软 TPE 材料。此外,根据特殊 3D 打印材料制成的原型,只能得出与标准注射成型或挤出化合物性能相关的有限结论。”我们面临的挑战是如何精确分析用软质 TPE 材料进行熔合沉积建模的先决条件。为了找到合适的解决方案,我们必须学会如何分开打印机的技术限制与材料的限制。”
测试证明,法国 3D 打印机制造商 Pollen AM 的颗粒增材制造 (PAM) 系统提供了理想的技术。使用该公司推出的 PAM 颗粒打印机系列,即使加工非常柔软的 TPE 也能产生极其精细的表面,同时能处理多达四种材料。通过这种方式,将有可能使用 TPE 与塑料(例如聚丙烯 (PP)、丙烯腈-丁二烯-苯乙烯 (ABS) 或聚酰胺 (PA)),制作典型软硬多组分复合材料。
Pollen AM 的运营主管 Didier Fonta 解释说:“我们的 PAM 打印机可确保最短停留时间,避免影响软弹性体的特殊优势,”这还确保提供理想的剥离强度,尤其适用于低肖氏硬度范围热塑性弹性体的多组分应用。”
凯柏胶宝® 和 Pollen AM 共同进行的打印测试令人信服。根据具体的工艺参数,其打印机最高可实现同类注塑成型品显示值的 50%。这意味着要仔细选择和加工所提供的 TPE 化合物,代表着该技术既适用于生产演示样品,也适用于生产功能性原型,因此能够降低开发新应用的成本。
在凯柏胶宝® 产品组合中,几乎所有的热塑性弹性体都可用作在 PAM 颗粒印刷机上直接加工的材料,因此不需要特殊的化合物。此外,在 PAM 颗粒打印机的 3D 打印过程中,可保持材料的所有性能,尤其是它们与各种热塑性塑料的包胶性。生产过程中可能产生的残留物将可以在当地的废物流中回收。
关于 Pollen AM
Pollen AM Inc.成立于 2013 年,总部位于巴黎的塞纳河畔纳伊,现已发展成为 3D 打印机领域的领先制造商,这些打印机是塑料和金属颗粒免工具加工的理想选择。该公司的颗粒增材制造 (PAM) 打印机可采用熔融沉积建模 (FDM) 同时处理多达四种材料,分辨率高达 40µ。如需了解更多信息,请访问 www.pollen.am
大多数凯柏胶宝® 的热塑性弹性体都非常适合由 Pollen AM 的 P 系列 3D 颗粒打印机进行加工,这款打印机还可以使用熔融沉积建模 (FDM) 增材制造功能性多组分零件。(图片来源:© 2019 Pollen AM)
3D printing also suitable for super-soft TPE compounds
Fused deposition modeling with 3D printers using thermoplastic elastomers from KRAIBURG TPE
KRAIBURG TPE has performed extensive tests to examine the suitability of its thermoplastic elastomers (TPEs) for use in additive manufacturing (AM). The tests have shown that almost all of the company’s TPEs can be processed with excellent results using fused deposition modeling (FDM) on devices from Pollen AM.
Additive manufacturing is making giant strides in changing the world of the manufacturing industry. What once was limited to prototypes is today more and more often being used for smaller quantities and spare parts, in particular. Thanks to the relatively straightforward and tool-free equipment of the devices, even sophisticated parts can be printed quickly and in the very place where they are needed. The technology provides enormous potential for significant savings of time, work and costs.
“Due to physical limitations, most classic 3D filament printers are not suitable for processing soft TPEs. In addition, it’s only possible to draw fairly limited conclusions from prototypes made of special 3D printing materials in relation to the performance of standard injection molding or extrusion compounds,” says Dr. Thomas Wagner from Product Management EMEA at KRAIBURG TPE. “The challenge we faced was to precisely analyze the prerequisites for fused deposition modeling of soft TPEs. In order to find a suitable solution, we had to learn to separate the technical limitations of the printers from those of the materials.”
The pellet additive manufacturing (PAM) system from Pollen AM, a French 3D printer manufacturer, proved to be the ideal technology. The current series of PAM granule printers produce extremely detailed surfaces even with very soft TPEs and are able to process up to four materials at the same time. In this way, typical hard–soft multicomponent composites made of TPEs in combination with plastics such as polypropylene (PP), acrylonitrile-butadiene-styrene (ABS) or polyamide (PA) are also possible.
“Our PAM printers ensure the shortest possible residence times to avoid affecting the specific advantages of soft elastomers,” explains Didier Fonta, Head of Operations at Pollen AM. “This also ensures excellent peel strength, particularly for multicomponent applications with thermoplastic elastomers in the low Shore hardness range.”
Tests performed jointly by KRAIBURG TPE and Pollen AM have resulted in convincing prints featuring mechanical properties that achieve up to 50 percent of the values shown by comparable injection moldings, depending on the process parameters. This means that the provided TPE compounds are carefully chosen and processed, so the technology is suitable for producing both demonstration samples and also functional prototypes and is thus able to reduce the costs of developing new applications.
Since almost all thermoplastic elastomers that KRAIBURG TPE has in its portfolio are potential materials for direct processing on PAM granule printers, no special compounds are needed. Additionally, all features of the materials, especially their adhesion possibilities on various thermoplastics, are maintained in 3D printing with PAM granule printers. Residues that may arise during production can be recycled in local waste streams.
凯柏胶宝® - 快览
- 总部和生产基地:瓦尔德克赖堡/德国
- 区域总部和生产基地:吉隆坡/马来西亚,亚特兰大/美国
- 产品:热塑性弹性体化合物
- 品牌:热塑宝、科柔宝®、高温宝和尼塑宝®
- 市场:欧洲、美洲、亚太地区
- 员工:660