Products Laboratory Hydraulic Press Laboratory Heated Press Automatic Hot Press 3 Ton 300x300mm Oil Free OSHA Light Curtain Optional
Automatic Hot Press 3 Ton 300x300mm Oil Free OSHA Light Curtain Optional

Laboratory Heated Press

Automatic Hot Press 3 Ton 300x300mm Oil Free OSHA Light Curtain Optional

Item Number : XP72

Price varies based on specs and customizations


Max. Working Force
0 – 6000 lbs (2.7 metric tons)
Platen Size
300 × 300 mm
Working Temperature Range
0 – 300 °C
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产品概述

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这款自动热压机彻底摒弃了液压油,重新定义了清洁、可重复的热压工艺。提供 0 至 6000 磅的可编程压力,分辨率高达 20 磅或更低,确保在整个压力范围内实现精准的压力控制。这种无油设计不仅避免了漏油和维护的麻烦,还避免了气溶胶污染,从而保护了敏感材料的完整性。

该系统专为要求严苛的实验室和小规模生产环境而设计,是样品制备、聚合物薄膜制造、热压印和层压粘合的理想之选。其无油操作使其成为洁净室、电池研究实验室以及对污染控制要求极高的场所的完美选择。材料科学、制药和电子领域的研究人员将会欣赏该压机的多功能性及其精确复制复杂多步骤工艺的能力。

这款压机专为实现稳定持久的性能而设计,配备坚固耐用的双加热压板,可独立控温至 300°C,并具备升温/保温程序。即使在连续高产量条件下,用户也能确保每次运行都获得均匀加热和稳定的压力输出。凭借坚固的伺服执行器和用于热稳定性的水冷系统,该设备能够承受日常工业研发和生产的严苛考验。

主要特点

  • 可编程多步力控制:用户可以定义复杂的力曲线,包括多个保压阶段,从而精确复制压制顺序,实现工艺优化和可重复性。多达 20 个可编程步骤,可实现精确的升压、保压和卸载,使其成为热压印等需要压力逐渐变化的工艺的理想选择。
  • 独立双区温控:每个 300×300 毫米加热板均采用独立温升/保温程序控制,实现精确的加热曲线,防止热冲击并确保零件温度均匀。这对于多层复合材料和复合材料固化至关重要,因为这些材料的上下层可能需要不同的热循环。
  • 升温/保温温度编程:内置的PID控制器支持用户自定义加热速率和保温时间,可保护对温度敏感的材料免受突发温度梯度的影响。此功能对于聚合物熔融、陶瓷粘合剂烧除和药物片剂包衣等工艺至关重要,因为缓慢加热可以防止缺陷的产生。
  • 大功率加热系统:4500 W 的加热功率确保快速升温至 300°C,最大限度地缩短循环时间,提高繁忙实验室的效率。尽管功率高,但独立的温控区域即使在动态负载下也能将温度稳定性维持在 ±1°C 以内。
  • 直观的7英寸触摸屏界面:彩色触摸屏可实时显示压力和温度曲线,存储多个配方,并简化各种技能水平操作人员的参数调整。数据记录功能允许导出过程参数,用于质量文档记录和可追溯性。
  • 可选的符合 OSHA 标准的安全防护罩:工厂集成的光幕防护罩可在检测到入侵时立即停止压板运动,帮助实验室满足北美工业安全标准。该防护罩还能阻挡任何飞溅的碎片,为操作人员提供额外的保护。
  • 紧凑型洁净室适用设计:这款压机无需液压油,采用全密封执行器,符合 ISO 洁净度标准,可轻松放置于手套箱或工作台上。其占地面积小,仅需单相电源,是空间有限的实验室的理想之选。
  • 水冷系统:集成式循环水冷却板可确保机架及周围组件即使在长时间高温运行下也能保持在安全温度范围内。这有助于保持对准精度,并延长密封件和传感器的使用寿命。
  • 稳健的单相电源配置:采用 220–240V/60Hz 单相电源(北美常见),无需复杂的三相布线即可提供 4.5 kW 的功率。双火线配置可实现均衡负载,并与标准实验室电气基础设施兼容。

应用程序

应用 描述 主要优势
电池研究与电极制造 在受控的温度和压力下将正负极粉末压制成集流体或组装软包电池,需要极高的洁净度以避免电解液污染。这款压机采用无油伺服驱动,并可选配手套箱,使其成为锂离子电池原型制作和固态电池开发的理想之选。 消除油污,确保电化学完整性并符合 ISO 洁净室标准。
聚合物薄膜压制 将聚合物颗粒或片材熔化并压制成均匀薄膜,用于光谱分析或力学测试,需要精确的温度控制和均匀的压力。双区独立加热和升温程序控制可实现缓慢熔化和厚度一致,从而防止出现过热点和聚合物降解。 获得平整、无空隙、结晶度和厚度均匀的薄膜,以获得可重复的分析结果。
微流控热压印技术 将微纳结构复制到热塑性基底上以用于芯片实验室器件,需要高力分辨率和精确的温度曲线,才能在不损坏精密模具的情况下转移精细特征。该压机的压力分辨率小于 20 磅,并可实现升温/保温温度控制,从而确保在整个 300×300 毫米区域内实现清晰的图案转移。 高保真图案复制,模具磨损极小,可快速制作微流控芯片原型。
层压复合材料 在高温高压下粘合不同材料(例如金属、陶瓷、聚合物)层通常需要多步力曲线和精确的温度梯度控制,才能实现无空隙粘合。可编程的保压阶段和独立的压板控制功能,能够根据每种材料的玻璃化转变温度和固化动力学特性,定制层压循环。 无空隙层压板,粘合强度一致,适用于航空航天和电子产品封装。
XRF样品制备 将粉末样品压制成用于X射线荧光分析的压片需要密度一致,以确保分析精度。伺服控制的力输送方式可制备密度和表面光洁度均匀的压片,从而消除操作人员的差异并提高计数统计精度。 可重复的压片密度可降低 XRF 测量中的 RSD,并提高元素分析的可靠性。
药物片剂配方 将粉末混合物压制成片剂,用于产品开发或小批量生产,需要精确的力控制和数据记录,以符合质量源于设计 (QbD) 方法的要求。可编程的压力曲线和实时曲线监测功能能够进行精确的压片研究,有助于确定最佳的压片参数。 精确的力和停留时间数据支持规模化生产和监管申报,降低配方风险。
航空航天复合材料研发 在可控热循环条件下固化预浸料层或测试新型粘合剂体系,需要在台式设备上模拟高压釜的条件。该压机的升温/保温温度控制和可编程压力能够模拟固化循环,从而允许使用小型试样进行材料鉴定,然后再扩展到生产用高压釜。 在实验室中模拟生产固化曲线,加快材料筛选速度,降低开发成本。
陶瓷模压 利用陶瓷粉末成型烧结生坯需要均匀的压力分布和精确的保压时间,以防止开裂并获得高生坯密度。伺服执行器稳定的力输出和可编程的保压时间消除了手动液压机常见的压力波动。 无裂纹的绿色压坯,密度均匀性得到改善,提高了最终烧结零件的质量。

技术规格

范围 规格
模型 XP72
最大劳动力 0 – 6000 磅(约 2.7 公吨),伺服驱动,可编程压力/停留时间控制
压力分辨率 ≤ 20 磅(约 9 公斤),重复性高
驱动源 伺服电机执行器,100% 电动,无需液压油
压板尺寸 300 × 300 毫米,双加热压板
压板距离 60毫米(买方必须确认模具/样品高度)
工作温度范围 0 – 300 °C
加热控制 独立双区控制,带升温/保温编程;支持加热速率控制
加热功率 4500 瓦(4.5 千瓦),确保快速加热
用户界面 7英寸彩色触摸屏,实时曲线显示和程序存储
电源 单相交流电 220–240 伏,60 赫兹;北美地区建议使用 220 伏双火线。
冷却方法 循环水冷却;需要冷水机组或实验室水源。
可选安全配件 带光幕传感器的安全防护罩(符合 OSHA 标准),售价 1100 美元

为什么选择这款产品

  • 无油纯净,适用于敏感环境:与不可避免地会漏油和产生蒸汽的液压机不同,这种伺服驱动系统完全无油运行,消除了污染风险,也免去了换油、更换滤芯和维修密封件的维护负担。对于电池研发、半导体加工和制药洁净室而言,这意味着产品纯度不受损害,停机时间大大减少。
  • 无与伦比的精度和可编程性:压力分辨率低至 20 磅,多级力/温度曲线可实现手动或气动压力机无法达到的过程控制。这种数字化可编程性确保每个循环都完全相同,从而简化了工艺验证和技术转移——这对于医疗器械制造和航空航天等受监管行业至关重要。
  • 专为北美实验室打造:标配 220–240V 单相电源,并可选配符合 OSHA 标准的光幕防护罩,这意味着该设备可无缝集成到现有实验室中,无需昂贵的电气升级或安全改造。双相电源配置为北美实验室所熟悉,而压机的 CE 认证组件则确保符合国际安全标准。
  • 长期可靠性:坚固耐用的工业级组件,包括重型伺服执行器、硬化钢压板和PID控制加热器,专为在严苛环境下连续使用而设计。水冷系统即使在长时间生产运行期间也能保持温度稳定,从而保护关键电子元件和机械部件。妥善保养,这台压力机可提供数十年的稳定运行。
  • 专业支持与定制:凭借 KINTEK 数十年的应用经验,这款压力机可根据特定工具、自动化接口或与手套箱和自动化处理系统的集成进行定制。我们响应迅速的服务团队提供快速技术支持和备件,最大限度地减少停机时间,确保您的研究工作顺利进行。

立即联系我们的团队,讨论您的具体压制要求,并获得定制报价——我们将帮助您为您的实验室配置合适的解决方案。

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Automatic Hot Press 3 Ton 300x300mm Oil Free OSHA Light Curtain Optional

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Laboratory Heated Press


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